<?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-EXP-12-46</scalar>
</parameter>
<parameter dictRef="cc:jobname">
<scalar dataType="xsd:string">YUMCAO</scalar>
</parameter>
<parameter dictRef="cc:title">
<scalar dataType="xsd:string">Title Card Required</scalar>
</parameter>
<parameter dictRef="cc:version">
<scalar dataType="xsd:string">ES64L-G16RevC.01</scalar>
</parameter>
<parameter dictRef="cc:run.date">
<scalar dataType="xsd:string">29-Apr-2025</scalar>
</parameter>
<parameter dictRef="cc:program">
<scalar dataType="xsd:string">Gaussian 16</scalar>
</parameter>
<parameter dictRef="cc:program.date">
<scalar dataType="xsd:string">3-Jul-2019</scalar>
</parameter>
<parameter dictRef="cc:version">
<scalar dataType="xsd:string">ES64L-G16RevC.01</scalar>
</parameter>
</parameterList>
</module>
<module dictRef="cc:initialization" id="initialization">
<parameterList>
<parameter dictRef="cc:nactiveatoms">
<scalar dataType="xsd:integer">66</scalar>
</parameter>
<parameter dictRef="cc:natoms">
<scalar dataType="xsd:integer">66</scalar>
</parameter>
<parameter dictRef="cc:betae">
<scalar dataType="xsd:integer">140</scalar>
</parameter>
<parameter dictRef="cc:alphae">
<scalar dataType="xsd:integer">140</scalar>
</parameter>
<parameter dictRef="cc:basiscount">
<scalar dataType="xsd:integer">699</scalar>
</parameter>
<parameter dictRef="cc:diffuse">
<scalar dataType="xsd:string">(5D, 7F)</scalar>
</parameter>
<parameter dictRef="cc:basis">
<scalar dataType="xsd:string">def2SVP</scalar>
</parameter>
<parameter dictRef="cc:method">
<scalar dataType="xsd:string">RB3LYP</scalar>
</parameter>
<parameter dictRef="cc:basis">
<scalar dataType="xsd:string">def2SVP</scalar>
</parameter>
<parameter dictRef="g:operation">
<scalar dataType="xsd:string">FTS</scalar>
</parameter>
<parameter dictRef="g:keyword">
<scalar dataType="xsd:string">#</scalar>
</parameter>
<parameter dictRef="g:keyword">
<scalar dataType="xsd:string">opt=(ts,modredundant,noeigen,gdiis,maxstep=10,recalc=30)</scalar>
</parameter>
<parameter dictRef="g:keyword">
<scalar dataType="xsd:string">freq</scalar>
</parameter>
<parameter dictRef="g:keyword">
<scalar dataType="xsd:string">b3lyp</scalar>
</parameter>
<parameter dictRef="g:keyword">
<scalar dataType="xsd:string">def2svp</scalar>
</parameter>
<parameter dictRef="g:keyword">
<scalar dataType="xsd:string">em=gd3bj</scalar>
</parameter>
</parameterList>
<molecule cmlx:templateRef="mol" formalCharge="0" id="zmat" spinMultiplicity="1">
<atomArray>
<atom elementType="N" id="a1" x3="1.99722" y3="-1.37004" z3="-0.27426"/>
<atom elementType="N" id="a2" x3="-0.60077" y3="-1.06299" z3="-1.52177"/>
<atom elementType="N" id="a3" x3="-0.53219" y3="1.77754" z3="-0.96868"/>
<atom elementType="N" id="a4" x3="2.10274" y3="1.48249" z3="0.22019"/>
<atom elementType="C" id="a5" x3="3.23772" y3="-1.30724" z3="0.31544"/>
<atom elementType="C" id="a6" x3="3.78179" y3="-2.64404" z3="0.42704"/>
<atom elementType="C" id="a7" x3="2.85844" y3="-3.49799" z3="-0.1034"/>
<atom elementType="C" id="a8" x3="1.74295" y3="-2.69235" z3="-0.55298"/>
<atom elementType="C" id="a9" x3="0.60266" y3="-3.17888" z3="-1.18522"/>
<atom elementType="C" id="a10" x3="-0.47314" y3="-2.42592" z3="-1.64833"/>
<atom elementType="C" id="a11" x3="-1.6284" y3="-2.95269" z3="-2.34367"/>
<atom elementType="C" id="a12" x3="-2.43558" y3="-1.8936" z3="-2.63989"/>
<atom elementType="C" id="a13" x3="-1.78859" y3="-0.70766" z3="-2.12103"/>
<atom elementType="C" id="a14" x3="-2.31278" y3="0.58029" z3="-2.17236"/>
<atom elementType="C" id="a15" x3="-1.74386" y3="1.72517" z3="-1.6214"/>
<atom elementType="C" id="a16" x3="-2.34311" y3="3.04183" z3="-1.61938"/>
<atom elementType="C" id="a17" x3="-1.47697" y3="3.87682" z3="-0.97101"/>
<atom elementType="C" id="a18" x3="-0.33425" y3="3.08144" z3="-0.57671"/>
<atom elementType="C" id="a19" x3="0.79941" y3="3.56301" z3="0.07569"/>
<atom elementType="C" id="a20" x3="1.92801" y3="2.82903" z3="0.43335"/>
<atom elementType="C" id="a21" x3="3.09741" y3="3.36175" z3="1.10103"/>
<atom elementType="C" id="a22" x3="3.96639" y3="2.32287" z3="1.27589"/>
<atom elementType="C" id="a23" x3="3.33331" y3="1.14252" z3="0.72626"/>
<atom elementType="C" id="a24" x3="3.86311" y3="-0.14496" z3="0.75685"/>
<atom elementType="H" id="a25" x3="4.75102" y3="-2.88236" z3="0.86195"/>
<atom elementType="H" id="a26" x3="2.91479" y3="-4.58129" z3="-0.19603"/>
<atom elementType="H" id="a27" x3="0.55256" y3="-4.25715" z3="-1.34684"/>
<atom elementType="H" id="a28" x3="-1.79064" y3="-4.00652" z3="-2.56231"/>
<atom elementType="H" id="a29" x3="-3.39962" y3="-1.89881" z3="-3.14482"/>
<atom elementType="H" id="a30" x3="-3.28619" y3="0.69589" z3="-2.65047"/>
<atom elementType="H" id="a31" x3="-3.30793" y3="3.28052" z3="-2.06344"/>
<atom elementType="H" id="a32" x3="-1.58482" y3="4.9428" z3="-0.77756"/>
<atom elementType="H" id="a33" x3="0.80904" y3="4.62697" z3="0.31971"/>
<atom elementType="H" id="a34" x3="3.22379" y3="4.40381" z3="1.39004"/>
<atom elementType="H" id="a35" x3="4.95107" y3="2.33738" z3="1.74016"/>
<atom elementType="H" id="a36" x3="4.85389" y3="-0.25846" z3="1.20061"/>
<atom elementType="Ir" id="a37" x3="0.75832" y3="0.20948" z3="-0.6626"/>
<atom elementType="C" id="a38" x3="1.63007" y3="0.55809" z3="-2.48483"/>
<atom elementType="H" id="a39" x3="2.61642" y3="0.07212" z3="-2.5086"/>
<atom elementType="H" id="a40" x3="0.99239" y3="0.1477" z3="-3.28111"/>
<atom elementType="H" id="a41" x3="1.74663" y3="1.64297" z3="-2.62281"/>
<atom elementType="C" id="a42" x3="-2.28389" y3="-0.35515" z3="1.16147"/>
<atom elementType="C" id="a43" x3="-1.00003" y3="-0.71472" z3="1.77934"/>
<atom elementType="C" id="a44" x3="-0.59777" y3="-2.04269" z3="2.03623"/>
<atom elementType="C" id="a45" x3="-0.14539" y3="0.33409" z3="2.18612"/>
<atom elementType="C" id="a46" x3="0.60964" y3="-2.30311" z3="2.67778"/>
<atom elementType="H" id="a47" x3="-1.22611" y3="-2.87038" z3="1.70504"/>
<atom elementType="C" id="a48" x3="1.05012" y3="0.06331" z3="2.85791"/>
<atom elementType="H" id="a49" x3="-0.44462" y3="1.36862" z3="2.00675"/>
<atom elementType="C" id="a50" x3="1.43613" y3="-1.25424" z3="3.09823"/>
<atom elementType="H" id="a51" x3="0.91912" y3="-3.33769" z3="2.84127"/>
<atom elementType="H" id="a52" x3="1.69241" y3="0.89076" z3="3.16447"/>
<atom elementType="H" id="a53" x3="2.38553" y3="-1.46765" z3="3.59277"/>
<atom elementType="C" id="a54" x3="-3.12432" y3="-1.33804" z3="0.65137"/>
<atom elementType="O" id="a55" x3="-3.44549" y3="-2.45436" z3="0.55898"/>
<atom elementType="O" id="a56" x3="-4.58001" y3="-0.06444" z3="0.48512"/>
<atom elementType="C" id="a57" x3="-4.23679" y3="0.38762" z3="1.63192"/>
<atom elementType="H" id="a58" x3="-2.29235" y3="0.59198" z3="0.63699"/>
<atom elementType="C" id="a59" x3="-4.60662" y3="-0.35688" z3="2.89809"/>
<atom elementType="H" id="a60" x3="-3.93062" y3="-0.11074" z3="3.72921"/>
<atom elementType="H" id="a61" x3="-5.62847" y3="-0.0467" z3="3.18345"/>
<atom elementType="H" id="a62" x3="-4.62119" y3="-1.44298" z3="2.73742"/>
<atom elementType="C" id="a63" x3="-4.03941" y3="1.87912" z3="1.78907"/>
<atom elementType="H" id="a64" x3="-5.02224" y3="2.33089" z3="2.01391"/>
<atom elementType="H" id="a65" x3="-3.36109" y3="2.11902" z3="2.6208"/>
<atom elementType="H" id="a66" x3="-3.66595" y3="2.32016" z3="0.85503"/>
</atomArray>
<bondArray/>
<formula concise="C32H27IrN4O2"/>
<property dictRef="cml:molmass">
<scalar units="unit:dalton">664.5850000000003</scalar>
</property>
<list cmlx:templateRef="charge">
<list>
<scalar dataType="xsd:integer" dictRef="g:charge">0</scalar>
<scalar dataType="xsd:integer" dictRef="g:mult">1</scalar>
</list>
</list>
<formula convention="iupac:inchi" inline="InChI=1/32C.Ir.4N.2O.27H">
<scalar dataType="xsd:integer" id="auxInfo">AuxInfo=1/0/N:5;6;7;8;9;10;11;12;13;14;15;16;17;18;19;20;21;22;23;24;38;42;43;44;45;46;48;50;54;57;59;63;37;1;2;3;4;55;56;25;26;27;28;29;30;31;32;33;34;35;36;39;40;41;47;49;51;52;53;58;60;61;62;64;65;66/rA:66nN0N0N0N0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0H0H0H0H0H0H0H0H0H0H0H0H0IrC0H0H0H0C0C0C0C0C0H0C0H0C0H0H0H0C0O0O0C0H0C0H0H0H0C0H0H0H0/rB:;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;/rC:1.9972,-1.37,-.2743;-.6008,-1.063,-1.5218;-.5322,1.7775,-.9687;2.1027,1.4825,.2202;3.2377,-1.3072,.3154;3.7818,-2.644,.427;2.8584,-3.498,-.1034;1.7429,-2.6923,-.553;.6027,-3.1789,-1.1852;-.4731,-2.4259,-1.6483;-1.6284,-2.9527,-2.3437;-2.4356,-1.8936,-2.6399;-1.7886,-.7077,-2.121;-2.3128,.5803,-2.1724;-1.7439,1.7252,-1.6214;-2.3431,3.0418,-1.6194;-1.477,3.8768,-.971;-.3342,3.0814,-.5767;.7994,3.563,.0757;1.928,2.829,.4334;3.0974,3.3617,1.101;3.9664,2.3229,1.2759;3.3333,1.1425,.7263;3.8631,-.145,.7569;4.751,-2.8824,.8619;2.9148,-4.5813,-.196;.5526,-4.2572,-1.3468;-1.7906,-4.0065,-2.5623;-3.3996,-1.8988,-3.1448;-3.2862,.6959,-2.6505;-3.3079,3.2805,-2.0634;-1.5848,4.9428,-.7776;.809,4.627,.3197;3.2238,4.4038,1.39;4.9511,2.3374,1.7402;4.8539,-.2585,1.2006;.7583,.2095,-.6626;1.6301,.5581,-2.4848;2.6164,.0721,-2.5086;.9924,.1477,-3.2811;1.7466,1.643,-2.6228;-2.2839,-.3552,1.1615;-1,-.7147,1.7793;-.5978,-2.0427,2.0362;-.1454,.3341,2.1861;.6096,-2.3031,2.6778;-1.2261,-2.8704,1.705;1.0501,.0633,2.8579;-.4446,1.3686,2.0067;1.4361,-1.2542,3.0982;.9191,-3.3377,2.8413;1.6924,.8908,3.1645;2.3855,-1.4676,3.5928;-3.1243,-1.338,.6514;-3.4455,-2.4544,.559;-4.58,-.0644,.4851;-4.2368,.3876,1.6319;-2.2923,.592,.637;-4.6066,-.3569,2.8981;-3.9306,-.1107,3.7292;-5.6285,-.0467,3.1835;-4.6212,-1.443,2.7374;-4.0394,1.8791,1.7891;-5.0222,2.3309,2.0139;-3.3611,2.119,2.6208;-3.666,2.3202,.855;</scalar>
</formula>
</molecule>
<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="1">Output=1_cycloaddtion_ts_R.log</array>
</module>
<module cmlx:templateRef="l1" dictRef="cc:userDefinedModule">
<module cmlx:templateRef="l1.end">
<array dataType="xsd:string" dictRef="g:kk" size="1">mem=64GB</array>
<array dataType="xsd:string" dictRef="g:kk" size="1">nprocshared=32</array>
<scalar cmlx:templateRef="title" dataType="xsd:string" dictRef="cc:title"># opt=(ts,modredundant,noeigen,gdiis,maxstep=10,recalc=30) freq b3lyp</scalar>
<list cmlx:templateRef="control">
<scalar dataType="xsd:string" dictRef="g:control">1/5=1,8=10,10=4,11=1,18=120,19=11,26=3,38=1,71=30/1,3</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=43,7=101,11=2,25=1,30=1,71=2,74=-5,124=41,140=1/1,2,3</scalar>
