Default is to use a total of 4 processors: 4 via shared-memory 1 via Linda Entering Link 1 = C:\G09W\l1.exe PID= 4652. Copyright (c) 1988,1990,1992,1993,1995,1998,2003,2009,2013, Gaussian, Inc. All Rights Reserved. This is part of the Gaussian(R) 09 program. It is based on the Gaussian(R) 03 system (copyright 2003, Gaussian, Inc.), the Gaussian(R) 98 system (copyright 1998, Gaussian, Inc.), the Gaussian(R) 94 system (copyright 1995, Gaussian, Inc.), the Gaussian 92(TM) system (copyright 1992, Gaussian, Inc.), the Gaussian 90(TM) system (copyright 1990, Gaussian, Inc.), the Gaussian 88(TM) system (copyright 1988, Gaussian, Inc.), the Gaussian 86(TM) system (copyright 1986, Carnegie Mellon University), and the Gaussian 82(TM) system (copyright 1983, Carnegie Mellon University). Gaussian is a federally registered trademark of Gaussian, Inc. This software contains proprietary and confidential information, including trade secrets, belonging to Gaussian, Inc. 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By using this program, the user acknowledges that Gaussian, Inc. is engaged in the business of creating and licensing software in the field of computational chemistry and represents and warrants to the licensee that it is not a competitor of Gaussian, Inc. and that it will not use this program in any manner prohibited above. --------------------------------------------------------------- Cite this work as: Gaussian 09, Revision D.01, M. J. Frisch, G. W. Trucks, H. B. Schlegel, G. E. Scuseria, M. A. Robb, J. R. Cheeseman, G. Scalmani, V. Barone, B. Mennucci, G. A. Petersson, H. Nakatsuji, M. Caricato, X. Li, H. P. Hratchian, A. F. Izmaylov, J. Bloino, G. Zheng, J. L. Sonnenberg, M. Hada, M. Ehara, K. Toyota, R. Fukuda, J. Hasegawa, M. Ishida, T. Nakajima, Y. Honda, O. Kitao, H. Nakai, T. Vreven, J. A. Montgomery, Jr., J. E. Peralta, F. Ogliaro, M. Bearpark, J. J. Heyd, E. Brothers, K. N. Kudin, V. N. Staroverov, T. Keith, R. Kobayashi, J. Normand, K. Raghavachari, A. Rendell, J. C. Burant, S. S. Iyengar, J. Tomasi, M. Cossi, N. Rega, J. M. Millam, M. Klene, J. E. Knox, J. B. Cross, V. Bakken, C. Adamo, J. Jaramillo, R. Gomperts, R. E. Stratmann, O. Yazyev, A. J. Austin, R. Cammi, C. Pomelli, J. W. Ochterski, R. L. Martin, K. Morokuma, V. G. Zakrzewski, G. A. Voth, P. Salvador, J. J. Dannenberg, S. Dapprich, A. D. Daniels, O. Farkas, J. B. Foresman, J. V. Ortiz, J. Cioslowski, and D. J. Fox, Gaussian, Inc., Wallingford CT, 2013. ****************************************** Gaussian 09: EM64W-G09RevD.01 13-Apr-2013 24-Jan-2014 ****************************************** %chk=\\ic.ac.uk\homes\sw2711\Desktop\y3 lab\3rdyearlab\SW_NH3_freq2.chk Default route: MaxDisk=10GB ------------------------------------------------------------------ # freq b3lyp/6-31g(d,p) geom=connectivity int=ultrafine opt=vtight ------------------------------------------------------------------ 1/7=1,14=-1,18=20,19=15,26=4,38=1,57=2/1,3; 2/9=110,12=2,17=6,18=5,40=1/2; 3/5=1,6=6,7=101,11=2,16=1,25=1,30=1,71=1,74=-5,75=-5/1,2,3; 4//1; 5/5=2,38=5/2; 6/7=2,8=2,9=2,10=2,28=1/1; 7//1,2,3,16; 1/7=1,14=-1,18=20,19=15,26=4/3(2); 2/9=110/2; 99//99; 2/9=110/2; 3/5=1,6=6,7=101,11=2,16=1,25=1,30=1,71=1,74=-5,75=-5/1,2,3; 4/5=5,16=3,69=1/1; 5/5=2,38=5/2; 7//1,2,3,16; 1/7=1,14=-1,18=20,19=15,26=4/3(-5); 2/9=110/2; 6/7=2,8=2,9=2,10=2,19=2,28=1/1; 99/9=1/99; ------------- NH3 frequency ------------- Symbolic Z-matrix: Charge = 0 Multiplicity = 1 N 0. 