<?xml version="1.0" encoding="UTF-8"?>
<module xmlns="http://www.xml-cml.org/schema"
        xmlns:cc="http://www.xml-cml.org/dictionary/compchem/"
        xmlns:cml="http://www.xml-cml.org/schema"
        xmlns:cmlx="http://www.xml-cml.org/schema/cmlx"
        xmlns:compchem="http://www.xml-cml.org/dictionary/compchem/"
        xmlns:convention="http://www.xml-cml.org/convention/"
        xmlns:g="http://www.iochem-bd.org/dictionary/gaussian/"
        xmlns:nonsi="http://www.xml-cml.org/unit/nonSi/"
        xmlns:nonsi2="http://www.iochem-bd.org/unit/nonSi2/"
        xmlns:si="http://www.xml-cml.org/unit/si/"
        xmlns:xi="http://www.w3.org/2001/XInclude"
        xmlns:xsd="http://www.w3.org/2001/XMLSchema"
        convention="convention:compchem"
        id="gaussian.log">
   <module dictRef="cc:jobList" id="jobList1">
      <module cmlx:templateRef="job" dictRef="cc:job" id="job">
         <module dictRef="cc:environment" id="environment">
            <parameterList>
               <parameter dictRef="cc:program">
                  <scalar dataType="xsd:string">Gaussian 16</scalar>
               </parameter>
               <parameter dictRef="cc:hostname">
                  <scalar dataType="xsd:string">GINC-AMD17</scalar>
               </parameter>
               <parameter dictRef="cc:jobname">
                  <scalar dataType="xsd:string">ALLEDOS</scalar>
               </parameter>
               <parameter dictRef="cc:title">
                  <scalar dataType="xsd:string">opt freq</scalar>
               </parameter>
               <parameter dictRef="cc:version">
                  <scalar dataType="xsd:string">ES64L-G16RevA.03</scalar>
               </parameter>
               <parameter dictRef="cc:run.date">
                  <scalar dataType="xsd:string">15-Mar-2025</scalar>
               </parameter>
               <parameter dictRef="cc:program">
                  <scalar dataType="xsd:string">Gaussian 16</scalar>
               </parameter>
               <parameter dictRef="cc:program.date">
                  <scalar dataType="xsd:string">25-Dec-2016</scalar>
               </parameter>
               <parameter dictRef="cc:version">
                  <scalar dataType="xsd:string">ES64L-G16RevA.03</scalar>
               </parameter>
            </parameterList>
         </module>
         <module dictRef="cc:initialization" id="initialization">
            <parameterList>
               <parameter dictRef="cc:degfreedom">
                  <scalar cmlx:templateRef="degfreedom" dataType="xsd:integer">168</scalar>
               </parameter>
               <parameter dictRef="cc:degfreedom">
                  <scalar cmlx:templateRef="degfreedom" dataType="xsd:integer">168</scalar>
               </parameter>
               <parameter dictRef="cc:frameworkgroup">
                  <scalar cmlx:templateRef="framework" dataType="xsd:string">C1[X(C26H19Cs2F3N2O5Pd)]</scalar>
               </parameter>
               <parameter dictRef="cc:frameworkgroup">
                  <scalar cmlx:templateRef="framework" dataType="xsd:string">C1[X(C26H19Cs2F3N2O5Pd)]</scalar>
               </parameter>
               <parameter dictRef="cc:method">
                  <scalar dataType="xsd:string">RM06</scalar>
               </parameter>
               <parameter dictRef="cc:basis">
                  <scalar dataType="xsd:string">GenECP</scalar>
               </parameter>
               <parameter dictRef="g:operation">
                  <scalar dataType="xsd:string">FOpt</scalar>
               </parameter>
               <parameter dictRef="g:keyword">
                  <scalar dataType="xsd:string">#p</scalar>
               </parameter>
               <parameter dictRef="g:keyword">
                  <scalar dataType="xsd:string">opt=(calcfc,modredundant,maxstep=1)</scalar>
               </parameter>
               <parameter dictRef="g:keyword">
                  <scalar dataType="xsd:string">FREQ</scalar>
               </parameter>
               <parameter dictRef="g:keyword">
                  <scalar dataType="xsd:string">genecp</scalar>
               </parameter>
               <parameter dictRef="g:keyword">
                  <scalar dataType="xsd:string">SCRFDef=AsymmetricIEFPCM</scalar>
               </parameter>
               <parameter dictRef="g:keyword">
                  <scalar dataType="xsd:string">scrf=(smd,solvent=mesitylene)</scalar>
               </parameter>
               <parameter dictRef="g:keyword">
                  <scalar dataType="xsd:string">m06</scalar>
               </parameter>
               <parameter dictRef="g:keyword">
                  <scalar dataType="xsd:string">scf=xqc</scalar>
               </parameter>
               <parameter dictRef="g:keyword">
                  <scalar dataType="xsd:string">temperature=403.15</scalar>
               </parameter>
            </parameterList>
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                      formalCharge="0"
                      id="zmat"
                      spinMultiplicity="1">
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                        y3="1.49366"
                        z3="-0.03065"/>
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                        y3="0.70111"
                        z3="-0.01077"/>
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                        y3="2.8165"
                        z3="-0.05392"/>
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                        x3="6.40005"
                        y3="3.10493"
                        z3="-0.0404"/>
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                        x3="3.61683"
                        y3="1.10081"
                        z3="-0.09968"/>
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                        x3="4.35734"
                        y3="3.80692"
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                        z3="-0.21948"/>
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                        z3="-0.24405"/>
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                        x3="2.10666"
                        y3="5.74428"
                        z3="-0.29605"/>
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                        x3="3.10151"
                        y3="6.16744"
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                        y3="6.02632"
                        z3="-0.60189"/>
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                        y3="6.64336"
                        z3="-0.74755"/>
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                        z3="-0.51894"/>
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                        z3="-0.58437"/>
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                        z3="-0.8222"/>
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                        y3="1.26269"
                        z3="0.33104"/>
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                        z3="1.54711"/>
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                        z3="-0.01927"/>
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                        x3="0.67651"
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                        z3="-0.34815"/>
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                        z3="-0.55618"/>
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                        x3="-5.99917"
                        y3="-0.15079"
                        z3="-0.36292"/>
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                        x3="-1.7051"
                        y3="1.08046"
                        z3="2.5621"/>
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                        z3="-1.77562"/>
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                        x3="-1.58614"
                        y3="1.91048"
                        z3="-1.66289"/>
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                        x3="-0.27243"
                        y3="-3.61817"
                        z3="0.81825"/>
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                        x3="-1.13792"
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                        z3="2.58932"/>
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                        y3="-2.38452"
                        z3="1.56947"/>
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                        x3="0.26293"
                        y3="-1.19295"
                        z3="0.84074"/>
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                        z3="2.91452"/>
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                        z3="1.39325"/>
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                        id="a46"
                        x3="1.01753"
                        y3="-1.1600"
                        z3="3.47907"/>
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                        id="a47"
                        x3="1.04447"
                        y3="0.0236"
                        z3="2.73728"/>
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                  <bond atomRefs2="a1 a2" order="S"/>
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                  <bond atomRefs2="a3 a6" order="S"/>
                  <bond atomRefs2="a3 a4" order="S"/>
                  <bond atomRefs2="a5 a26" order="S"/>
                  <bond atomRefs2="a5 a24" order="S"/>
                  <bond atomRefs2="a6 a8" order="S"/>
                  <bond atomRefs2="a6 a7" order="S"/>
                  <bond atomRefs2="a8 a24" order="S"/>
                  <bond atomRefs2="a8 a9" order="S"/>
                  <bond atomRefs2="a9 a10" order="S"/>
                  <bond atomRefs2="a9 a25" order="S"/>
                  <bond atomRefs2="a10 a11" order="S"/>
                  <bond atomRefs2="a10 a12" order="S"/>
                  <bond atomRefs2="a12 a13" order="S"/>
                  <bond atomRefs2="a12 a14" order="S"/>
                  <bond atomRefs2="a14 a15" order="S"/>
                  <bond atomRefs2="a14 a16" order="S"/>
                  <bond atomRefs2="a16 a17" order="S"/>
                  <bond atomRefs2="a16 a25" order="S"/>
                  <bond atomRefs2="a18 a23" order="S"/>
                  <bond atomRefs2="a18 a19" order="S"/>
                  <bond atomRefs2="a18 a27" order="S"/>
                  <bond atomRefs2="a19 a35" order="S"/>
                  <bond atomRefs2="a19 a20" order="S"/>
                  <bond atomRefs2="a20 a34" order="S"/>
                  <bond atomRefs2="a20 a21" order="S"/>
                  <bond atomRefs2="a21 a28" order="S"/>
                  <bond atomRefs2="a21 a22" order="S"/>
                  <bond atomRefs2="a22 a23" order="S"/>
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                  <bond atomRefs2="a23 a32" order="S"/>
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                  <bond atomRefs2="a28 a31" order="S"/>
                  <bond atomRefs2="a28 a29" order="S"/>
                  <bond atomRefs2="a36 a37" order="S"/>
                  <bond atomRefs2="a36 a42" order="S"/>
                  <bond atomRefs2="a36 a38" order="S"/>
                  <bond atomRefs2="a38 a41" order="S"/>
                  <bond atomRefs2="a38 a39" order="S"/>
                  <bond atomRefs2="a40 a56" order="S"/>
                  <bond atomRefs2="a42 a43" order="S"/>
                  <bond atomRefs2="a42 a44" order="S"/>
                  <bond atomRefs2="a43 a48" order="S"/>
                  <bond atomRefs2="a43 a45" order="S"/>
                  <bond atomRefs2="a44 a49" order="S"/>
                  <bond atomRefs2="a44 a46" order="S"/>
                  <bond atomRefs2="a45 a47" order="S"/>
                  <bond atomRefs2="a46 a47" order="S"/>
                  <bond atomRefs2="a46 a51" order="S"/>
                  <bond atomRefs2="a47 a52" order="S"/>
                  <bond atomRefs2="a50 a53" order="S"/>
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                  <bond atomRefs2="a54 a55" order="S"/>
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                  <bond atomRefs2="a58 a36" order="S"/>
                  <bond atomRefs2="a58 a42" order="S"/>
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               <formula concise="C26H19Cs2F3N2O5Pd"/>
               <property dictRef="cml:molmass">
                  <scalar units="unit:dalton">849.5147095999998</scalar>
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               <list cmlx:templateRef="charge">
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                     <scalar dataType="xsd:integer" dictRef="g:charge">0</scalar>
                     <scalar dataType="xsd:integer" dictRef="g:mult">1</scalar>
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               </list>
               <formula convention="iupac:inchi"
                        inline="InChI=1/C10H7N2O.C8H6O.C7H4F3.CH2O3.2Cs.Pd/c13-10-6-3-5-9(12-10)8-4-1-2-7-11-8;1-7(9)8-5-3-2-4-6-8;8-7(9,10)6-4-2-1-3-5-6;2-1(3)4;;;/h1-7H;2-3,5-6H,1H2;2-5H;2-3H;;;/q-3;;;-1;2*+1;+2/rC26H19Cs2F3N2O5Pd/c1-26-24-14-5-8-20-22(24)40-27(26)35-23(34)37-28(24,26,38(26)27)36-21-9-4-7-19-18-6-2-3-15-32(18)39(20,33(19)21)17-12-10-16(11-13-17)25(29,30)31/h2-15,34,37H,1H2">
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            <module dictRef="cc:userDefinedModule" id="otherComponents">
               <module cmlx:templateRef="entering" dictRef="cc:userDefinedModule">
                  <scalar dataType="xsd:string" dictRef="g:link0">g16</scalar>
                  <array dataType="xsd:string" dictRef="g:command" size="3">/prod/nvhpc-24.5/gaussian/16a3/g16/l1.exe "/scratch/uabbnc/alledos/124988/Gau-2020826.inp" -scrdir="/scratch/uabbnc/alledos/124988/"</array>
               </module>
               <module cmlx:templateRef="l1" dictRef="cc:userDefinedModule">
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                     <array dataType="xsd:string" dictRef="g:kk" size="1">mem=96GB</array>
                     <scalar cmlx:templateRef="title" dataType="xsd:string" dictRef="cc:title">#p opt=(calcfc,modredundant,maxstep=1) FREQ genecp SCRFDef=AsymmetricI</scalar>
                     <list cmlx:templateRef="control">
                        <scalar dataType="xsd:string" dictRef="g:control">1/8=1,10=4,18=120,19=15,26=3,38=1,112=403150,158=3/1,3</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">2/9=110,12=2,17=6,18=5,40=1/2</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">3/5=7,11=2,16=1,17=8,25=1,30=1,70=32201,71=2,72=130,74=-54,140=1,158=3/1,2,3</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">4//1</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">5/5=2,8=3,13=1,38=5,53=130/2,8</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">8/6=4,10=90,11=11/1</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">11/6=1,8=1,9=11,15=111,16=1/1,2,10</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">10/6=1,13=1/2</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">6/7=2,8=2,9=2,10=2,28=1/1</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">7/10=1,18=20,25=1/1,2,3,16</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">1/8=1,10=4,18=20,19=15,26=3,158=3/3(2)</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">2/9=110/2</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">99//99</scalar>
                     </list>
                     <list cmlx:templateRef="control">
                        <scalar dataType="xsd:string" dictRef="g:control">2/9=110/2</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">3/5=7,6=1,11=2,16=1,17=8,25=1,30=1,70=32205,71=1,72=130,74=-54,82=7,158=3/1,2,3</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">4/5=5,16=3,69=1/1</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">5/5=2,8=3,13=1,38=5,53=130/2,8</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">7//1,2,3,16</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">1/8=1,18=20,19=15,26=3,158=3/3(-5)</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">2/9=110/2</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">6/7=2,8=2,9=2,10=2,19=2,28=1/1</scalar>
                        <scalar dataType="xsd:string" dictRef="g:control">99/9=1/99</scalar>
                     </list>
                  </module>
               </module>
               <module cmlx:templateRef="l101" dictRef="cc:userDefinedModule">
                  <module cmlx:templateRef="l101.title">
                     <scalar cmlx:templateRef="title" dataType="xsd:string" dictRef="cc:title">opt freq</scalar>
                  </module>
                  <module cmlx:templateRef="l101.isotope2">
                     <array cmlx:templateRef="atom"
                            dataType="xsd:integer"
                            dictRef="x:x"
                            size="58">1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58</array>
                     <array cmlx:templateRef="iatwgt"
                            dataType="xsd:integer"
                            dictRef="x:x"
                            size="58">12 1 12 1 12 12 1 12 12 12 1 12 1 12 1 12 1 12 12 12 12 12 12 14 14 16 106 12 19 19 19 1 1 1 1 12 16 12 1 1 1 12 12 12 12 12 12 1 1 1 1 1 16 16 12 16 133 133</array>
                     <array cmlx:templateRef="atmwgt"
                            dataType="xsd:double"
                            dictRef="x:x"
                            size="58">12.0000000 1.0078250 12.0000000 1.0078250 12.0000000 12.0000000 1.0078250 12.0000000 12.0000000 12.0000000 1.0078250 12.0000000 1.0078250 12.0000000 1.0078250 12.0000000 1.0078250 12.0000000 12.0000000 12.0000000 12.0000000 12.0000000 12.0000000 14.0030740 14.0030740 15.9949146 105.9032000 12.0000000 18.9984032 18.9984032 18.9984032 1.0078250 1.0078250 1.0078250 1.0078250 12.0000000 15.9949146 12.0000000 1.0078250 1.0078250 1.0078250 12.0000000 12.0000000 12.0000000 12.0000000 12.0000000 12.0000000 1.0078250 1.0078250 1.0078250 1.0078250 1.0078250 15.9949146 15.9949146 12.0000000 15.9949146 132.9054290 132.9054290</array>
                     <array cmlx:templateRef="nucspn"
                            dataType="xsd:integer"
                            dictRef="x:x"
                            size="58">0 1 0 1 0 0 1 0 0 0 1 0 1 0 1 0 1 0 0 0 0 0 0 2 2 0 0 0 1 1 1 1 1 1 1 0 0 0 1 1 1 0 0 0 0 0 0 1 1 1 1 1 0 0 0 0 0 0</array>
                     <array cmlx:templateRef="atzeff"
                            dataType="xsd:double"
                            dictRef="x:x"
                            size="58">-0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000 -0.0000000</array>
                  </module>
                  <list cmlx:templateRef="rest">
                     <scalar dataType="xsd:string" dictRef="x:l101">(Enter /prod/nvhpc-24.5/gaussian/16a3/g16/l101.exe)</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l103" dictRef="cc:userDefinedModule">
                  <list cmlx:templateRef="berny">
                     <scalar dataType="xsd:string" dictRef="g:optimization">Berny optimization.</scalar>
                  </list>
                  <module cmlx:templateRef="l103.init">
                     <list cmlx:templateRef="length">
                        <array dataType="xsd:string" dictRef="g:symbol" size="74">R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 R13 R14 R15 R16 R17 R18 R19 R20 R21 R22 R23 R24 R25 R26 R27 R28 R29 R30 R31 R32 R33 R34 R35 R36 R37 R38 R39 R40 R41 R42 R43 R44 R45 R46 R47 R48 R49 R50 R51 R52 R53 R54 R55 R56 R57 R58 R59 R60 R61 R62 R63 R64 R65 R66 R67 R68 R69 R70 R71 R72 R73 R74</array>
                        <array dataType="xsd:integer" dictRef="g:atom1" size="74">1 1 1 3 3 5 5 6 6 8 8 9 9 10 10 12 12 14 14 16 16 18 18 18 19 19 20 20 20 21 21 22 22 23 24 25 26 27 28 28 28 36 36 36 36 36 37 37 37 38 38 40 42 42 42 42 43 43 43 43 44 44 45 46 46 47 48 50 53 53 54 54 55 55</array>
                        <array dataType="xsd:integer" dictRef="g:atom2" size="74">2 3 5 4 6 24 26 7 8 9 24 10 25 11 12 13 14 15 16 17 25 19 23 27 20 35 21 34 57 22 28 23 33 32 27 27 58 45 29 30 31 37 38 42 57 58 40 57 58 39 41 56 43 44 57 58 45 48 57 58 46 49 47 47 51 52 57 53 55 58 55 57 56 58</array>
                        <array dataType="xsd:double" dictRef="cc:distance" size="74">1.0886 1.3692 1.436 1.09 1.4037 1.3715 1.2586 1.0858 1.3848 1.4814 1.3536 1.3969 1.3512 1.0864 1.3861 1.0884 1.39 1.087 1.3863 1.0902 1.3357 1.4114 1.406 2.0203 1.3919 1.0926 1.3967 1.0915 3.6744 1.3949 1.4879 1.3929 1.0895 1.0907 2.1618 2.2069 3.1375 2.0081 1.3362 1.3405 1.3575 1.2899 1.3738 1.5164 3.3049 3.4353 2.4541 3.1206 3.1647 1.0909 1.0888 0.9776 1.3987 1.4008 3.73 3.3408 1.3953 1.0837 3.4769 3.5338 1.394 1.0916 1.4016 1.3971 1.0933 1.0929 2.8929 1.0016 1.3178 3.1019 1.213 3.2371 1.3403 3.6505</array>
                        <array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="74">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically</array>
                     </list>
                     <list cmlx:templateRef="angle">
                        <array dataType="xsd:string" dictRef="g:symbol" size="149">A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16 A17 A18 A19 A20 A21 A22 A23 A24 A25 A26 A27 A28 A29 A30 A31 A32 A33 A34 A35 A36 A37 A38 A39 A40 A41 A42 A43 A44 A45 A46 A47 A48 A49 A50 A51 A52 A53 A54 A55 A56 A57 A58 A59 A60 A61 A62 A63 A64 A65 A66 A67 A68 A69 A70 A71 A72 A73 A74 A75 A76 A77 A78 A79 A80 A81 A82 A83 A84 A85 A86 A87 A88 A89 A90 A91 A92 A93 A94 A95 A96 A97 A98 A99 A100 A101 A102 A103 A104 A105 A106 A107 A108 A109 A110 A111 A112 A113 A114 A115 A116 A117 A118 A119 A120 A121 A122 A123 A124 A125 A126 A127 A128 A129 A130 A131 A132 A133 A134 A135 A136 A137 A138 A139 A140 A141 A142 A143 A144 A145 A146 A147 A148 A149</array>
                        <array dataType="xsd:integer" dictRef="g:atom1" size="149">2 2 3 1 1 4 1 1 24 3 3 7 6 6 9 8 8 10 9 9 11 10 10 13 12 12 15 14 14 17 19 19 23 18 18 20 19 19 19 21 21 34 20 20 22 21 21 23 18 18 22 5 5 8 9 9 16 5 18 18 24 24 21 21 21 29 29 30 37 37 38 38 38 57 40 40 57 36 36 39 37 36 36 43 44 44 57 42 42 45 45 45 48 57 42 42 46 27 27 43 44 44 47 45 45 46 50 50 55 53 53 54 54 56 40 20 20 20 20 20 20 36 36 36 37 37 37 37 42 42 43 48 26 26 26 26 26 26 36 36 36 37 37 37 37 42 42 43 43</array>
                        <array dataType="xsd:integer" dictRef="g:atom2" size="149">1 1 1 3 3 3 5 5 5 6 6 6 8 8 8 9 9 9 10 10 10 12 12 12 14 14 14 16 16 16 18 18 18 19 19 19 20 20 20 20 20 20 21 21 21 22 22 22 23 23 23 24 24 24 25 25 25 26 27 27 27 27 28 28 28 28 28 28 36 36 36 36 36 36 37 37 37 38 38 38 40 42 42 42 42 42 42 43 43 43 43 43 43 43 44 44 44 45 45 45 46 46 46 47 47 47 53 53 54 55 55 55 55 55 56 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 58 58 58 58 58 58 58 58 58 58 58 58 58 58 58 58 58</array>