<scalar dataType="xsd:string" dictRef="g:control">4//1</scalar>
<scalar dataType="xsd:string" dictRef="g:control">5/5=2,38=5/2</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=1,25=1/1,2,3,16</scalar>
<scalar dataType="xsd:string" dictRef="g:control">1/5=1,8=10,10=4,11=1,18=20,19=11,26=3,71=30/3(3)</scalar>
<scalar dataType="xsd:string" dictRef="g:control">2/9=110/2</scalar>
<scalar dataType="xsd:string" dictRef="g:control">7/9=1,25=1,44=-1/16</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=43,7=101,11=2,25=1,30=1,71=2,74=-5,124=41,140=1/1,2,3</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=2,38=5/2</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">7/10=1,25=1/1,2,3,16</scalar>
<scalar dataType="xsd:string" dictRef="g:control">1/5=1,8=10,11=1,18=20,19=11,26=3,71=30/3(-8)</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">7/9=1,25=1,44=-1/16</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">Title Card Required</scalar>
</module>
<list cmlx:templateRef="rest">
<scalar dataType="xsd:string" dictRef="x:l101"/>
<scalar dataType="xsd:string" dictRef="x:l101">Add virtual bond connecting atoms O56        and C54        Dist= 3.67D+00.</scalar>
<scalar dataType="xsd:string" dictRef="x:l101">Add virtual bond connecting atoms H58        and N3         Dist= 5.03D+00.</scalar>
<scalar dataType="xsd:string" dictRef="x:l101">Add virtual bond connecting atoms H58        and C15        Dist= 4.89D+00.</scalar>
<scalar dataType="xsd:string" dictRef="x:l101">The following ModRedundant input section has been read:</scalar>
<scalar dataType="xsd:string" dictRef="x:l101">B      54      56 B</scalar>
<scalar dataType="xsd:string" dictRef="x:l101">B      42      57 B</scalar>
<scalar dataType="xsd:string" dictRef="x:l101"/>
<scalar dataType="xsd:string" dictRef="x:l101"/>
</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="76">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 R75 R76</array>
<array dataType="xsd:integer" dictRef="g:atom1" size="76">1 1 1 2 2 2 3 3 3 3 4 4 4 5 5 6 6 7 7 8 9 9 10 11 11 12 12 13 14 14 15 15 16 16 17 17 18 19 19 20 21 21 22 22 23 24 37 38 38 38 42 42 42 42 43 43 44 44 45 45 46 46 48 48 50 54 54 56 57 57 59 59 59 63 63 63</array>
<array dataType="xsd:integer" dictRef="g:atom2" size="76">5 8 37 10 13 37 15 18 37 58 20 23 37 6 24 7 25 8 26 9 10 27 11 12 28 13 29 14 15 30 16 58 17 31 18 32 19 20 33 21 22 34 23 35 24 36 38 39 40 41 43 54 57 58 44 45 46 47 48 49 50 51 50 52 53 55 56 57 59 63 60 61 62 64 65 66</array>
<array dataType="xsd:double" dictRef="cc:distance" size="76">1.375 1.3751 2.0446 1.3747 1.3771 2.0505 1.3773 1.3758 2.0538 2.6612 1.3745 1.3733 2.0512 1.4476 1.3917 1.365 1.0887 1.4476 1.0887 1.3917 1.3924 1.0915 1.4476 1.3642 1.0884 1.4472 1.0883 1.3915 1.3921 1.0906 1.4466 2.5856 1.3667 1.0886 1.447 1.0887 1.3938 1.393 1.0916 1.4481 1.3656 1.0888 1.4478 1.0887 1.3926 1.0915 2.0499 1.0998 1.0996 1.0998 1.4695 1.3902 2.1417 1.0827 1.4111 1.4128 1.3918 1.0907 1.3978 1.0918 1.4 1.0922 1.3938 1.0914 1.0915 1.1653 1.9413 1.2796 1.5147 1.5127 1.0992 1.1054 1.098 1.1048 1.0997 1.0984</array>
<array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="76">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|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>
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<list cmlx:templateRef="angle">
<array dataType="xsd:string" dictRef="g:symbol" size="138">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</array>
<array dataType="xsd:integer" dictRef="g:atom1" size="138">5 5 8 10 10 13 15 15 18 18 37 20 20 23 1 1 6 5 5 7 6 6 8 1 1 7 8 8 10 2 2 9 10 10 12 11 11 13 2 2 12 13 13 15 3 3 14 14 16 15 15 17 16 16 18 3 3 17 18 18 20 4 4 19 20 20 22 21 21 23 4 4 22 5 5 23 1 1 1 2 2 3 3 4 37 37 37 39 39 40 43 43 43 54 54 57 42 42 44 43 43 46 43 43 48 44 44 50 45 45 50 46 46 48 42 42 55 54 42 42 42 56 56 59 3 15 57 57 57 60 60 61 57 57 57 64 64 65</array>
<array dataType="xsd:integer" dictRef="g:atom2" size="138">1 1 1 2 2 2 3 3 3 3 3 4 4 4 5 5 5 6 6 6 7 7 7 8 8 8 9 9 9 10 10 10 11 11 11 12 12 12 13 13 13 14 14 14 15 15 15 15 15 16 16 16 17 17 17 18 18 18 19 19 19 20 20 20 21 21 21 22 22 22 23 23 23 24 24 24 37 37 37 37 37 37 37 37 38 38 38 38 38 38 42 42 42 42 42 42 43 43 43 44 44 44 45 45 45 46 46 46 48 48 48 50 50 50 54 54 54 56 57 57 57 57 57 57 58 58 59 59 59 59 59 59 63 63 63 63 63 63</array>
<array dataType="xsd:integer" dictRef="g:atom3" size="138">8 37 37 13 37 37 18 37 37 58 58 23 37 37 6 24 24 7 25 25 8 26 26 7 9 9 10 27 27 9 11 11 12 28 28 13 29 29 12 14 14 15 30 30 14 16 16 58 58 17 31 31 18 32 32 17 19 19 20 33 33 19 21 21 22 34 34 23 35 35 22 24 24 23 36 36 2 4 38 3 38 4 38 38 39 40 41 40 41 41 54 57 58 57 58 58 44 45 45 46 47 47 48 49 49 50 51 51 50 52 52 48 53 53 55 56 56 57 56 59 63 59 63 63 42 42 60 61 62 61 62 62 64 65 66 65 66 66</array>
<array dataType="xsd:double" dictRef="cc:angle" size="138">107.3183 126.3592 126.3225 107.2083 126.319 126.4369 107.3147 126.4699 126.208 110.2104 89.1716 107.4145 126.2596 126.3183 109.2676 125.4219 125.302 107.0695 124.5785 128.3518 107.0839 128.3569 124.5579 109.2534 125.4357 125.3046 126.521 116.7607 116.7125 125.2564 109.3229 125.42 107.0974 124.5942 128.3061 107.0876 128.4027 124.4934 109.281 125.4393 125.2309 126.346 116.7756 116.8133 125.3357 109.2178 125.4354 84.1779 108.0476 107.1103 124.4813 128.4084 107.0929 128.2949 124.6094 109.2491 125.2964 125.4453 126.6629 116.6513 116.6807 125.4074 109.223 125.3668 107.0397 124.6258 128.3341 107.0584 128.3141 124.6264 109.2623 125.3012 125.384 126.4555 116.7429 116.7696 90.1031 90.0316 92.4376 89.7064 90.8558 90.1228 90.2804 89.9027 108.9931 109.49 108.9261 109.8484 109.761 109.8016 120.6283 142.1081 115.1239 76.9705 115.8503 78.2228 123.7708 117.9011 118.2789 120.4823 119.6464 119.8508 120.7949 119.3636 119.7973 120.6889 119.4746 119.8313 120.1884 119.4359 120.3486 119.5335 120.2029 120.2523 150.8138 91.1975 114.521 87.3574 85.7095 103.6385 104.2285 120.6677 118.4534 115.4459 132.5973 143.5973 111.8283 107.6728 111.5375 108.0888 109.8948 107.6425 107.9534 111.9711 110.606 107.7933 108.14 110.2326</array>
<array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="138">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|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="4">A139 A140 A141 A142</array>
<array dataType="xsd:integer" dictRef="g:atom1" size="4">1 2 1 2</array>
<array dataType="xsd:integer" dictRef="g:atom2" size="4">37 37 37 37</array>
<array dataType="xsd:integer" dictRef="g:atom3" size="4">3 4 3 4</array>
<array dataType="xsd:integer" dictRef="g:atom4" size="4">2 1 2 1</array>
<array dataType="xsd:integer" dictRef="g:atom5" size="4">-1 -1 -2 -2</array>
<scalar dataType="xsd:double" dictRef="g:lll">179.8095</scalar>
<array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="4">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">180.1348</scalar>
</list>
<list cmlx:templateRef="lll">
<scalar dataType="xsd:double" dictRef="g:lll">177.2846</scalar>
</list>
<list cmlx:templateRef="lll">
<scalar dataType="xsd:double" dictRef="g:lll">180.7649</scalar>
</list>
<list cmlx:templateRef="dihed">
<array dataType="xsd:string" dictRef="g:symbol" size="235">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</array>
<array dataType="xsd:integer" dictRef="g:atom1" size="235">8 8 37 37 5 5 37 37 5 5 5 8 8 8 13 13 37 37 10 10 37 37 10 10 10 13 13 13 18 18 37 37 15 15 37 37 58 58 15 15 15 18 18 18 58 58 58 18 37 23 23 37 37 20 20 37 37 20 20 20 23 23 23 1 1 24 24 1 1 6 6 5 5 25 25 6 6 26 26 1 1 7 7 8 8 27 27 2 2 9 9 10 10 28 28 11 11 29 29 2 2 12 12 13 13 13 30 30 30 3 3 14 14 58 58 14 16 15 15 31 31 16 16 32 32 3 3 17 17 18 18 33 33 4 4 19 19 20 20 34 34 21 21 35 35 4 4 22 22 1 1 1 2 2 2 3 3 3 4 4 4 54 54 57 57 58 58 43 43 57 57 58 58 43 43 43 54 54 54 58 58 58 43 43 54 54 57 57 42 42 45 45 42 42 44 44 43 43 47 47 43 43 49 49 44 44 51 51 45 45 52 52 42 55 54 54 54 42 42 42 56 56 56 63 63 63 42 42 42 56 56 56 59 59 59</array>
<array dataType="xsd:integer" dictRef="g:atom2" size="235">1 1 1 1 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 2 2 2 2 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 4 4 4 4 5 5 5 5 5 5 5 5 6 6 6 6 7 7 7 7 8 8 8 8 9 9 9 9 10 10 10 10 11 11 11 11 12 12 12 12 13 13 13 13 14 14 14 14 14 14 15 15 15 15 15 15 15 15 16 16 16 16 17 17 17 17 18 18 18 18 19 19 19 19 20 20 20 20 21 21 21 21 22 22 22 22 23 23 23 23 37 37 37 37 37 37 37 37 37 37 37 37 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 44 44 44 44 45 45 45 45 46 46 46 46 48 48 48 48 54 54 56 56 56 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57</array>
<array dataType="xsd:integer" dictRef="g:atom3" size="235">5 5 5 5 8 8 8 8 37 37 37 37 37 37 10 10 10 10 13 13 13 13 37 37 37 37 37 37 15 15 15 15 18 18 18 18 18 18 37 37 37 37 37 37 37 37 37 58 58 20 20 20 20 23 23 23 23 37 37 37 37 37 37 6 6 6 6 24 24 24 24 7 7 7 7 8 8 8 8 9 9 9 9 10 10 10 10 11 11 11 11 12 12 12 12 13 13 13 13 14 14 14 14 15 15 15 15 15 15 16 16 16 16 16 16 58 58 17 17 17 17 18 18 18 18 19 19 19 19 20 20 20 20 21 21 21 21 22 22 22 22 23 23 23 23 24 24 24 24 38 38 38 38 38 38 38 38 38 38 38 38 43 43 43 43 43 43 54 54 54 54 54 54 57 57 57 57 57 57 57 57 57 58 58 58 58 58 58 44 44 44 44 45 45 45 45 46 46 46 46 48 48 48 48 50 50 50 50 50 50 50 50 56 56 57 57 57 59 59 59 59 59 59 59 59 59 63 63 63 63 63 63 63 63 63</array>
<array dataType="xsd:integer" dictRef="g:atom4" size="235">6 24 6 24 7 9 7 9 2 4 38 2 4 38 9 11 9 11 12 14 12 14 1 3 38 1 3 38 14 16 14 16 17 19 17 19 17 19 2 4 38 2 4 38 2 4 38 42 42 19 21 19 21 22 24 22 24 1 3 38 1 3 38 7 25 7 25 23 36 23 36 8 26 8 26 1 9 1 9 10 27 10 27 2 11 2 11 12 28 12 28 13 29 13 29 2 14 2 14 15 30 15 30 3 16 58 3 16 58 17 31 17 31 17 31 42 42 18 32 18 32 3 19 3 19 20 33 20 33 4 21 4 21 22 34 22 34 23 35 23 35 4 24 4 24 5 36 5 36 39 40 41 39 40 41 39 40 41 39 40 41 44 45 44 45 44 45 55 56 55 56 55 56 56 59 63 56 59 63 56 59 63 3 15 3 15 3 15 46 47 46 47 48 49 48 49 50 51 50 51 50 52 50 52 48 53 48 53 46 53 46 53 57 57 42 59 63 60 61 62 60 61 62 60 61 62 64 65 66 64 65 66 64 65 66</array>
