430 lines
18 KiB
Plaintext
430 lines
18 KiB
Plaintext
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Running Job 1 of 1 h2_1.60.inp
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qchem h2_1.60.inp_46471.0 /mnt/beegfs/tmpdir/qchem46471/ 0
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/share/apps/common/q-chem/5.2.1/exe/qcprog.exe_s h2_1.60.inp_46471.0 /mnt/beegfs/tmpdir/qchem46471/
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Welcome to Q-Chem
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A Quantum Leap Into The Future Of Chemistry
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Q-Chem 5.2, Q-Chem, Inc., Pleasanton, CA (2019)
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Yihan Shao, Zhengting Gan, E. Epifanovsky, A. T. B. Gilbert, M. Wormit,
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J. Kussmann, A. W. Lange, A. Behn, Jia Deng, Xintian Feng, D. Ghosh,
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M. Goldey, P. R. Horn, L. D. Jacobson, I. Kaliman, T. Kus, A. Landau,
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Jie Liu, E. I. Proynov, R. M. Richard, R. P. Steele, E. J. Sundstrom,
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H. L. Woodcock III, P. M. Zimmerman, D. Zuev, B. Albrecht, E. Alguire,
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S. A. Baeppler, D. Barton, Z. Benda, Y. A. Bernard, E. J. Berquist,
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K. B. Bravaya, H. Burton, D. Casanova, Chun-Min Chang, Yunqing Chen,
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A. Chien, K. D. Closser, M. P. Coons, S. Coriani, S. Dasgupta,
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A. L. Dempwolff, M. Diedenhofen, Hainam Do, R. G. Edgar, Po-Tung Fang,
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S. Faraji, S. Fatehi, Qingguo Feng, K. D. Fenk, J. Fosso-Tande,
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J. Gayvert, Qinghui Ge, A. Ghysels, G. Gidofalvi, J. Gomes,
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J. Gonthier, A. Gunina, D. Hait, M. W. D. Hanson-Heine,
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P. H. P. Harbach, A. W. Hauser, M. F. Herbst, J. E. Herr,
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E. G. Hohenstein, Z. C. Holden, Kerwin Hui, B. C. Huynh, T.-C. Jagau,
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Hyunjun Ji, B. Kaduk, K. Khistyaev, Jaehoon Kim, P. Klunzinger, K. Koh,
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D. Kosenkov, L. Koulias, T. Kowalczyk, C. M. Krauter, A. Kunitsa,
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Ka Un Lao, A. Laurent, K. V. Lawler, Joonho Lee, D. Lefrancois,
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S. Lehtola, D. S. Levine, Yi-Pei Li, You-Sheng Lin, Fenglai Liu,
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E. Livshits, A. Luenser, P. Manohar, E. Mansoor, S. F. Manzer,
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Shan-Ping Mao, Yuezhi Mao, N. Mardirossian, A. V. Marenich,
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T. Markovich, L. A. Martinez-Martinez, S. A. Maurer, N. J. Mayhall,
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S. C. McKenzie, J.-M. Mewes, P. Morgante, A. F. Morrison,
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J. W. Mullinax, K. Nanda, T. S. Nguyen-Beck, R. Olivares-Amaya,
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J. A. Parkhill, Zheng Pei, T. M. Perrine, F. Plasser, P. Pokhilko,
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S. Prager, A. Prociuk, E. Ramos, D. R. Rehn, F. Rob, M. Scheurer,
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M. Schneider, N. Sergueev, S. M. Sharada, S. Sharma, D. W. Small,
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T. Stauch, T. Stein, Yu-Chuan Su, A. J. W. Thom, A. Tkatchenko,
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T. Tsuchimochi, N. M. Tubman, L. Vogt, M. L. Vidal, O. Vydrov,
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M. A. Watson, J. Wenzel, M. de Wergifosse, T. A. Wesolowski, A. White,
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J. Witte, A. Yamada, Jun Yang, K. Yao, S. Yeganeh, S. R. Yost,
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Zhi-Qiang You, A. Zech, Igor Ying Zhang, Xing Zhang, Yan Zhao,
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Ying Zhu, B. R. Brooks, G. K. L. Chan, C. J. Cramer, M. S. Gordon,
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W. J. Hehre, A. Klamt, M. W. Schmidt, C. D. Sherrill, D. G. Truhlar,
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A. Aspuru-Guzik, R. Baer, A. T. Bell, N. A. Besley, Jeng-Da Chai,
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A. E. DePrince, III, R. A. DiStasio Jr., A. Dreuw, B. D. Dunietz,
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T. R. Furlani, Chao-Ping Hsu, Yousung Jung, Jing Kong, D. S. Lambrecht,
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WanZhen Liang, C. Ochsenfeld, V. A. Rassolov, L. V. Slipchenko,
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J. E. Subotnik, T. Van Voorhis, J. M. Herbert, A. I. Krylov,
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P. M. W. Gill, M. Head-Gordon
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Contributors to earlier versions of Q-Chem not listed above:
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R. D. Adamson, B. Austin, J. Baker, G. J. O. Beran, K. Brandhorst,
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S. T. Brown, E. F. C. Byrd, A. K. Chakraborty, C.-L. Cheng,
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Siu Hung Chien, D. M. Chipman, D. L. Crittenden, H. Dachsel,
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R. J. Doerksen, A. D. Dutoi, L. Fusti-Molnar, W. A. Goddard III,