                        <array dataType="xsd:integer" dictRef="g:atom3" size="149">3 5 5 4 6 6 24 26 26 7 8 8 9 24 24 10 25 25 11 12 12 13 14 14 15 16 16 17 25 25 23 27 27 20 35 35 21 34 57 34 57 57 22 28 28 23 33 33 22 32 32 8 27 27 16 27 27 58 25 45 25 45 29 30 31 30 31 31 38 42 42 57 58 58 57 58 58 39 41 41 56 43 44 44 57 58 58 45 48 48 57 58 58 58 46 49 49 43 47 47 47 51 51 46 52 52 55 58 57 54 56 56 58 58 55 36 37 42 43 48 54 43 48 54 42 43 48 54 48 54 54 54 36 37 42 43 53 55 43 53 55 42 43 53 55 53 55 53 55</array>
                        <array dataType="xsd:double" dictRef="cc:angle" size="149">121.8173 117.388 120.723 120.2504 120.044 119.6834 117.2237 122.0619 120.7104 120.34 117.751 121.9043 121.8111 122.5406 115.5956 123.0064 116.5317 120.4446 120.4157 119.7286 119.8547 120.0432 119.2259 120.7309 121.777 118.0228 120.196 121.2356 123.015 115.7482 116.2892 115.9757 127.7337 122.2786 119.3892 118.3322 119.7577 120.4243 82.6471 119.8176 83.9698 103.6346 119.5081 118.9214 121.4625 119.9666 119.867 120.1663 122.1966 119.4334 118.3654 120.8381 123.9888 115.1008 119.5482 112.6753 125.481 162.8463 99.5151 85.0715 75.3817 101.1422 113.0979 112.5589 111.3855 107.511 106.2812 105.5125 126.4832 115.4052 118.0173 102.5302 132.0602 123.8504 86.5116 93.8965 142.2591 119.9807 122.0382 117.9438 103.9302 116.8067 125.2092 117.9587 144.127 101.3949 114.4059 123.6729 117.3098 119.0142 128.8942 111.7411 86.8144 116.06 119.5612 120.0045 120.4292 122.2918 120.6508 117.0163 121.2271 119.3584 119.4133 120.4734 120.3243 119.2019 115.8394 88.7636 126.6686 127.5828 108.1462 124.237 130.1315 80.9219 106.0103 129.7825 133.1002 106.0056 87.7969 86.7034 84.0701 42.8727 49.247 77.3401 39.3199 49.0806 46.57 59.7056 34.6181 73.7193 58.571 42.0279 101.7882 100.0979 81.7334 60.4972 48.9026 64.6283 41.727 87.1622 68.9792 42.7208 48.2643 70.7645 50.7669 86.0121 73.9053 65.3448 57.8827</array>
                        <array dataType="xsd:string"
                               delimiter="|"
                               dictRef="g:deriv"
                               size="149">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically</array>
                     </list>
                     <list cmlx:templateRef="lll">
                        <array dataType="xsd:string" dictRef="g:symbol" size="6">A150 A151 A152 A153 A154 A155</array>
                        <array dataType="xsd:integer" dictRef="g:atom1" size="6">18 25 36 18 25 36</array>
                        <array dataType="xsd:integer" dictRef="g:atom2" size="6">27 27 37 27 27 37</array>
                        <array dataType="xsd:integer" dictRef="g:atom3" size="6">24 45 40 24 45 40</array>
                        <array dataType="xsd:integer" dictRef="g:atom4" size="6">45 24 1 45 24 1</array>
                        <array dataType="xsd:integer" dictRef="g:atom5" size="6">-1 -1 -1 -2 -2 -2</array>
                        <scalar dataType="xsd:double" dictRef="g:lll">186.2137</scalar>
                        <array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="6">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically</array>
                     </list>
                     <list cmlx:templateRef="lll">
                        <scalar dataType="xsd:double" dictRef="g:lll">176.5238</scalar>
                     </list>
                     <list cmlx:templateRef="lll">
                        <scalar dataType="xsd:double" dictRef="g:lll">180.5959</scalar>
                     </list>
                     <list cmlx:templateRef="lll">
                        <scalar dataType="xsd:double" dictRef="g:lll">175.7381</scalar>
                     </list>
                     <list cmlx:templateRef="lll">
                        <scalar dataType="xsd:double" dictRef="g:lll">166.679</scalar>
                     </list>
                     <list cmlx:templateRef="lll">
                        <scalar dataType="xsd:double" dictRef="g:lll">186.9867</scalar>
                     </list>
                     <list cmlx:templateRef="dihed">
                        <array dataType="xsd:string" dictRef="g:symbol" size="285">D1 D2 D3 D4 D5 D6 D7 D8 D9 D10 D11 D12 D13 D14 D15 D16 D17 D18 D19 D20 D21 D22 D23 D24 D25 D26 D27 D28 D29 D30 D31 D32 D33 D34 D35 D36 D37 D38 D39 D40 D41 D42 D43 D44 D45 D46 D47 D48 D49 D50 D51 D52 D53 D54 D55 D56 D57 D58 D59 D60 D61 D62 D63 D64 D65 D66 D67 D68 D69 D70 D71 D72 D73 D74 D75 D76 D77 D78 D79 D80 D81 D82 D83 D84 D85 D86 D87 D88 D89 D90 D91 D92 D93 D94 D95 D96 D97 D98 D99 D100 D101 D102 D103 D104 D105 D106 D107 D108 D109 D110 D111 D112 D113 D114 D115 D116 D117 D118 D119 D120 D121 D122 D123 D124 D125 D126 D127 D128 D129 D130 D131 D132 D133 D134 D135 D136 D137 D138 D139 D140 D141 D142 D143 D144 D145 D146 D147 D148 D149 D150 D151 D152 D153 D154 D155 D156 D157 D158 D159 D160 D161 D162 D163 D164 D165 D166 D167 D168 D169 D170 D171 D172 D173 D174 D175 D176 D177 D178 D179 D180 D181 D182 D183 D184 D185 D186 D187 D188 D189 D190 D191 D192 D193 D194 D195 D196 D197 D198 D199 D200 D201 D202 D203 D204 D205 D206 D207 D208 D209 D210 D211 D212 D213 D214 D215 D216 D217 D218 D219 D220 D221 D222 D223 D224 D225 D226 D227 D228 D229 D230 D231 D232 D233 D234 D235 D236 D237 D238 D239 D240 D241 D242 D243 D244 D245 D246 D247 D248 D249 D250 D251 D252 D253 D254 D255 D256 D257 D258 D259 D260 D261 D262 D263 D264 D265 D266 D267 D268 D269 D270 D271 D272 D273 D274 D275 D276 D277 D278 D279 D280 D281 D282 D283 D284 D285</array>
                        <array dataType="xsd:integer" dictRef="g:atom1" size="285">2 2 5 5 2 2 3 3 1 1 4 4 1 1 26 26 1 24 3 3 7 7 6 6 24 24 6 6 9 9 8 8 25 25 8 8 10 10 9 9 11 11 10 10 13 13 12 12 15 15 14 14 17 17 23 23 27 27 19 19 27 27 19 19 23 23 18 18 18 35 35 35 19 19 34 34 57 57 19 19 19 19 19 19 21 21 21 21 21 21 34 34 34 34 34 34 20 20 28 28 20 20 20 22 22 22 21 21 33 33 5 5 8 8 9 9 16 16 9 9 16 16 5 5 5 5 5 5 18 18 24 24 38 42 37 37 42 42 57 57 58 58 37 37 38 38 38 38 38 38 58 58 58 58 38 38 38 38 57 57 57 57 57 58 40 40 40 40 40 58 58 58 58 58 40 40 40 40 40 57 57 57 57 57 37 36 36 44 44 36 36 43 43 57 57 58 58 44 44 44 44 58 58 58 58 44 44 44 44 57 57 57 57 42 42 48 48 57 57 58 58 45 45 45 45 58 58 58 58 45 45 45 45 45 48 48 48 48 48 57 57 57 57 57 42 42 49 49 27 27 43 43 44 44 51 51 50 50 50 50 50 50 50 57 57 57 55 55 55 55 55 55 53 54 58 54 54 54 54 54 56 56 56 56 56</array>
                        <array dataType="xsd:integer" dictRef="g:atom2" size="285">1 1 1 1 1 1 1 1 3 3 3 3 5 5 5 5 5 5 6 6 6 6 8 8 8 8 8 8 8 8 9 9 9 9 9 9 9 9 10 10 10 10 12 12 12 12 14 14 14 14 16 16 16 16 18 18 18 18 18 18 18 18 18 18 18 18 19 19 19 19 19 19 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 21 21 21 21 21 21 21 21 21 21 22 22 22 22 24 24 24 24 25 25 25 25 25 25 25 25 26 26 26 26 26 26 27 27 27 27 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 40 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 44 44 44 44 45 45 45 45 46 46 46 46 53 53 53 53 53 53 53 54 54 54 54 54 54 54 54 54 55 55 55 55 55 55 55 55 55 55 55 55 55</array>
                        <array dataType="xsd:integer" dictRef="g:atom3" size="285">3 3 3 3 5 5 5 5 6 6 6 6 24 24 24 24 26 26 8 8 8 8 9 9 9 9 24 24 24 24 10 10 10 10 25 25 25 25 12 12 12 12 14 14 14 14 16 16 16 16 25 25 25 25 19 19 19 19 23 23 23 23 27 27 27 27 20 20 20 20 20 20 21 21 21 21 21 21 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 22 22 22 22 28 28 28 28 28 28 23 23 23 23 27 27 27 27 27 27 27 27 45 45 45 45 58 58 58 58 58 58 45 45 45 45 40 40 38 38 38 38 38 38 38 38 42 42 42 42 57 57 57 57 57 57 57 57 58 58 58 58 58 58 58 58 40 40 57 57 57 57 57 57 57 57 57 57 58 58 58 58 58 58 58 58 58 58 56 43 43 43 43 44 44 44 44 44 44 44 44 57 57 57 57 57 57 57 57 58 58 58 58 58 58 58 58 45 45 45 45 45 45 45 45 57 57 57 57 57 57 57 57 58 58 58 58 58 58 58 58 58 58 58 58 58 58 58 46 46 46 46 47 47 47 47 47 47 47 47 55 55 58 58 58 58 58 55 55 55 57 57 57 57 57 57 56 56 56 58 58 58 58 58 58 58 58 58 58</array>
                        <array dataType="xsd:integer" dictRef="g:atom4" size="285">4 6 4 6 24 26 24 26 7 8 7 8 8 27 8 27 58 58 9 24 9 24 10 25 10 25 5 27 5 27 11 12 11 12 16 27 16 27 13 14 13 14 15 16 15 16 17 25 17 25 9 27 9 27 20 35 20 35 22 32 22 32 25 45 25 45 21 34 57 21 34 57 22 28 22 28 22 28 36 37 42 43 48 54 36 37 42 43 48 54 36 37 42 43 48 54 23 33 23 33 29 30 31 29 30 31 18 32 18 32 25 45 25 45 18 24 18 24 43 47 43 47 36 37 42 43 53 55 43 47 43 47 56 56 39 41 39 41 39 41 39 41 43 44 43 44 20 43 48 54 20 43 48 54 26 43 53 55 26 43 53 55 56 56 20 42 43 48 54 20 42 43 48 54 26 42 43 53 55 26 42 43 53 55 55 45 48 45 48 46 49 46 49 46 49 46 49 20 37 48 54 20 37 48 54 26 37 53 55 26 37 53 55 27 47 27 47 27 47 27 47 20 36 37 54 20 36 37 54 26 36 37 53 55 26 36 37 53 55 26 36 37 53 55 47 51 47 51 46 52 46 52 45 52 45 52 54 56 26 36 37 42 43 53 56 58 20 36 37 42 43 48 40 40 40 26 36 37 42 43 26 36 37 42 43</array>
                        <array dataType="xsd:double" dictRef="cc:dihed" size="285">-0.7633 177.5146 -177.6053 0.6727 175.0404 -5.6896 -7.9817 171.2883 -175.7801 3.4361 2.5077 -178.2761 11.3217 -165.4302 -167.9587 15.2893 45.704 -135.051 -177.3749 -0.1335 1.8283 179.0697 -5.1711 173.3197 177.4073 -4.1019 -7.5691 169.4572 169.8317 -13.142 -2.9985 177.3581 178.5677 -1.0756 -177.6751 18.5957 0.8569 -162.8723 -179.9129 0.1924 0.4417 -179.453 -179.8903 0.8529 0.2158 -179.041 178.4753 -1.113 -0.7937 179.618 0.2514 161.7412 -179.3579 -17.8681 0.1154 -179.94 179.7054 -0.3501 -0.5395 178.6688 179.9266 -0.8651 61.2799 -131.4576 -119.185 48.0775 0.132 179.8942 -78.5772 -179.8132 -0.0509 101.4777 0.0289 -176.2482 -179.7347 3.9881 77.9865 -98.2907 33.6727 3.2342 36.7412 24.2113 7.6784 -34.4136 -87.4495 -117.888 -84.381 -96.9109 -113.4438 -155.5358 153.2834 122.8448 156.3519 143.822 127.2891 85.1971 -0.4402 179.696 175.7395 -4.1244 -167.3461 -45.2469 73.0279 16.4524 138.5515 -103.1736 0.7143 -178.5021 -179.4222 1.3614 -165.9152 27.4057 17.1643 -149.5147 166.6608 -18.9757 4.0775 178.441 -124.705 57.584 79.3293 -98.3817 123.2784 145.6778 106.9326 117.0415 -161.1489 -177.0212 69.0906 -108.5102 -106.6474 75.7518 -147.4933 41.5723 4.9045 -177.361 -178.8057 -1.0712 79.759 -102.5066 -85.9616 91.7729 26.8508 -151.2728 -149.8472 32.0292 127.1371 141.108 162.4197 -161.8175 -65.6013 -51.6304 -30.3188 5.4441 -152.971 -144.8039 160.0819 150.336 43.8822 52.0493 -3.0649 -12.8108 125.0795 -17.1003 -86.7187 -143.5887 -114.9752 -92.8337 -42.0005 5.142 -51.7281 -23.1146 -0.9731 49.8601 78.3736 144.2868 112.357 38.6651 33.3901 -10.9593 54.9539 23.0242 -50.6678 -55.9428 -67.3674 178.8653 -1.7737 -2.8704 176.4906 178.3512 -0.8291 0.2472 -178.9331 -91.7001 89.1196 91.9194 -87.2609 73.3913 -146.1118 132.0028 152.1031 -110.5055 29.9914 -51.894 -31.7936 -95.0008 150.2602 -144.026 -160.8757 87.3275 -27.4115 38.3022 21.4525 -174.2076 3.4756 6.4416 -175.8752 -53.1096 124.5736 105.2288 -77.088 11.6608 -157.639 171.4223 96.0567 -145.9021 44.7981 13.8595 -61.5062 -34.4059 154.7884 -175.1873 -89.5637 -111.3384 85.6459 -85.1597 -55.1354 30.4882 8.7135 126.9429 -43.8627 -13.8384 71.7852 50.0105 1.592 -178.8011 -179.2313 0.3757 176.2222 -3.558 -1.5013 178.7185 -0.9467 178.8359 179.4466 -0.7708 21.8133 -160.2567 -18.8005 89.5401 104.6202 63.7042 52.6172 -123.039 59.3405 -49.5699 157.9148 24.8616 9.0139 49.3045 66.8732 66.2595 157.554 -24.4302 108.4754 -76.8722 38.2442 52.7519 11.4781 -7.1051 155.5022 -89.3813 -74.8737 -116.1474 -134.7307</array>
                        <array dataType="xsd:string"
                               delimiter="|"
                               dictRef="g:deriv"
                               size="285">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 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analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 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analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically</array>
                     </list>
                  </module>
               </module>
               <module cmlx:templateRef="l302.basis" dictRef="cc:userDefinedModule">
                  <list cmlx:templateRef="basis">
                     <scalar dataType="xsd:string" dictRef="g:basis">NPDir=0 NMtPBC=     1 NCelOv=     1 NCel=       1 NClECP=     1 NCelD=      1</scalar>
                     <scalar dataType="xsd:string" dictRef="g:basis">NCelK=      1 NCelE2=     1 NClLst=     1 CellRange=     0.0.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:basis">One-electron integrals computed using PRISM.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:basis">One-electron integral symmetry used in STVInt</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l103" dictRef="cc:userDefinedModule">
                  <list cmlx:templateRef="berny">
                     <scalar dataType="xsd:string" dictRef="g:optimization">Berny optimization.</scalar>
                  </list>
                  <module cmlx:templateRef="l103.localminsaddle">
                     <scalar cmlx:templateRef="r" dataType="xsd:string" dictRef="cc:minmaxts">local minimum</scalar>
                     <array cmlx:templateRef="junk"
                            dataType="xsd:string"
                            dictRef="x:junk1"
                            size="9">Step number 161 out of a maximum of 348</array>
                     <array cmlx:templateRef="junk"
                            dataType="xsd:string"
                            dictRef="x:junk1"
                            size="7">All quantities printed in internal units (Hartrees-Bohrs-Radians)</array>
                     <array cmlx:templateRef="eigenvaluelist"
                            dataType="xsd:double"
                            dictRef=""
                            size="168">0.00024 0.00050 0.00067 0.00099 0.00126 0.00176 0.00244 0.00306 0.00330 0.00379 0.00467 0.00538 0.00592 0.00690 0.00757 0.00784 0.00848 0.00885 0.00972 0.00996 0.01047 0.01150 0.01219 0.01255 0.01352 0.01410 0.01433 0.01444 0.01484 0.01595 0.01612 0.01626 0.01654 0.01670 0.01747 0.01783 0.01814 0.01836 0.01842 0.01957 0.02068 0.02106 0.02161 0.02198 0.02205 0.02255 0.02266 0.02334 0.02363 0.02398 0.02437 0.02474 0.02595 0.02645 0.02656 0.02735 0.02828 0.02935 0.03067 0.03148 0.03306 0.03439 0.03901 0.04283 0.04455 0.04660 0.05021 0.05426 0.05878 0.06586 0.06687 0.07327 0.07377 0.08183 0.08627 0.09636 0.09789 0.10116 0.10231 0.10607 0.10866 0.10997 0.11297 0.11334 0.11649 0.11791 0.11856 0.12020 0.12083 0.12094 0.12287 0.12429 0.12941 0.13061 0.13208 0.14003 0.14335 0.14991 0.16431 0.17152 0.17984 0.18208 0.18463 0.18807 0.18921 0.19139 0.19337 0.19685 0.20384 0.20798 0.21450 0.24157 0.26257 0.26409 0.26666 0.27679 0.28036 0.28523 0.29278 0.29389 0.29710 0.32931 0.33196 0.33726 0.34804 0.35106 0.35191 0.35299 0.35357 0.35428 0.35567 0.35621 0.35767 0.35913 0.36002 0.36133 0.36174 0.36286 0.36420 0.36742 0.37395 0.37576 0.38241 0.38766 0.39585 0.39695 0.40228 0.42001 0.43155 0.44581 0.45169 0.45792 0.46250 0.46438 0.46822 0.47994 0.48648 0.50051 0.50318 0.52200 0.53313 0.54856 0.55064 0.56141 0.56419 0.61957 0.70277 0.75170</array>
                  </module>
                  <module cmlx:templateRef="rfo">
                     <list cmlx:templateRef="rfo">
                        <scalar dataType="xsd:double" dictRef="g:lambda">-9.83653145e-10</scalar>
                     </list>
                  </module>
                  <module cmlx:templateRef="l103.deltas">
                     <list cmlx:templateRef="delta">
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                     </list>
                  </module>
                  <module cmlx:templateRef="l103.itemconverge">
                     <list cmlx:templateRef="row">
                        <array dataType="xsd:string" delimiter="|" dictRef="g:item" size="4">|Maximum Force|RMS     Force|Maximum Displacement|RMS     Displacement|</array>
                        <array dataType="xsd:double" dictRef="g:value" size="4">0.000007 0.000001 0.000530 0.000074</array>
                        <array dataType="xsd:double" dictRef="g:threshold" size="4">0.000450 0.000300 0.001800 0.001200</array>
                        <array dataType="xsd:string" dictRef="g:converged" size="4">YES YES YES YES</array>
                     </list>
                  </module>
                  <module cmlx:templateRef="preddelta">
                     <list cmlx:templateRef="predicted">
                        <scalar dataType="xsd:double" dictRef="g:predchange">-1.753670e-09</scalar>
                     </list>
                  </module>
                  <module cmlx:templateRef="l103.optimizedparam">
                     <list cmlx:templateRef="completed">
                        <scalar dataType="xsd:string" dictRef="g:optimization">Optimization completed.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:optimization">-- Stationary point found.</scalar>
                     </list>
                     <list cmlx:templateRef="length">
                        <array dataType="xsd:string" dictRef="g:symbol" size="74">R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 R13 R14 R15 R16 R17 R18 R19 R20 R21 R22 R23 R24 R25 R26 R27 R28 R29 R30 R31 R32 R33 R34 R35 R36 R37 R38 R39 R40 R41 R42 R43 R44 R45 R46 R47 R48 R49 R50 R51 R52 R53 R54 R55 R56 R57 R58 R59 R60 R61 R62 R63 R64 R65 R66 R67 R68 R69 R70 R71 R72 R73 R74</array>
                        <array dataType="xsd:integer" dictRef="g:atom1" size="74">1 1 1 3 3 5 5 6 6 8 8 9 9 10 10 12 12 14 14 16 16 18 18 18 19 19 20 20 20 21 21 22 22 23 24 25 26 27 28 28 28 36 36 36 36 36 37 37 37 38 38 40 42 42 42 42 43 43 43 43 44 44 45 46 46 47 48 50 53 53 54 54 55 55</array>
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                               delimiter="|"
                               dictRef="g:deriv"
                               size="284">-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0</array>
                     </list>
                  </module>
                  <scalar dictRef="l103.converged.count">1</scalar>
               </module>
            </module>
         </module>
         <module dictRef="cc:calculation" id="calculation">
            <module dictRef="cc:userDefinedModule" id="otherComponents">
               <module cmlx:templateRef="l301">
                  <module cmlx:templateRef="l301.basis2">
                     <scalar dataType="xsd:string" dictRef="cc:diffuse">(5D, 7F)</scalar>
                     <module cmlx:templateRef="centers">
                        <array dataType="xsd:integer" dictRef="cc:atomcount" size="1">27</array>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">S</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">2.7870000000e+00</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">S</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">1.9650000000e+00</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">S</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">6.2430000000e-01</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">S</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">1.4960000000e-01</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">S</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">4.3600000000e-02</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">P</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">5.9990000000e+00</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">P</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">1.4430000000e+00</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">P</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">5.2640000000e-01</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">P</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">8.9900000000e-02</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">P</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">2.6200000000e-02</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">D</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">2</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="2">6.0910000000e+00 1.7190000000e+00</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="2">3.7614600000e-02 5.2004790000e-01</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">D</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">6.0560000000e-01</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">D</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">1.8830000000e-01</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">F</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">1.4720000000e+00</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                     </module>
                     <module cmlx:templateRef="centers">
                        <array dataType="xsd:integer" dictRef="cc:atomcount" size="2">57 58</array>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">S</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">3</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="3">8.7090000000e-01 5.3930000000e-01 1.7240000000e-01</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="3">-1.1604798000e+00 1.4198515000e+00 5.8729050000e-01</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">S</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">4</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="4">8.7090000000e-01 5.3930000000e-01 1.7240000000e-01 3.9300000000e-02</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="4">8.2377270000e-01 -1.0709181000e+00 -9.0851220000e-01 1.0774049000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">S</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">1.5100000000e-02</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">P</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">3</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="3">1.4680000000e+00 4.1340000000e-01 1.5360000000e-01</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="3">-1.3210330000e-01 6.5724100000e-01 4.7564560000e-01</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">P</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">2</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="2">1.4580000000e-01 2.7900000000e-02</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="2">-1.6805560000e-01 1.0665746000e+00</array>
                        </list>
                        <list cmlx:templateRef="shell">
                           <scalar dataType="xsd:string" dictRef="x:itype">P</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:ngauss">1</scalar>
                           <scalar dataType="xsd:double" dictRef="x:scale">1.00</scalar>
                           <array dataType="xsd:double" dictRef="x:exponent" size="1">1.1300000000e-02</array>
                           <array dataType="xsd:double" dictRef="x:coeficient" size="1">1.0000000000e+00</array>
                        </list>
                     </module>
                     <module cmlx:templateRef="centers">
                        <array dataType="xsd:integer" dictRef="cc:atomcount" size="55">1 3 5 6 8 9 10 12 14 16 18 19 20 21 22 23 28 36 38 42 43 44 45 46 47 55 29 30 31 2 4 7 11 13 15 17 32 33 34 35 39 40 41 48 49 50 51 52 26 37 53 54 56 24 25</array>