<array dataType="xsd:double" dictRef="cc:dihed" size="235">-0.6577 -179.6438 179.2595 0.2734 0.8762 -178.2495 -179.041 1.8332 178.3388 -2.4261 87.4778 -1.7593 177.4758 -92.6203 179.2325 -0.4833 1.301 -178.4148 0.2336 177.7967 178.1619 -4.275 0.2951 -176.9895 92.7345 -177.2485 5.4669 -84.8091 -179.8999 -1.0586 1.0451 179.8864 1.2805 -177.6585 -179.6614 1.3997 -75.1591 105.9019 -3.962 176.7957 86.8924 177.1562 -2.0862 -91.9895 62.4722 -116.7702 153.3265 -131.3166 -2.6918 -179.3821 0.0414 -0.3385 179.0849 -0.3069 177.1716 -179.3498 -1.8713 -175.6919 1.5904 91.8706 3.1755 -179.5422 -89.262 0.1788 -179.7044 179.1664 -0.7167 2.4726 -179.6629 -176.3546 1.5098 0.3504 179.9399 -179.7723 -0.1828 -0.7722 178.355 179.6187 -1.2541 0.1886 179.2741 -178.8 0.2854 -1.8731 177.7978 179.0411 -1.288 0.5619 -178.9241 -179.1534 1.3606 -0.4003 -178.9665 179.0605 0.4944 0.1167 -177.4527 178.7534 1.184 -0.71 -177.666 176.4736 -0.4823 2.4399 -176.2172 -68.179 179.3948 0.7377 108.7759 0.4242 -179.5671 179.264 -0.7272 83.4719 -96.5193 41.399 166.8301 0.3553 179.7608 -179.6539 -0.2484 -1.0261 177.9109 179.5408 -1.5222 0.6908 179.8379 -178.0795 1.0675 -1.2652 179.4024 179.588 0.2556 0.2524 -179.9526 179.6761 -0.5289 -0.4252 179.9555 179.7898 0.1705 0.4681 -177.0078 -179.8949 2.6292 -1.6075 -179.4714 175.4726 -2.3914 -18.7644 101.416 -138.5014 -108.9041 11.2764 131.3589 161.3854 -78.4341 41.6484 71.2631 -168.5564 -48.4739 -7.3513 175.2491 102.1707 -75.2289 -154.2079 28.3925 15.138 167.8465 -128.409 24.2995 161.7675 -45.5239 -162.3994 -41.8601 79.3141 -38.7513 81.7881 -157.0377 81.6077 -157.853 -36.6788 41.0613 84.3861 -107.4204 -64.0956 -176.509 -133.1842 -177.2096 4.441 0.1809 -178.1686 175.8386 -1.7388 -1.7069 -179.2844 1.0106 -178.1536 179.3567 0.1925 2.0543 -179.8328 179.6213 -2.2658 -0.6861 -179.4609 178.4752 -0.2997 -0.8399 177.9344 -178.9354 -0.1612 -42.2019 123.5713 25.9229 -77.3988 129.7911 63.3462 -178.056 -60.1701 156.4635 -84.9386 32.9473 -49.9537 68.6442 -173.4699 178.8257 -62.6779 60.6956 85.9812 -155.5223 -32.1488 -68.2172 50.2793 173.6528</array>
<array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="235">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|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="l301.basis" dictRef="g:primbasis">
<list cmlx:templateRef="symmadaptcart">
<array dataType="xsd:integer" dictRef="cc:adapted" size="1">742</array>
<array dataType="xsd:string" dictRef="cc:symm" size="1">A</array>
</list>
<list cmlx:templateRef="symmadapt">
<array dataType="xsd:integer" dictRef="cc:adapted" size="1">699</array>
<array dataType="xsd:string" dictRef="cc:symm" size="1">A</array>
</list>
<scalar dataType="xsd:integer" dictRef="g:primbasis">1204</scalar>
<scalar dataType="xsd:integer" dictRef="cc:cartesianbasis">742</scalar>
<scalar dataType="xsd:double" dictRef="cc:nucrepener">5020.1992819869</scalar>
<scalar dataType="xsd:integer" dictRef="cc:uniqatoms">66</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">T</scalar>
</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">saddle point</scalar>
<array cmlx:templateRef="junk" dataType="xsd:string" dictRef="x:junk1" size="9">Step number 47 out of a maximum of 396</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="192">-0.01806 -0.00002 0.00032 0.00034 0.00220 0.00308 0.00520 0.00563 0.00719 0.00736 0.00886 0.00963 0.00981 0.01015 0.01036 0.01149 0.01198 0.01254 0.01260 0.01391 0.01426 0.01435 0.01462 0.01508 0.01541 0.01556 0.01588 0.01624 0.01639 0.01731 0.01763 0.01843 0.01859 0.01949 0.01951 0.02025 0.02049 0.02098 0.02127 0.02161 0.02236 0.02315 0.02404 0.02459 0.02552 0.02655 0.02728 0.02731 0.02834 0.02924 0.02943 0.03005 0.03084 0.03667 0.03674 0.03745 0.03963 0.04055 0.04204 0.04248 0.04285 0.04314 0.04370 0.04396 0.04448 0.04720 0.05082 0.05382 0.08009 0.08667 0.09314 0.09346 0.09357 0.09428 0.09640 0.09790 0.10183 0.10205 0.10214 0.10243 0.10705 0.10786 0.11009 0.11184 0.11355 0.11408 0.11645 0.11703 0.11876 0.12006 0.12041 0.12073 0.12094 0.12134 0.12274 0.12613 0.12903 0.13283 0.13743 0.14183 0.14329 0.14409 0.15248 0.15822 0.16513 0.16607 0.16683 0.16690 0.17494 0.18169 0.19262 0.19315 0.19480 0.19798 0.20141 0.20536 0.20847 0.21091 0.21242 0.21489 0.21719 0.21860 0.21998 0.26066 0.26477 0.27148 0.27198 0.28379 0.30105 0.30155 0.31108 0.31496 0.31629 0.32061 0.32472 0.32910 0.33479 0.33783 0.33860 0.33874 0.34328 0.34338 0.34422 0.34473 0.34576 0.34621 0.35020 0.35312 0.35477 0.35748 0.35836 0.35955 0.36022 0.36106 0.36165 0.36178 0.36223 0.36381 0.36534 0.36680 0.36808 0.36863 0.36946 0.36963 0.36979 0.37077 0.37578 0.37859 0.38465 0.39510 0.40216 0.40814 0.41926 0.43289 0.43329 0.44264 0.44410 0.44660 0.45809 0.46213 0.46387 0.47049 0.47194 0.47396 0.47500 0.51920 0.52407 0.54136 0.54339 0.54640 0.68469 0.90229</array>
<module cmlx:templateRef="negativeeigenvaluelist">
<scalar cmlx:templateRef="grot" dataType="xsd:string" dictRef="x:stuffff">R67       R53      A115      D216       R68</scalar>
<scalar cmlx:templateRef="grot" dataType="xsd:string" dictRef="x:stuffff">1                    0.53983   0.51806   0.17950   0.16643  -0.14921</scalar>
<scalar cmlx:templateRef="grot" dataType="xsd:string" dictRef="x:stuffff">A92      D173      D177      D213      D223</scalar>
</module>
<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">0.00032155 0.00000010</array>
<array dataType="xsd:double" dictRef="g:rmsint" size="2">0.00000002 0.00000000</array>
</list>
</module>
<module cmlx:templateRef="l103.deltas">
<list cmlx:templateRef="delta">
<array dataType="xsd:string" dictRef="cc:variable" size="453">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 R75 R76 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 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</array>
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<module cmlx:templateRef="preddelta">
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a61" x3="-5.628472" y3="-0.046695" z3="3.183445">
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a62" x3="-4.621193" y3="-1.442983" z3="2.737421">
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a63" x3="-4.039406" y3="1.87912" z3="1.789071">
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</property>
</atom>
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a65" x3="-3.36109" y3="2.11902" z3="2.620797">
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a66" x3="-3.665949" y3="2.320159" z3="0.855031">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
</atomArray>
<bondArray/>
<formula concise="C32H27IrN4O2"/>
<property dictRef="cml:molmass">
<scalar units="unit:dalton">664.5850000000003</scalar>
</property>
<formula convention="iupac:inchi" inline="InChI=1/32C.Ir.4N.2O.27H">
<scalar dataType="xsd:integer" id="auxInfo">AuxInfo=1/0/N:5;6;7;8;9;10;11;12;13;14;15;16;17;18;19;20;21;22;23;24;38;42;43;44;45;46;48;50;54;57;59;63;37;1;2;3;4;55;56;25;26;27;28;29;30;31;32;33;34;35;36;39;40;41;47;49;51;52;53;58;60;61;62;64;65;66/rA:66nN0N0N0N0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0H0H0H0H0H0H0H0H0H0H0H0H0IrC0H0H0H0C0C0C0C0C0H0C0H0C0H0H0H0C0O0O0C0H0C0H0H0H0C0H0H0H0/rB:;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;/rC:1.9972,-1.37,-.2743;-.6008,-1.063,-1.5218;-.5322,1.7775,-.9687;2.1027,1.4825,.2202;3.2377,-1.3072,.3154;3.7818,-2.644,.427;2.8584,-3.498,-.1034;1.743,-2.6923,-.553;.6027,-3.1789,-1.1852;-.4731,-2.4259,-1.6483;-1.6284,-2.9527,-2.3437;-2.4356,-1.8936,-2.6399;-1.7886,-.7077,-2.121;-2.3128,.5803,-2.1724;-1.7439,1.7252,-1.6214;-2.3431,3.0418,-1.6194;-1.477,3.8768,-.971;-.3342,3.0814,-.5767;.7994,3.563,.0757;1.928,2.829,.4333;3.0974,3.3617,1.101;3.9664,2.3229,1.2759;3.3333,1.1425,.7263;3.8631,-.145,.7569;4.751,-2.8824,.862;2.9148,-4.5813,-.196;.5526,-4.2571,-1.3468;-1.7906,-4.0065,-2.5623;-3.3996,-1.8988,-3.1448;-3.2862,.6959,-2.6505;-3.3079,3.2805,-2.0634;-1.5848,4.9428,-.7776;.809,4.627,.3197;3.2238,4.4038,1.39;4.9511,2.3374,1.7402;4.8539,-.2585,1.2006;.7583,.2095,-.6626;1.6301,.5581,-2.4848;2.6164,.0721,-2.5086;.9924,.1477,-3.2811;1.7466,1.643,-2.6228;-2.2839,-.3551,1.1615;-1,-.7147,1.7793;-.5978,-2.0427,2.0362;-.1454,.3341,2.1861;.6096,-2.3031,2.6778;-1.2261,-2.8704,1.705;1.0501,.0633,2.8579;-.4446,1.3686,2.0067;1.4361,-1.2542,3.0982;.9191,-3.3377,2.8413;1.6924,.8908,3.1645;2.3855,-1.4677,3.5928;-3.1243,-1.338,.6514;-3.4455,-2.4544,.559;-4.58,-.0644,.4851;-4.2368,.3876,1.6319;-2.2923,.592,.637;-4.6066,-.3569,2.8981;-3.9306,-.1107,3.7292;-5.6285,-.0467,3.1834;-4.6212,-1.443,2.7374;-4.0394,1.8791,1.7891;-5.0222,2.3309,2.0139;-3.3611,2.119,2.6208;-3.6659,2.3202,.855;</scalar>
</formula>
</molecule>
</module>
<module cmlx:templateRef="l202.rotconst">
<array cmlx:templateRef="rotconst" dataType="xsd:double" dictRef="cc:rotconst" size="3">0.1380617 0.1040611 0.0895874</array>
</module>
</module>
<module cmlx:templateRef="l601.popanal" dictRef="cc:userDefinedModule">
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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">
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<array dataType="xsd:string" dictRef="cc:elementType" size="66">N N N N C C C C C C C C C C C C C C C C C C C C H H H H H H H H H H H H Ir C H H H C C C C C H C H C H H H C O O C H C H H H C H H H</array>
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</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">0.9965 1.2560 2.3481</array>
<scalar dataType="xsd:double" dictRef="x:dipole">2.8433</scalar>
<array dataType="xsd:double" dictRef="cc:quadrupole" size="3">-234.8823 -223.2686 -240.3784</array>
<array dataType="xsd:double" dictRef="cc:quadrupole" size="3">-10.4243 5.0974 5.2125</array>
<array dataType="xsd:double" dictRef="cc:quadrupole" size="6">-2.0392 9.5745 -7.5353 -10.4243 5.0974 5.2125</array>
<array dataType="xsd:double" dictRef="cc:octapole" size="10">128.5761 24.1164 -78.0423 36.9507 38.2008 26.0984 -11.5203 3.9386 -24.0164 -6.5959</array>
<array dataType="xsd:double" dictRef="cc:hexadecapole" size="15">-8866.3385 -5694.2725 -4196.9021 -144.7722 -29.3773 -32.1532 78.5166 -69.5653 -1.8967 -2476.0217 -1979.5173 -1715.5735 25.7734 51.7948 17.6738</array>
</list>
</module>
<module cmlx:templateRef="l202" dictRef="cc:userDefinedModule">
<module cmlx:templateRef="l202.orient">
<molecule cmlx:templateRef="atom" formalCharge="0" id="mol.l202.orient" spinMultiplicity="1">
<atomArray>
<atom elementType="N" id="a1" x3="2.247936" y3="-1.123448" z3="-0.180839">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="N" id="a2" x3="-0.364213" y3="-1.264775" z3="-1.42217">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="N" id="a3" x3="-0.712526" y3="1.584095" z3="-1.017705">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="N" id="a4" x3="1.920341" y3="1.731859" z3="0.195616">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a6" x3="4.206089" y3="-2.081983" z3="0.558619">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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</property>