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A. Golubeva-Zadorozhnaya, S. R. Gwaltney, G. Hawkins, A. Heyden,
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S. Hirata, G. Kedziora, F. J. Keil, C. Kelley, Jihan Kim, R. A. King,
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R. Z. Khaliullin, P. P. Korambath, W. Kurlancheek, A. M. Lee, M. S. Lee,
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S. V. Levchenko, Ching Yeh Lin, D. Liotard, R. C. Lochan, I. Lotan,
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P. E. Maslen, N. Nair, D. P. O'Neill, D. Neuhauser, E. Neuscamman,
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C. M. Oana, R. Olson, B. Peters, R. Peverati, P. A. Pieniazek,
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Y. M. Rhee, J. Ritchie, M. A. Rohrdanz, E. Rosta, N. J. Russ,
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H. F. Schaefer III, N. E. Schultz, N. Shenvi, A. C. Simmonett, A. Sodt,
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D. Stuck, K. S. Thanthiriwatte, V. Vanovschi, Tao Wang, A. Warshel,
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C. F. Williams, Q. Wu, X. Xu, W. Zhang
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Please cite Q-Chem as follows:
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Y. Shao et al., Mol. Phys. 113, 184-215 (2015)
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DOI: 10.1080/00268976.2014.952696
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Q-Chem 5.2.1 for Intel X86 EM64T Linux
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Parts of Q-Chem use Armadillo 8.300.2 (Tropical Shenanigans).
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http://arma.sourceforge.net/
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Q-Chem begins on Fri Jan 22 16:42:59 2021
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Host:
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0
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Scratch files written to /mnt/beegfs/tmpdir/qchem46471//
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Jul1719 |scratch|qcdevops|jenkins|workspace|build_RNUM 6358
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Processing $rem in /share/apps/common/q-chem/5.2.1/config/preferences:
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MEM_TOTAL 5000
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NAlpha2: 4
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NElect 2
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Mult 3
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Checking the input file for inconsistencies... ...done.
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--------------------------------------------------------------
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User input:
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--------------------------------------------------------------
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$comment
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SF-CIS
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$end
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$molecule
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0 3
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H 0 0 0
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H 0 0 1.60
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$end
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$rem
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JOBTYPE = sp
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METHOD = HF
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BASIS = CC-PVQZ
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PURECART = 2222
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SCF_CONVERGENCE = 9
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THRESH = 12
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MAX_SCF_CYCLES = 100
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MAX_CIS_CYCLES = 100
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SPIN_FLIP = TRUE
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UNRESTRICTED = TRUE
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CIS_N_ROOTS = 20
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RPA = FALSE
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$end
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--------------------------------------------------------------
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----------------------------------------------------------------
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Standard Nuclear Orientation (Angstroms)
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I Atom X Y Z
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----------------------------------------------------------------
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1 H 0.0000000000 0.0000000000 -0.8000000000
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2 H 0.0000000000 0.0000000000 0.8000000000
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----------------------------------------------------------------
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Molecular Point Group D*h NOp =***
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Largest Abelian Subgroup D2h NOp = 1
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Nuclear Repulsion Energy = 0.33073576 hartrees
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There are 2 alpha and 0 beta electrons
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Q-Chem warning in module forms1/BasisType.C, line 1983:
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You are not using the predefined 5D/6D in this basis set.