                        <scalar dataType="xsd:string" dictRef="cc:basis">6-31G*</scalar>
                     </module>
                     <module cmlx:templateRef="pseudopot">
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">1</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">2</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">3</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">4</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">5</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">6</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">7</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">8</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">9</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">10</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">11</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">12</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">13</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">14</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">15</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">16</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">17</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">18</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">19</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">20</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">21</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">22</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">23</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">24</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">7</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">25</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">7</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">26</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">8</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">27</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">46</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:valelectrons">18</scalar>
                           <module cmlx:templateRef="header">
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">F and up</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="5">0 1 2 2 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="5">598.3336444 162.4298290 51.5714771 16.4888260 5.8287656</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="5">-0.05631770 -20.12880360 -105.81979230 -42.57333450 -3.61650860</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="5">0.00000000 0.00000000 0.00000000 0.00000000 0.00000000</array>
                              </module>
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">S - F</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="5">0 1 2 2 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="5">73.3806304 14.7550438 17.8350204 12.7111477 9.3292063</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="5">3.00036510 32.43500930 459.08303830 -868.06290290 514.47260980</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="5">0.00000000 0.00000000 0.00000000 0.00000000 0.00000000</array>
                              </module>
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">P - F</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="5">0 1 2 2 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="5">55.6689877 64.2337771 17.6254952 11.9058155 8.5100832</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="5">4.95930990 21.17110290 605.05600920 -726.96418460 396.32748830</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="5">0.00000000 0.00000000 0.00000000 0.00000000 0.00000000</array>
                              </module>
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">D - F</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="5">0 1 2 2 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="5">49.9994728 39.7477547 11.4321366 9.1790080 7.5624429</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="5">3.05087450 22.25065800 674.83576980 -1040.85540480 505.93751470</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="5">0.00000000 0.00000000 0.00000000 0.00000000 0.00000000</array>
                              </module>
                           </module>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">28</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">29</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">9</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">30</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">9</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">31</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">9</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">32</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">33</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">34</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">35</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">36</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">37</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">8</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">38</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">39</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">40</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">41</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">42</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">43</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">44</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">45</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">46</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">47</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">48</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">49</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">50</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">51</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">52</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">1</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">53</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">8</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">54</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">8</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">55</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">6</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">56</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">8</scalar>
                           <scalar dataType="xsd:string" dictRef="cc:nopseudo">No pseudopotential on this center.</scalar>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">57</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">55</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:valelectrons">9</scalar>
                           <module cmlx:templateRef="header">
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">F and up</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="6">0 1 2 2 2 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="6">636.7840130 147.8912446 42.5724911 11.2427883 3.5689707 1.3107462</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="6">-0.08051090 -33.43114480 -193.92708870 -56.83014330 -18.65049750 -2.54113990</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="6">0.00000000 0.00000000 0.00000000 0.00000000 0.00000000 0.00000000</array>
                              </module>
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">S - F</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="3">0 1 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="3">40.8648070 10.9329329 2.2294903</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="3">3.04999340 37.96775140 45.23406730</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="3">0.00000000 0.00000000 0.00000000</array>
                              </module>
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">P - F</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="4">0 1 2 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="4">118.8598171 30.6847958 10.1762999 1.8272850</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="4">4.64069510 62.03135330 129.59094810 31.51868250</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="4">0.00000000 0.00000000 0.00000000 0.00000000</array>
                              </module>
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">D - F</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="4">0 1 2 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="4">16.0081704 2.6488291 14.5555672 0.6703604</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="4">7.30544730 33.27857600 53.12969480 16.21188780</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="4">0.00000000 0.00000000 0.00000000 0.00000000</array>
                              </module>
                           </module>
                        </module>
                        <module cmlx:templateRef="atom">
                           <scalar dataType="xsd:integer" dictRef="cc:serial">58</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:elementType">55</scalar>
                           <scalar dataType="xsd:integer" dictRef="x:valelectrons">9</scalar>
                           <module cmlx:templateRef="header">
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">F and up</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="6">0 1 2 2 2 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="6">636.7840130 147.8912446 42.5724911 11.2427883 3.5689707 1.3107462</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="6">-0.08051090 -33.43114480 -193.92708870 -56.83014330 -18.65049750 -2.54113990</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="6">0.00000000 0.00000000 0.00000000 0.00000000 0.00000000 0.00000000</array>
                              </module>
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">S - F</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="3">0 1 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="3">40.8648070 10.9329329 2.2294903</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="3">3.04999340 37.96775140 45.23406730</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="3">0.00000000 0.00000000 0.00000000</array>
                              </module>
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">P - F</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="4">0 1 2 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="4">118.8598171 30.6847958 10.1762999 1.8272850</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="4">4.64069510 62.03135330 129.59094810 31.51868250</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="4">0.00000000 0.00000000 0.00000000 0.00000000</array>
                              </module>
                              <module cmlx:templateRef="params">
                                 <scalar dataType="xsd:string" dictRef="cc:angmomentum">D - F</scalar>
                                 <array dataType="xsd:integer" dictRef="g:powerofr" size="4">0 1 2 2</array>
                                 <array dataType="xsd:double" dictRef="cc:basisexponent" size="4">16.0081704 2.6488291 14.5555672 0.6703604</array>
                                 <array dataType="xsd:double" dictRef="cc:expcoeff" size="4">7.30544730 33.27857600 53.12969480 16.21188780</array>
                                 <array dataType="xsd:double" dictRef="g:socoeff" size="4">0.00000000 0.00000000 0.00000000 0.00000000</array>
                              </module>
                           </module>
                        </module>
                     </module>
                     <module cmlx:templateRef="ernie">
                        <scalar dataType="xsd:double" dictRef="g:thresh">0.10000e-02</scalar>
                        <scalar dataType="xsd:double" dictRef="g:tol">0.10000e-05</scalar>
                        <scalar dataType="xsd:string" dictRef="g:strict">F</scalar>
                     </module>
                     <module cmlx:templateRef="erniedeleted">
                        <list cmlx:templateRef="deleted">
                           <list>
                              <scalar dataType="xsd:integer" dictRef="g:erniedeleted">2</scalar>
                              <scalar dataType="xsd:integer" dictRef="g:ernietotal">515</scalar>
                           </list>
                        </list>
                     </module>
                     <scalar dataType="xsd:string" dictRef="g:misc">IExCor= 4235 DFT=T Ex+Corr=M06 ExCW=0 ScaHFX=  0.270000</scalar>
                     <scalar dataType="xsd:string" dictRef="g:misc">ScaDFX=  1.000000  1.000000  1.000000  1.000000 ScalE2=  1.000000  1.000000</scalar>
                     <scalar dataType="xsd:string" dictRef="g:misc">IRadAn=      5 IRanWt=     -1 IRanGd=            0 ICorTp=0 IEmpDi=  4</scalar>
                     <module cmlx:templateRef="natoms">
                        <list cmlx:templateRef="natoms">
                           <list>
                              <scalar dataType="xsd:integer" dictRef="cc:natoms">58</scalar>
                              <scalar dataType="xsd:integer" dictRef="cc:nactiveatoms">58</scalar>
                              <scalar dataType="xsd:integer" dictRef="cc:uniqatoms">58</scalar>
                              <scalar dataType="xsd:double" dictRef="g:sfac">1.00e+00</scalar>
                              <scalar dataType="xsd:integer" dictRef="g:natfmm">60</scalar>
                              <scalar dataType="xsd:string" dictRef="g:big">F</scalar>
                           </list>
                        </list>
                     </module>
                  </module>
                  <module cmlx:templateRef="l301.pcm.standard">
                     <scalar dataType="xsd:string" dictRef="g:model">PCM (using non-symmetric T matrix)</scalar>
                     <scalar dataType="xsd:string" dictRef="g:atomicradii">SMD-Coulomb.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:polarcharges">Total charges</scalar>
                     <scalar dataType="xsd:string" dictRef="g:chargecompensation">None</scalar>
                     <scalar dataType="xsd:string" dictRef="g:solutionmethod">Matrix inversion</scalar>
                     <scalar dataType="xsd:string" dictRef="g:solvent">Mesitylene</scalar>
                     <scalar dataType="xsd:double" dictRef="g:eps">2.265000</scalar>
                     <scalar dataType="xsd:double" dictRef="g:epsinfinity">2.248200</scalar>
                  </module>
               </module>
               <module cmlx:templateRef="l202" dictRef="cc:userDefinedModule">
                  <module cmlx:templateRef="l202.stoich">
                     <scalar cmlx:templateRef="stoich"
                             dataType="xsd:string"
                             dictRef="g:stoichiometry">C26H19Cs2F3N2O5Pd</scalar>
                     <scalar dataType="xsd:string" dictRef="cc:pointgroup">C1</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:operatorcount">1</scalar>
                     <scalar dataType="xsd:string" dictRef="cc:largestabelian">C1</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:operatorcount">1</scalar>
                     <scalar dataType="xsd:string" dictRef="cc:largestconciseabelian">C1</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:operatorcount">1</scalar>
                  </module>
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                        <formula concise="C26H19Cs2F3N2O5Pd"/>
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                        <formula convention="iupac:inchi"
                                 inline="InChI=1/C10H7N2O.C8H6O.C7H4F3.CH2O3.2Cs.Pd/c13-10-6-3-5-9(12-10)8-4-1-2-7-11-8;1-7(9)8-5-3-2-4-6-8;8-7(9,10)6-4-2-1-3-5-6;2-1(3)4;;;/h1-7H;2-3,5-6H,1H2;2-5H;2-3H;;;/q-3;;;-1;2*+1;+2/rC26H19Cs2F3N2O5Pd/c1-26-24-14-5-8-20-22(24)40-27(26)35-23(34)37-28(24,26,38(26)27)36-21-9-4-7-19-18-6-2-3-15-32(18)39(20,33(19)21)17-12-10-16(11-13-17)25(29,30)31/h2-15,34,37H,1H2">
                           <scalar dataType="xsd:integer" id="auxInfo">AuxInfo=1/0/N:12,14,3,10,6,1,16,9,8,5,25,24,26;38,47,46,45,44,43,36,42,37;18,19,23,20,22,21,28,29,30,31;55,53,56,54;57;58;27/E:;;(2,3)(4,5)(8,9,10);(2,3);;;/CRV:1.3,2.3,3.3,4.3,5.3,6.3,7.3,8.3,9.3,10.3,11-1,12-1,13-1;1.3,2.3,3.3,4.2,5.3,6.3,7.3,8.3,9.1;1.2,2.3,3.3,4.3,5.3,6.3;1.3,4-1;;;/rA:58nC3HC3HC3C3HC3C3C3HC3HC3HC3HC3C3C3C3C3C3NNOPdCFFFHHHHC5O3C3HHHCC3C3C3C3C3H2HHHHO3OC3OCs4Cs5/rB:s1;s1;s3;s1;s3;s6;s6;s8;s9;s10;s10;s12;s12;s14;s14;s16;;s18;s19;s20;s21;s18s22;s5s8;s9s16;s5;s18s24s25;s21;s28;s28;s28;s23;s22;s20;s19;;s36;s36;s38;;s38;s36;s42;s42;s27s43;s44;s45s46;s43;s44;;s46;s47;s50;;s53s54;s40s55;s36s37s48s54;s26s36s37s42s53;/rC:4.9976,1.4899,-.031;5.743,.6967,-.0111;5.3513,2.8124,-.0543;6.4025,3.1,-.0407;3.6178,1.0981,-.1;4.3604,3.8036,-.1322;4.6369,4.8499,-.2198;3.0372,3.3957,-.1099;1.9205,4.3599,-.2444;2.1112,5.7427,-.2964;3.1064,6.1651,-.1894;1.022,6.5804,-.4783;1.1649,7.6585,-.521;-.2468,6.0266,-.6022;-1.1293,6.6443,-.7479;-.3667,4.6479,-.5193;-1.3395,4.1601,-.5847;-1.4281,1.5284,.4646;-2.1346,1.6828,-.7474;-3.5185,1.5546,-.8225;-4.2516,1.2661,.3307;-3.5863,1.1101,1.5468;-2.2,1.2334,1.6021;2.6781,2.0938,-.0196;.6796,3.8354,-.3485;3.2707,-.1033,-.2424;.5774,1.7457,.3537;-5.7192,1.0497,.2151;-6.3437,1.0499,1.3964;-6.3154,1.9695,-.5565;-5.9992,-.1461,-.3633;-1.7042,1.0819,2.5618;-4.1528,.8899,2.4509;-4.0344,1.6819,-1.776;-1.5846,1.9118,-1.6632;-.2751,-3.6179,.8179;-.0436,-3.6122,-.451;-.9502,-4.5861,1.5208;-1.2806,-5.4953,1.0164;.1681,-3.4095,-2.8876;-1.1413,-4.497,2.589;.1876,-2.3846,1.5691;.2621,-1.1931,.8404;.5778,-2.3572,2.9142;.6472,.0289,1.3929;1.0167,-1.1607,3.4787;1.0446,.0229,2.7369;.0136,-1.2384,-.2135;.5496,-3.2719,3.5094;2.1975,-.5626,-1.578;1.3391,-1.1474,4.5233;1.3768,.9461,3.2182;2.1517,-1.3287,-2.2216;-.1021,-1.1412,-2.4299;.9413,-1.7526,-2.5245;1.0449,-2.996,-3.014;-2.7179,-2.0307,-.743;3.0533,-3.2179,.0675;/R:/0/N:38,12,14,3,46,10,6,47,1,20,22,19,23,44,16,21,18,9,8,45,5,43,55,42,28,36,57,58,29,30,31,25,24,56,54,26,53,37,27,48/E:(10,11)(12,13)(29,30,31)/CRV:1.3,2.3,3.3,4.3,5.3,6.3,7.3,8.3,9.3,10.3,11.3,12.3,13.3,14.3,15.3,16.3,17.3,18.3,19.3,20.3,21.3,22.3,23.3,26.5,27.4,28.5,37.3,38.3,40.2</scalar>
                        </formula>
                     </molecule>
                  </module>
                  <module cmlx:templateRef="l202.rotconst">
                     <array cmlx:templateRef="rotconst"
                            dataType="xsd:double"
                            dictRef="cc:rotconst"
                            size="3">0.0678397 0.0593408 0.0369237</array>
                  </module>
               </module>
               <module cmlx:templateRef="l601.popanal" dictRef="cc:userDefinedModule">
                  <array dataType="xsd:double" dictRef="g:alphaocc" size="146">-24.81957 -24.81549 -24.81479 -19.26237 -19.25246 -19.20898 -19.16017 -19.12011 -14.43141 -14.39022 -10.49676 -10.42444 -10.31663 -10.30412 -10.29200 -10.28609 -10.27393 -10.26398 -10.26187 -10.25617 -10.25530 -10.25195 -10.25013 -10.24973 -10.23756 -10.23411 -10.23318 -10.23217 -10.22886 -10.22431 -10.21850 -10.21721 -10.21594 -10.21397 -10.20174 -10.16548 -3.29680 -2.03954 -2.03692 -2.01035 -1.34319 -1.25925 -1.25256 -1.15130 -1.05933 -1.03070 -1.00999 -0.98133 -0.97533 -0.97470 -0.95087 -0.91781 -0.86418 -0.82777 -0.82400 -0.79620 -0.79568 -0.77630 -0.74734 -0.73156 -0.73069 -0.71521 -0.70091 -0.67160 -0.66936 -0.66224 -0.64969 -0.62117 -0.61942 -0.60711 -0.60437 -0.59701 -0.58792 -0.57981 -0.57084 -0.55918 -0.54876 -0.54015 -0.51116 -0.51020 -0.50503 -0.50211 -0.49810 -0.49636 -0.49583 -0.49329 -0.49076 -0.48954 -0.48285 -0.48139 -0.48069 -0.47386 -0.47042 -0.46737 -0.46503 -0.45522 -0.44910 -0.44434 -0.44266 -0.44165 -0.43839 -0.43205 -0.42948 -0.42626 -0.42098 -0.41998 -0.41425 -0.41320 -0.40934 -0.40246 -0.40035 -0.39408 -0.38369 -0.38178 -0.37698 -0.37306 -0.36945 -0.36570 -0.35170 -0.34610 -0.34099 -0.33748 -0.33631 -0.33505 -0.33111 -0.32457 -0.31832 -0.31311 -0.30698 -0.29377 -0.29203 -0.27956 -0.27041 -0.26451 -0.26055 -0.25599 -0.24866 -0.24131 -0.22777 -0.22579 -0.21897 -0.20725 -0.20188 -0.19405 -0.19338 -0.16115</array>
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                  <module cmlx:templateRef="l601.state">
                     <scalar dataType="xsd:string" dictRef="g:l601.state">1-A.</scalar>
                  </module>
                  <module cmlx:templateRef="mulliken">
                     <module cmlx:templateRef="l601.mullik">
                        <scalar dataType="xsd:string" dictRef="g:title">Mulliken charges:</scalar>
                        <scalar dataType="xsd:integer" dictRef="cc:serial">1</scalar>
                        <list cmlx:templateRef="row">
                           <array dataType="xsd:integer" dictRef="cc:serial" size="58">1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58</array>
                           <array dataType="xsd:string" dictRef="cc:elementType" size="58">C H C H C C H C C C H C H C H C H C C C C C C N N O Pd C F F F H H H H C O C H H H C C C C C C H H H H H O O C O Cs Cs</array>
                           <array dataType="xsd:double" dictRef="x:charge" size="58">-0.259677 0.157937 -0.139209 0.171118 0.578294 -0.253431 0.161788 0.320682 0.283513 -0.197267 0.189102 -0.141349 0.194305 -0.185440 0.193838 0.044857 0.192987 -0.013956 -0.239663 -0.219563 -0.082522 -0.188408 -0.224308 -0.612260 -0.497390 -0.660638 0.148771 0.946166 -0.318758 -0.321206 -0.331759 0.168592 0.182101 0.180548 0.173343 0.333460 -0.722868 -0.595858 0.110959 0.470201 0.116440 0.045395 -0.313875 -0.247676 0.049290 -0.165654 -0.244243 0.113727 0.143674 0.503424 0.147749 0.156769 -0.644417 -0.500596 0.780827 -0.611174 0.812436 0.860875</array>
                        </list>
                        <scalar dataType="xsd:double" dictRef="x:chargesum">-0.00000</scalar>
                     </module>
                  </module>
                  <list cmlx:templateRef="multipole" dictRef="cc:multipole">
                     <array dataType="xsd:double" dictRef="cc:dipole" size="3">3.0811 -0.5453 -3.1919</array>
                     <scalar dataType="xsd:double" dictRef="x:dipole">4.4698</scalar>
                     <array dataType="xsd:double" dictRef="cc:quadrupole" size="3">-236.4165 -218.3676 -271.1246</array>
                     <array dataType="xsd:double" dictRef="cc:quadrupole" size="3">-4.7769 16.3503 3.7796</array>
                     <array dataType="xsd:double" dictRef="cc:quadrupole" size="6">5.5531 23.6019 -29.1550 -4.7769 16.3503 3.7796</array>
                     <array dataType="xsd:double" dictRef="cc:octapole" size="10">219.0381 28.9186 -55.4753 143.6241 -243.0201 -39.4774 -49.6151 -103.3662 -97.4521 -41.1250</array>
                     <array dataType="xsd:double" dictRef="cc:hexadecapole" size="15">-13628.8252 -11142.6526 -3000.1531 -237.9814 245.0151 -469.8859 223.7203 215.2268 237.2398 -3639.2991 -2772.5755 -2780.8282 78.4461 190.3703 -139.6175</array>