</atom>
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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</property>
</atom>
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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</property>
</atom>
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a26" x3="3.643947" y3="-4.151571" z3="0.016161">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a27" x3="1.253109" y3="-4.239068" z3="-1.115867">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a28" x3="-1.116143" y3="-4.401004" z3="-2.29429">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a29" x3="-3.017654" y3="-2.584181" z3="-2.96646">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a30" x3="-3.25892" y3="0.029297" z3="-2.651432">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a31" x3="-3.655513" y3="2.609459" z3="-2.215577">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a32" x3="-2.218724" y3="4.565878" z3="-0.98838">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a33" x3="0.179406" y3="4.654756" z3="0.147281">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a34" x3="2.59278" y3="4.837428" z3="1.228342">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a35" x3="4.603641" y3="3.066156" z3="1.670348">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a36" x3="4.898333" y3="0.465775" z3="1.240752">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="Ir" id="a37" x3="0.787359" y3="0.23562" z3="-0.630862">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a38" x3="1.578583" y3="0.595928" z3="-2.487012">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a39" x3="2.364424" y3="-0.144704" z3="-2.695882">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a40" x3="0.78214" y3="0.515095" z3="-3.241289">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a41" x3="2.006808" y3="1.608826" z3="-2.505655">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a42" x3="-2.223461" y3="-0.347304" z3="1.2718">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a43" x3="-0.938058" y3="-0.723694" z3="1.827534">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a44" x3="-0.525513" y3="-2.067005" z3="2.001991">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a45" x3="-0.058505" y3="0.301201" z3="2.255797">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a46" x3="0.699018" y3="-2.357021" z3="2.594625">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a47" x3="-1.172929" y3="-2.868054" z3="1.647019">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a48" x3="1.154006" y3="-0.003186" z3="2.876912">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a49" x3="-0.358469" y3="1.344118" z3="2.133986">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a50" x3="1.541681" y3="-1.332731" z3="3.044369">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a51" x3="1.010484" y3="-3.398953" z3="2.69897">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a52" x3="1.808821" y3="0.807047" z3="3.202383">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a53" x3="2.504337" y3="-1.572941" z3="3.499478">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a54" x3="-3.138886" y3="-1.267672" z3="0.743206">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="O" id="a55" x3="-3.268742" y3="-2.449703" z3="0.635583">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="O" id="a56" x3="-4.372084" y3="-0.351096" z3="0.332472">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a57" x3="-4.621569" y3="0.274927" z3="1.435727">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a58" x3="-2.34062" y3="0.694169" z3="0.99128">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a59" x3="-5.024286" y3="-0.456515" z3="2.678496">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a60" x3="-4.6073" y3="0.019013" z3="3.577458">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a61" x3="-6.128444" y3="-0.399692" z3="2.759797">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a62" x3="-4.736806" y3="-1.514573" z3="2.643006">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a63" x3="-4.863987" y3="1.744494" z3="1.337646">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a64" x3="-5.895524" y3="1.903398" z3="0.968708">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a65" x3="-4.776507" y3="2.240905" z3="2.313913">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a66" x3="-4.18008" y3="2.200605" z3="0.607223">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
</atomArray>
<bondArray/>
<formula concise="C32H27IrN4O2"/>
<property dictRef="cml:molmass">
<scalar units="unit:dalton">664.5850000000003</scalar>
</property>
<formula convention="iupac:inchi" inline="InChI=1/32C.Ir.4N.2O.27H">
<scalar dataType="xsd:integer" id="auxInfo">AuxInfo=1/0/N:5;6;7;8;9;10;11;12;13;14;15;16;17;18;19;20;21;22;23;24;38;42;43;44;45;46;48;50;54;57;59;63;37;1;2;3;4;55;56;25;26;27;28;29;30;31;32;33;34;35;36;39;40;41;47;49;51;52;53;58;60;61;62;64;65;66/rA:66nN0N0N0N0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0H0H0H0H0H0H0H0H0H0H0H0H0IrC0H0H0H0C0C0C0C0C0H0C0H0C0H0H0H0C0O0O0C0H0C0H0H0H0C0H0H0H0/rB:;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;/rC:2.2479,-1.1234,-.1808;-.3642,-1.2648,-1.4222;-.7125,1.5841,-1.0177;1.9203,1.7319,.1956;3.4641,-.8492,.3993;4.2061,-2.082,.5586;3.4238,-3.0865,.0666;2.1981,-2.4784,-.4058;1.1412,-3.1592,-1.0031;-.0392,-2.5982,-1.481;-1.1089,-3.3245,-2.1337;-2.0619,-2.412,-2.4756;-1.5907,-1.118,-2.0287;-2.2859,.0787,-2.1609;-1.891,1.3233,-1.6761;-2.6763,2.5352,-1.7453;-1.9545,3.5185,-1.1256;-.7141,2.9189,-.6838;.3281,3.591,-.0476;1.5485,3.0473,.3463;2.6227,3.7761,.9874;3.6343,2.8856,1.2086;3.1856,1.6013,.7136;3.9033,.4102,.7954;5.2001,-2.1526,.9972;3.6439,-4.1516,.0162;1.2531,-4.2391,-1.1159;-1.1161,-4.401,-2.2943;-3.0177,-2.5842,-2.9665;-3.2589,.0293,-2.6514;-3.6555,2.6095,-2.2156;-2.2187,4.5659,-.9884;.1794,4.6548,.1473;2.5928,4.8374,1.2283;4.6036,3.0662,1.6703;4.8983,.4658,1.2408;.7874,.2356,-.6309;1.5786,.5959,-2.487;2.3644,-.1447,-2.6959;.7821,.5151,-3.2413;2.0068,1.6088,-2.5057;-2.2235,-.3473,1.2718;-.9381,-.7237,1.8275;-.5255,-2.067,2.002;-.0585,.3012,2.2558;.699,-2.357,2.5946;-1.1729,-2.8681,1.647;1.154,-.0032,2.8769;-.3585,1.3441,2.134;1.5417,-1.3327,3.0444;1.0105,-3.399,2.699;1.8088,.807,3.2024;2.5043,-1.5729,3.4995;-3.1389,-1.2677,.7432;-3.2687,-2.4497,.6356;-4.3721,-.3511,.3325;-4.6216,.2749,1.4357;-2.3406,.6942,.9913;-5.0243,-.4565,2.6785;-4.6073,.019,3.5775;-6.1284,-.3997,2.7598;-4.7368,-1.5146,2.643;-4.864,1.7445,1.3376;-5.8955,1.9034,.9687;-4.7765,2.2409,2.3139;-4.1801,2.2006,.6072;</scalar>
</formula>
</molecule>
</module>
<module cmlx:templateRef="l202.rotconst">
<array cmlx:templateRef="rotconst" dataType="xsd:double" dictRef="cc:rotconst" size="3">0.1418219 0.1012082 0.0862079</array>
</module>
</module>
<module cmlx:templateRef="l401"/>
<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">IDoAtm=11111111111111111111111111111111111111111111111111</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">IDoAtm=1111111111111111</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">Defaulting to unpruned grid for atomic number  77.</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">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">There are   201 degrees of freedom in the 1st order CPHF.  IDoFFX=6 NUNeed=     0.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">195 vectors produced by pass  0 Test12= 7.83D-14 1.00D-09 XBig12= 1.96D-01 1.37D-01.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">AX will form    96 AO Fock derivatives at one time.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">195 vectors produced by pass  1 Test12= 7.83D-14 1.00D-09 XBig12= 5.65D-02 4.25D-02.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">195 vectors produced by pass  2 Test12= 7.83D-14 1.00D-09 XBig12= 7.14D-04 4.05D-03.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">195 vectors produced by pass  3 Test12= 7.83D-14 1.00D-09 XBig12= 3.80D-06 2.38D-04.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">195 vectors produced by pass  4 Test12= 7.83D-14 1.00D-09 XBig12= 9.01D-09 8.64D-06.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">180 vectors produced by pass  5 Test12= 7.83D-14 1.00D-09 XBig12= 1.26D-11 3.73D-07.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">60 vectors produced by pass  6 Test12= 7.83D-14 1.00D-09 XBig12= 1.42D-14 1.01D-08.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">InvSVY:  IOpt=1 It=  1 EMax= 6.11D-16</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Solved reduced A of dimension  1215 with   201 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">1132.868 -66.187 1231.589 333.762 108.333 586.770</array>
</module>
<module cmlx:templateRef="l716.forces">
<list cmlx:templateRef="force">
<array dataType="xsd:integer" dictRef="x:serial" size="66">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</array>
<array dataType="xsd:integer" dictRef="x:elementType" size="66">7 7 7 7 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 1 1 1 1 1 1 1 1 1 1 1 1 77 6 1 1 1 6 6 6 6 6 1 6 1 6 1 1 1 6 8 8 6 1 6 1 1 1 6 1 1 1</array>