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Requested basis set is cc-pVQZ
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There are 20 shells and 70 basis functions
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Total QAlloc Memory Limit 5000 MB
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Mega-Array Size 188 MB
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MEM_STATIC part 192 MB
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Distance Matrix (Angstroms)
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H ( 1)
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H ( 2) 1.600000
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A cutoff of 1.0D-12 yielded 210 shell pairs
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There are 2653 function pairs
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Smallest overlap matrix eigenvalue = 1.07E-03
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Scale SEOQF with 1.000000e+00/1.000000e+00/1.000000e+00
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Standard Electronic Orientation quadrupole field applied
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Nucleus-field energy = -0.0000000014 hartrees
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Guess from superposition of atomic densities
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Warning: Energy on first SCF cycle will be non-variational
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SAD guess density has 0.090382 electrons
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-----------------------------------------------------------------------
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General SCF calculation program by
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Eric Jon Sundstrom, Paul Horn, Yuezhi Mao, Dmitri Zuev, Alec White,
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David Stuck, Shaama M.S., Shane Yost, Joonho Lee, David Small,
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Daniel Levine, Susi Lehtola, Hugh Burton, Evgeny Epifanovsky,
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Bang C. Huynh
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-----------------------------------------------------------------------
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Hartree-Fock
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A unrestricted SCF calculation will be
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performed using DIIS
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SCF converges when DIIS error is below 1.0e-09
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---------------------------------------
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Cycle Energy DIIS error
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---------------------------------------
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1 0.2584910146 9.18e-04
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2 21.5074171590 1.85e-01
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3 21.4125803347 1.84e-01
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4 21.4053706100 1.84e-01
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5 21.4082138504 1.84e-01
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6 21.3938483800 1.84e-01
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7 21.3911765895 1.84e-01
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8 21.3716060014 1.84e-01
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9 21.3822164432 1.84e-01
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10 21.3250656203 1.84e-01
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11 21.3487456839 1.84e-01
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12 21.3477790687 1.84e-01
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13 21.3464588600 1.84e-01
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14 21.2809772490 1.84e-01
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15 21.2739889207 1.84e-01
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16 21.2653276605 1.84e-01
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17 -0.8457042592 5.66e-03
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18 -0.9618088431 1.13e-03
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19 -0.9704236291 2.33e-04
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20 -0.9708512514 1.51e-05
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21 -0.9708532102 3.48e-06
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22 -0.9708533083 2.57e-07
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23 -0.9708533086 3.14e-08
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24 -0.9708533086 4.50e-09
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25 -0.9708533086 8.44e-10 Convergence criterion met
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---------------------------------------
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SCF time: CPU 2.25s wall 2.00s
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<S^2> = 2.000000000
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SCF energy in the final basis set = -0.9708533086
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Total energy in the final basis set = -0.9708533086
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Spin-flip UCIS calculation will be performed
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CIS energy converged when residual is below 10e- 6
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---------------------------------------------------
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Iter Rts Conv Rts Left Ttl Dev Max Dev
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---------------------------------------------------
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1 0 20 0.114917 0.008526
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2 0 20 0.016368 0.007961
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3 1 19 0.000599 0.000200
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4 15 5 0.000012 0.000003
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5 20 0 0.000002 0.000000 Roots Converged
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---------------------------------------------------
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---------------------------------------------------
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SF-CIS Excitation Energies
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(The first "excited" state might be the ground state)
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---------------------------------------------------
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Excited state 1: excitation energy (eV) = -1.9657
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Total energy for state 1: -1.04309209 au
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<S**2> : 0.0059
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S( 1) --> S( 2) amplitude = 0.2660 alpha
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S( 1) --> V( 2) amplitude = 0.2230 alpha
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S( 2) --> S( 1) amplitude = 0.8822 alpha
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S( 2) --> V( 1) amplitude = 0.2983 alpha
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Excited state 2: excitation energy (eV) = 0.0000
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Total energy for state 2: -0.97085330 au
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<S**2> : 2.0000
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S( 1) --> S( 1) amplitude = 0.6506 alpha
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S( 1) --> V( 1) amplitude = 0.2621 alpha
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S( 2) --> S( 2) amplitude = 0.5839 alpha
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S( 2) --> V( 2) amplitude = 0.3882 alpha
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Excited state 3: excitation energy (eV) = 7.6707
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Total energy for state 3: -0.68896188 au
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<S**2> : 0.1658
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S( 1) --> S( 1) amplitude = -0.6273 alpha
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S( 1) --> V( 1) amplitude = -0.2028 alpha
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S( 2) --> S( 2) amplitude = 0.7349 alpha
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Excited state 4: excitation energy (eV) = 9.8655
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Total energy for state 4: -0.60830262 au
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<S**2> : 0.4945
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S( 1) --> S( 2) amplitude = 0.5597 alpha
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S( 1) --> V( 2) amplitude = 0.3748 alpha