                  </list>
               </module>
               <module cmlx:templateRef="l202" dictRef="cc:userDefinedModule">
                  <module cmlx:templateRef="l202.stoich">
                     <scalar cmlx:templateRef="stoich"
                             dataType="xsd:string"
                             dictRef="g:stoichiometry">C26H19Cs2F3N2O5Pd</scalar>
                     <scalar dataType="xsd:string" dictRef="cc:pointgroup">C1</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:operatorcount">1</scalar>
                     <scalar dataType="xsd:string" dictRef="cc:largestabelian">C1</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:operatorcount">1</scalar>
                     <scalar dataType="xsd:string" dictRef="cc:largestconciseabelian">C1</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:operatorcount">1</scalar>
                  </module>
                  <module cmlx:templateRef="l202.orient">
                     <molecule cmlx:templateRef="atom"
                               formalCharge="0"
                               id="mol.l202.orient"
                               spinMultiplicity="1">
                        <atomArray>
                           <atom elementType="C"
                                 id="a1"
                                 x3="5.747063"
                                 y3="0.1043"
                                 z3="0.823794">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a2"
                                 x3="6.3410"
                                 y3="-0.773205"
                                 z3="1.0737">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a3"
                                 x3="6.279701"
                                 y3="1.359991"
                                 z3="0.810653">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a4"
                                 x3="7.328362"
                                 y3="1.521963"
                                 z3="1.061251">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a5"
                                 x3="4.364215"
                                 y3="-0.128909"
                                 z3="0.479134">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a6"
                                 x3="5.469095"
                                 y3="2.450763"
                                 z3="0.455069">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a7"
                                 x3="5.888753"
                                 y3="3.450736"
                                 z3="0.418982">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a8"
                                 x3="4.133624"
                                 y3="2.210843"
                                 z3="0.179827">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a9"
                                 x3="3.248442"
                                 y3="3.321383"
                                 z3="-0.236581">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a10"
                                 x3="3.724886"
                                 y3="4.609987"
                                 z3="-0.502272">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a11"
                                 x3="4.78189"
                                 y3="4.836804"
                                 z3="-0.403142">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a12"
                                 x3="2.849477"
                                 y3="5.601645"
                                 z3="-0.909623">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a13"
                                 x3="3.219145"
                                 y3="6.604163"
                                 z3="-1.117124">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a14"
                                 x3="1.501331"
                                 y3="5.295932"
                                 z3="-1.052905">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a15"
                                 x3="0.774573"
                                 y3="6.03883"
                                 z3="-1.371321">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a16"
                                 x3="1.095917"
                                 y3="4.00102"
                                 z3="-0.776432">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a17"
                                 x3="0.049737"
                                 y3="3.711949"
                                 z3="-0.86641">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a18"
                                 x3="-0.610964"
                                 y3="1.483507"
                                 z3="0.332926">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a19"
                                 x3="-1.329859"
                                 y3="1.685254"
                                 z3="-0.862079">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a20"
                                 x3="-2.606975"
                                 y3="2.236033"
                                 z3="-0.865541">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a21"
                                 x3="-3.219538"
                                 y3="2.584372"
                                 z3="0.341661">
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                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
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                                 x3="-2.551798"
                                 y3="2.352049"
                                 z3="1.543846">
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                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a23"
                                 x3="-1.269708"
                                 y3="1.806904"
                                 z3="1.531404">
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                              </property>
                           </atom>
                           <atom elementType="N"
                                 id="a24"
                                 x3="3.566879"
                                 y3="0.979125"
                                 z3="0.243245">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="N"
                                 id="a25"
                                 x3="1.937499"
                                 y3="3.037642"
                                 z3="-0.384389">
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                              </property>
                           </atom>
                           <atom elementType="O"
                                 id="a26"
                                 x3="3.907237"
                                 y3="-1.284687"
                                 z3="0.399758">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="Pd"
                                 id="a27"
                                 x3="1.338044"
                                 y3="1.030754"
                                 z3="0.279413">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
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                           <atom elementType="C"
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                                 x3="-4.608119"
                                 y3="3.117965"
                                 z3="0.311567">
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                           <atom elementType="F"
                                 id="a29"
                                 x3="-5.017286"
                                 y3="3.583271"
                                 z3="1.49455">
                              <property dictRef="g:atomicType">
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                              </property>
                           </atom>
                           <atom elementType="F"
                                 id="a30"
                                 x3="-4.762617"
                                 y3="4.100063"
                                 z3="-0.585455">
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                              </property>
                           </atom>
                           <atom elementType="F"
                                 id="a31"
                                 x3="-5.499076"
                                 y3="2.155404"
                                 z3="-0.047599">
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                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a32"
                                 x3="-0.764773"
                                 y3="1.639129"
                                 z3="2.483349">
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                                 <scalar dataType="xsd:integer">0</scalar>
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                           </atom>
                           <atom elementType="H"
                                 id="a33"
                                 x3="-3.026626"
                                 y3="2.613642"
                                 z3="2.488699">
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                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a34"
                                 x3="-3.13243"
                                 y3="2.401862"
                                 z3="-1.808359">
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                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a35"
                                 x3="-0.878011"
                                 y3="1.416125"
                                 z3="-1.817528">
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                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a36"
                                 x3="-1.8925"
                                 y3="-3.425773"
                                 z3="1.258383">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="O"
                                 id="a37"
                                 x3="-2.315787"
                                 y3="-3.53128"
                                 z3="-0.019148">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a38"
                                 x3="-2.674885"
                                 y3="-3.912168"
                                 z3="2.239925">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a39"
                                 x3="-3.572831"
                                 y3="-4.478272"
                                 z3="1.996394">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a40"
                                 x3="-1.60244"
                                 y3="-3.395278"
                                 z3="-0.716656">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a41"
                                 x3="-2.428391"
                                 y3="-3.759097"
                                 z3="3.286358">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a42"
                                 x3="-0.64224"
                                 y3="-2.679419"
                                 z3="1.548008">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a43"
                                 x3="-0.302655"
                                 y3="-1.51938"
                                 z3="0.828207">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a44"
                                 x3="0.171314"
                                 y3="-3.07067"
                                 z3="2.616497">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a45"
                                 x3="0.798893"
                                 y3="-0.716133"
                                 z3="1.161953">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a46"
                                 x3="1.268905"
                                 y3="-2.290798"
                                 z3="2.968637">
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                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a47"
                                 x3="1.569576"
                                 y3="-1.128385"
                                 z3="2.262041">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a48"
                                 x3="-0.936661"
                                 y3="-1.223521"
                                 z3="-0.00859">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a49"
                                 x3="-0.066318"
                                 y3="-3.980153"
                                 z3="3.168398">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a50"
                                 x3="0.233352"
                                 y3="-0.522922"
                                 z3="-3.108917">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a51"
                                 x3="1.899283"
                                 y3="-2.592655"
                                 z3="3.805975">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="H"
                                 id="a52"
                                 x3="2.439887"
                                 y3="-0.544916"
                                 z3="2.559859">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="O"
                                 id="a53"
                                 x3="0.433113"
                                 y3="-1.444917"
                                 z3="-2.884001">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="O"
                                 id="a54"
                                 x3="-1.732452"
                                 y3="-1.225124"
                                 z3="-2.339518">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="C"
                                 id="a55"
                                 x3="-0.737562"
                                 y3="-1.966807"
                                 z3="-2.365006">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="O"
                                 id="a56"
                                 x3="-0.609485"
                                 y3="-3.150448"
                                 z3="-1.961763">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="Cs"
                                 id="a57"
                                 x3="-3.95082"
                                 y3="-0.946413"
                                 z3="-0.257141">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                           <atom elementType="Cs"
                                 id="a58"
                                 x3="2.219325"
                                 y3="-3.27641"
                                 z3="-0.85276">
                              <property dictRef="g:atomicType">
                                 <scalar dataType="xsd:integer">0</scalar>
                              </property>
                           </atom>
                        </atomArray>
                        <bondArray>
                           <bond atomRefs2="a1 a3" order="S"/>
                           <bond atomRefs2="a1 a2" order="S"/>
                           <bond atomRefs2="a1 a5" order="S"/>
                           <bond atomRefs2="a3 a6" order="S"/>
                           <bond atomRefs2="a3 a4" order="S"/>
                           <bond atomRefs2="a5 a24" order="S"/>
                           <bond atomRefs2="a5 a26" order="S"/>
                           <bond atomRefs2="a6 a7" order="S"/>
                           <bond atomRefs2="a6 a8" order="S"/>
                           <bond atomRefs2="a8 a9" order="S"/>
                           <bond atomRefs2="a8 a24" order="S"/>
                           <bond atomRefs2="a9 a25" order="S"/>
                           <bond atomRefs2="a9 a10" order="S"/>
                           <bond atomRefs2="a10 a11" order="S"/>
                           <bond atomRefs2="a10 a12" order="S"/>
                           <bond atomRefs2="a12 a13" order="S"/>
                           <bond atomRefs2="a12 a14" order="S"/>
                           <bond atomRefs2="a14 a15" order="S"/>
                           <bond atomRefs2="a14 a16" order="S"/>
                           <bond atomRefs2="a16 a25" order="S"/>
                           <bond atomRefs2="a16 a17" order="S"/>
                           <bond atomRefs2="a18 a23" order="S"/>
                           <bond atomRefs2="a18 a19" order="S"/>
                           <bond atomRefs2="a18 a27" order="S"/>
                           <bond atomRefs2="a19 a35" order="S"/>
                           <bond atomRefs2="a19 a20" order="S"/>
                           <bond atomRefs2="a20 a34" order="S"/>
                           <bond atomRefs2="a20 a21" order="S"/>
                           <bond atomRefs2="a21 a22" order="S"/>
                           <bond atomRefs2="a21 a28" order="S"/>
                           <bond atomRefs2="a22 a23" order="S"/>
                           <bond atomRefs2="a22 a33" order="S"/>
                           <bond atomRefs2="a23 a32" order="S"/>
                           <bond atomRefs2="a24 a27" order="S"/>
                           <bond atomRefs2="a25 a27" order="S"/>
                           <bond atomRefs2="a27 a45" order="S"/>
                           <bond atomRefs2="a28 a30" order="S"/>
                           <bond atomRefs2="a28 a31" order="S"/>
                           <bond atomRefs2="a28 a29" order="S"/>
                           <bond atomRefs2="a36 a42" order="S"/>
                           <bond atomRefs2="a36 a38" order="S"/>
                           <bond atomRefs2="a36 a37" order="S"/>
                           <bond atomRefs2="a37 a40" order="S"/>
                           <bond atomRefs2="a38 a41" order="S"/>
                           <bond atomRefs2="a38 a39" order="S"/>
                           <bond atomRefs2="a42 a44" order="S"/>
                           <bond atomRefs2="a42 a43" order="S"/>
                           <bond atomRefs2="a43 a48" order="S"/>
                           <bond atomRefs2="a43 a45" order="S"/>
                           <bond atomRefs2="a44 a46" order="S"/>
                           <bond atomRefs2="a44 a49" order="S"/>
                           <bond atomRefs2="a45 a47" order="S"/>
                           <bond atomRefs2="a46 a51" order="S"/>
                           <bond atomRefs2="a46 a47" order="S"/>
                           <bond atomRefs2="a47 a52" order="S"/>
                           <bond atomRefs2="a50 a53" order="S"/>
                           <bond atomRefs2="a53 a55" order="S"/>
                           <bond atomRefs2="a54 a55" order="S"/>
                           <bond atomRefs2="a55 a56" order="S"/>
                           <bond atomRefs2="a57 a54" order="S"/>
                           <bond atomRefs2="a57 a37" order="S"/>
                           <bond atomRefs2="a58 a26" order="S"/>
                           <bond atomRefs2="a58 a53" order="S"/>
                           <bond atomRefs2="a58 a56" order="S"/>
                        </bondArray>
                        <formula concise="C26H19Cs2F3N2O5Pd"/>
                        <property dictRef="cml:molmass">
                           <scalar units="unit:dalton">849.5147095999998</scalar>
                        </property>
                        <formula convention="iupac:inchi"
                                 inline="InChI=1/C10H7N2O.C8H7O.C7H4F3.CHO3.2Cs.Pd/c13-10-6-3-5-9(12-10)8-4-1-2-7-11-8;1-7(9)8-5-3-2-4-6-8;8-7(9,10)6-4-2-1-3-5-6;2-1(3)4;;;/h1-7H;2-3,5-6,9H,1H2;2-5H;2H;;;/q-3;;;-2;+1;2*+2/rC26H19Cs2F3N2O5Pd/c1-17-18-6-4-7-21(16-18)39(20-13-11-19(12-14-20)26(29,30)31)32-15-3-2-8-22(32)23-9-5-10-24(33(23)39)36-28-37-25(38-28)35-27-34-17/h2-16,34,37H,1H2">
                           <scalar dataType="xsd:integer" id="auxInfo">AuxInfo=1/0/N:12,14,3,10,6,1,16,9,8,5,25,24,26;38,47,46,45,44,43,36,42,37;18,19,23,20,22,21,28,29,30,31;55,53,54,56;57;58;27/E:;;(2,3)(4,5)(8,9,10);(3,4);;;/CRV:1.3,2.3,3.3,4.3,5.3,6.3,7.3,8.3,9.3,10.3,11-1,12-1,13-1;1.3,2.3,3.3,4.2,5.3,6.3,7.3,8.3;1.2,2.3,3.3,4.3,5.3,6.3;1.3,3-1,4-1;;;/rA:58nC3HC3HC3C3HC3C3C3HC3HC3HC3HC3C3C3C3C3C3NNOPdCFFFHHHHC3O3C3HHHC3C3C3C3C3C3HHHHHO3OC3OCs2Cs3/rB:s1;s1;s3;s1;s3;s6;s6;s8;s9;s10;s10;s12;s12;s14;s14;s16;;s18;s19;s20;s21;s18s22;s5s8;s9s16;s5;s18s24s25;s21;s28;s28;s28;s23;s22;s20;s19;;s36;s36;s38;s37;s38;s36;s42;s42;s27s43;s44;s45s46;s43;s44;;s46;s47;s50;;s53s54;s55;s37s54;s26s53s56;/rC:5.7471,.1043,.8238;6.341,-.7732,1.0737;6.2797,1.36,.8107;7.3284,1.522,1.0613;4.3642,-.1289,.4791;5.4691,2.4508,.4551;5.8888,3.4507,.419;4.1336,2.2108,.1798;3.2484,3.3214,-.2366;3.7249,4.61,-.5023;4.7819,4.8368,-.4031;2.8495,5.6016,-.9096;3.2191,6.6042,-1.1171;1.5013,5.2959,-1.0529;.7746,6.0388,-1.3713;1.0959,4.001,-.7764;.0497,3.7119,-.8664;-.611,1.4835,.3329;-1.3299,1.6853,-.8621;-2.607,2.236,-.8655;-3.2195,2.5844,.3417;-2.5518,2.352,1.5438;-1.2697,1.8069,1.5314;3.5669,.9791,.2432;1.9375,3.0376,-.3844;3.9072,-1.2847,.3998;1.338,1.0308,.2794;-4.6081,3.118,.3116;-5.0173,3.5833,1.4946;-4.7626,4.1001,-.5855;-5.4991,2.1554,-.0476;-.7648,1.6391,2.4833;-3.0266,2.6136,2.4887;-3.1324,2.4019,-1.8084;-.878,1.4161,-1.8175;-1.8925,-3.4258,1.2584;-2.3158,-3.5313,-.0191;-2.6749,-3.9122,2.2399;-3.5728,-4.4783,1.9964;-1.6024,-3.3953,-.7167;-2.4284,-3.7591,3.2864;-.6422,-2.6794,1.548;-.3027,-1.5194,.8282;.1713,-3.0707,2.6165;.7989,-.7161,1.162;1.2689,-2.2908,2.9686;1.5696,-1.1284,2.262;-.9367,-1.2235,-.0086;-.0663,-3.9802,3.1684;.2334,-.5229,-3.1089;1.8993,-2.5927,3.806;2.4399,-.5449,2.5599;.4331,-1.4449,-2.884;-1.7325,-1.2251,-2.3395;-.7376,-1.9668,-2.365;-.6095,-3.1504,-1.9618;-3.9508,-.9464,-.2571;2.2193,-3.2764,-.8528;/R:/0/N:38,12,14,46,3,44,47,10,6,1,20,22,19,23,16,43,36,42,21,18,45,9,8,5,55,28,57,58,29,30,31,25,24,37,54,26,53,56,27/E:(11,12)(13,14)(29,30,31)/CRV:1.3,2.3,3.3,4.3,5.3,6.3,7.3,8.3,9.3,10.3,11.3,12.3,13.3,14.3,15.3,16.3,17.3,18.3,19.3,20.3,21.3,22.3,23.3,24.3,25.3,27.2,28.3,34.3,37.3</scalar>
                        </formula>
                     </molecule>
                  </module>
                  <module cmlx:templateRef="l202.rotconst">
                     <array cmlx:templateRef="rotconst"
                            dataType="xsd:double"
                            dictRef="cc:rotconst"
                            size="3">0.0747962 0.0547162 0.0366970</array>
                  </module>
               </module>
               <module cmlx:templateRef="l302">
                  <module cmlx:templateRef="l302.basis2">
                     <list cmlx:templateRef="basis">