<list>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000031088 -0.000014468 0.000030977</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000029302 -0.000005196 -0.000017294</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000002452 0.000005523 0.000001920</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000014316 0.000010498 -0.000024348</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000010176 0.000001671 -0.000016616</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000002452 0.000003570 -0.000000981</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000010176 -0.000002343 0.000009903</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000026359 0.000008524 -0.000019492</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000011108 -0.000000366 -0.000005874</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000009350 -0.000013632 0.000016315</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000004269 0.000008286 -0.000017105</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000004956 -0.000003712 0.000006981</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000004746 0.000011077 0.000011190</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000006510 0.000009297 -0.000027577</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000021940 0.000009794 -0.000009656</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000017521 0.000005108 -0.000013102</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000000013 0.000000845 -0.000006033</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000006598 -0.000010128 -0.000003564</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000006234 -0.000000953 0.000012491</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000008357 -0.000002199 0.000033795</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000013293 0.000004661 -0.000029523</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000010955 -0.000005673 0.000017810</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000019109 -0.000006223 0.000000536</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000002077 0.000007987 -0.000006835</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000000518 -0.000000637 -0.000000113</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000000079 -0.000000038 -0.000001897</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000000392 0.000000335 0.000001151</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000000043 0.000000261 0.000001388</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000000607 0.000001318 0.000001888</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000006945 -0.000005286 -0.000014245</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000003311 -0.000000183 0.000008002</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000003518 0.000002459 -0.000008373</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000001895 0.000000014 -0.000003444</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000000741 -0.000000303 -0.000002146</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000002525 -0.000002760 0.000005966</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000001499 -0.000001843 0.000002625</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000009252 -0.000016753 -0.000007246</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000001010 0.000013917 -0.000001198</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000003362 -0.000006369 -0.000002827</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000005741 0.000005089 0.000001168</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000005864 -0.000002723 0.000001878</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.013912919 -0.005210201 -0.003354775</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000029049 -0.000058469 -0.000011822</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000006071 0.000006527 0.000006769</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000030132 -0.000000232 0.000035321</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000001217 0.000006627 -0.000000826</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000003508 -0.000001286 -0.000000753</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000019105 0.000019255 -0.000004763</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000003619 -0.000001103 -0.000005762</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000002011 -0.000008547 0.000003238</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000000019 -0.000001653 -0.000000006</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000000810 0.000000158 0.000000664</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000001314 -0.000004454 0.000002056</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.003744710 0.003262600 -0.000421660</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000023519 -0.000053729 0.000008312</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.003690797 -0.003190960 0.000472982</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.013826775 0.005244737 0.003330176</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000016518 -0.000016566 0.000039802</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000007677 0.000011796 -0.000042712</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000007954 0.000005164 0.000000285</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000014623 -0.000008983 0.000004504</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000009950 0.000003745 0.000011241</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000011362 -0.000015482 -0.000019330</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">0.000006025 0.000014044 0.000015409</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000005518 -0.000001655 0.000003036</array>
<array dataType="xsd:double" dictRef="cc:force" size="3">-0.000006280 -0.000009780 0.000002120</array>
</list>
</list>
<list cmlx:templateRef="cartesianforce">
<scalar dataType="xsd:double" dictRef="cc:maxforce">0.013912919</scalar>
<scalar dataType="xsd:double" dictRef="cc:rmsforce">0.001605942</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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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">IDoAtm=11111111111111111111111111111111111111111111111111</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">IDoAtm=1111111111111111</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">Defaulting to unpruned grid for atomic number  77.</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">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">There are   201 degrees of freedom in the 1st order CPHF.  IDoFFX=6 NUNeed=     0.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">195 vectors produced by pass  0 Test12= 7.83D-14 1.00D-09 XBig12= 2.09D-01 1.42D-01.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">AX will form    96 AO Fock derivatives at one time.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">195 vectors produced by pass  1 Test12= 7.83D-14 1.00D-09 XBig12= 5.90D-02 4.21D-02.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">195 vectors produced by pass  2 Test12= 7.83D-14 1.00D-09 XBig12= 7.13D-04 4.01D-03.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">195 vectors produced by pass  3 Test12= 7.83D-14 1.00D-09 XBig12= 3.67D-06 2.53D-04.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">195 vectors produced by pass  4 Test12= 7.83D-14 1.00D-09 XBig12= 9.66D-09 1.02D-05.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">182 vectors produced by pass  5 Test12= 7.83D-14 1.00D-09 XBig12= 1.44D-11 3.47D-07.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">57 vectors produced by pass  6 Test12= 7.83D-14 1.00D-09 XBig12= 1.59D-14 9.70D-09.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">InvSVY:  IOpt=1 It=  1 EMax= 8.05D-16</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Solved reduced A of dimension  1214 with   201 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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="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="l50X">
<scalar dataType="xsd:integer" dictRef="cc:ncycle">9</scalar>
<scalar dataType="xsd:double" dictRef="g:rbhflyp" units="nonsi:hartree">-1708.60619941</scalar>
</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>
</module>
<module dictRef="cc:finalization" id="finalization">
<propertyList>
<property dictRef="cc:jobtime">
<scalar dataType="xsd:string">PT313278.300S</scalar>
</property>
<property dictRef="cc:jobdatetime.end">
<scalar dataType="xsd:date">2025-04-29T15:43:52.000</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 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 37 38 42 43 44 45 46 48 50 54 55 56 57 59 63</array>
<array dataType="xsd:string" dictRef="cc:elementType" size="39">N N N N C C C C C C C C C C C C C C C C C C C C Ir C C C C C C C C C O O C C C</array>
<array dataType="xsd:double" dictRef="x:charge" size="39">-0.305889 -0.307730 -0.308118 -0.299980 0.174915 -0.033757 -0.032749 0.176049 -0.101373 0.164038 -0.024814 -0.004440 0.135803 -0.068919 0.129810 -0.010818 -0.042682 0.158108 -0.101893 0.160706 -0.033714 -0.028620 0.157861 -0.104485 0.323155 0.150473 -0.020592 0.062243 -0.016333 -0.040434 0.012388 0.041822 0.011057 0.192084 -0.074200 -0.338179 -0.100816 0.187128 0.162894</array>
</list>
<scalar dataType="xsd:double" dictRef="x:chargesum">-0.00000</scalar>
</module>
</property>
<property dictRef="cc:popanal">
<module cmlx:templateRef="l601.popanal">
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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="66">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</array>
<array dataType="xsd:string" dictRef="cc:elementType" size="66">N N N N C C C C C C C C C C C C C C C C C C C C H H H H H H H H H H H H Ir C H H H C C C C C H C H C H H H C O O C H C H H H C H H H</array>
<array dataType="xsd:double" dictRef="x:charge" size="66">-0.304594 -0.310681 -0.300979 -0.300465 0.176093 -0.005123 -0.005297 0.177612 -0.068342 0.172477 0.004873 0.018088 0.151494 -0.042367 0.141530 -0.003794 -0.017781 0.159123 -0.067913 0.158499 -0.006637 -0.003790 0.159272 -0.068786 -0.029907 -0.029071 -0.036979 -0.029156 -0.027765 -0.034623 -0.027888 -0.030275 -0.037778 -0.029333 -0.029001 -0.038374 0.339742 -0.027631 0.057265 0.055806 0.057108 -0.089990 0.065203 -0.002426 -0.037600 0.040342 -0.008557 0.045226 -0.010777 0.032866 -0.025445 -0.014524 -0.026234 0.199699 -0.179795 -0.273107 -0.097988 0.019983 0.099850 0.043125 0.036436 0.054876 0.079467 0.048168 0.031230 0.055321</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 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 37 38 42 43 44 45 46 48 50 54 55 56 57 59 63</array>
<array dataType="xsd:string" dictRef="cc:elementType" size="39">N N N N C C C C C C C C C C C C C C C C C C C C Ir C C C C C C C C C O O C C C</array>
<array dataType="xsd:double" dictRef="x:charge" size="39">-0.304594 -0.310681 -0.300979 -0.300465 0.176093 -0.035030 -0.034368 0.177612 -0.105321 0.172477 -0.024283 -0.009677 0.151494 -0.076990 0.141530 -0.031681 -0.048056 0.159123 -0.105691 0.158499 -0.035970 -0.032790 0.159272 -0.107160 0.339742 0.142549 -0.070007 0.065203 -0.010984 -0.048377 0.014897 0.030702 0.006631 0.199699 -0.179795 -0.273107 -0.097988 0.234287 0.214187</array>