0. 0.11923 H 0. 0.93719 -0.27819 H -0.81163 -0.46859 -0.27819 H 0.81163 -0.46859 -0.27819 GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Berny optimization. Initialization pass. ---------------------------- ! Initial Parameters ! ! (Angstroms and Degrees) ! -------------------------- -------------------------- ! Name Definition Value Derivative Info. ! -------------------------------------------------------------------------------- ! R1 R(1,2) 1.018 estimate D2E/DX2 ! ! R2 R(1,3) 1.018 estimate D2E/DX2 ! ! R3 R(1,4) 1.018 estimate D2E/DX2 ! ! A1 A(2,1,3) 105.7463 estimate D2E/DX2 ! ! A2 A(2,1,4) 105.7463 estimate D2E/DX2 ! ! A3 A(3,1,4) 105.7462 estimate D2E/DX2 ! ! D1 D(2,1,4,3) -111.867 estimate D2E/DX2 ! -------------------------------------------------------------------------------- Trust Radius=3.00D-01 FncErr=1.00D-07 GrdErr=1.00D-06 Number of steps in this run= 20 maximum allowed number of steps= 100. GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Input orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 7 0 0.000000 0.000000 0.119226 2 1 0 0.000000 0.937187 -0.278193 3 1 0 -0.811628 -0.468594 -0.278193 4 1 0 0.811628 -0.468594 -0.278193 --------------------------------------------------------------------- Distance matrix (angstroms): 1 2 3 4 1 N 0.000000 2 H 1.017969 0.000000 3 H 1.017970 1.623256 0.000000 4 H 1.017970 1.623256 1.623256 0.000000 Stoichiometry H3N Framework group C3[C3(N),X(H3)] Deg. of freedom 2 Full point group C3 NOp 3 Largest Abelian subgroup C1 NOp 1 Largest concise Abelian subgroup C1 NOp 1 Standard orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 7 0 0.000000 0.000000 0.119226 2 1 0 0.000000 0.937187 -0.278193 3 1 0 -0.811628 -0.468594 -0.278193 4 1 0 0.811628 -0.468594 -0.278193 --------------------------------------------------------------------- Rotational constants (GHZ): 293.7354251 293.7354251 190.3085034 Standard basis: 6-31G(d,p) (6D, 7F) There are 30 symmetry adapted cartesian basis functions of A symmetry. There are 30 symmetry adapted basis functions of A symmetry. 30 basis functions, 49 primitive gaussians, 30 cartesian basis functions 5 alpha electrons 5 beta electrons nuclear repulsion energy 11.8945506752 Hartrees. NAtoms= 4 NActive= 4 NUniq= 2 SFac= 4.00D+00 NAtFMM= 60 NAOKFM=F Big=F Integral buffers will be 131072 words long. Raffenetti 2 integral format. Two-electron integral symmetry is turned on. One-electron integrals computed using PRISM. NBasis= 30 RedAO= T EigKep= 2.18D-02 NBF= 30 NBsUse= 30 1.00D-06 EigRej= -1.00D+00 NBFU= 30 ExpMin= 1.61D-01 ExpMax= 4.17D+03 ExpMxC= 6.27D+02 IAcc=3 IRadAn= 5 AccDes= 0.00D+00 Harris functional with IExCor= 402 and IRadAn= 5 diagonalized for initial guess. HarFok: IExCor= 402 AccDes= 0.00D+00 IRadAn= 5 IDoV= 1 UseB2=F ITyADJ=14 ICtDFT= 3500011 ScaDFX= 1.000000 1.000000 1.000000 1.000000 FoFCou: FMM=F IPFlag= 0 FMFlag= 100000 FMFlg1= 0 NFxFlg= 0 DoJE=T BraDBF=F KetDBF=T FulRan=T wScrn= 0.000000 ICntrl= 500 IOpCl= 0 I1Cent= 200000004 NGrid= 0 NMat0= 1 NMatS0= 1 NMatT0= 0 NMatD0= 1 NMtDS0= 0 NMtDT0= 0 Petite list used in FoFCou. Initial guess orbital symmetries: Occupied (A) (A) (E) (E) (A) Virtual (A) (E) (E) (A) (E) (E) (E) (E) (A) (A) (E) (E) (A) (A) (E) (E) (E) (E) (A) (E) (E) (A) (E) (E) (A) The