                        <scalar dataType="xsd:string" dictRef="g:basis">Precomputing XC quadrature grid using</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">IXCGrd= 4 IRadAn=           5 IRanWt=          -1 IRanGd=           0 AccXCQ= 0.00D+00.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">Defaulting to unpruned grid for atomic number  55.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">Defaulting to unpruned grid for atomic number  46.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">Generated NRdTot=       0 NPtTot=           0 NUsed=           0 NTot=          32</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">NSgBfM=   638   638   638   638   638 MxSgAt=    58 MxSgA2=    58.</scalar>
                     </list>
                  </module>
               </module>
               <module cmlx:templateRef="l302">
                  <module cmlx:templateRef="l302.basis">
                     <list cmlx:templateRef="basis">
                        <scalar dataType="xsd:string" dictRef="g:basis">NPDir=0 NMtPBC=     1 NCelOv=     1 NCel=       1 NClECP=     1 NCelD=      1</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">NCelK=      1 NCelE2=     1 NClLst=     1 CellRange=     0.0.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">One-electron integrals computed using PRISM.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">One-electron integral symmetry used in STVInt</scalar>
                     </list>
                  </module>
                  <module cmlx:templateRef="l302.basis2">
                     <list cmlx:templateRef="basis">
                        <scalar dataType="xsd:string" dictRef="g:basis">Precomputing XC quadrature grid using</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">IXCGrd= 4 IRadAn=           5 IRanWt=          -1 IRanGd=           0 AccXCQ= 0.00D+00.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">Defaulting to unpruned grid for atomic number  55.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">Defaulting to unpruned grid for atomic number  46.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">Generated NRdTot=       0 NPtTot=           0 NUsed=           0 NTot=          32</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">NSgBfM=   638   637   637   637   638 MxSgAt=    58 MxSgA2=    58.</scalar>
                     </list>
                  </module>
               </module>
               <module cmlx:templateRef="l303.basis">
                  <list cmlx:templateRef="l303">
                     <scalar dataType="xsd:integer" dictRef="g:dipdrv">1</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l401"/>
               <module cmlx:templateRef="l1101">
                  <list cmlx:templateRef="l1101">
                     <scalar dataType="xsd:string" dictRef="g:l1101">Using compressed storage, NAtomX=    58.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1101">Will process     59 centers per pass.</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l1102">
                  <list cmlx:templateRef="l1102">
                     <scalar dataType="xsd:string" dictRef="g:l1102">Symmetrizing basis deriv contribution to polar:</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1102">IMax=3 JMax=2 DiffMx= 0.00D+00</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l1002.minotr">
                  <list cmlx:templateRef="l1002">
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Minotr:  Closed shell wavefunction.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">IDoAtm=11111111111111111111111111111111111111111111111111</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">IDoAtm=11111111</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">NEqPCM:  Using equilibrium solvation (IEInf=0, Eps=   2.2650, EpsInf=   2.2482)</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Direct CPHF calculation.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Differentiating once with respect to nuclear coordinates.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Requested convergence is 1.0D-08 RMS, and 1.0D-07 maximum.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Secondary convergence is 1.0D-12 RMS, and 1.0D-12 maximum.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">NewPWx=T KeepS1=F KeepF1=F KeepIn=T MapXYZ=F SortEE=F KeepMc=T.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  55.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">18272 words used for storage of precomputed grid.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Two-electron integrals replicated using symmetry.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">MDV=   12884901888 using IRadAn=       1.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Solving linear equations simultaneously, MaxMat=     384.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">FoF2E skips out because all densities are zero.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">CalDSu exits because no D1Ps are significant.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">FoFJK:  IHMeth= 1 ICntrl=       0 DoSepK=F KAlg= 0 I1Cent=           0 FoldK=F</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">IRaf= 660000000 NMat=     174 IRICut=     435 DoRegI=T DoRafI=T ISym2E= 2 IDoP0=3 IntGTp=3.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">There are   177 degrees of freedom in the 1st order CPHF.  IDoFFX=6 NUNeed=     0.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">171 vectors produced by pass  0 Test12= 6.75D-14 1.00D-09 XBig12= 1.89D-01 1.04D-01.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">AX will form   171 AO Fock derivatives at one time.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">171 vectors produced by pass  1 Test12= 6.75D-14 1.00D-09 XBig12= 2.56D-02 3.07D-02.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">171 vectors produced by pass  2 Test12= 6.75D-14 1.00D-09 XBig12= 3.25D-04 2.08D-03.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">171 vectors produced by pass  3 Test12= 6.75D-14 1.00D-09 XBig12= 2.52D-06 1.70D-04.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">171 vectors produced by pass  4 Test12= 6.75D-14 1.00D-09 XBig12= 1.37D-08 1.02D-05.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">171 vectors produced by pass  5 Test12= 6.75D-14 1.00D-09 XBig12= 4.62D-11 5.20D-07.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">116 vectors produced by pass  6 Test12= 6.75D-14 1.00D-09 XBig12= 1.05D-13 2.19D-08.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">1 vectors produced by pass  7 Test12= 6.75D-14 1.00D-09 XBig12= 1.73D-16 1.00D-09.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">InvSVY:  IOpt=1 It=  1 EMax= 4.44D-16</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Solved reduced A of dimension  1143 with   177 vectors.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">End of Minotr F.D. properties file   721 does not exist.</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l601.polariz">
                  <array dataType="xsd:double" dictRef="g:l601.pol.exact" size="6">0.000 0.000 0.000 0.000 0.000 0.000</array>
                  <array dataType="xsd:double" dictRef="g:l601.pol.approx" size="6">620.717 24.970 623.338 25.488 -42.585 441.382</array>
               </module>
               <module cmlx:templateRef="l716.dipole">
                  <array cmlx:templateRef="dipole"
                         dataType="xsd:double"
                         dictRef="x:d"
                         size="3">1.21218758e+00 -2.14526188e-01 -1.25579747e+00</array>
               </module>
               <module cmlx:templateRef="l716.polarizability">
                  <array cmlx:templateRef="polariz"
                         dataType="xsd:double"
                         dictRef="cc:polarizability"
                         size="6">0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00</array>
               </module>
               <module cmlx:templateRef="l716.forces">
                  <list cmlx:templateRef="force">
                     <array dataType="xsd:integer" dictRef="x:serial" size="58">1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58</array>
                     <array dataType="xsd:integer" dictRef="x:elementType" size="58">6 1 6 1 6 6 1 6 6 6 1 6 1 6 1 6 1 6 6 6 6 6 6 7 7 8 46 6 9 9 9 1 1 1 1 6 8 6 1 1 1 6 6 6 6 6 6 1 1 1 1 1 8 8 6 8 55 55</array>
                     <list>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000099474 -0.000344809 0.000001640</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000071428 0.000014858 -0.000023413</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000034075 -0.000006043 -0.000099576</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000010609 -0.000019196 0.000070759</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000673501 0.001679639 0.000364980</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000319085 -0.000422786 -0.000084639</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000076302 -0.000015728 0.000024052</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000189418 0.000402833 0.000180768</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000010463 -0.000050796 0.000010835</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000025464 0.000026443 0.000004689</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000018392 0.000003880 0.000006542</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000011903 -0.000006430 0.000013243</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000001026 0.000002258 0.000011993</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000012030 -0.000005033 0.000009661</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000000789 0.000000521 0.000010070</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000014119 0.000012116 0.000004945</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000000598 0.000006835 0.000004842</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000015851 0.000022147 0.000016310</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000008456 0.000023683 0.000000491</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000003622 0.000013084 -0.000000146</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000003864 -0.000004128 0.000001013</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000008804 -0.000001313 0.000012475</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000009032 -0.000003025 0.000003659</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000040083 0.000319412 -0.000142381</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000033807 -0.000018533 -0.000001895</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000265640 -0.001437471 -0.000281516</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000069943 0.000039138 0.000096168</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000026350 0.000034173 -0.000013395</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000004478 -0.000008877 0.000004302</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000011944 -0.000013096 0.000015540</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000020533 0.000002863 0.000003825</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000004824 0.000003892 0.000004595</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000001324 -0.000001328 0.000003025</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000004554 0.000001750 0.000004634</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000012572 0.000016754 0.000011727</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000397419 -0.000698620 -0.000371253</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000162155 -0.000087327 0.000651859</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000598391 0.000986218 -0.000418870</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000152217 -0.000334836 -0.000101688</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.004914846 0.002471296 -0.000233967</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000027060 -0.000133436 -0.000054734</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000106925 0.000477826 -0.000462405</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000474671 0.000647564 0.001819117</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000230741 -0.000325148 -0.000021089</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000220772 -0.001035735 -0.000733474</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000527257 -0.001429356 0.001888299</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000037223 0.001594080 -0.000576180</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000276571 0.000068807 -0.000990713</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000060446 0.000353994 -0.000076805</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000108135 -0.000852182 -0.000665412</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000292494 0.000099644 -0.000956608</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000133066 -0.000457388 -0.000148002</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000522829 0.000445876 0.000180262</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000400965 0.000227714 0.000092248</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000945977 -0.000148349 0.000121406</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.004609659 -0.002429511 0.001092392</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">-0.000165686 0.000088596 -0.000064189</array>
                        <array dataType="xsd:double" dictRef="cc:force" size="3">0.000084579 0.000202588 -0.000220017</array>
                     </list>
                  </list>
                  <list cmlx:templateRef="cartesianforce">
                     <scalar dataType="xsd:double" dictRef="cc:maxforce">0.004914846</scalar>
                     <scalar dataType="xsd:double" dictRef="cc:rmsforce">0.000712978</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l716">
                  <list cmlx:templateRef="l716">
                     <scalar dataType="xsd:string" dictRef="g:l716">(Enter /prod/nvhpc-24.5/gaussian/16a3/g16/l716.exe)</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l502">
                  <scalar dataType="xsd:string" dictRef="g:l502.type">Closed</scalar>
                  <module cmlx:templateRef="l502.cycle">
                     <list cmlx:templateRef="cycle">
                        <list>
                           <scalar dataType="xsd:integer" dictRef="cc:cycle">1</scalar>
                           <scalar dataType="xsd:integer" dictRef="g:pass">1</scalar>
                           <scalar dataType="xsd:integer" dictRef="g:idiag">1</scalar>
                        </list>
                     </list>
                     <module cmlx:templateRef="l502.e">
                        <list cmlx:templateRef="l502.e">
                           <scalar dataType="xsd:double" dictRef="g:l502.e">-1952.97525066575</scalar>
                        </list>
                     </module>
                     <module cmlx:templateRef="l502.ediff">
                        <list cmlx:templateRef="l502.ediff">
                           <list>
                              <scalar dataType="xsd:double" dictRef="g:l502.e">-1952.97526846026</scalar>
                              <scalar dataType="xsd:double" dictRef="g:l502.deltae">-0.000017794509</scalar>
                           </list>
                        </list>
                     </module>
                     <module cmlx:templateRef="l502.ediff">
                        <list cmlx:templateRef="l502.ediff">
                           <list>
                              <scalar dataType="xsd:double" dictRef="g:l502.e">-1952.97526876130</scalar>
                              <scalar dataType="xsd:double" dictRef="g:l502.deltae">-0.000000301037</scalar>
                           </list>
                        </list>
                     </module>
                     <module cmlx:templateRef="l502.ediff">
                        <list cmlx:templateRef="l502.ediff">
                           <list>
                              <scalar dataType="xsd:double" dictRef="g:l502.e">-1952.97526883794</scalar>
                              <scalar dataType="xsd:double" dictRef="g:l502.deltae">-0.000000076642</scalar>
                           </list>
                        </list>
                     </module>
                     <module cmlx:templateRef="l502.ediff">
                        <list cmlx:templateRef="l502.ediff">
                           <list>
                              <scalar dataType="xsd:double" dictRef="g:l502.e">-1952.97526887007</scalar>
                              <scalar dataType="xsd:double" dictRef="g:l502.deltae">-0.000000032122</scalar>
                           </list>
                        </list>
                     </module>
                     <module cmlx:templateRef="l502.ediff">
                        <list cmlx:templateRef="l502.ediff">
                           <list>
                              <scalar dataType="xsd:double" dictRef="g:l502.e">-1952.97526887705</scalar>
                              <scalar dataType="xsd:double" dictRef="g:l502.deltae">-0.000000006988</scalar>
                           </list>
                        </list>
                     </module>
                     <module cmlx:templateRef="l502.ediff">
                        <list cmlx:templateRef="l502.ediff">
                           <list>
                              <scalar dataType="xsd:double" dictRef="g:l502.e">-1952.97526887766</scalar>
                              <scalar dataType="xsd:double" dictRef="g:l502.deltae">-0.000000000611</scalar>
                           </list>
                        </list>
                     </module>
                     <module cmlx:templateRef="l502.ediff">
                        <list cmlx:templateRef="l502.ediff">
                           <list>
                              <scalar dataType="xsd:double" dictRef="g:l502.e">-1952.97526887778</scalar>
                              <scalar dataType="xsd:double" dictRef="g:l502.deltae">-0.000000000120</scalar>
                           </list>
                        </list>
                     </module>
                  </module>
                  <module cmlx:templateRef="l502.footer">
                     <list cmlx:templateRef="scfdone">
                        <list>
                           <scalar dataType="xsd:double" dictRef="g:rbhflyp" units="nonsi:hartree">-1952.97526888</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:ncycle">8</scalar>
                        </list>
                     </list>
                     <module cmlx:templateRef="scfdone">
                        <list cmlx:templateRef="scfdone">
                           <list>
                              <scalar dataType="xsd:double" dictRef="cc:kinener">1.831916608749e+03</scalar>
                              <scalar dataType="xsd:double" dictRef="cc:potener">-1.421669873140e+04</scalar>
                              <scalar dataType="xsd:double" dictRef="cc:eener">5.591953267652e+03</scalar>
                           </list>
                        </list>
                     </module>
                  </module>
                  <list cmlx:templateRef="l502">
                     <scalar dataType="xsd:string" dictRef="g:l502">Using DIIS extrapolation, IDIIS=  1040.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">NGot= 12884901888 LenX= 12884029054 LenY= 12883605904</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">Requested convergence on RMS density matrix=1.00D-08 within  32 cycles.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">Requested convergence on MAX density matrix=1.00D-06.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">Requested convergence on             energy=1.00D-06.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">No special actions if energy rises.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">Fock matrices will be formed incrementally for  20 cycles.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502"/>
                  </list>
               </module>
               <module cmlx:templateRef="l716">
                  <list cmlx:templateRef="l716">
                     <scalar dataType="xsd:string" dictRef="g:l716">(Enter /prod/nvhpc-24.5/gaussian/16a3/g16/l716.exe)</scalar>
                  </list>
               </module>
            </module>
         </module>
         <module dictRef="cc:finalization" id="finalization">
            <propertyList>
               <property dictRef="cc:jobtime">
                  <scalar dataType="xsd:string">PT226102.500S</scalar>
               </property>
               <property dictRef="cc:jobdatetime.end">
                  <scalar dataType="xsd:date">2025-03-15T13:11:10.000</scalar>
               </property>
               <property>
                  <module cmlx:templateRef="l601.mullik">
                     <scalar dataType="xsd:string" dictRef="g:title">Mulliken charges with hydrogens summed into heavy atoms:</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:serial">1</scalar>
                     <list cmlx:templateRef="row">
                        <array dataType="xsd:integer" dictRef="cc:serial" size="39">1 3 5 6 8 9 10 12 14 16 18 19 20 21 22 23 24 25 26 27 28 29 30 31 36 37 38 42 43 44 45 46 47 53 54 55 56 57 58</array>
                        <array dataType="xsd:string" dictRef="cc:elementType" size="39">C C C C C C C C C C C C C C C C N N O Pd C F F F C O C C C C C C C O O C O Cs Cs</array>
                        <array dataType="xsd:double" dictRef="x:charge" size="39">-0.101741 0.031909 0.578294 -0.091643 0.320682 0.283513 -0.008165 0.052956 0.008398 0.237844 -0.013956 -0.066320 -0.039015 -0.082522 -0.006307 -0.055716 -0.612260 -0.497390 -0.660638 0.148771 0.946166 -0.318758 -0.321206 -0.331759 0.333460 -0.722868 -0.368459 0.045395 -0.200148 -0.104003 0.049290 -0.017905 -0.087474 -0.140993 -0.500596 0.780827 -0.140972 0.812436 0.860875</array>
                     </list>
                     <scalar dataType="xsd:double" dictRef="x:chargesum">-0.00000</scalar>
                  </module>
               </property>
               <property dictRef="cc:popanal">
                  <module cmlx:templateRef="l601.popanal">
                     <array dataType="xsd:double" dictRef="g:alphaocc" size="146">-24.82532 -24.82117 -24.82028 -19.22621 -19.21712 -19.16421 -19.16078 -19.14274 -14.43258 -14.38098 -10.50241 -10.36951 -10.30507 -10.30290 -10.29868 -10.29078 -10.27968 -10.27299 -10.26215 -10.26141 -10.26070 -10.25647 -10.25577 -10.24287 -10.24249 -10.24203 -10.23992 -10.23949 -10.23197 -10.23140 -10.22676 -10.22614 -10.22446 -10.22347 -10.22015 -10.20875 -3.30095 -2.04257 -2.04196 -2.01427 -1.34882 -1.26489 -1.25834 -1.09287 -1.05007 -0.99791 -0.99164 -0.98543 -0.97410 -0.96556 -0.95891 -0.90662 -0.87005 -0.84513 -0.82365 -0.79329 -0.78891 -0.78244 -0.76727 -0.75293 -0.72960 -0.72317 -0.71114 -0.70681 -0.65875 -0.64740 -0.62713 -0.62508 -0.61011 -0.60524 -0.60125 -0.59380 -0.58931 -0.58810 -0.58263 -0.56459 -0.55733 -0.53773 -0.51872 -0.50782 -0.50604 -0.50439 -0.50303 -0.49206 -0.48863 -0.48580 -0.48475 -0.48146 -0.48079 -0.47739 -0.47336 -0.47174 -0.46262 -0.46027 -0.45535 -0.44967 -0.44838 -0.44687 -0.44259 -0.43904 -0.43769 -0.43704 -0.43512 -0.42988 -0.42553 -0.42371 -0.41952 -0.41372 -0.41244 -0.40710 -0.40137 -0.39273 -0.38528 -0.38500 -0.38056 -0.37932 -0.37321 -0.36868 -0.36069 -0.35267 -0.34936 -0.34254 -0.33838 -0.32989 -0.32802 -0.32104 -0.31314 -0.30003 -0.29006 -0.28621 -0.27811 -0.27007 -0.26693 -0.26318 -0.26136 -0.26098 -0.25399 -0.24737 -0.24055 -0.23260 -0.22511 -0.22411 -0.21642 -0.20773 -0.20173 -0.18628</array>