</list>
<scalar dataType="xsd:double" dictRef="x:chargesum">-0.00000</scalar>
</module>
</property>
<property>
<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">1278.007 -113.752 1230.477 327.994 119.689 572.502</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">-2.4326 2.4993 2.5259</array>
<scalar dataType="xsd:double" dictRef="x:dipole">4.3063</scalar>
<array dataType="xsd:double" dictRef="cc:quadrupole" size="3">-210.8730 -228.2138 -242.2778</array>
<array dataType="xsd:double" dictRef="cc:quadrupole" size="3">-15.8754 -0.0763 7.0235</array>
<array dataType="xsd:double" dictRef="cc:quadrupole" size="6">16.2485 -1.0923 -15.1563 -15.8754 -0.0763 7.0235</array>
<array dataType="xsd:double" dictRef="cc:octapole" size="10">-23.6579 32.1095 -72.8604 45.8115 59.3985 55.2071 -16.5897 5.0466 -23.9591 -8.0114</array>
<array dataType="xsd:double" dictRef="cc:hexadecapole" size="15">-8618.8231 -5730.9299 -3963.6169 -201.5257 -196.3283 -89.1526 93.7616 -111.3483 1.3886 -2596.5193 -2024.5954 -1686.7673 40.1445 36.4189 31.8699</array>
</list>
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<property dictRef="cc:virtualorbs">
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<scalar dataType="xsd:integer">0</scalar>
</property>
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<scalar dataType="xsd:integer">0</scalar>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
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<scalar dataType="xsd:integer">0</scalar>
</property>
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<scalar dataType="xsd:integer">0</scalar>
</property>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
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<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a49" x3="-0.358469" y3="1.344118" z3="2.133986">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a50" x3="1.541681" y3="-1.332731" z3="3.044369">
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<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a51" x3="1.010484" y3="-3.398953" z3="2.69897">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a52" x3="1.808821" y3="0.807047" z3="3.202383">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a53" x3="2.504337" y3="-1.572941" z3="3.499478">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a54" x3="-3.138886" y3="-1.267672" z3="0.743206">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="O" id="a55" x3="-3.268742" y3="-2.449703" z3="0.635583">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="O" id="a56" x3="-4.372084" y3="-0.351096" z3="0.332472">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a57" x3="-4.621569" y3="0.274927" z3="1.435727">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a58" x3="-2.34062" y3="0.694169" z3="0.99128">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a59" x3="-5.024286" y3="-0.456515" z3="2.678496">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a60" x3="-4.6073" y3="0.019013" z3="3.577458">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a61" x3="-6.128444" y3="-0.399692" z3="2.759797">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a62" x3="-4.736806" y3="-1.514573" z3="2.643006">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="C" id="a63" x3="-4.863987" y3="1.744494" z3="1.337646">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a64" x3="-5.895524" y3="1.903398" z3="0.968708">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a65" x3="-4.776507" y3="2.240905" z3="2.313913">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
<atom elementType="H" id="a66" x3="-4.18008" y3="2.200605" z3="0.607223">
<property dictRef="g:atomicType">
<scalar dataType="xsd:integer">0</scalar>
</property>
</atom>
</atomArray>
<bondArray/>
<formula concise="C32H27IrN4O2"/>
<property dictRef="cml:molmass">
<scalar units="unit:dalton">664.5850000000003</scalar>
</property>
<formula convention="iupac:inchi" inline="InChI=1/32C.Ir.4N.2O.27H">
<scalar dataType="xsd:integer" id="auxInfo">AuxInfo=1/0/N:5;6;7;8;9;10;11;12;13;14;15;16;17;18;19;20;21;22;23;24;38;42;43;44;45;46;48;50;54;57;59;63;37;1;2;3;4;55;56;25;26;27;28;29;30;31;32;33;34;35;36;39;40;41;47;49;51;52;53;58;60;61;62;64;65;66/rA:66nN0N0N0N0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0C0H0H0H0H0H0H0H0H0H0H0H0H0IrC0H0H0H0C0C0C0C0C0H0C0H0C0H0H0H0C0O0O0C0H0C0H0H0H0C0H0H0H0/rB:;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;/rC:2.2479,-1.1234,-.1808;-.3642,-1.2648,-1.4222;-.7125,1.5841,-1.0177;1.9203,1.7319,.1956;3.4641,-.8492,.3993;4.2061,-2.082,.5586;3.4238,-3.0865,.0666;2.1981,-2.4784,-.4058;1.1412,-3.1592,-1.0031;-.0392,-2.5982,-1.481;-1.1089,-3.3245,-2.1337;-2.0619,-2.412,-2.4756;-1.5907,-1.118,-2.0287;-2.2859,.0787,-2.1609;-1.891,1.3233,-1.6761;-2.6763,2.5352,-1.7453;-1.9545,3.5185,-1.1256;-.7141,2.9189,-.6838;.3281,3.591,-.0476;1.5485,3.0473,.3463;2.6227,3.7761,.9874;3.6343,2.8856,1.2086;3.1856,1.6013,.7136;3.9033,.4102,.7954;5.2001,-2.1526,.9972;3.6439,-4.1516,.0162;1.2531,-4.2391,-1.1159;-1.1161,-4.401,-2.2943;-3.0177,-2.5842,-2.9665;-3.2589,.0293,-2.6514;-3.6555,2.6095,-2.2156;-2.2187,4.5659,-.9884;.1794,4.6548,.1473;2.5928,4.8374,1.2283;4.6036,3.0662,1.6703;4.8983,.4658,1.2408;.7874,.2356,-.6309;1.5786,.5959,-2.487;2.3644,-.1447,-2.6959;.7821,.5151,-3.2413;2.0068,1.6088,-2.5057;-2.2235,-.3473,1.2718;-.9381,-.7237,1.8275;-.5255,-2.067,2.002;-.0585,.3012,2.2558;.699,-2.357,2.5946;-1.1729,-2.8681,1.647;1.154,-.0032,2.8769;-.3585,1.3441,2.134;1.5417,-1.3327,3.0444;1.0105,-3.399,2.699;1.8088,.807,3.2024;2.5043,-1.5729,3.4995;-3.1389,-1.2677,.7432;-3.2687,-2.4497,.6356;-4.3721,-.3511,.3325;-4.6216,.2749,1.4357;-2.3406,.6942,.9913;-5.0243,-.4565,2.6785;-4.6073,.019,3.5775;-6.1284,-.3997,2.7598;-4.7368,-1.5146,2.643;-4.864,1.7445,1.3376;-5.8955,1.9034,.9687;-4.7765,2.2409,2.3139;-4.1801,2.2006,.6072;</scalar>
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</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">Title Card Required</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>
<list cmlx:templateRef="rest">
<scalar dataType="xsd:string" dictRef="x:l101">Charge =  0 Multiplicity = 1</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="76">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 R75 R76</array>
<array dataType="xsd:integer" dictRef="g:atom1" size="76">1 1 1 2 2 2 3 3 3 3 4 4 4 5 5 6 6 7 7 8 9 9 10 11 11 12 12 13 14 14 15 15 16 16 17 17 18 19 19 20 21 21 22 22 23 24 37 38 38 38 42 42 42 42 43 43 44 44 45 45 46 46 48 48 50 54 54 56 57 57 59 59 59 63 63 63</array>
<array dataType="xsd:integer" dictRef="g:atom2" size="76">5 8 37 10 13 37 15 18 37 58 20 23 37 6 24 7 25 8 26 9 10 27 11 12 28 13 29 14 15 30 16 58 17 31 18 32 19 20 33 21 22 34 23 35 24 36 38 39 40 41 43 54 57 58 44 45 46 47 48 49 50 51 50 52 53 55 56 57 59 63 60 61 62 64 65 66</array>
<array dataType="xsd:double" dictRef="cc:distance" size="76">1.3751 1.3744 2.0452 1.3738 1.3761 2.0502 1.3749 1.3759 2.0537 2.7347 1.3753 1.3734 2.0507 1.4476 1.3913 1.365 1.0888 1.4475 1.0887 1.3919 1.3915 1.0915 1.4483 1.363 1.0885 1.4478 1.0882 1.3903 1.3928 1.0908 1.4458 2.7772 1.3682 1.0888 1.4468 1.0889 1.3937 1.3929 1.0917 1.4478 1.3657 1.0888 1.4477 1.0888 1.393 1.0916 2.0497 1.0999 1.0999 1.0999 1.4501 1.4016 2.4829 1.0849 1.416 1.4168 1.391 1.0894 1.3959 1.092 1.4005 1.0925 1.395 1.0914 1.0916 1.194 1.5905 1.2928 1.4972 1.4927 1.0992 1.1086 1.097 1.107 1.0987 1.0997</array>
<array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="76">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|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="138">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</array>
<array dataType="xsd:integer" dictRef="g:atom1" size="138">5 5 8 10 10 13 15 15 18 18 37 20 20 23 1 1 6 5 5 7 6 6 8 1 1 7 8 8 10 2 2 9 10 10 12 11 11 13 2 2 12 13 13 15 3 3 14 14 16 15 15 17 16 16 18 3 3 17 18 18 20 4 4 19 20 20 22 21 21 23 4 4 22 5 5 23 1 1 1 2 2 3 3 4 37 37 37 39 39 40 43 43 43 54 54 57 42 42 44 43 43 46 43 43 48 44 44 50 45 45 50 46 46 48 42 42 55 54 42 42 42 56 56 59 3 15 57 57 57 60 60 61 57 57 57 64 64 65</array>
<array dataType="xsd:integer" dictRef="g:atom2" size="138">1 1 1 2 2 2 3 3 3 3 3 4 4 4 5 5 5 6 6 6 7 7 7 8 8 8 9 9 9 10 10 10 11 11 11 12 12 12 13 13 13 14 14 14 15 15 15 15 15 16 16 16 17 17 17 18 18 18 19 19 19 20 20 20 21 21 21 22 22 22 23 23 23 24 24 24 37 37 37 37 37 37 37 37 38 38 38 38 38 38 42 42 42 42 42 42 43 43 43 44 44 44 45 45 45 46 46 46 48 48 48 50 50 50 54 54 54 56 57 57 57 57 57 57 58 58 59 59 59 59 59 59 63 63 63 63 63 63</array>
<array dataType="xsd:integer" dictRef="g:atom3" size="138">8 37 37 13 37 37 18 37 37 58 58 23 37 37 6 24 24 7 25 25 8 26 26 7 9 9 10 27 27 9 11 11 12 28 28 13 29 29 12 14 14 15 30 30 14 16 16 58 58 17 31 31 18 32 32 17 19 19 20 33 33 19 21 21 22 34 34 23 35 35 22 24 24 23 36 36 2 4 38 3 38 4 38 38 39 40 41 40 41 41 54 57 58 57 58 58 44 45 45 46 47 47 48 49 49 50 51 51 50 52 52 48 53 53 55 56 56 57 56 59 63 59 63 63 42 42 60 61 62 61 62 62 64 65 66 65 66 66</array>
<array dataType="xsd:double" dictRef="cc:angle" size="138">107.3223 126.2946 126.3827 107.1894 126.4398 126.3464 107.4155 126.2725 126.3053 97.8585 94.7467 107.3805 126.3451 126.2711 109.2652 125.4362 125.2875 107.0536 124.5793 128.3669 107.082 128.3684 124.549 109.2713 125.4536 125.2733 126.459 116.7719 116.7666 125.2623 109.3459 125.3872 107.0827 124.5664 128.3489 107.0587 128.4142 124.5097 109.3175 125.4083 125.2539 126.4597 116.734 116.7384 125.3972 109.2377 125.3337 94.9318 98.5061 107.1079 124.4981 128.3938 107.0253 128.3425 124.6223 109.2003 125.2898 125.4954 126.5858 116.7126 116.6936 125.3992 109.2296 125.37 107.043 124.629 128.3276 107.0678 128.3141 124.6172 109.2775 125.3144 125.3674 126.486 116.7452 116.7439 89.9853 90.0922 92.3153 89.8627 89.7678 90.0193 89.7664 91.343 109.233 109.1825 109.1193 109.7334 109.8002 109.7541 123.5759 153.6229 116.358 63.8096 117.5361 70.8652 123.484 118.5786 117.9126 120.4486 118.9642 120.5761 121.0628 119.1177 119.7673 120.9309 119.3754 119.6899 120.1736 119.4686 120.3317 119.425 120.2354 120.3224 139.0337 103.0254 117.5751 102.0234 68.6489 101.0789 113.5312 121.5804 116.8732 119.4613 115.9786 116.6344 111.4369 107.6818 111.9534 107.1992 110.1402 108.2293 108.3344 111.932 110.5482 107.7867 107.3746 110.6879</array>