electronic state of the initial guess is 1-A. Keep R1 ints in memory in canonical form, NReq=992452. Requested convergence on RMS density matrix=1.00D-08 within 128 cycles. Requested convergence on MAX density matrix=1.00D-06. Requested convergence on energy=1.00D-06. No special actions if energy rises. Integral accuracy reduced to 1.0D-05 until final iterations. Initial convergence to 1.0D-05 achieved. Increase integral accuracy. SCF Done: E(RB3LYP) = -56.5577687229 A.U. after 9 cycles NFock= 9 Conv=0.93D-08 -V/T= 2.0091 ********************************************************************** Population analysis using the SCF density. ********************************************************************** Orbital symmetries: Occupied (A) (A) (E) (E) (A) Virtual (A) (E) (E) (E) (E) (A) (E) (E) (A) (A) (E) (E) (A) (A) (E) (E) (E) (E) (A) (E) (E) (A) (E) (E) (A) The electronic state is 1-A. Alpha occ. eigenvalues -- -14.30568 -0.84466 -0.45030 -0.45030 -0.25317 Alpha virt. eigenvalues -- 0.07985 0.16923 0.16923 0.67851 0.67851 Alpha virt. eigenvalues -- 0.71437 0.87556 0.87556 0.88553 1.13371 Alpha virt. eigenvalues -- 1.41879 1.41879 1.83053 2.09377 2.24220 Alpha virt. eigenvalues -- 2.24220 2.34643 2.34643 2.79254 2.95071 Alpha virt. eigenvalues -- 2.95071 3.19855 3.42896 3.42896 3.90462 Condensed to atoms (all electrons): 1 2 3 4 1 N 6.703102 0.337979 0.337979 0.337979 2 H 0.337979 0.487746 -0.032368 -0.032368 3 H 0.337979 -0.032368 0.487746 -0.032368 4 H 0.337979 -0.032368 -0.032368 0.487746 Mulliken charges: 1 1 N -0.717038 2 H 0.239013 3 H 0.239013 4 H 0.239013 Sum of Mulliken charges = 0.00000 Mulliken charges with hydrogens summed into heavy atoms: 1 1 N 0.000000 Electronic spatial extent (au): = 26.2372 Charge= 0.0000 electrons Dipole moment (field-independent basis, Debye): X= 0.0000 Y= 0.0000 Z= -1.8464 Tot= 1.8464 Quadrupole moment (field-independent basis, Debye-Ang): XX= -6.1590 YY= -6.1590 ZZ= -8.7225 XY= 0.0000 XZ= 0.0000 YZ= 0.0000 Traceless Quadrupole moment (field-independent basis, Debye-Ang): XX= 0.8545 YY= 0.8545 ZZ= -1.7090 XY= 0.0000 XZ= 0.0000 YZ= 0.0000 Octapole moment (field-independent basis, Debye-Ang**2): XXX= 0.0000 YYY= 0.7689 ZZZ= -1.6140 XYY= 0.0000 XXY= -0.7689 XXZ= -0.8495 XZZ= 0.0000 YZZ= 0.0000 YYZ= -0.8495 XYZ= 0.0000 Hexadecapole moment (field-independent basis, Debye-Ang**3): XXXX= -9.7161 YYYY= -9.7161 ZZZZ= -9.7129 XXXY= 0.0000 XXXZ= 0.0000 YYYX= 0.0000 YYYZ= -0.3115 ZZZX= 0.0000 ZZZY= 0.0000 XXYY= -3.2387 XXZZ= -3.2735 YYZZ= -3.2735 XXYZ= 0.3115 YYXZ= 0.0000 ZZXY= 0.0000 N-N= 1.189455067518D+01 E-N=-1.556686456038D+02 KE= 5.604584991243D+01 Calling FoFJK, ICntrl= 2127 FMM=F ISym2X=1 I1Cent= 0 IOpClX= 0 NMat=1 NMatS=1 NMatT=0. ***** Axes restored to original set ***** ------------------------------------------------------------------- Center Atomic Forces (Hartrees/Bohr) Number Number X Y Z ------------------------------------------------------------------- 1 7 0.000000000 0.000000001 0.000004041 2 1 0.000000010 -0.000002588 -0.000001349 3 1 0.000002236 0.000001302 -0.000001346 4 1 -0.000002247 0.000001284 -0.000001346 ------------------------------------------------------------------- Cartesian Forces: Max 0.000004041 RMS 0.000001868 GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Berny optimization. FormGI is forming the