                     <array dataType="xsd:double" dictRef="g:alphavirt" size="462">-0.04421 -0.04275 -0.03558 -0.02820 -0.02336 -0.01982 -0.01905 -0.01707 -0.00732 -0.00604 -0.00206 0.00369 0.00907 0.01401 0.01551 0.02642 0.02777 0.03097 0.04124 0.04617 0.04756 0.05719 0.06454 0.06635 0.07131 0.07775 0.08552 0.10120 0.10812 0.11357 0.13004 0.13426 0.14720 0.14940 0.15104 0.15210 0.15881 0.16199 0.16593 0.17366 0.17592 0.17805 0.18326 0.19636 0.19930 0.20460 0.20563 0.20632 0.21350 0.22241 0.22997 0.23542 0.23759 0.24676 0.24789 0.25366 0.26095 0.26588 0.27116 0.28089 0.28665 0.29236 0.29933 0.30124 0.30519 0.31110 0.31731 0.32355 0.32980 0.33430 0.34685 0.34879 0.36266 0.36568 0.36885 0.38949 0.39451 0.40075 0.40817 0.41061 0.42035 0.42987 0.44006 0.45269 0.46662 0.47774 0.48611 0.48934 0.49960 0.50376 0.51465 0.51558 0.52157 0.52933 0.53476 0.53994 0.54942 0.55998 0.56656 0.56886 0.57196 0.57563 0.58022 0.58445 0.58722 0.59196 0.59574 0.60004 0.60123 0.60399 0.60727 0.61004 0.61182 0.61707 0.62017 0.62571 0.62722 0.63033 0.63298 0.63529 0.63876 0.64316 0.64579 0.65015 0.65153 0.65395 0.66141 0.66535 0.66712 0.67859 0.68247 0.69027 0.69393 0.69647 0.69873 0.70871 0.71313 0.71627 0.71887 0.72750 0.73238 0.73664 0.74510 0.75671 0.75876 0.76496 0.77940 0.78679 0.79204 0.79453 0.79925 0.80734 0.81082 0.81359 0.81859 0.82605 0.83160 0.84159 0.84381 0.85044 0.85092 0.85717 0.86729 0.87189 0.87516 0.88110 0.88586 0.89290 0.90052 0.90473 0.90965 0.91608 0.92051 0.93064 0.93702 0.93948 0.94682 0.95225 0.95632 0.96639 0.97062 0.97840 0.98033 0.98392 0.98894 0.99100 1.00121 1.00993 1.01554 1.02106 1.02386 1.03522 1.04797 1.05797 1.06129 1.07673 1.08217 1.08686 1.09272 1.09543 1.09924 1.10404 1.11101 1.11948 1.12815 1.12905 1.13209 1.13777 1.14402 1.15637 1.16471 1.16801 1.17732 1.17799 1.18885 1.19503 1.19894 1.20404 1.21271 1.22092 1.22466 1.23168 1.23652 1.24044 1.25086 1.25165 1.25735 1.26159 1.26816 1.28617 1.28775 1.30717 1.31103 1.31742 1.32029 1.33196 1.34226 1.34650 1.35435 1.35868 1.36674 1.37014 1.38834 1.39129 1.39311 1.40744 1.41156 1.42013 1.42209 1.43511 1.43798 1.45171 1.45895 1.46255 1.46839 1.47110 1.47555 1.47965 1.48153 1.48543 1.49004 1.50452 1.50685 1.51068 1.51206 1.51431 1.52472 1.53470 1.54351 1.56099 1.57580 1.58327 1.59588 1.61768 1.64306 1.65452 1.66835 1.67617 1.68560 1.69196 1.69775 1.70458 1.70795 1.71495 1.71871 1.73883 1.74640 1.75605 1.76225 1.77467 1.78167 1.79348 1.79915 1.80160 1.80571 1.80792 1.81178 1.82146 1.82634 1.83160 1.84644 1.85172 1.85695 1.86073 1.87515 1.87752 1.88024 1.88650 1.88871 1.89330 1.89687 1.90389 1.90723 1.91546 1.91982 1.92736 1.93112 1.93843 1.94545 1.96335 1.97112 1.97380 1.97601 1.98458 1.98797 2.00117 2.00691 2.01460 2.01883 2.02764 2.03344 2.03663 2.04880 2.05436 2.05609 2.05995 2.06244 2.07220 2.08661 2.09429 2.10444 2.10868 2.11009 2.12196 2.12451 2.13279 2.13842 2.14119 2.14859 2.15318 2.15622 2.15992 2.17622 2.18372 2.18966 2.19380 2.19631 2.20447 2.20980 2.21610 2.22464 2.22805 2.23046 2.25285 2.26764 2.27572 2.27871 2.28741 2.29993 2.30603 2.30913 2.31531 2.32328 2.33023 2.34053 2.34254 2.35775 2.37385 2.38567 2.42920 2.44640 2.45961 2.46625 2.48528 2.49931 2.50806 2.51682 2.52267 2.54557 2.55830 2.55972 2.57515 2.58456 2.59690 2.60802 2.61126 2.61666 2.62415 2.62793 2.63021 2.63889 2.64535 2.64848 2.65067 2.65625 2.65965 2.66240 2.66903 2.67776 2.69383 2.70482 2.70973 2.71892 2.72713 2.72845 2.73818 2.75419 2.75866 2.77487 2.77851 2.77948 2.78220 2.79418 2.80046 2.81011 2.81865 2.83654 2.85389 2.87453 2.89630 2.90890 2.92465 2.94409 2.95539 2.96093 2.96804 2.99525 3.02697 3.03729 3.04852 3.05789 3.06589 3.07433 3.08200 3.08812 3.12372 3.13672 3.14256 3.16278 3.17537 3.18703 3.27851 3.29341 3.33587 3.35165 3.38592 3.43929 3.50297 23.62382 23.84157 23.85802 44.80952</array>
                     <module cmlx:templateRef="l601.state">
                        <scalar dataType="xsd:string" dictRef="g:l601.state">1-A.</scalar>
                     </module>
                  </module>
               </property>
               <property>
                  <module cmlx:templateRef="l601.mullik">
                     <scalar dataType="xsd:string" dictRef="g:title">Mulliken charges:</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:serial">1</scalar>
                     <list cmlx:templateRef="row">
                        <array dataType="xsd:integer" dictRef="cc:serial" size="58">1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58</array>
                        <array dataType="xsd:string" dictRef="cc:elementType" size="58">C H C H C C H C C C H C H C H C H C C C C C C N N O Pd C F F F H H H H C O C H H H C C C C C C H H H H H O O C O Cs Cs</array>
                        <array dataType="xsd:double" dictRef="x:charge" size="58">-0.267395 0.155542 -0.138011 0.166127 0.565294 -0.262150 0.155444 0.313775 0.288931 -0.197164 0.188444 -0.139727 0.193727 -0.188740 0.192660 0.051631 0.186496 -0.027444 -0.206922 -0.233502 -0.092598 -0.183484 -0.213775 -0.609714 -0.506469 -0.646908 0.133647 0.950418 -0.317694 -0.318215 -0.337760 0.180004 0.183269 0.186634 0.158925 0.343480 -0.734353 -0.521389 0.156694 0.488563 0.162710 0.082808 -0.291882 -0.233137 -0.010450 -0.181173 -0.170453 0.092438 0.157500 0.444090 0.161136 0.160917 -0.661199 -0.616297 0.751313 -0.648846 0.832915 0.871320</array>
                     </list>
                     <scalar dataType="xsd:double" dictRef="x:chargesum">-0.00000</scalar>
                  </module>
               </property>
               <property>
                  <module cmlx:templateRef="l716.dipole">
                     <array cmlx:templateRef="dipole"
                            dataType="xsd:double"
                            dictRef="x:d"
                            size="3">-8.20258628e-01 2.85626828e-01 -6.10443142e-01</array>
                  </module>
               </property>
               <property dictRef="cc:forces">
                  <scalar dictRef="cc:linkToAtoms">./ancestor::cml:module[@dictRef='cc:finalization']/cml:molecule[@id='mol9999']</scalar>
               </property>
               <property dictRef="cc:multipole">
                  <list cmlx:templateRef="multipole">
                     <array dataType="xsd:double" dictRef="cc:dipole" size="3">-2.0849 0.7260 -1.5516</array>
                     <scalar dataType="xsd:double" dictRef="x:dipole">2.6984</scalar>
                     <array dataType="xsd:double" dictRef="cc:quadrupole" size="3">-230.7461 -234.1410 -269.8400</array>
                     <array dataType="xsd:double" dictRef="cc:quadrupole" size="3">4.7297 -7.5775 -7.2847</array>
                     <array dataType="xsd:double" dictRef="cc:quadrupole" size="6">14.1630 10.7680 -24.9310 4.7297 -7.5775 -7.2847</array>
                     <array dataType="xsd:double" dictRef="cc:octapole" size="10">-227.1370 -102.3423 -76.7142 193.1882 -130.5040 -56.2938 -45.0332 -51.4664 -81.8464 16.1193</array>
                     <array dataType="xsd:double" dictRef="cc:hexadecapole" size="15">-14035.4979 -10413.5103 -2906.8078 312.6430 77.4351 -360.3629 123.2075 -72.7068 238.9241 -4124.5991 -3013.7784 -2444.0432 161.0301 -174.5687 -283.4987</array>
                  </list>
               </property>
               <property dictRef="cc:virtualorbs">
                  <array dataType="xsd:string" delimiter="|" size="462">(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)</array>
               </property>
               <property dictRef="cc:virtualorbs">
                  <array dataType="xsd:string" delimiter="|" size="462">(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)</array>
               </property>
               <property dictRef="cc:occupiedorbs">
                  <array dataType="xsd:string" delimiter="|" size="146">(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)|(A)</array>
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                  <atom elementType="H"
                        id="a52"
                        x3="2.439887"
                        y3="-0.544916"
                        z3="2.559859">
                     <property dictRef="g:atomicType">
                        <scalar dataType="xsd:integer">0</scalar>
                     </property>
                  </atom>
                  <atom elementType="O"
                        id="a53"
                        x3="0.433113"
                        y3="-1.444917"
                        z3="-2.884001">
                     <property dictRef="g:atomicType">
                        <scalar dataType="xsd:integer">0</scalar>
                     </property>
                  </atom>
                  <atom elementType="O"
                        id="a54"
                        x3="-1.732452"
                        y3="-1.225124"
                        z3="-2.339518">
                     <property dictRef="g:atomicType">
                        <scalar dataType="xsd:integer">0</scalar>
                     </property>
                  </atom>
                  <atom elementType="C"
                        id="a55"
                        x3="-0.737562"
                        y3="-1.966807"
                        z3="-2.365006">
                     <property dictRef="g:atomicType">
                        <scalar dataType="xsd:integer">0</scalar>
                     </property>
                  </atom>
                  <atom elementType="O"
                        id="a56"
                        x3="-0.609485"
                        y3="-3.150448"
                        z3="-1.961763">
                     <property dictRef="g:atomicType">
                        <scalar dataType="xsd:integer">0</scalar>
                     </property>
                  </atom>
                  <atom elementType="Cs"
                        id="a57"
                        x3="-3.95082"
                        y3="-0.946413"
                        z3="-0.257141">
                     <property dictRef="g:atomicType">
                        <scalar dataType="xsd:integer">0</scalar>
                     </property>
                  </atom>
                  <atom elementType="Cs"
                        id="a58"
                        x3="2.219325"
                        y3="-3.27641"
                        z3="-0.85276">
                     <property dictRef="g:atomicType">
                        <scalar dataType="xsd:integer">0</scalar>
                     </property>
                  </atom>
               </atomArray>
               <bondArray>
                  <bond atomRefs2="a1 a3" order="S"/>
                  <bond atomRefs2="a1 a2" order="S"/>
                  <bond atomRefs2="a1 a5" order="S"/>
                  <bond atomRefs2="a3 a6" order="S"/>
                  <bond atomRefs2="a3 a4" order="S"/>
                  <bond atomRefs2="a5 a24" order="S"/>
                  <bond atomRefs2="a5 a26" order="S"/>
                  <bond atomRefs2="a6 a7" order="S"/>
                  <bond atomRefs2="a6 a8" order="S"/>
                  <bond atomRefs2="a8 a9" order="S"/>
                  <bond atomRefs2="a8 a24" order="S"/>
                  <bond atomRefs2="a9 a25" order="S"/>
                  <bond atomRefs2="a9 a10" order="S"/>
                  <bond atomRefs2="a10 a11" order="S"/>
                  <bond atomRefs2="a10 a12" order="S"/>
                  <bond atomRefs2="a12 a13" order="S"/>
                  <bond atomRefs2="a12 a14" order="S"/>
                  <bond atomRefs2="a14 a15" order="S"/>
                  <bond atomRefs2="a14 a16" order="S"/>
                  <bond atomRefs2="a16 a25" order="S"/>
                  <bond atomRefs2="a16 a17" order="S"/>
                  <bond atomRefs2="a18 a23" order="S"/>
                  <bond atomRefs2="a18 a19" order="S"/>
                  <bond atomRefs2="a18 a27" order="S"/>
                  <bond atomRefs2="a19 a35" order="S"/>
                  <bond atomRefs2="a19 a20" order="S"/>
                  <bond atomRefs2="a20 a34" order="S"/>
                  <bond atomRefs2="a20 a21" order="S"/>
                  <bond atomRefs2="a21 a22" order="S"/>
                  <bond atomRefs2="a21 a28" order="S"/>
                  <bond atomRefs2="a22 a23" order="S"/>
                  <bond atomRefs2="a22 a33" order="S"/>
                  <bond atomRefs2="a23 a32" order="S"/>
                  <bond atomRefs2="a24 a27" order="S"/>
                  <bond atomRefs2="a25 a27" order="S"/>
                  <bond atomRefs2="a27 a45" order="S"/>
                  <bond atomRefs2="a28 a30" order="S"/>
                  <bond atomRefs2="a28 a31" order="S"/>
                  <bond atomRefs2="a28 a29" order="S"/>
                  <bond atomRefs2="a36 a42" order="S"/>
                  <bond atomRefs2="a36 a38" order="S"/>
                  <bond atomRefs2="a36 a37" order="S"/>
                  <bond atomRefs2="a37 a40" order="S"/>
                  <bond atomRefs2="a38 a41" order="S"/>
                  <bond atomRefs2="a38 a39" order="S"/>
                  <bond atomRefs2="a42 a44" order="S"/>
                  <bond atomRefs2="a42 a43" order="S"/>
                  <bond atomRefs2="a43 a48" order="S"/>
                  <bond atomRefs2="a43 a45" order="S"/>
                  <bond atomRefs2="a44 a46" order="S"/>
                  <bond atomRefs2="a44 a49" order="S"/>
                  <bond atomRefs2="a45 a47" order="S"/>
                  <bond atomRefs2="a46 a51" order="S"/>
                  <bond atomRefs2="a46 a47" order="S"/>
                  <bond atomRefs2="a47 a52" order="S"/>
                  <bond atomRefs2="a50 a53" order="S"/>
                  <bond atomRefs2="a53 a55" order="S"/>
                  <bond atomRefs2="a54 a55" order="S"/>
                  <bond atomRefs2="a55 a56" order="S"/>
                  <bond atomRefs2="a57 a54" order="S"/>
                  <bond atomRefs2="a57 a37" order="S"/>
                  <bond atomRefs2="a58 a26" order="S"/>
                  <bond atomRefs2="a58 a53" order="S"/>
                  <bond atomRefs2="a58 a56" order="S"/>
               </bondArray>
               <formula concise="C26H19Cs2F3N2O5Pd"/>
               <property dictRef="cml:molmass">
                  <scalar units="unit:dalton">849.5147095999998</scalar>
               </property>
               <formula convention="iupac:inchi"
                        inline="InChI=1/C10H7N2O.C8H7O.C7H4F3.CHO3.2Cs.Pd/c13-10-6-3-5-9(12-10)8-4-1-2-7-11-8;1-7(9)8-5-3-2-4-6-8;8-7(9,10)6-4-2-1-3-5-6;2-1(3)4;;;/h1-7H;2-3,5-6,9H,1H2;2-5H;2H;;;/q-3;;;-2;+1;2*+2/rC26H19Cs2F3N2O5Pd/c1-17-18-6-4-7-21(16-18)39(20-13-11-19(12-14-20)26(29,30)31)32-15-3-2-8-22(32)23-9-5-10-24(33(23)39)36-28-37-25(38-28)35-27-34-17/h2-16,34,37H,1H2">
                  <scalar dataType="xsd:integer" id="auxInfo">AuxInfo=1/0/N:12,14,3,10,6,1,16,9,8,5,25,24,26;38,47,46,45,44,43,36,42,37;18,19,23,20,22,21,28,29,30,31;55,53,54,56;57;58;27/E:;;(2,3)(4,5)(8,9,10);(3,4);;;/CRV:1.3,2.3,3.3,4.3,5.3,6.3,7.3,8.3,9.3,10.3,11-1,12-1,13-1;1.3,2.3,3.3,4.2,5.3,6.3,7.3,8.3;1.2,2.3,3.3,4.3,5.3,6.3;1.3,3-1,4-1;;;/rA:58nC3HC3HC3C3HC3C3C3HC3HC3HC3HC3C3C3C3C3C3NNOPdCFFFHHHHC3O3C3HHHC3C3C3C3C3C3HHHHHO3OC3OCs2Cs3/rB:s1;s1;s3;s1;s3;s6;s6;s8;s9;s10;s10;s12;s12;s14;s14;s16;;s18;s19;s20;s21;s18s22;s5s8;s9s16;s5;s18s24s25;s21;s28;s28;s28;s23;s22;s20;s19;;s36;s36;s38;s37;s38;s36;s42;s42;s27s43;s44;s45s46;s43;s44;;s46;s47;s50;;s53s54;s55;s37s54;s26s53s56;/rC:5.7471,.1043,.8238;6.341,-.7732,1.0737;6.2797,1.36,.8107;7.3284,1.522,1.0613;4.3642,-.1289,.4791;5.4691,2.4508,.4551;5.8888,3.4507,.419;4.1336,2.2108,.1798;3.2484,3.3214,-.2366;3.7249,4.61,-.5023;4.7819,4.8368,-.4031;2.8495,5.6016,-.9096;3.2191,6.6042,-1.1171;1.5013,5.2959,-1.0529;.7746,6.0388,-1.3713;1.0959,4.001,-.7764;.0497,3.7119,-.8664;-.611,1.4835,.3329;-1.3299,1.6853,-.8621;-2.607,2.236,-.8655;-3.2195,2.5844,.3417;-2.5518,2.352,1.5438;-1.2697,1.8069,1.5314;3.5669,.9791,.2432;1.9375,3.0376,-.3844;3.9072,-1.2847,.3998;1.338,1.0308,.2794;-4.6081,3.118,.3116;-5.0173,3.5833,1.4946;-4.7626,4.1001,-.5855;-5.4991,2.1554,-.0476;-.7648,1.6391,2.4833;-3.0266,2.6136,2.4887;-3.1324,2.4019,-1.8084;-.878,1.4161,-1.8175;-1.8925,-3.4258,1.2584;-2.3158,-3.5313,-.0191;-2.6749,-3.9122,2.2399;-3.5728,-4.4783,1.9964;-1.6024,-3.3953,-.7167;-2.4284,-3.7591,3.2864;-.6422,-2.6794,1.548;-.3027,-1.5194,.8282;.1713,-3.0707,2.6165;.7989,-.7161,1.162;1.2689,-2.2908,2.9686;1.5696,-1.1284,2.262;-.9367,-1.2235,-.0086;-.0663,-3.9802,3.1684;.2334,-.5229,-3.1089;1.8993,-2.5927,3.806;2.4399,-.5449,2.5599;.4331,-1.4449,-2.884;-1.7325,-1.2251,-2.3395;-.7376,-1.9668,-2.365;-.6095,-3.1504,-1.9618;-3.9508,-.9464,-.2571;2.2193,-3.2764,-.8528;/R:/0/N:38,12,14,46,3,44,47,10,6,1,20,22,19,23,16,43,36,42,21,18,45,9,8,5,55,28,57,58,29,30,31,25,24,37,54,26,53,56,27/E:(11,12)(13,14)(29,30,31)/CRV:1.3,2.3,3.3,4.3,5.3,6.3,7.3,8.3,9.3,10.3,11.3,12.3,13.3,14.3,15.3,16.3,17.3,18.3,19.3,20.3,21.3,22.3,23.3,24.3,25.3,27.2,28.3,34.3,37.3</scalar>
               </formula>
            </molecule>
            <module dictRef="cc:userDefinedModule" id="otherComponents">
               <module cmlx:templateRef="l101" dictRef="cc:userDefinedModule">
                  <module cmlx:templateRef="l101.title">
                     <scalar cmlx:templateRef="title" dataType="xsd:string" dictRef="cc:title">opt freq</scalar>
                  </module>
                  <module cmlx:templateRef="l101.redundantcoords">
                     <scalar cmlx:templateRef="redundant"
                             dataType="xsd:string"
                             dictRef="g:redundant">Redundant internal coordinates found in file.  (old form).</scalar>
                  </module>
                  <module cmlx:templateRef="l101.isotope2">
                     <array cmlx:templateRef="atom"
                            dataType="xsd:integer"
                            dictRef="x:x"
                            size="58">1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58</array>
                     <array cmlx:templateRef="iatwgt"
                            dataType="xsd:integer"
                            dictRef="x:x"
                            size="58">12 1 12 1 12 12 1 12 12 12 1 12 1 12 1 12 1 12 12 12 12 12 12 14 14 16 106 12 19 19 19 1 1 1 1 12 16 12 1 1 1 12 12 12 12 12 12 1 1 1 1 1 16 16 12 16 133 133</array>
                     <array cmlx:templateRef="atmwgt"
                            dataType="xsd:double"
                            dictRef="x:x"
                            size="58">12.0000000 1.0078250 12.0000000 1.0078250 12.0000000 12.0000000 1.0078250 12.0000000 12.0000000 12.0000000 1.0078250 12.0000000 1.0078250 12.0000000 1.0078250 12.0000000 1.0078250 12.0000000 12.0000000 12.0000000 12.0000000 12.0000000 12.0000000 14.0030740 14.0030740 15.9949146 105.9032000 12.0000000 18.9984032 18.9984032 18.9984032 1.0078250 1.0078250 1.0078250 1.0078250 12.0000000 15.9949146 12.0000000 1.0078250 1.0078250 1.0078250 12.0000000 12.0000000 12.0000000 12.0000000 12.0000000 12.0000000 1.0078250 1.0078250 1.0078250 1.0078250 1.0078250 15.9949146 15.9949146 12.0000000 15.9949146 132.9054290 132.9054290</array>
                     <array cmlx:templateRef="nucspn"
                            dataType="xsd:integer"
                            dictRef="x:x"
                            size="58">0 1 0 1 0 0 1 0 0 0 1 0 1 0 1 0 1 0 0 0 0 0 0 2 2 0 0 0 1 1 1 1 1 1 1 0 0 0 1 1 1 0 0 0 0 0 0 1 1 1 1 1 0 0 0 0 0 0</array>
                     <array cmlx:templateRef="atzeff"
                            dataType="xsd:double"
                            dictRef="x:x"
                            size="58">3.6000000 1.0000000 3.6000000 1.0000000 3.6000000 3.6000000 1.0000000 3.6000000 3.6000000 3.6000000 1.0000000 3.6000000 1.0000000 3.6000000 1.0000000 3.6000000 1.0000000 3.6000000 3.6000000 3.6000000 3.6000000 3.6000000 3.6000000 4.5500000 4.5500000 5.6000000 237.3600000 3.6000000 6.7500000 6.7500000 6.7500000 1.0000000 1.0000000 1.0000000 1.0000000 3.6000000 5.6000000 3.6000000 1.0000000 1.0000000 1.0000000 3.6000000 3.6000000 3.6000000 3.6000000 3.6000000 3.6000000 1.0000000 1.0000000 1.0000000 1.0000000 1.0000000 5.6000000 5.6000000 3.6000000 5.6000000 0.0000000 0.0000000</array>
                  </module>
                  <list cmlx:templateRef="rest">
                     <scalar dataType="xsd:string" dictRef="x:l101">(Enter /prod/nvhpc-24.5/gaussian/16a3/g16/l101.exe)</scalar>
                     <scalar dataType="xsd:string" dictRef="x:l101">Structure from the checkpoint file:  "/scratch/uabbnc/alledos/124988/Gau-2020827.chk"</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l103" dictRef="cc:userDefinedModule">
                  <list cmlx:templateRef="berny">
                     <scalar dataType="xsd:string" dictRef="g:optimization">Berny optimization.</scalar>
                  </list>
                  <module cmlx:templateRef="l103.init">
                     <list cmlx:templateRef="length">
                        <array dataType="xsd:string" dictRef="g:symbol" size="74">R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 R13 R14 R15 R16 R17 R18 R19 R20 R21 R22 R23 R24 R25 R26 R27 R28 R29 R30 R31 R32 R33 R34 R35 R36 R37 R38 R39 R40 R41 R42 R43 R44 R45 R46 R47 R48 R49 R50 R51 R52 R53 R54 R55 R56 R57 R58 R59 R60 R61 R62 R63 R64 R65 R66 R67 R68 R69 R70 R71 R72 R73 R74</array>
                        <array dataType="xsd:integer" dictRef="g:atom1" size="74">1 1 1 3 3 5 5 6 6 8 8 9 9 10 10 12 12 14 14 16 16 18 18 18 19 19 20 20 20 21 21 22 22 23 24 25 26 27 28 28 28 36 36 36 36 36 37 37 37 38 38 40 42 42 42 42 43 43 43 43 44 44 45 46 46 47 48 50 53 53 54 54 55 55</array>
                        <array dataType="xsd:integer" dictRef="g:atom2" size="74">2 3 5 4 6 24 26 7 8 9 24 10 25 11 12 13 14 15 16 17 25 19 23 27 20 35 21 34 57 22 28 23 33 32 27 27 58 45 29 30 31 37 38 42 57 58 40 57 58 39 41 56 43 44 57 58 45 48 57 58 46 49 47 47 51 52 57 53 55 58 55 57 56 58</array>
                        <array dataType="xsd:double" dictRef="cc:distance" size="74">1.0887 1.3641 1.4441 1.0903 1.4047 1.3853 1.2454 1.0851 1.3845 1.4799 1.3573 1.3993 1.3494 1.0856 1.3841 1.0885 1.3898 1.087 1.3848 1.0891 1.3379 1.4091 1.4053 2.0016 1.3908 1.0906 1.3978 1.092 3.5077 1.3947 1.4879 1.3932 1.0893 1.0906 2.2297 2.1972 2.8957 2.0301 1.3354 1.339 1.3599 1.35 1.3462 1.4846 3.561 4.6245 1.0069 3.0678 4.6181 1.0891 1.0859 1.6113 1.4068 1.3988 4.1483 3.7827 1.4036 1.0907 3.8491 3.5033 1.3917 1.0901 1.405 1.3932 1.0907 1.0893 3.0371 0.9698 1.3828 3.2666 1.2412 3.0553 1.257 3.57</array>