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S( 2) --> S( 1) amplitude = -0.4675 alpha
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S( 2) --> V( 1) amplitude = 0.5378 alpha
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Excited state 5: excitation energy (eV) = 11.2324
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Total energy for state 5: -0.55807002 au
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<S**2> : 0.6399
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S( 1) --> S( 2) amplitude = -0.6398 alpha
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S( 2) --> V( 1) amplitude = 0.7250 alpha
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S( 2) --> V( 5) amplitude = 0.2357 alpha
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Excited state 6: excitation energy (eV) = 12.4149
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Total energy for state 6: -0.51461371 au
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<S**2> : 0.9169
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S( 1) --> S( 1) amplitude = -0.3683 alpha
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S( 1) --> V( 1) amplitude = 0.3344 alpha
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S( 2) --> S( 2) amplitude = -0.3033 alpha
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S( 2) --> V( 2) amplitude = 0.7961 alpha
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Excited state 7: excitation energy (eV) = 13.5296
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Total energy for state 7: -0.47364943 au
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<S**2> : 1.0000
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S( 1) --> V( 7) amplitude = -0.2120 alpha
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S( 2) --> V( 4) amplitude = 0.9747 alpha
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Excited state 8: excitation energy (eV) = 13.5296
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Total energy for state 8: -0.47364943 au
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<S**2> : 1.0000
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S( 1) --> V( 6) amplitude = -0.2120 alpha
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S( 2) --> V( 3) amplitude = 0.9747 alpha
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Excited state 9: excitation energy (eV) = 16.7473
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Total energy for state 9: -0.35540255 au
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<S**2> : 1.0000
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S( 1) --> V( 4) amplitude = 0.7595 alpha
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S( 2) --> V( 7) amplitude = -0.6441 alpha
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Excited state 10: excitation energy (eV) = 16.7473
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Total energy for state 10: -0.35540255 au
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<S**2> : 1.0000
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S( 1) --> V( 3) amplitude = 0.7595 alpha
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S( 2) --> V( 6) amplitude = -0.6441 alpha
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Excited state 11: excitation energy (eV) = 17.0650
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Total energy for state 11: -0.34372686 au
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<S**2> : 0.9725
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S( 1) --> S( 1) amplitude = -0.2141 alpha
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S( 1) --> V( 1) amplitude = 0.8559 alpha
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S( 1) --> V( 5) amplitude = 0.1503 alpha
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S( 2) --> V( 2) amplitude = -0.4164 alpha
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Excited state 12: excitation energy (eV) = 17.9113
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Total energy for state 12: -0.31262619 au
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<S**2> : 0.9622
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S( 1) --> S( 2) amplitude = 0.3625 alpha
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S( 1) --> V( 2) amplitude = -0.2198 alpha
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S( 2) --> V( 5) amplitude = 0.8918 alpha
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Excited state 13: excitation energy (eV) = 19.0002
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Total energy for state 13: -0.27260844 au
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<S**2> : 0.9115
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S( 1) --> S( 2) amplitude = -0.2733 alpha
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S( 1) --> V( 2) amplitude = 0.8443 alpha
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S( 2) --> V( 1) amplitude = -0.2893 alpha
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S( 2) --> V( 5) amplitude = 0.3088 alpha
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Excited state 14: excitation energy (eV) = 21.7563
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Total energy for state 14: -0.17132513 au
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<S**2> : 1.0000
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S( 1) --> V( 4) amplitude = 0.6461 alpha
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S( 2) --> V( 7) amplitude = 0.7611 alpha
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Excited state 15: excitation energy (eV) = 21.7563
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Total energy for state 15: -0.17132513 au
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<S**2> : 1.0000
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S( 1) --> V( 3) amplitude = 0.6461 alpha
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S( 2) --> V( 6) amplitude = 0.7611 alpha
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Excited state 16: excitation energy (eV) = 22.4561
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Total energy for state 16: -0.14560578 au
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<S**2> : 0.9574
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S( 1) --> V( 1) amplitude = -0.1595 alpha
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S( 1) --> V( 5) amplitude = 0.8867 alpha
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S( 2) --> V( 8) amplitude = -0.4024 alpha
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Excited state 17: excitation energy (eV) = 25.4659
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Total energy for state 17: -0.03499896 au
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<S**2> : 1.0000
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S( 1) --> V( 7) amplitude = 0.9727 alpha
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S( 2) --> V( 4) amplitude = 0.2159 alpha
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Excited state 18: excitation energy (eV) = 25.4659
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Total energy for state 18: -0.03499896 au
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<S**2> : 1.0000
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S( 1) --> V( 6) amplitude = 0.9727 alpha
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S( 2) --> V( 3) amplitude = 0.2159 alpha
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Excited state 19: excitation energy (eV) = 28.4372
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Total energy for state 19: 0.07419288 au
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<S**2> : 0.9988
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S( 1) --> V( 5) amplitude = 0.3901 alpha
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S( 2) --> V( 8) amplitude = 0.8922 alpha
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Excited state 20: excitation energy (eV) = 32.0655
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Total energy for state 20: 0.20753364 au
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<S**2> : 0.9952
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S( 1) --> V( 2) amplitude = -0.1903 alpha
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S( 1) --> V( 8) amplitude = -0.5310 alpha
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S( 1) --> V( 10) amplitude = 0.2766 alpha
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S( 2) --> V( 9) amplitude = 0.7642 alpha
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---------------------------------------------------
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SETman timing summary (seconds)
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CPU time 1.21s
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System time 0.00s
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Wall time 1.50s
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--------------------------------------------------------------
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Orbital Energies (a.u.)