generalized inverse of G from B-inverse, IUseBI=4. Internal Forces: Max 0.000002902 RMS 0.000002179 Search for a local minimum. Step number 1 out of a maximum of 20 All quantities printed in internal units (Hartrees-Bohrs-Radians) Mixed Optimization -- En-DIIS/RFO-DIIS Second derivative matrix not updated -- first step. The second derivative matrix: R1 R2 R3 A1 A2 R1 0.44664 R2 0.00000 0.44664 R3 0.00000 0.00000 0.44664 A1 0.00000 0.00000 0.00000 0.16000 A2 0.00000 0.00000 0.00000 0.00000 0.16000 A3 0.00000 0.00000 0.00000 0.00000 0.00000 D1 0.00000 0.00000 0.00000 0.00000 0.00000 A3 D1 A3 0.16000 D1 0.00000 0.00791 ITU= 0 Eigenvalues --- 0.06638 0.16000 0.16000 0.44664 0.44664 Eigenvalues --- 0.44664 RFO step: Lambda= 0.00000000D+00 EMin= 6.63793192D-02 Linear search not attempted -- first point. Iteration 1 RMS(Cart)= 0.00001681 RMS(Int)= 0.00000000 Iteration 2 RMS(Cart)= 0.00000000 RMS(Int)= 0.00000000 ClnCor: largest displacement from symmetrization is 1.45D-06 for atom 3. Variable Old X -DE/DX Delta X Delta X Delta X New X (Linear) (Quad) (Total) R1 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 R2 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 R3 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 A1 1.84562 0.00000 0.00000 -0.00002 -0.00002 1.84560 A2 1.84562 0.00000 0.00000 -0.00002 -0.00002 1.84560 A3 1.84562 0.00000 0.00000 -0.00002 -0.00002 1.84560 D1 -1.95245 0.00000 0.00000 0.00004 0.00004 -1.95240 Item Value Threshold Converged? Maximum Force 0.000003 0.000002 NO RMS Force 0.000002 0.000001 NO Maximum Displacement 0.000026 0.000006 NO RMS Displacement 0.000017 0.000004 NO Predicted change in Energy=-1.432412D-10 GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Input orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 7 0 0.000000 0.000000 0.119240 2 1 0 0.000000 0.937177 -0.278198 3 1 0 -0.811619 -0.468588 -0.278198 4 1 0 0.811619 -0.468589 -0.278198 --------------------------------------------------------------------- Distance matrix (angstroms): 1 2 3 4 1 N 0.000000 2 H 1.017967 0.000000 3 H 1.017967 1.623238 0.000000 4 H 1.017967 1.623238 1.623238 0.000000 Stoichiometry H3N Framework group C3V[C3(N),3SGV(H)] Deg. of freedom 2 Full point group C3V NOp 6 Omega: Change in point group or standard orientation. Old FWG=C03 [C3(N1),X(H3)] New FWG=C03V [C3(N1),3SGV(H1)] Largest Abelian subgroup CS NOp 2 Largest concise Abelian subgroup CS NOp 2 Standard orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 7 0 0.000000 0.000000 0.119231 2 1 0 0.000000 0.937177 -0.278206 3 1 0 -0.811619 -0.468589 -0.278206 4 1 0 0.811619 -0.468589 -0.278206 --------------------------------------------------------------------- Rotational constants (GHZ): 293.7341223 293.7341223 190.3125462 Standard basis: 6-31G(d,p) (6D, 7F) There are 20 symmetry adapted cartesian basis functions of A' symmetry. There are 10 symmetry adapted cartesian basis functions of A" symmetry. There are 20 symmetry adapted basis functions of A' symmetry. There are 10 symmetry adapted basis functions of A" symmetry. 