                        <array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="74">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically</array>
                     </list>
                     <list cmlx:templateRef="angle">
                        <array dataType="xsd:string" dictRef="g:symbol" size="149">A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16 A17 A18 A19 A20 A21 A22 A23 A24 A25 A26 A27 A28 A29 A30 A31 A32 A33 A34 A35 A36 A37 A38 A39 A40 A41 A42 A43 A44 A45 A46 A47 A48 A49 A50 A51 A52 A53 A54 A55 A56 A57 A58 A59 A60 A61 A62 A63 A64 A65 A66 A67 A68 A69 A70 A71 A72 A73 A74 A75 A76 A77 A78 A79 A80 A81 A82 A83 A84 A85 A86 A87 A88 A89 A90 A91 A92 A93 A94 A95 A96 A97 A98 A99 A100 A101 A102 A103 A104 A105 A106 A107 A108 A109 A110 A111 A112 A113 A114 A115 A116 A117 A118 A119 A120 A121 A122 A123 A124 A125 A126 A127 A128 A129 A130 A131 A132 A133 A134 A135 A136 A137 A138 A139 A140 A141 A142 A143 A144 A145 A146 A147 A148 A149</array>
                        <array dataType="xsd:integer" dictRef="g:atom1" size="149">2 2 3 1 1 4 1 1 24 3 3 7 6 6 9 8 8 10 9 9 11 10 10 13 12 12 15 14 14 17 19 19 23 18 18 20 19 19 19 21 21 34 20 20 22 21 21 23 18 18 22 5 5 8 9 9 16 5 18 18 24 24 21 21 21 29 29 30 37 37 38 38 38 57 40 40 57 36 36 39 37 36 36 43 44 44 57 42 42 45 45 45 48 57 42 42 46 27 27 43 44 44 47 45 45 46 50 50 55 53 53 54 54 56 40 20 20 20 20 20 20 36 36 36 37 37 37 37 42 42 43 48 26 26 26 26 26 26 36 36 36 37 37 37 37 42 42 43 43</array>
                        <array dataType="xsd:integer" dictRef="g:atom2" size="149">1 1 1 3 3 3 5 5 5 6 6 6 8 8 8 9 9 9 10 10 10 12 12 12 14 14 14 16 16 16 18 18 18 19 19 19 20 20 20 20 20 20 21 21 21 22 22 22 23 23 23 24 24 24 25 25 25 26 27 27 27 27 28 28 28 28 28 28 36 36 36 36 36 36 37 37 37 38 38 38 40 42 42 42 42 42 42 43 43 43 43 43 43 43 44 44 44 45 45 45 46 46 46 47 47 47 53 53 54 55 55 55 55 55 56 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 58 58 58 58 58 58 58 58 58 58 58 58 58 58 58 58 58</array>
                        <array dataType="xsd:integer" dictRef="g:atom3" size="149">3 5 5 4 6 6 24 26 26 7 8 8 9 24 24 10 25 25 11 12 12 13 14 14 15 16 16 17 25 25 23 27 27 20 35 35 21 34 57 34 57 57 22 28 28 23 33 33 22 32 32 8 27 27 16 27 27 58 25 45 25 45 29 30 31 30 31 31 38 42 42 57 58 58 57 58 58 39 41 41 56 43 44 44 57 58 58 45 48 48 57 58 58 58 46 49 49 43 47 47 47 51 51 46 52 52 55 58 57 54 56 56 58 58 55 36 37 42 43 48 54 43 48 54 42 43 48 54 48 54 54 54 36 37 42 43 53 55 43 53 55 42 43 53 55 53 55 53 55</array>
                        <array dataType="xsd:double" dictRef="cc:angle" size="149">122.0849 116.5535 121.3511 120.6716 119.4667 119.8575 117.5561 121.0951 121.3487 120.0556 118.1891 121.7461 120.1883 123.4168 116.382 122.7378 117.007 120.2391 120.4361 120.0212 119.5382 120.0796 119.0961 120.8238 121.9006 117.9765 120.1228 120.8591 123.2076 115.9329 116.8176 120.4299 122.0926 121.8219 119.7522 118.4223 119.9295 120.2732 89.5457 119.7968 84.7449 95.9222 119.5453 118.743 121.6011 119.8723 119.9314 120.1872 121.9395 119.4714 118.5857 119.5677 126.2342 113.3984 119.4573 115.0885 125.0718 151.6197 93.8493 85.6652 75.1392 104.6316 113.1403 112.5977 111.2808 107.6092 106.2512 105.463 118.6559 119.2071 121.9282 103.0584 149.4623 107.2872 102.1242 34.0849 117.573 120.263 121.3172 118.4185 172.9342 121.1988 119.8813 118.7562 155.9408 90.0388 113.1481 122.6621 118.4171 118.9062 136.5284 80.5688 100.7409 128.438 119.6848 119.5596 120.7541 126.6925 116.5635 116.6635 120.6257 119.6678 119.7064 121.5705 119.6796 118.7303 105.7511 142.1716 130.5785 117.4369 112.9252 129.6262 150.9741 55.5484 109.1589 118.9511 125.0097 98.5655 79.6796 73.5459 71.7229 39.5116 47.7771 78.8647 35.8231 49.274 52.2533 65.7354 30.0845 71.2999 59.3654 47.6907 110.0621 122.162 93.3184 82.3634 101.6576 114.4378 32.5505 79.3849 57.9132 31.9243 40.0149 66.8094 44.2209 83.8294 65.4419 67.8848 54.7619</array>
                        <array dataType="xsd:string"
                               delimiter="|"
                               dictRef="g:deriv"
                               size="149">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically</array>
                     </list>
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                        <array dataType="xsd:integer" dictRef="g:atom2" size="6">27 27 37 27 27 37</array>
                        <array dataType="xsd:integer" dictRef="g:atom3" size="6">24 45 40 24 45 40</array>
                        <array dataType="xsd:integer" dictRef="g:atom4" size="6">45 24 1 45 24 1</array>
                        <array dataType="xsd:integer" dictRef="g:atom5" size="6">-1 -1 -1 -2 -2 -2</array>
                        <scalar dataType="xsd:double" dictRef="g:lll">190.2968</scalar>
                        <array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="6">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically</array>
                     </list>
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                        <scalar dataType="xsd:double" dictRef="g:lll">179.7708</scalar>
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                        <scalar dataType="xsd:double" dictRef="g:lll">116.7941</scalar>
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                     <list cmlx:templateRef="lll">
                        <scalar dataType="xsd:double" dictRef="g:lll">185.7755</scalar>
                     </list>
                     <list cmlx:templateRef="lll">
                        <scalar dataType="xsd:double" dictRef="g:lll">171.5256</scalar>
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                     <list cmlx:templateRef="lll">
                        <scalar dataType="xsd:double" dictRef="g:lll">163.851</scalar>
                     </list>
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                        <array dataType="xsd:string" dictRef="g:symbol" size="285">D1 D2 D3 D4 D5 D6 D7 D8 D9 D10 D11 D12 D13 D14 D15 D16 D17 D18 D19 D20 D21 D22 D23 D24 D25 D26 D27 D28 D29 D30 D31 D32 D33 D34 D35 D36 D37 D38 D39 D40 D41 D42 D43 D44 D45 D46 D47 D48 D49 D50 D51 D52 D53 D54 D55 D56 D57 D58 D59 D60 D61 D62 D63 D64 D65 D66 D67 D68 D69 D70 D71 D72 D73 D74 D75 D76 D77 D78 D79 D80 D81 D82 D83 D84 D85 D86 D87 D88 D89 D90 D91 D92 D93 D94 D95 D96 D97 D98 D99 D100 D101 D102 D103 D104 D105 D106 D107 D108 D109 D110 D111 D112 D113 D114 D115 D116 D117 D118 D119 D120 D121 D122 D123 D124 D125 D126 D127 D128 D129 D130 D131 D132 D133 D134 D135 D136 D137 D138 D139 D140 D141 D142 D143 D144 D145 D146 D147 D148 D149 D150 D151 D152 D153 D154 D155 D156 D157 D158 D159 D160 D161 D162 D163 D164 D165 D166 D167 D168 D169 D170 D171 D172 D173 D174 D175 D176 D177 D178 D179 D180 D181 D182 D183 D184 D185 D186 D187 D188 D189 D190 D191 D192 D193 D194 D195 D196 D197 D198 D199 D200 D201 D202 D203 D204 D205 D206 D207 D208 D209 D210 D211 D212 D213 D214 D215 D216 D217 D218 D219 D220 D221 D222 D223 D224 D225 D226 D227 D228 D229 D230 D231 D232 D233 D234 D235 D236 D237 D238 D239 D240 D241 D242 D243 D244 D245 D246 D247 D248 D249 D250 D251 D252 D253 D254 D255 D256 D257 D258 D259 D260 D261 D262 D263 D264 D265 D266 D267 D268 D269 D270 D271 D272 D273 D274 D275 D276 D277 D278 D279 D280 D281 D282 D283 D284 D285</array>
                        <array dataType="xsd:integer" dictRef="g:atom1" size="285">2 2 5 5 2 2 3 3 1 1 4 4 1 1 26 26 1 24 3 3 7 7 6 6 24 24 6 6 9 9 8 8 25 25 8 8 10 10 9 9 11 11 10 10 13 13 12 12 15 15 14 14 17 17 23 23 27 27 19 19 27 27 19 19 23 23 18 18 18 35 35 35 19 19 34 34 57 57 19 19 19 19 19 19 21 21 21 21 21 21 34 34 34 34 34 34 20 20 28 28 20 20 20 22 22 22 21 21 33 33 5 5 8 8 9 9 16 16 9 9 16 16 5 5 5 5 5 5 18 18 24 24 38 42 37 37 42 42 57 57 58 58 37 37 38 38 38 38 38 38 58 58 58 58 38 38 38 38 57 57 57 57 57 58 40 40 40 40 40 58 58 58 58 58 40 40 40 40 40 57 57 57 57 57 37 36 36 44 44 36 36 43 43 57 57 58 58 44 44 44 44 58 58 58 58 44 44 44 44 57 57 57 57 42 42 48 48 57 57 58 58 45 45 45 45 58 58 58 58 45 45 45 45 45 48 48 48 48 48 57 57 57 57 57 42 42 49 49 27 27 43 43 44 44 51 51 50 50 50 50 50 50 50 57 57 57 55 55 55 55 55 55 53 54 58 54 54 54 54 54 56 56 56 56 56</array>
                        <array dataType="xsd:integer" dictRef="g:atom2" size="285">1 1 1 1 1 1 1 1 3 3 3 3 5 5 5 5 5 5 6 6 6 6 8 8 8 8 8 8 8 8 9 9 9 9 9 9 9 9 10 10 10 10 12 12 12 12 14 14 14 14 16 16 16 16 18 18 18 18 18 18 18 18 18 18 18 18 19 19 19 19 19 19 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 21 21 21 21 21 21 21 21 21 21 22 22 22 22 24 24 24 24 25 25 25 25 25 25 25 25 26 26 26 26 26 26 27 27 27 27 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 37 40 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 42 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 43 44 44 44 44 45 45 45 45 46 46 46 46 53 53 53 53 53 53 53 54 54 54 54 54 54 54 54 54 55 55 55 55 55 55 55 55 55 55 55 55 55</array>
                        <array dataType="xsd:integer" dictRef="g:atom3" size="285">3 3 3 3 5 5 5 5 6 6 6 6 24 24 24 24 26 26 8 8 8 8 9 9 9 9 24 24 24 24 10 10 10 10 25 25 25 25 12 12 12 12 14 14 14 14 16 16 16 16 25 25 25 25 19 19 19 19 23 23 23 23 27 27 27 27 20 20 20 20 20 20 21 21 21 21 21 21 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 22 22 22 22 28 28 28 28 28 28 23 23 23 23 27 27 27 27 27 27 27 27 45 45 45 45 58 58 58 58 58 58 45 45 45 45 40 40 38 38 38 38 38 38 38 38 42 42 42 42 57 57 57 57 57 57 57 57 58 58 58 58 58 58 58 58 40 40 57 57 57 57 57 57 57 57 57 57 58 58 58 58 58 58 58 58 58 58 56 43 43 43 43 44 44 44 44 44 44 44 44 57 57 57 57 57 57 57 57 58 58 58 58 58 58 58 58 45 45 45 45 45 45 45 45 57 57 57 57 57 57 57 57 58 58 58 58 58 58 58 58 58 58 58 58 58 58 58 46 46 46 46 47 47 47 47 47 47 47 47 55 55 58 58 58 58 58 55 55 55 57 57 57 57 57 57 56 56 56 58 58 58 58 58 58 58 58 58 58</array>
                        <array dataType="xsd:integer" dictRef="g:atom4" size="285">4 6 4 6 24 26 24 26 7 8 7 8 8 27 8 27 58 58 9 24 9 24 10 25 10 25 5 27 5 27 11 12 11 12 16 27 16 27 13 14 13 14 15 16 15 16 17 25 17 25 9 27 9 27 20 35 20 35 22 32 22 32 25 45 25 45 21 34 57 21 34 57 22 28 22 28 22 28 36 37 42 43 48 54 36 37 42 43 48 54 36 37 42 43 48 54 23 33 23 33 29 30 31 29 30 31 18 32 18 32 25 45 25 45 18 24 18 24 43 47 43 47 36 37 42 43 53 55 43 47 43 47 56 56 39 41 39 41 39 41 39 41 43 44 43 44 20 43 48 54 20 43 48 54 26 43 53 55 26 43 53 55 56 56 20 42 43 48 54 20 42 43 48 54 26 42 43 53 55 26 42 43 53 55 55 45 48 45 48 46 49 46 49 46 49 46 49 20 37 48 54 20 37 48 54 26 37 53 55 26 37 53 55 27 47 27 47 27 47 27 47 20 36 37 54 20 36 37 54 26 36 37 53 55 26 36 37 53 55 26 36 37 53 55 47 51 47 51 46 52 46 52 45 52 45 52 54 56 26 36 37 42 43 53 56 58 20 36 37 42 43 48 40 40 40 26 36 37 42 43 26 36 37 42 43</array>
                        <array dataType="xsd:double" dictRef="cc:dihed" size="285">-0.4791 178.7838 -179.2604 0.0025 175.8566 -4.0259 -5.2977 174.8198 -178.573 2.508 0.696 -178.223 8.0516 -160.9987 -172.0662 18.8835 -141.4032 38.7188 -178.2569 0.387 2.8434 -178.5127 6.6404 -174.8153 -172.0961 6.4482 -5.8668 164.5233 172.8248 -16.7852 -0.3013 178.9355 -178.8001 0.4367 -179.1211 7.6183 -0.5384 -173.799 -179.9632 -0.2055 -0.7196 179.0381 -179.9134 0.0835 -0.1576 179.8393 179.5649 -0.1958 -0.4382 179.8011 0.4271 172.9655 -179.3445 -6.806 2.9123 -177.7838 -167.9703 11.3336 -2.5267 178.1488 168.1924 -11.1321 70.8795 -117.3251 -99.5115 72.2839 -1.1063 178.6288 -84.7764 179.5808 -0.684 95.9107 -1.2081 -177.4467 179.0554 2.8169 85.2292 -91.0093 23.2903 -1.6228 24.7891 18.7854 7.9056 -42.1815 -96.8279 -121.741 -95.3291 -101.3328 -112.2126 -162.2997 143.6895 118.7764 145.1883 139.1846 128.3048 78.2177 1.5859 -179.5057 177.7136 -3.378 -171.3916 -49.1002 69.0662 12.4506 134.742 -107.0916 0.3355 179.6658 -178.5701 0.7602 -174.9291 13.5452 15.4414 -156.0842 163.634 -12.1648 -9.1938 175.0074 -156.9731 30.449 34.7266 -137.8512 -93.252 -80.2304 -94.804 -75.8757 -10.4266 -30.3308 43.1613 -133.4474 -142.6142 40.7771 -158.9529 14.7148 6.8962 -173.5197 -178.3993 1.1848 67.3736 -113.0423 -119.1446 60.4395 36.9287 -147.7807 -137.7475 37.5431 131.7479 138.724 151.8431 -166.5571 -44.7889 -37.8128 -24.6937 16.9061 -87.1738 -120.5503 174.1752 165.9163 86.1757 52.7992 -12.4754 -20.7343 -55.5858 -177.4102 -37.5821 -86.3054 -64.4984 -49.1644 5.0472 -5.09 -53.8133 -32.0063 -16.6723 37.5394 119.6417 148.0039 112.9202 30.1983 26.5135 50.0623 78.4245 43.3409 -39.3811 -43.0659 65.3459 173.4866 -5.1082 -1.8557 179.5494 -173.5525 6.0234 1.8527 -178.5713 -98.5746 81.0014 66.3919 -114.0321 93.9025 -124.5955 127.6578 161.2086 -69.7122 71.7897 -35.9569 -2.4062 -61.4523 142.3023 -162.8322 -176.8641 111.9438 -44.3015 10.564 -3.468 -176.2791 0.3267 2.3092 178.9149 -38.3588 138.247 99.4373 -83.957 16.6044 -157.1941 174.4642 91.3779 -105.6115 80.59 52.2484 -30.838 3.6504 152.2255 177.913 -102.2845 -123.6337 121.505 -89.92 -64.2324 15.57 -5.7791 147.4897 -63.9352 -38.2476 41.5548 20.2057 -0.3814 179.6003 -179.9522 0.0295 178.1703 -3.4619 1.2129 179.5806 -1.207 -179.5899 178.8113 0.4285 2.2948 -176.5792 -9.0772 99.4463 111.1159 83.0513 67.6078 -142.7136 35.9399 -52.8277 127.1466 1.3739 -17.1084 21.0423 38.5035 43.0434 148.4301 -30.2724 113.6931 -44.6222 54.5743 67.181 37.4606 15.3963 -155.5816 -56.3851 -43.7785 -73.4989 -95.5632</array>
                        <array dataType="xsd:string"
                               delimiter="|"
                               dictRef="g:deriv"
                               size="285">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 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analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically</array>
                     </list>
                  </module>
               </module>
               <module cmlx:templateRef="l103" dictRef="cc:userDefinedModule">
                  <list cmlx:templateRef="berny">
                     <scalar dataType="xsd:string" dictRef="g:optimization">Berny optimization.</scalar>
                  </list>
                  <module cmlx:templateRef="l103.localminsaddle">
                     <scalar cmlx:templateRef="r" dataType="xsd:string" dictRef="cc:minmaxts">local minimum</scalar>
                     <array cmlx:templateRef="junk"
                            dataType="xsd:string"
                            dictRef="x:junk1"
                            size="9">Step number 1 out of a maximum of 2</array>
                     <array cmlx:templateRef="junk"
                            dataType="xsd:string"
                            dictRef="x:junk1"
                            size="7">All quantities printed in internal units (Hartrees-Bohrs-Radians)</array>
                     <array cmlx:templateRef="junk"
                            dataType="xsd:string"
                            dictRef="x:junk1"
                            size="9">Second derivative matrix not updated -- analytic derivatives used.</array>
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                     <array cmlx:templateRef="junk"
                            dataType="xsd:string"
                            dictRef="x:junk1"
                            size="8">Angle between quadratic step and forces= 80.91 degrees.</array>
                     <list cmlx:templateRef="iterationList">
                        <array dataType="xsd:integer" dictRef="cc:serial" size="2">1 2</array>
                        <array dataType="xsd:double" dictRef="g:rmscart" size="2">0.00020004 0.00000002</array>
                        <array dataType="xsd:double" dictRef="g:rmsint" size="2">0.00000002 0.00000001</array>
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                  <module cmlx:templateRef="l103.deltas">
                     <list cmlx:templateRef="delta">
                        <array dataType="xsd:string" dictRef="cc:variable" size="514">R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 R13 R14 R15 R16 R17 R18 R19 R20 R21 R22 R23 R24 R25 R26 R27 R28 R29 R30 R31 R32 R33 R34 R35 R36 R37 R38 R39 R40 R41 R42 R43 R44 R45 R46 R47 R48 R49 R50 R51 R52 R53 R54 R55 R56 R57 R58 R59 R60 R61 R62 R63 R64 R65 R66 R67 R68 R69 R70 R71 R72 R73 R74 A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16 A17 A18 A19 A20 A21 A22 A23 A24 A25 A26 A27 A28 A29 A30 A31 A32 A33 A34 A35 A36 A37 A38 A39 A40 A41 A42 A43 A44 A45 A46 A47 A48 A49 A50 A51 A52 A53 A54 A55 A56 A57 A58 A59 A60 A61 A62 A63 A64 A65 A66 A67 A68 A69 A70 A71 A72 A73 A74 A75 A76 A77 A78 A79 A80 A81 A82 A83 A84 A85 A86 A87 A88 A89 A90 A91 A92 A93 A94 A95 A96 A97 A98 A99 A100 A101 A102 A103 A104 A105 A106 A107 A108 A109 A110 A111 A112 A113 A114 A115 A116 A117 A118 A119 A120 A121 A122 A123 A124 A125 A126 A127 A128 A129 A130 A131 A132 A133 A134 A135 A136 A137 A138 A139 A140 A141 A142 A143 A144 A145 A146 A147 A148 A149 A150 A151 A152 A153 A154 A155 D1 D2 D3 D4 D5 D6 D7 D8 D9 D10 D11 D12 D13 D14 D15 D16 D17 D18 D19 D20 D21 D22 D23 D24 D25 D26 D27 D28 D29 D30 D31 D32 D33 D34 D35 D36 D37 D38 D39 D40 D41 D42 D43 D44 D45 D46 D47 D48 D49 D50 D51 D52 D53 D54 D55 D56 D57 D58 D59 D60 D61 D62 D63 D64 D65 D66 D67 D68 D69 D70 D71 D72 D73 D74 D75 D76 D77 D78 D79 D80 D81 D82 D83 D84 D85 D86 D87 D88 D89 D90 D91 D92 D93 D94 D95 D96 D97 D98 D99 D100 D101 D102 D103 D104 D105 D106 D107 D108 D109 D110 D111 D112 D113 D114 D115 D116 D117 D118 D119 D120 D121 D122 D123 D124 D125 D126 D127 D128 D129 D130 D131 D132 D133 D134 D135 D136 D137 D138 D139 D140 D141 D142 D143 D144 D145 D146 D147 D148 D149 D150 D151 D152 D153 D154 D155 D156 D157 D158 D159 D160 D161 D162 D163 D164 D165 D166 D167 D168 D169 D170 D171 D172 D173 D174 D175 D176 D177 D178 D179 D180 D181 D182 D183 D184 D185 D186 D187 D188 D189 D190 D191 D192 D193 D194 D195 D196 D197 D198 D199 D200 D201 D202 D203 D204 D205 D206 D207 D208 D209 D210 D211 D212 D213 D214 D215 D216 D217 D218 D219 D220 D221 D222 D223 D224 D225 D226 D227 D228 D229 D230 D231 D232 D233 D234 D235 D236 D237 D238 D239 D240 D241 D242 D243 D244 D245 D246 D247 D248 D249 D250 D251 D252 D253 D254 D255 D256 D257 D258 D259 D260 D261 D262 D263 D264 D265 D266 D267 D268 D269 D270 D271 D272 D273 D274 D275 D276 D277 D278 D279 D280 D281 D282 D283 D284 D285</array>
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                     </list>
                  </module>
                  <module cmlx:templateRef="l103.itemconverge">
                     <list cmlx:templateRef="row">
                        <array dataType="xsd:string" delimiter="|" dictRef="g:item" size="4">|Maximum Force|RMS     Force|Maximum Displacement|RMS     Displacement|</array>
                        <array dataType="xsd:double" dictRef="g:value" size="4">0.000007 0.000001 0.001453 0.000200</array>
                        <array dataType="xsd:double" dictRef="g:threshold" size="4">0.000450 0.000300 0.001800 0.001200</array>
                        <array dataType="xsd:string" dictRef="g:converged" size="4">YES YES YES YES</array>
                     </list>
                  </module>
                  <module cmlx:templateRef="preddelta">
                     <list cmlx:templateRef="predicted">
                        <scalar dataType="xsd:double" dictRef="g:predchange">-3.433442e-09</scalar>
                     </list>
                  </module>
                  <module cmlx:templateRef="l103.optimizedparam">
                     <list cmlx:templateRef="completed">
                        <scalar dataType="xsd:string" dictRef="g:optimization">Optimization completed.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:optimization">-- Stationary point found.</scalar>
                     </list>
                     <list cmlx:templateRef="length">
                        <array dataType="xsd:string" dictRef="g:symbol" size="74">R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 R13 R14 R15 R16 R17 R18 R19 R20 R21 R22 R23 R24 R25 R26 R27 R28 R29 R30 R31 R32 R33 R34 R35 R36 R37 R38 R39 R40 R41 R42 R43 R44 R45 R46 R47 R48 R49 R50 R51 R52 R53 R54 R55 R56 R57 R58 R59 R60 R61 R62 R63 R64 R65 R66 R67 R68 R69 R70 R71 R72 R73 R74</array>
                        <array dataType="xsd:integer" dictRef="g:atom1" size="74">1 1 1 3 3 5 5 6 6 8 8 9 9 10 10 12 12 14 14 16 16 18 18 18 19 19 20 20 20 21 21 22 22 23 24 25 26 27 28 28 28 36 36 36 36 36 37 37 37 38 38 40 42 42 42 42 43 43 43 43 44 44 45 46 46 47 48 50 53 53 54 54 55 55</array>
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                               delimiter="|"
                               dictRef="g:deriv"
                               size="284">-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0</array>
                     </list>
                  </module>
                  <scalar dictRef="l103.converged.count">1</scalar>
               </module>
            </module>
         </module>
         <module dictRef="cc:calculation" id="calculation">
            <module dictRef="cc:userDefinedModule" id="otherComponents">
               <module cmlx:templateRef="l301">
                  <module cmlx:templateRef="l301.pcm.standard">
                     <scalar dataType="xsd:string" dictRef="g:model">PCM (using non-symmetric T matrix)</scalar>
                     <scalar dataType="xsd:string" dictRef="g:atomicradii">SMD-Coulomb.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:polarcharges">Total charges</scalar>
                     <scalar dataType="xsd:string" dictRef="g:chargecompensation">None</scalar>
                     <scalar dataType="xsd:string" dictRef="g:solutionmethod">Matrix inversion</scalar>
                     <scalar dataType="xsd:string" dictRef="g:solvent">Mesitylene</scalar>
                     <scalar dataType="xsd:double" dictRef="g:eps">2.265000</scalar>
                     <scalar dataType="xsd:double" dictRef="g:epsinfinity">2.248200</scalar>
                  </module>
               </module>
               <module cmlx:templateRef="l202" dictRef="cc:userDefinedModule">
                  <module cmlx:templateRef="l202.stoich">
                     <scalar cmlx:templateRef="stoich"
                             dataType="xsd:string"
                             dictRef="g:stoichiometry">C26H19Cs2F3N2O5Pd</scalar>
                     <scalar dataType="xsd:string" dictRef="cc:pointgroup">C1</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:operatorcount">1</scalar>
                     <scalar dataType="xsd:string" dictRef="cc:largestabelian">C1</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:operatorcount">1</scalar>
                     <scalar dataType="xsd:string" dictRef="cc:largestconciseabelian">C1</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:operatorcount">1</scalar>
                  </module>
                  <module cmlx:templateRef="l202.rotconst">
                     <array cmlx:templateRef="rotconst"
                            dataType="xsd:double"
                            dictRef="cc:rotconst"
                            size="3">0.0747962 0.0547162 0.0366970</array>
                  </module>
               </module>
               <module cmlx:templateRef="l302">
                  <module cmlx:templateRef="l302.basis">
                     <list cmlx:templateRef="basis">