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--------------------------------------------------------------
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Alpha MOs
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-- Occupied --
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-0.6044 -0.4037
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-- Virtual --
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0.2249 0.2656 0.3985 0.3985 0.5249 0.6018 0.6018 0.8949
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1.1216 1.1762 1.5993 1.7299 1.7299 1.8949 1.8949 1.9067
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1.9067 1.9640 1.9640 2.1660 2.1660 2.1968 2.4312 2.6118
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2.6118 3.0215 3.0733 3.4991 4.3784 4.3784 4.5055 4.5055
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4.6090 4.7779 5.7353 5.7353 5.8281 5.9103 5.9103 6.0356
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6.0356 6.0655 6.0655 6.2007 6.2007 6.6872 6.6872 7.6002
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8.0714 8.0714 8.1166 8.1166 8.1880 8.1880 8.5420 8.5420
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8.6079 9.2279 9.5963 9.7038 9.7038 9.7297 9.7297 9.8634
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9.9308 10.0658 22.6572 23.3692
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--------------------------------------------------------------
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Ground-State Mulliken Net Atomic Charges
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Atom Charge (a.u.) Spin (a.u.)
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--------------------------------------------------------
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1 H 0.000000 1.000000
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2 H -0.000000 1.000000
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--------------------------------------------------------
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Sum of atomic charges = 0.000000
|
|
Sum of spin charges = 2.000000
|
|
|
|
-----------------------------------------------------------------
|
|
Cartesian Multipole Moments
|
|
-----------------------------------------------------------------
|
|
Charge (ESU x 10^10)
|
|
0.0000
|
|
Dipole Moment (Debye)
|
|
X 0.0000 Y 0.0000 Z -0.0000
|
|
Tot 0.0000
|
|
Quadrupole Moments (Debye-Ang)
|
|
XX -2.5364 XY -0.0000 YY -2.5364
|
|
XZ 0.0000 YZ -0.0000 ZZ -3.6271
|
|
Octopole Moments (Debye-Ang^2)
|
|
XXX 0.0000 XXY 0.0000 XYY 0.0000
|
|
YYY 0.0000 XXZ -0.0000 XYZ -0.0000
|
|
YYZ -0.0000 XZZ 0.0000 YZZ 0.0000
|
|
ZZZ -0.0000
|
|
Hexadecapole Moments (Debye-Ang^3)
|
|
XXXX -2.9998 XXXY -0.0000 XXYY -0.9999
|
|
XYYY -0.0000 YYYY -2.9998 XXXZ 0.0000
|
|
XXYZ -0.0000 XYYZ 0.0000 YYYZ -0.0000
|
|
XXZZ -3.1911 XYZZ -0.0000 YYZZ -3.1911
|
|
XZZZ 0.0000 YZZZ -0.0000 ZZZZ -17.0438
|
|
-----------------------------------------------------------------
|
|
Archival summary:
|
|
1\1\lcpq-curie.ups-tlse.fr\SP\HF\BasisUnspecified\2(3)\emonino\FriJan2216:43:032021FriJan2216:43:032021\0\\#,HF,BasisUnspecified,\\0,3\H\H,1,1.6\\HF=-0.970853309\\@
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|
|
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Total job time: 4.09s(wall), 3.57s(cpu)
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|
Fri Jan 22 16:43:03 2021
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|
|
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*************************************************************
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* *
|
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* Thank you very much for using Q-Chem. Have a nice day. *
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* *
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*************************************************************
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