<array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="138">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|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="4">A139 A140 A141 A142</array>
<array dataType="xsd:integer" dictRef="g:atom1" size="4">1 2 1 2</array>
<array dataType="xsd:integer" dictRef="g:atom2" size="4">37 37 37 37</array>
<array dataType="xsd:integer" dictRef="g:atom3" size="4">3 4 3 4</array>
<array dataType="xsd:integer" dictRef="g:atom4" size="4">2 1 2 1</array>
<array dataType="xsd:integer" dictRef="g:atom5" size="4">-1 -1 -2 -2</array>
<scalar dataType="xsd:double" dictRef="g:lll">179.848</scalar>
<array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="4">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">180.0775</scalar>
</list>
<list cmlx:templateRef="lll">
<scalar dataType="xsd:double" dictRef="g:lll">177.9177</scalar>
</list>
<list cmlx:templateRef="lll">
<scalar dataType="xsd:double" dictRef="g:lll">181.1149</scalar>
</list>
<list cmlx:templateRef="dihed">
<array dataType="xsd:string" dictRef="g:symbol" size="235">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</array>
<array dataType="xsd:integer" dictRef="g:atom1" size="235">8 8 37 37 5 5 37 37 5 5 5 8 8 8 13 13 37 37 10 10 37 37 10 10 10 13 13 13 18 18 37 37 15 15 37 37 58 58 15 15 15 18 18 18 58 58 58 18 37 23 23 37 37 20 20 37 37 20 20 20 23 23 23 1 1 24 24 1 1 6 6 5 5 25 25 6 6 26 26 1 1 7 7 8 8 27 27 2 2 9 9 10 10 28 28 11 11 29 29 2 2 12 12 13 13 13 30 30 30 3 3 14 14 58 58 14 16 15 15 31 31 16 16 32 32 3 3 17 17 18 18 33 33 4 4 19 19 20 20 34 34 21 21 35 35 4 4 22 22 1 1 1 2 2 2 3 3 3 4 4 4 54 54 57 57 58 58 43 43 57 57 58 58 43 43 43 54 54 54 58 58 58 43 43 54 54 57 57 42 42 45 45 42 42 44 44 43 43 47 47 43 43 49 49 44 44 51 51 45 45 52 52 42 55 54 54 54 42 42 42 56 56 56 63 63 63 42 42 42 56 56 56 59 59 59</array>
<array dataType="xsd:integer" dictRef="g:atom2" size="235">1 1 1 1 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 2 2 2 2 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 4 4 4 4 5 5 5 5 5 5 5 5 6 6 6 6 7 7 7 7 8 8 8 8 9 9 9 9 10 10 10 10 11 11 11 11 12 12 12 12 13 13 13 13 14 14 14 14 14 14 15 15 15 15 15 15 15 15 16 16 16 16 17 17 17 17 18 18 18 18 19 19 19 19 20 20 20 20 21 21 21 21 22 22 22 22 23 23 23 23 37 37 37 37 37 37 37 37 37 37 37 37 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 44 44 44 44 45 45 45 45 46 46 46 46 48 48 48 48 54 54 56 56 56 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57 57</array>
<array dataType="xsd:integer" dictRef="g:atom3" size="235">5 5 5 5 8 8 8 8 37 37 37 37 37 37 10 10 10 10 13 13 13 13 37 37 37 37 37 37 15 15 15 15 18 18 18 18 18 18 37 37 37 37 37 37 37 37 37 58 58 20 20 20 20 23 23 23 23 37 37 37 37 37 37 6 6 6 6 24 24 24 24 7 7 7 7 8 8 8 8 9 9 9 9 10 10 10 10 11 11 11 11 12 12 12 12 13 13 13 13 14 14 14 14 15 15 15 15 15 15 16 16 16 16 16 16 58 58 17 17 17 17 18 18 18 18 19 19 19 19 20 20 20 20 21 21 21 21 22 22 22 22 23 23 23 23 24 24 24 24 38 38 38 38 38 38 38 38 38 38 38 38 43 43 43 43 43 43 54 54 54 54 54 54 57 57 57 57 57 57 57 57 57 58 58 58 58 58 58 44 44 44 44 45 45 45 45 46 46 46 46 48 48 48 48 50 50 50 50 50 50 50 50 56 56 57 57 57 59 59 59 59 59 59 59 59 59 63 63 63 63 63 63 63 63 63</array>
<array dataType="xsd:integer" dictRef="g:atom4" size="235">6 24 6 24 7 9 7 9 2 4 38 2 4 38 9 11 9 11 12 14 12 14 1 3 38 1 3 38 14 16 14 16 17 19 17 19 17 19 2 4 38 2 4 38 2 4 38 42 42 19 21 19 21 22 24 22 24 1 3 38 1 3 38 7 25 7 25 23 36 23 36 8 26 8 26 1 9 1 9 10 27 10 27 2 11 2 11 12 28 12 28 13 29 13 29 2 14 2 14 15 30 15 30 3 16 58 3 16 58 17 31 17 31 17 31 42 42 18 32 18 32 3 19 3 19 20 33 20 33 4 21 4 21 22 34 22 34 23 35 23 35 4 24 4 24 5 36 5 36 39 40 41 39 40 41 39 40 41 39 40 41 44 45 44 45 44 45 55 56 55 56 55 56 56 59 63 56 59 63 56 59 63 3 15 3 15 3 15 46 47 46 47 48 49 48 49 50 51 50 51 50 52 50 52 48 53 48 53 46 53 46 53 57 57 42 59 63 60 61 62 60 61 62 60 61 62 64 65 66 64 65 66 64 65 66</array>
<array dataType="xsd:double" dictRef="cc:dihed" size="235">-0.5708 -179.4113 179.6216 0.781 0.7681 -178.7693 -179.4244 1.0382 178.4623 -2.6525 88.6953 -1.3096 177.5755 -91.0766 178.4671 -0.7818 0.1796 -179.0693 0.5613 178.9894 178.8509 -2.7211 0.7418 -177.1759 93.0572 -177.2269 4.8554 -84.9116 -178.8543 -0.8071 2.0433 -179.9095 1.1697 -177.5087 -179.7282 1.5933 -77.8949 103.4266 -4.5377 176.5736 85.2306 176.5251 -2.3636 -93.7066 73.1541 -105.7346 162.9225 -155.2508 -27.5731 -179.6989 -0.0775 -0.3239 179.2975 -0.1679 177.6095 -179.5435 -1.7661 -176.1451 1.77 91.5368 3.115 -178.9698 -89.203 0.147 -179.6862 178.9897 -0.8435 1.995 -179.8878 -176.6641 1.4531 0.3163 -179.9681 -179.8589 -0.1432 -0.683 178.8554 179.5877 -0.8739 0.3424 179.7535 -179.1228 0.2884 -0.9954 178.1353 179.5934 -1.2759 0.7171 -178.7999 -178.5307 1.9523 -0.3535 -178.8703 179.1394 0.6226 -0.1169 -178.5479 178.4728 0.0418 -1.9696 -178.8591 176.2137 -0.6758 2.3301 -175.4097 -71.3365 179.2194 1.4797 105.5528 0.1209 179.9571 178.1696 -1.9942 75.8959 -104.2679 29.4241 156.2832 0.5808 179.468 -179.247 -0.3598 -1.1026 177.5725 179.958 -1.3669 0.7986 179.7323 -177.6685 1.2653 -1.4843 178.9541 179.5817 0.0201 0.3048 -179.9038 179.9264 -0.2823 -0.3931 179.943 179.8258 0.1618 0.361 -177.415 -179.9593 2.2647 -1.4602 -179.5774 175.9669 -2.1503 9.9443 129.9443 -110.0989 -80.0316 39.9684 159.9251 -169.8953 -49.8952 70.0615 100.0909 -139.9091 -19.9524 -5.8187 176.0366 92.5868 -85.5579 -167.291 14.5643 5.6129 177.9865 -145.0603 27.3134 166.8834 -20.743 -149.485 -29.7216 99.4689 -36.1936 83.5699 -147.2397 99.5304 -140.7062 -11.5158 63.7547 96.0434 -98.8737 -66.5851 -143.8222 -111.5336 -177.2369 3.9692 0.9194 -177.8746 175.8373 -1.5293 -2.4116 -179.7783 0.7352 -178.5507 179.5095 0.2237 2.2533 -179.5979 179.603 -2.2482 -0.9402 -179.4352 178.3434 -0.1516 -0.5477 177.946 -178.6804 -0.1868 -53.9532 120.4137 28.5183 -61.5895 134.9262 72.5304 -170.1733 -51.3246 144.1624 -98.5413 20.3074 -52.7698 64.5265 -176.6248 154.9412 -86.3507 37.5425 77.9155 -163.3763 -39.4832 -85.9349 32.7732 156.6664</array>
<array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="235">calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 analytically|calculate D2E/DX2 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</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">saddle point</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>
<array cmlx:templateRef="eigenvaluelist" dataType="xsd:double" dictRef="" size="192">-0.01765 0.00002 0.00032 0.00038 0.00229 0.00312 0.00527 0.00566 0.00707 0.00730 0.00884 0.00969 0.00984 0.01012 0.01031 0.01151 0.01201 0.01255 0.01277 0.01390 0.01425 0.01435 0.01460 0.01500 0.01541 0.01555 0.01587 0.01630 0.01648 0.01729 0.01762 0.01843 0.01859 0.01949 0.01952 0.02025 0.02054 0.02101 0.02126 0.02154 0.02232 0.02324 0.02403 0.02469 0.02561 0.02644 0.02730 0.02752 0.02849 0.02933 0.02948 0.03006 0.03093 0.03669 0.03677 0.03742 0.03964 0.04057 0.04199 0.04248 0.04291 0.04317 0.04368 0.04398 0.04412 0.04732 0.05075 0.05386 0.08030 0.08661 0.09317 0.09345 0.09356 0.09428 0.09724 0.09784 0.10184 0.10205 0.10214 0.10243 0.10714 0.10787 0.11019 0.11188 0.11350 0.11403 0.11645 0.11705 0.11871 0.11992 0.12009 0.12081 0.12111 0.12138 0.12275 0.12608 0.12900 0.13268 0.13749 0.14189 0.14329 0.14418 0.15247 0.15819 0.16517 0.16608 0.16684 0.16696 0.17404 0.18171 0.19274 0.19318 0.19488 0.19800 0.20169 0.20532 0.20860 0.21094 0.21239 0.21508 0.21723 0.21862 0.22006 0.26061 0.26501 0.27155 0.27202 0.28389 0.30113 0.30154 0.31115 0.31506 0.31650 0.32064 0.32473 0.32906 0.33475 0.33789 0.33852 0.33879 0.34336 0.34345 0.34420 0.34469 0.34589 0.34605 0.35020 0.35315 0.35481 0.35745 0.35833 0.35959 0.36023 0.36106 0.36170 0.36179 0.36226 0.36380 0.36532 0.36681 0.36810 0.36865 0.36945 0.36966 0.36980 0.37076 0.37580 0.37885 0.38458 0.39522 0.40218 0.40815 0.41927 0.43293 0.43341 0.44250 0.44419 0.44663 0.45789 0.46218 0.46386 0.47060 0.47217 0.47394 0.47502 0.51925 0.52452 0.54123 0.54346 0.54648 0.69648 0.90177</array>
<module cmlx:templateRef="negativeeigenvaluelist">
<scalar cmlx:templateRef="grot" dataType="xsd:string" dictRef="x:stuffff">R67       R53      A115      D216       R68</scalar>
<scalar cmlx:templateRef="grot" dataType="xsd:string" dictRef="x:stuffff">1                    0.53477   0.52263   0.17811   0.16862  -0.14889</scalar>
<scalar cmlx:templateRef="grot" dataType="xsd:string" dictRef="x:stuffff">A92      D173      D177      D213      D223</scalar>
</module>
<array cmlx:templateRef="junk" dataType="xsd:string" dictRef="x:junk1" size="8">Angle between quadratic step and forces= 87.51 degrees.</array>
<list cmlx:templateRef="iterationList">
<array dataType="xsd:integer" dictRef="cc:serial" size="3">1 2 3</array>
<array dataType="xsd:double" dictRef="g:rmscart" size="3">0.00132003 0.00000441 0.00000000</array>
<array dataType="xsd:double" dictRef="g:rmsint" size="3">0.00000426 0.00000001 0.00000001</array>
</list>
</module>
<module cmlx:templateRef="l103.deltas">
<list cmlx:templateRef="delta">
<array dataType="xsd:string" dictRef="cc:variable" size="453">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 R75 R76 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 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</array>
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</module>
<module cmlx:templateRef="l103.itemconverge">
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<array dataType="xsd:string" delimiter="|" dictRef="g:item" size="4">|Maximum Force|RMS     Force|Maximum Displacement|RMS     Displacement|</array>
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<array dataType="xsd:string" dictRef="g:converged" size="4">YES YES NO NO</array>
</list>
</module>
<module cmlx:templateRef="preddelta">
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</list>
</module>
<module cmlx:templateRef="l103.optimizedparam">
<list cmlx:templateRef="completed">
<scalar dataType="xsd:string" dictRef="g:optimization">Optimization completed on the basis of negligible forces.</scalar>
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<array dataType="xsd:string" dictRef="g:symbol" size="76">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 R75 R76</array>
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<array dataType="xsd:string" delimiter="|" dictRef="g:deriv" size="234">-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-DE/DX =    0.0|-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>