30 basis functions, 49 primitive gaussians, 30 cartesian basis functions 5 alpha electrons 5 beta electrons nuclear repulsion energy 11.8945834275 Hartrees. NAtoms= 4 NActive= 4 NUniq= 2 SFac= 4.00D+00 NAtFMM= 60 NAOKFM=F Big=F Integral buffers will be 131072 words long. Raffenetti 2 integral format. Two-electron integral symmetry is turned on. One-electron integrals computed using PRISM. NBasis= 30 RedAO= T EigKep= 2.83D-02 NBF= 20 10 NBsUse= 30 1.00D-06 EigRej= -1.00D+00 NBFU= 20 10 Initial guess from the checkpoint file: "\\ic.ac.uk\homes\sw2711\Desktop\y3 lab\3rdyearlab\SW_NH3_freq2.chk" B after Tr= 0.000000 0.000000 0.000000 Rot= 1.000000 0.000000 0.000000 0.000000 Ang= 0.00 deg. Initial guess orbital symmetries: Occupied (A1) (A1) (E) (E) (A1) Virtual (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) Keep R1 ints in memory in symmetry-blocked form, NReq=993785. Requested convergence on RMS density matrix=1.00D-08 within 128 cycles. Requested convergence on MAX density matrix=1.00D-06. Requested convergence on energy=1.00D-06. No special actions if energy rises. SCF Done: E(RB3LYP) = -56.5577687305 A.U. after 3 cycles NFock= 3 Conv=0.77D-08 -V/T= 2.0091 Calling FoFJK, ICntrl= 2127 FMM=F ISym2X=1 I1Cent= 0 IOpClX= 0 NMat=1 NMatS=1 NMatT=0. ***** Axes restored to original set ***** ------------------------------------------------------------------- Center Atomic Forces (Hartrees/Bohr) Number Number X Y Z ------------------------------------------------------------------- 1 7 0.000000000 0.000000000 0.000002928 2 1 0.000000000 0.000001050 -0.000000976 3 1 -0.000000909 -0.000000525 -0.000000976 4 1 0.000000909 -0.000000525 -0.000000976 ------------------------------------------------------------------- Cartesian Forces: Max 0.000002928 RMS 0.000001108 GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Berny optimization. Using GEDIIS/GDIIS optimizer. FormGI is forming the generalized inverse of G from B-inverse, IUseBI=4. Internal Forces: Max 0.000001347 RMS 0.000000965 Search for a local minimum. Step number 2 out of a maximum of 20 All quantities printed in internal units (Hartrees-Bohrs-Radians) Mixed Optimization -- En-DIIS/RFO-DIIS Swapping is turned off. Update second derivatives using D2CorX and points 1 2 DE= -7.57D-09 DEPred=-1.43D-10 R= 5.28D+01 Trust test= 5.28D+01 RLast= 5.95D-05 DXMaxT set to 3.00D-01 The second derivative matrix: R1 R2 R3 A1 A2 R1 0.47784 R2 0.03121 0.47784 R3 0.03121 0.03121 0.47784 A1 -0.01624 -0.01624 -0.01624 0.11447 A2 0.00477 0.00477 0.00477 -0.04237 0.13125 A3 0.00478 0.00478 0.00478 -0.04237 -0.02875 D1 -0.02772 -0.02772 -0.02772 -0.00001 -0.01490 A3 D1 A3 0.13126 D1 -0.01491 0.02868 ITU= 0 0 Eigenvalues --- 0.04880 0.15425 0.16000 0.44664 0.44664 Eigenvalues --- 0.54295 En-DIIS/RFO-DIIS IScMMF= 0 using points: 2 1 RFO step: Lambda= 0.00000000D+00. DidBck=F Rises=F RFO-DIIS coefs: 1.16878 -0.16878 Iteration 1 RMS(Cart)= 0.00000476 RMS(Int)= 0.00000000 Iteration 2 RMS(Cart)= 0.00000000 RMS(Int)= 0.00000000 ClnCor: largest displacement from symmetrization is 6.83D-08 for atom 4. Variable Old X -DE/DX Delta X Delta X Delta X New X (Linear) (Quad) (Total) R1 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 R2 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 R3 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 A1 1.84560 0.00000 0.00000 0.00000 -0.00001 1.84559 A2 1.84560 0.00000 0.00000 0.00000 -0.00001 1.84559 A3 1.84560 0.00000 0.00000 0.00000 -0.00001 1.84559 D1 -1.95240 0.00000 0.00001 0.00001 0.00002 -1.95239 Item Value Threshold Converged? Maximum Force 0.000001 0.000002 YES RMS Force 0.000001 0.000001 YES Maximum