                        <scalar dataType="xsd:string" dictRef="g:basis">NPDir=0 NMtPBC=     1 NCelOv=     1 NCel=       1 NClECP=     1 NCelD=      1</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">NCelK=      1 NCelE2=     1 NClLst=     1 CellRange=     0.0.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">One-electron integrals computed using PRISM.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">One-electron integral symmetry used in STVInt</scalar>
                     </list>
                  </module>
                  <module cmlx:templateRef="l302.basis2">
                     <list cmlx:templateRef="basis">
                        <scalar dataType="xsd:string" dictRef="g:basis">Precomputing XC quadrature grid using</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">IXCGrd= 4 IRadAn=           5 IRanWt=          -1 IRanGd=           0 AccXCQ= 0.00D+00.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">Defaulting to unpruned grid for atomic number  55.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">Defaulting to unpruned grid for atomic number  46.</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">Generated NRdTot=       0 NPtTot=           0 NUsed=           0 NTot=          32</scalar>
                        <scalar dataType="xsd:string" dictRef="g:basis">NSgBfM=   638   637   637   637   638 MxSgAt=    58 MxSgA2=    58.</scalar>
                     </list>
                  </module>
               </module>
               <module cmlx:templateRef="l303.basis">
                  <list cmlx:templateRef="l303">
                     <scalar dataType="xsd:integer" dictRef="g:dipdrv">1</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l502">
                  <scalar dataType="xsd:string" dictRef="g:l502.type">Closed</scalar>
                  <module cmlx:templateRef="l502.cycle">
                     <list cmlx:templateRef="cycle">
                        <list>
                           <scalar dataType="xsd:integer" dictRef="cc:cycle">1</scalar>
                           <scalar dataType="xsd:integer" dictRef="g:pass">1</scalar>
                           <scalar dataType="xsd:integer" dictRef="g:idiag">1</scalar>
                        </list>
                     </list>
                     <module cmlx:templateRef="l502.e">
                        <list cmlx:templateRef="l502.e">
                           <scalar dataType="xsd:double" dictRef="g:l502.e">-1952.97526887731</scalar>
                        </list>
                     </module>
                  </module>
                  <module cmlx:templateRef="l502.footer">
                     <list cmlx:templateRef="scfdone">
                        <list>
                           <scalar dataType="xsd:double" dictRef="g:rbhflyp" units="nonsi:hartree">-1952.97526888</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:ncycle">1</scalar>
                        </list>
                     </list>
                     <module cmlx:templateRef="scfdone">
                        <list cmlx:templateRef="scfdone">
                           <list>
                              <scalar dataType="xsd:double" dictRef="cc:kinener">1.831916610031e+03</scalar>
                              <scalar dataType="xsd:double" dictRef="cc:potener">-1.421669876093e+04</scalar>
                              <scalar dataType="xsd:double" dictRef="cc:eener">5.591953295891e+03</scalar>
                           </list>
                        </list>
                     </module>
                  </module>
                  <list cmlx:templateRef="l502">
                     <scalar dataType="xsd:string" dictRef="g:l502">Using DIIS extrapolation, IDIIS=  1040.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">NGot= 12884901888 LenX= 12884029054 LenY= 12883605904</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">Requested convergence on RMS density matrix=1.00D-08 within  32 cycles.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">Requested convergence on MAX density matrix=1.00D-06.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">Requested convergence on             energy=1.00D-06.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">No special actions if energy rises.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502">Fock matrices will be formed incrementally for  20 cycles.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l502"/>
                  </list>
               </module>
               <module cmlx:templateRef="l1101">
                  <list cmlx:templateRef="l1101">
                     <scalar dataType="xsd:string" dictRef="g:l1101">Using compressed storage, NAtomX=    58.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1101">Will process     59 centers per pass.</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l1102">
                  <list cmlx:templateRef="l1102">
                     <scalar dataType="xsd:string" dictRef="g:l1102">Symmetrizing basis deriv contribution to polar:</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1102">IMax=3 JMax=2 DiffMx= 0.00D+00</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l1002.minotr">
                  <list cmlx:templateRef="l1002">
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Minotr:  Closed shell wavefunction.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">IDoAtm=11111111111111111111111111111111111111111111111111</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">IDoAtm=11111111</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">NEqPCM:  Using equilibrium solvation (IEInf=0, Eps=   2.2650, EpsInf=   2.2482)</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Direct CPHF calculation.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Differentiating once with respect to electric field.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">with respect to dipole field.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Differentiating once with respect to nuclear coordinates.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Requested convergence is 1.0D-08 RMS, and 1.0D-07 maximum.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Secondary convergence is 1.0D-12 RMS, and 1.0D-12 maximum.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">NewPWx=T KeepS1=F KeepF1=F KeepIn=T MapXYZ=F SortEE=F KeepMc=T.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  55.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">18272 words used for storage of precomputed grid.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Two-electron integrals replicated using symmetry.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">MDV=   12884901888 using IRadAn=       1.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Solving linear equations simultaneously, MaxMat=     384.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">FoF2E skips out because all densities are zero.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">CalDSu exits because no D1Ps are significant.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">FoFJK:  IHMeth= 1 ICntrl=       0 DoSepK=F KAlg= 0 I1Cent=           0 FoldK=F</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">IRaf= 660000000 NMat=     174 IRICut=     435 DoRegI=T DoRafI=T ISym2E= 2 IDoP0=3 IntGTp=3.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  46.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">There are   177 degrees of freedom in the 1st order CPHF.  IDoFFX=6 NUNeed=     3.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">175 vectors produced by pass  0 Test12= 6.75D-14 1.00D-09 XBig12= 5.28D+02 9.68D+00.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">AX will form   175 AO Fock derivatives at one time.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">174 vectors produced by pass  1 Test12= 6.75D-14 1.00D-09 XBig12= 6.37D+01 1.15D+00.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">174 vectors produced by pass  2 Test12= 6.75D-14 1.00D-09 XBig12= 9.06D-01 9.46D-02.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">174 vectors produced by pass  3 Test12= 6.75D-14 1.00D-09 XBig12= 1.20D-02 1.07D-02.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">174 vectors produced by pass  4 Test12= 6.75D-14 1.00D-09 XBig12= 6.20D-05 6.18D-04.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">174 vectors produced by pass  5 Test12= 6.75D-14 1.00D-09 XBig12= 1.68D-07 2.96D-05.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">108 vectors produced by pass  6 Test12= 6.75D-14 1.00D-09 XBig12= 3.82D-10 1.42D-06.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">3 vectors produced by pass  7 Test12= 6.75D-14 1.00D-09 XBig12= 7.07D-13 4.77D-08.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">3 vectors produced by pass  8 Test12= 6.75D-14 1.00D-09 XBig12= 1.75D-15 3.07D-09.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">3 vectors produced by pass  9 Test12= 6.75D-14 1.00D-09 XBig12= 1.84D-15 2.42D-09.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">3 vectors produced by pass 10 Test12= 6.75D-14 1.00D-09 XBig12= 5.29D-15 5.86D-09.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">3 vectors produced by pass 11 Test12= 6.75D-14 1.00D-09 XBig12= 4.52D-15 3.32D-09.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">1 vectors produced by pass 12 Test12= 6.75D-14 1.00D-09 XBig12= 1.31D-15 1.92D-09.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">InvSVY:  IOpt=1 It=  1 EMax= 8.88D-15</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Solved reduced A of dimension  1169 with   177 vectors.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">FullF1:  Do perturbations      1 to       3.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">Isotropic polarizability for W=    0.000000      439.98 Bohr**3.</scalar>
                     <scalar dataType="xsd:string" dictRef="g:l1002.minotr">End of Minotr F.D. properties file   721 does not exist.</scalar>
                  </list>
               </module>
               <module cmlx:templateRef="l601.polariz">
                  <array dataType="xsd:double" dictRef="g:l601.pol.exact" size="6">540.604 11.514 483.762 24.514 -86.182 295.587</array>
                  <array dataType="xsd:double" dictRef="g:l601.pol.approx" size="6">649.420 -1.578 595.416 47.480 -88.009 429.309</array>
               </module>
               <module cmlx:templateRef="l716">
                  <list cmlx:templateRef="l716">
                     <scalar dataType="xsd:string" dictRef="g:l716">(Enter /prod/nvhpc-24.5/gaussian/16a3/g16/l716.exe)</scalar>
                  </list>
               </module>
            </module>
         </module>
         <module dictRef="cc:finalization" id="finalization">
            <propertyList>
               <property dictRef="cc:jobtime">
                  <scalar dataType="xsd:string">PT18079.200S</scalar>
               </property>
               <property dictRef="cc:jobdatetime.end">
                  <scalar dataType="xsd:date">2025-03-15T13:21:20.000</scalar>
               </property>
               <property dictRef="cc:popanal">
                  <module cmlx:templateRef="l601.popanal">
                     <array dataType="xsd:double" dictRef="g:alphaocc" size="146">-24.82532 -24.82117 -24.82028 -19.22621 -19.21713 -19.16421 -19.16078 -19.14274 -14.43258 -14.38098 -10.50241 -10.36951 -10.30507 -10.30289 -10.29868 -10.29078 -10.27968 -10.27299 -10.26215 -10.26141 -10.26070 -10.25647 -10.25577 -10.24287 -10.24249 -10.24203 -10.23992 -10.23949 -10.23197 -10.23140 -10.22676 -10.22614 -10.22446 -10.22347 -10.22015 -10.20875 -3.30095 -2.04257 -2.04196 -2.01427 -1.34882 -1.26490 -1.25834 -1.09287 -1.05007 -0.99791 -0.99164 -0.98543 -0.97410 -0.96556 -0.95891 -0.90662 -0.87005 -0.84513 -0.82365 -0.79329 -0.78891 -0.78244 -0.76727 -0.75293 -0.72960 -0.72317 -0.71114 -0.70681 -0.65875 -0.64740 -0.62713 -0.62508 -0.61011 -0.60524 -0.60125 -0.59380 -0.58931 -0.58810 -0.58263 -0.56459 -0.55733 -0.53773 -0.51872 -0.50782 -0.50604 -0.50439 -0.50303 -0.49206 -0.48863 -0.48580 -0.48475 -0.48146 -0.48079 -0.47739 -0.47336 -0.47174 -0.46262 -0.46027 -0.45535 -0.44967 -0.44838 -0.44687 -0.44259 -0.43904 -0.43769 -0.43704 -0.43512 -0.42988 -0.42553 -0.42371 -0.41952 -0.41372 -0.41244 -0.40710 -0.40137 -0.39273 -0.38528 -0.38500 -0.38056 -0.37932 -0.37321 -0.36868 -0.36069 -0.35267 -0.34936 -0.34254 -0.33838 -0.32989 -0.32802 -0.32104 -0.31314 -0.30003 -0.29006 -0.28621 -0.27811 -0.27007 -0.26693 -0.26318 -0.26136 -0.26098 -0.25399 -0.24737 -0.24055 -0.23260 -0.22511 -0.22411 -0.21642 -0.20773 -0.20173 -0.18628</array>
                     <array dataType="xsd:double" dictRef="g:alphavirt" size="462">-0.04421 -0.04275 -0.03558 -0.02820 -0.02336 -0.01982 -0.01905 -0.01707 -0.00732 -0.00604 -0.00206 0.00369 0.00907 0.01401 0.01551 0.02642 0.02777 0.03097 0.04124 0.04617 0.04756 0.05719 0.06454 0.06635 0.07131 0.07775 0.08552 0.10120 0.10812 0.11357 0.13004 0.13426 0.14720 0.14940 0.15104 0.15210 0.15881 0.16199 0.16592 0.17366 0.17592 0.17805 0.18326 0.19636 0.19930 0.20460 0.20563 0.20632 0.21350 0.22241 0.22997 0.23542 0.23759 0.24676 0.24789 0.25366 0.26095 0.26588 0.27116 0.28089 0.28665 0.29236 0.29933 0.30124 0.30519 0.31110 0.31731 0.32355 0.32980 0.33430 0.34685 0.34879 0.36266 0.36568 0.36885 0.38949 0.39451 0.40075 0.40817 0.41061 0.42035 0.42987 0.44006 0.45269 0.46662 0.47774 0.48611 0.48934 0.49960 0.50376 0.51465 0.51558 0.52157 0.52933 0.53476 0.53994 0.54942 0.55998 0.56656 0.56886 0.57196 0.57563 0.58022 0.58445 0.58722 0.59196 0.59574 0.60004 0.60123 0.60399 0.60727 0.61004 0.61182 0.61707 0.62017 0.62571 0.62722 0.63033 0.63298 0.63529 0.63876 0.64316 0.64579 0.65015 0.65153 0.65395 0.66141 0.66535 0.66712 0.67859 0.68247 0.69027 0.69393 0.69647 0.69873 0.70871 0.71313 0.71627 0.71887 0.72750 0.73238 0.73664 0.74510 0.75671 0.75876 0.76496 0.77940 0.78679 0.79204 0.79453 0.79925 0.80734 0.81082 0.81359 0.81859 0.82605 0.83160 0.84159 0.84381 0.85044 0.85092 0.85717 0.86729 0.87189 0.87516 0.88110 0.88586 0.89290 0.90052 0.90473 0.90965 0.91608 0.92051 0.93064 0.93702 0.93948 0.94682 0.95225 0.95632 0.96639 0.97062 0.97840 0.98033 0.98392 0.98894 0.99100 1.00121 1.00993 1.01554 1.02106 1.02386 1.03522 1.04797 1.05797 1.06129 1.07673 1.08217 1.08686 1.09272 1.09543 1.09924 1.10404 1.11101 1.11948 1.12815 1.12905 1.13209 1.13777 1.14402 1.15637 1.16471 1.16801 1.17732 1.17799 1.18885 1.19503 1.19894 1.20404 1.21271 1.22092 1.22466 1.23168 1.23652 1.24044 1.25086 1.25165 1.25735 1.26159 1.26816 1.28617 1.28775 1.30717 1.31103 1.31742 1.32029 1.33196 1.34226 1.34650 1.35435 1.35868 1.36674 1.37014 1.38834 1.39129 1.39311 1.40744 1.41156 1.42013 1.42209 1.43511 1.43798 1.45171 1.45895 1.46255 1.46839 1.47110 1.47555 1.47965 1.48153 1.48543 1.49004 1.50452 1.50685 1.51068 1.51206 1.51431 1.52472 1.53470 1.54351 1.56099 1.57580 1.58327 1.59588 1.61768 1.64306 1.65452 1.66835 1.67617 1.68560 1.69196 1.69775 1.70458 1.70795 1.71495 1.71871 1.73883 1.74640 1.75605 1.76225 1.77467 1.78167 1.79348 1.79915 1.80160 1.80571 1.80792 1.81178 1.82146 1.82634 1.83160 1.84644 1.85172 1.85695 1.86073 1.87515 1.87752 1.88024 1.88650 1.88871 1.89330 1.89687 1.90389 1.90723 1.91546 1.91982 1.92736 1.93112 1.93843 1.94545 1.96335 1.97112 1.97380 1.97601 1.98458 1.98797 2.00117 2.00691 2.01460 2.01883 2.02764 2.03344 2.03663 2.04880 2.05436 2.05609 2.05995 2.06244 2.07220 2.08661 2.09429 2.10444 2.10868 2.11009 2.12196 2.12451 2.13279 2.13842 2.14119 2.14859 2.15318 2.15622 2.15992 2.17622 2.18372 2.18966 2.19380 2.19631 2.20447 2.20980 2.21610 2.22464 2.22805 2.23046 2.25285 2.26764 2.27572 2.27871 2.28741 2.29993 2.30603 2.30913 2.31531 2.32328 2.33023 2.34053 2.34254 2.35775 2.37385 2.38567 2.42920 2.44640 2.45961 2.46625 2.48528 2.49931 2.50806 2.51682 2.52267 2.54557 2.55830 2.55972 2.57515 2.58456 2.59690 2.60802 2.61126 2.61666 2.62415 2.62793 2.63021 2.63889 2.64535 2.64848 2.65067 2.65625 2.65965 2.66240 2.66903 2.67776 2.69383 2.70482 2.70973 2.71892 2.72713 2.72845 2.73818 2.75419 2.75866 2.77487 2.77851 2.77948 2.78220 2.79418 2.80046 2.81011 2.81865 2.83654 2.85389 2.87453 2.89630 2.90890 2.92465 2.94409 2.95539 2.96093 2.96804 2.99525 3.02697 3.03729 3.04852 3.05789 3.06589 3.07433 3.08200 3.08812 3.12372 3.13672 3.14256 3.16278 3.17537 3.18703 3.27851 3.29341 3.33587 3.35165 3.38592 3.43929 3.50297 23.62382 23.84157 23.85802 44.80952</array>
                     <module cmlx:templateRef="l601.state">
                        <scalar dataType="xsd:string" dictRef="g:l601.state">1-A.</scalar>
                     </module>
                     <module cmlx:templateRef="mulliken">
                        <module cmlx:templateRef="l601.mullik">
                           <scalar dataType="xsd:string" dictRef="g:title">Mulliken charges:</scalar>
                           <scalar dataType="xsd:integer" dictRef="cc:serial">1</scalar>
                           <list cmlx:templateRef="row">
                              <array dataType="xsd:integer" dictRef="cc:serial" size="58">1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58</array>
                              <array dataType="xsd:string" dictRef="cc:elementType" size="58">C H C H C C H C C C H C H C H C H C C C C C C N N O Pd C F F F H H H H C O C H H H C C C C C C H H H H H O O C O Cs Cs</array>
                              <array dataType="xsd:double" dictRef="x:charge" size="58">-0.267395 0.155542 -0.138010 0.166127 0.565294 -0.262150 0.155444 0.313775 0.288931 -0.197164 0.188444 -0.139728 0.193727 -0.188741 0.192660 0.051631 0.186496 -0.027439 -0.206921 -0.233503 -0.092599 -0.183484 -0.213775 -0.609715 -0.506466 -0.646909 0.133647 0.950417 -0.317694 -0.318215 -0.337760 0.180004 0.183268 0.186634 0.158925 0.343479 -0.734353 -0.521387 0.156694 0.488563 0.162710 0.082806 -0.291883 -0.233136 -0.010453 -0.181171 -0.170452 0.092438 0.157500 0.444090 0.161135 0.160916 -0.661200 -0.616297 0.751313 -0.648846 0.832915 0.871320</array>
                           </list>
                           <scalar dataType="xsd:double" dictRef="x:chargesum">-0.00000</scalar>
                        </module>
                     </module>
                  </module>
               </property>
               <property>
                  <module cmlx:templateRef="l601.mullik">
                     <scalar dataType="xsd:string" dictRef="g:title">Mulliken charges with hydrogens summed into heavy atoms:</scalar>
                     <scalar dataType="xsd:integer" dictRef="cc:serial">1</scalar>
                     <list cmlx:templateRef="row">
                        <array dataType="xsd:integer" dictRef="cc:serial" size="39">1 3 5 6 8 9 10 12 14 16 18 19 20 21 22 23 24 25 26 27 28 29 30 31 36 37 38 42 43 44 45 46 47 53 54 55 56 57 58</array>
                        <array dataType="xsd:string" dictRef="cc:elementType" size="39">C C C C C C C C C C C C C C C C N N O Pd C F F F C O C C C C C C C O O C O Cs Cs</array>
                        <array dataType="xsd:double" dictRef="x:charge" size="39">-0.111854 0.028117 0.565294 -0.106706 0.313775 0.288931 -0.008720 0.053999 0.003919 0.238127 -0.027439 -0.047996 -0.046869 -0.092599 -0.000215 -0.033771 -0.609715 -0.506466 -0.646909 0.133647 0.950417 -0.317694 -0.318215 -0.337760 0.343479 -0.245790 -0.201984 0.082806 -0.199445 -0.075637 -0.010453 -0.020036 -0.009536 -0.217110 -0.616297 0.751313 -0.648846 0.832915 0.871320</array>
                     </list>
                     <scalar dataType="xsd:double" dictRef="x:chargesum">0.00000</scalar>
                  </module>
               </property>
               <property>
                  <module cmlx:templateRef="l716.dipole">
                     <array cmlx:templateRef="dipole"
                            dataType="xsd:double"
                            dictRef="x:d"
                            size="3">-8.20254706e-01 2.85626607e-01 -6.10438873e-01</array>
                  </module>
               </property>
               <property>
                  <module cmlx:templateRef="l716.polarizability">
                     <array cmlx:templateRef="polariz"
                            dataType="xsd:double"
                            dictRef="cc:polarizability"
                            size="6">5.40604242e+02 1.15140844e+01 4.83761583e+02 2.45137964e+01 -8.61820490e+01 2.95587032e+02</array>
                  </module>
               </property>
               <property dictRef="cc:frequencies">
                  <module cmlx:templateRef="l716.forcematrix">
                     <module cmlx:templateRef="lowfreq">
                        <array cmlx:templateRef="lowfreq"
                               dataType="xsd:double"
                               dictRef="g:1716.lowfreq"
                               size="9">-4.3164 0.0003 0.0005 0.0007 6.1309 9.3255 12.5679 16.2687 24.6672</array>
                     </module>
                     <module cmlx:templateRef="l716.freq.chunkx"
                             dictRef="cc:vibrations"
                             id="default">
                        <array dataType="xsd:integer" dictRef="x:serial" size="168">1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168</array>
                        <array dataType="xsd:string"
                               delimiter="|"
                               dictRef="cc:irrep"
                               size="168">A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A</array>
                        <array dataType="xsd:double" dictRef="cc:frequency" size="168">11.9865 15.7363 24.5505 28.0787 31.1544 37.6158 41.9628 47.7860 49.9114 56.9408 63.3492 68.0688 71.7587 74.7758 83.8336 92.8529 103.1820 106.7341 121.8939 125.6950 129.6522 139.6101 145.4874 150.0483 165.3977 165.7945 172.4189 179.2795 190.7552 201.5503 218.5572 226.0942 238.2556 249.6755 257.0705 261.6792 273.6236 295.1726 341.7214 383.5847 394.6297 399.0204 403.3375 410.7271 416.2327 417.5869 422.9528 442.4243 473.2376 497.7617 507.1637 538.4393 546.6427 547.6120 585.1239 588.5873 590.3135 598.5370 605.0659 636.0223 637.7263 653.2895 654.1213 662.9508 668.0672 680.1398 685.8898 710.0848 715.8374 723.8495 734.1440 745.0527 750.0063 763.7871 781.2330 791.9236 793.6335 803.3238 803.7484 811.7797 835.3740 843.6013 849.9651 886.0121 901.8514 934.8213 937.0674 962.4462 965.8833 968.7006 975.9545 978.2250 995.6211 997.5597 998.4175 999.9567 1003.1266 1016.4818 1027.0692 1046.2395 1073.4019 1084.5985 1086.0864 1099.1539 1110.0237 1116.5039 1117.5638 1124.3167 1140.6647 1143.8088 1164.1707 1169.9795 1181.8875 1189.6972 1192.8631 1226.9646 1242.7492 1263.0199 1301.8143 1307.3839 1309.9117 1318.0318 1327.2888 1341.3215 1350.2981 1351.6016 1371.4775 1388.0816 1407.1550 1422.9915 1423.3680 1425.6262 1434.0063 1440.3917 1484.5748 1505.4980 1516.6899 1519.1680 1594.3196 1613.6310 1614.9779 1636.9864 1638.9883 1646.5698 1652.8157 1672.2439 1706.9853 1717.6422 1820.6234 3101.9678 3154.9064 3155.3379 3161.8761 3162.5926 3163.9223 3175.4164 3176.1081 3182.3327 3182.9232 3184.4709 3185.6941 3188.1568 3191.9995 3209.4572 3220.0741 3232.9208 3264.1411 3796.3719</array>
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