</module>
</module>
</module>
<module dictRef="cc:calculation" id="calculation">
<module dictRef="cc:userDefinedModule" id="otherComponents">
<module cmlx:templateRef="l301">
<module cmlx:templateRef="l301.basis">
<scalar dataType="xsd:string" dictRef="cc:basis">def2SVP</scalar>
<scalar dataType="xsd:string" dictRef="cc:diffuse">(5D, 7F)</scalar>
<list cmlx:templateRef="symmadaptcart">
<array dataType="xsd:integer" dictRef="cc:adapted" size="1">742</array>
<array dataType="xsd:string" dictRef="cc:symm" size="1">A</array>
</list>
<list cmlx:templateRef="symmadapt">
<array dataType="xsd:integer" dictRef="cc:adapted" size="1">699</array>
<array dataType="xsd:string" dictRef="cc:symm" size="1">A</array>
</list>
<scalar dataType="xsd:integer" dictRef="cc:basiscount">699</scalar>
<scalar dataType="xsd:integer" dictRef="g:primbasis">1204</scalar>
<scalar dataType="xsd:integer" dictRef="cc:cartesianbasis">742</scalar>
<scalar dataType="xsd:integer" dictRef="cc:alphae">140</scalar>
<scalar dataType="xsd:integer" dictRef="cc:betae">140</scalar>
<scalar dataType="xsd:double" dictRef="cc:nucrepener">5005.2847142149</scalar>
<scalar dataType="xsd:integer" dictRef="cc:natoms">66</scalar>
<scalar dataType="xsd:integer" dictRef="cc:nactiveatoms">66</scalar>
<scalar dataType="xsd:integer" dictRef="cc:uniqatoms">66</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">T</scalar>
</module>
</module>
<module cmlx:templateRef="l202" dictRef="cc:userDefinedModule">
<module cmlx:templateRef="l202.rotconst">
<array cmlx:templateRef="rotconst" dataType="xsd:double" dictRef="cc:rotconst" size="3">0.1418219 0.1012082 0.0862079</array>
</module>
</module>
<module cmlx:templateRef="l50X">
<scalar dataType="xsd:integer" dictRef="cc:ncycle">1</scalar>
<scalar dataType="xsd:double" dictRef="g:rbhflyp" units="nonsi:hartree">-1708.60619941</scalar>
</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">IDoAtm=11111111111111111111111111111111111111111111111111</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">IDoAtm=1111111111111111</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">Defaulting to unpruned grid for atomic number  77.</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">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Defaulting to unpruned grid for atomic number  77.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">There are   201 degrees of freedom in the 1st order CPHF.  IDoFFX=6 NUNeed=     3.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">198 vectors produced by pass  0 Test12= 7.83D-14 1.00D-09 XBig12= 1.94D+03 2.03D+01.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">AX will form    96 AO Fock derivatives at one time.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">198 vectors produced by pass  1 Test12= 7.83D-14 1.00D-09 XBig12= 5.78D+02 3.23D+00.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">198 vectors produced by pass  2 Test12= 7.83D-14 1.00D-09 XBig12= 6.71D+00 2.12D-01.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">198 vectors produced by pass  3 Test12= 7.83D-14 1.00D-09 XBig12= 3.48D-02 1.93D-02.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">198 vectors produced by pass  4 Test12= 7.83D-14 1.00D-09 XBig12= 8.20D-05 7.67D-04.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">185 vectors produced by pass  5 Test12= 7.83D-14 1.00D-09 XBig12= 1.07D-07 2.07D-05.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">57 vectors produced by pass  6 Test12= 7.83D-14 1.00D-09 XBig12= 1.06D-10 6.63D-07.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">3 vectors produced by pass  7 Test12= 7.83D-14 1.00D-09 XBig12= 1.06D-13 1.94D-08.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">InvSVY:  IOpt=1 It=  1 EMax= 4.26D-14</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Solved reduced A of dimension  1235 with   201 vectors.</scalar>
<scalar dataType="xsd:string" dictRef="g:l1002.minotr">Isotropic polarizability for W=    0.000000      462.93 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>
</module>
<module dictRef="cc:finalization" id="finalization">
<propertyList>
<property dictRef="cc:jobtime">
<scalar dataType="xsd:string">PT65837.899S</scalar>
</property>
<property dictRef="cc:jobdatetime.end">
<scalar dataType="xsd:date">2025-04-29T16:18:27.000</scalar>
</property>
<property dictRef="cc:popanal">
<module cmlx:templateRef="l601.popanal">
<array dataType="xsd:double" dictRef="g:alphaocc" size="140">-19.17827 -19.12228 -14.34223 -14.34012 -14.33960 -14.33881 -10.31200 -10.29699 -10.21839 -10.21730 -10.21632 -10.21605 -10.21572 -10.21516 -10.21487 -10.21383 -10.21375 -10.21260 -10.19694 -10.19429 -10.19370 -10.19324 -10.19247 -10.19000 -10.18921 -10.18706 -10.18650 -10.18532 -10.18477 -10.18229 -10.18224 -10.18083 -10.18050 -10.18027 -10.17978 -10.17819 -10.17440 -10.16510 -3.68503 -2.02272 -2.02249 -2.01691 -1.09020 -1.02645 -0.95916 -0.94877 -0.94741 -0.94071 -0.84158 -0.80705 -0.79523 -0.78057 -0.78013 -0.76905 -0.76511 -0.75779 -0.75592 -0.75291 -0.73185 -0.72808 -0.72737 -0.70715 -0.69889 -0.64739 -0.64713 -0.64652 -0.60917 -0.59317 -0.59021 -0.57803 -0.57281 -0.57090 -0.56943 -0.56772 -0.54740 -0.54518 -0.53222 -0.52465 -0.52007 -0.51746 -0.50490 -0.49952 -0.49414 -0.49399 -0.49229 -0.47633 -0.45112 -0.44849 -0.44707 -0.44021 -0.43399 -0.43232 -0.42974 -0.42929 -0.42422 -0.42265 -0.42176 -0.42052 -0.41980 -0.41307 -0.41074 -0.40775 -0.40460 -0.39998 -0.39916 -0.39640 -0.39450 -0.39324 -0.39232 -0.38209 -0.38042 -0.37659 -0.37643 -0.37320 -0.37192 -0.36545 -0.36475 -0.36380 -0.34705 -0.33473 -0.32763 -0.32424 -0.31958 -0.31830 -0.31046 -0.28433 -0.28324 -0.28194 -0.27838 -0.27621 -0.27130 -0.25897 -0.25053 -0.24222 -0.23287 -0.20082 -0.19840 -0.19723 -0.19587 -0.18801</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="66">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</array>
<array dataType="xsd:string" dictRef="cc:elementType" size="66">N N N N C C C C C C C C C C C C C C C C C C C C H H H H H H H H H H H H Ir C H H H C C C C C H C H C H H H C O O C H C H H H C H H H</array>
<array dataType="xsd:double" dictRef="x:charge" size="66">-0.304595 -0.310680 -0.300978 -0.300464 0.176094 -0.005122 -0.005298 0.177610 -0.068344 0.172478 0.004874 0.018087 0.151493 -0.042369 0.141529 -0.003796 -0.017780 0.159122 -0.067913 0.158499 -0.006638 -0.003789 0.159273 -0.068785 -0.029907 -0.029071 -0.036979 -0.029156 -0.027765 -0.034623 -0.027888 -0.030275 -0.037778 -0.029333 -0.029001 -0.038374 0.339745 -0.027631 0.057265 0.055806 0.057108 -0.089988 0.065203 -0.002426 -0.037598 0.040341 -0.008558 0.045226 -0.010778 0.032866 -0.025445 -0.014524 -0.026234 0.199700 -0.179795 -0.273108 -0.097992 0.019983 0.099850 0.043125 0.036436 0.054876 0.079467 0.048168 0.031230 0.055321</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 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 37 38 42 43 44 45 46 48 50 54 55 56 57 59 63</array>
<array dataType="xsd:string" dictRef="cc:elementType" size="39">N N N N C C C C C C C C C C C C C C C C C C C C Ir C C C C C C C C C O O C C C</array>
<array dataType="xsd:double" dictRef="x:charge" size="39">-0.304595 -0.310680 -0.300978 -0.300464 0.176094 -0.035028 -0.034369 0.177610 -0.105322 0.172478 -0.024283 -0.009678 0.151493 -0.076992 0.141529 -0.031684 -0.048055 0.159122 -0.105691 0.158499 -0.035971 -0.032790 0.159273 -0.107159 0.339745 0.142548 -0.070005 0.065203 -0.010984 -0.048376 0.014896 0.030702 0.006631 0.199700 -0.179795 -0.273108 -0.097992 0.234287 0.214187</array>
</list>
<scalar dataType="xsd:double" dictRef="x:chargesum">-0.00000</scalar>
</module>
</property>
<property>
<module cmlx:templateRef="l601.polariz">
<array dataType="xsd:double" dictRef="g:l601.pol.exact" size="6">581.416 -39.235 512.715 88.755 34.994 294.660</array>
<array dataType="xsd:double" dictRef="g:l601.pol.approx" size="6">1278.008 -113.753 1230.477 327.994 119.689 572.502</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">-264.8961 -3.2369 0.0003 0.0005 0.0008 0.9919 3.7207 6.6875 20.7861</array>
</module>
<module cmlx:templateRef="l716.freq.chunkx" dictRef="cc:vibrations" id="default">
<array dataType="xsd:integer" dictRef="x:serial" size="192">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 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192</array>
<array dataType="xsd:string" delimiter="|" dictRef="cc:irrep" size="192">A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|A|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="192">-264.8961 6.3591 20.7014 29.9884 39.5036 47.2646 54.8761 65.6033 75.2724 77.7541 81.1703 90.8810 103.3464 113.7444 120.6607 136.3494 145.7371 150.4897 169.7929 175.6483 181.9329 194.4491 220.9297 240.6185 241.2958 247.5361 276.4867 280.8418 283.2174 292.1013 296.2835 323.4059 332.1490 349.1779 353.7785 379.9196 392.2408 392.4158 405.5428 409.6983 413.3121 413.7326 427.8408 429.6127 442.8852 443.0558 443.8807 445.9093 488.0179 517.0666 563.5226 591.7653 594.4447 632.4988 681.3984 682.1523 684.9699 690.6280 697.1719 705.8119 719.3308 722.0202 723.2675 724.2366 730.6031 734.1498 739.5508 762.8342 763.3773 766.1098 786.1342 795.5695 797.8383 799.2134 806.7176 820.6005 823.2443 824.4725 832.6065 838.4818 866.3459 878.3317 880.2230 880.4942 883.7720 887.1801 888.8360 895.3589 905.4173 928.6708 933.3532 935.4200 937.6956 940.5211 960.9748 1004.1771 1012.1060 1022.6429 1032.3058 1040.8034 1041.8682 1042.0944 1044.2679 1048.9943 1054.0832 1057.9193 1060.1704 1062.5942 1065.2251 1074.4922 1075.2067 1080.1421 1082.1808 1100.5323 1136.4456 1170.8019 1172.1017 1181.6325 1182.3900 1194.8663 1214.7420 1222.1219 1254.2204 1266.7466 1281.3575 1294.1076 1295.3638 1338.7551 1350.4047 1353.5898 1360.7901 1371.6841 1376.1683 1377.9158 1386.2737 1395.9854 1408.3871 1408.5597 1426.4809 1427.1225 1429.2982 1429.9473 1437.4018 1438.1839 1438.5323 1442.0388 1460.7671 1489.7314 1497.1989 1501.7856 1505.7275 1521.7425 1537.8882 1542.9160 1545.3891 1589.0344 1592.7935 1611.6051 1622.4935 1629.7956 1636.2234 1645.6287 1654.9797 1676.4501 1912.2118 2991.8677 3009.7244 3023.8343 3098.7446 3102.7102 3132.7634 3134.0874 3155.1487 3169.6785 3177.2731 3181.6924 3192.5430 3193.2532 3194.1668 3195.1202 3202.7346 3206.8703 3224.6096 3226.0410 3227.3649 3227.5263 3232.7286 3245.0099 3246.4998 3246.6638 3252.1375 3255.7794</array>
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