Displacement 0.000010 0.000006 NO RMS Displacement 0.000005 0.000004 NO Predicted change in Energy=-1.639105D-11 GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Input orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 7 0 0.000000 0.000000 0.119245 2 1 0 0.000000 0.937176 -0.278199 3 1 0 -0.811618 -0.468588 -0.278199 4 1 0 0.811618 -0.468588 -0.278199 --------------------------------------------------------------------- Distance matrix (angstroms): 1 2 3 4 1 N 0.000000 2 H 1.017969 0.000000 3 H 1.017969 1.623236 0.000000 4 H 1.017969 1.623236 1.623236 0.000000 Stoichiometry H3N Framework group C3V[C3(N),3SGV(H)] Deg. of freedom 2 Full point group C3V NOp 6 Largest Abelian subgroup CS NOp 2 Largest concise Abelian subgroup CS NOp 2 Standard orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 7 0 0.000000 0.000000 0.119233 2 1 0 0.000000 0.937176 -0.278211 3 1 0 -0.811618 -0.468588 -0.278211 4 1 0 0.811618 -0.468588 -0.278211 --------------------------------------------------------------------- Rotational constants (GHZ): 293.7322692 293.7322692 190.3130495 Standard basis: 6-31G(d,p) (6D, 7F) There are 20 symmetry adapted cartesian basis functions of A' symmetry. There are 10 symmetry adapted cartesian basis functions of A" symmetry. There are 20 symmetry adapted basis functions of A' symmetry. There are 10 symmetry adapted basis functions of A" symmetry. 30 basis functions, 49 primitive gaussians, 30 cartesian basis functions 5 alpha electrons 5 beta electrons nuclear repulsion energy 11.8945665246 Hartrees. NAtoms= 4 NActive= 4 NUniq= 2 SFac= 4.00D+00 NAtFMM= 60 NAOKFM=F Big=F Integral buffers will be 131072 words long. Raffenetti 2 integral format. Two-electron integral symmetry is turned on. One-electron integrals computed using PRISM. NBasis= 30 RedAO= T EigKep= 2.83D-02 NBF= 20 10 NBsUse= 30 1.00D-06 EigRej= -1.00D+00 NBFU= 20 10 Initial guess from the checkpoint file: "\\ic.ac.uk\homes\sw2711\Desktop\y3 lab\3rdyearlab\SW_NH3_freq2.chk" B after Tr= 0.000000 0.000000 0.000000 Rot= 1.000000 0.000000 0.000000 0.000000 Ang= 0.00 deg. Initial guess orbital symmetries: Occupied (A1) (A1) (E) (E) (A1) Virtual (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) (?A) Keep R1 ints in memory in symmetry-blocked form, NReq=993785. Requested convergence on RMS density matrix=1.00D-08 within 128 cycles. Requested convergence on MAX density matrix=1.00D-06. Requested convergence on energy=1.00D-06. No special actions if energy rises. SCF Done: E(RB3LYP) = -56.5577687305 A.U. after 4 cycles NFock= 4 Conv=0.21D-08 -V/T= 2.0091 Calling FoFJK, ICntrl= 2127 FMM=F ISym2X=1 I1Cent= 0 IOpClX= 0 NMat=1 NMatS=1 NMatT=0. ***** Axes restored to original set ***** ------------------------------------------------------------------- Center Atomic Forces (Hartrees/Bohr) Number Number X Y Z ------------------------------------------------------------------- 1 7 0.000000000 0.000000000 0.000000640 2 1 0.000000000 0.000000371 -0.000000213 3 1 -0.000000321 -0.000000185 -0.000000213 4 1 0.000000321 -0.000000185 -0.000000213 ------------------------------------------------------------------- Cartesian Forces: Max 0.000000640 RMS 0.000000283 GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Berny optimization. Using GEDIIS/GDIIS optimizer. FormGI is forming the generalized inverse of G from B-inverse, IUseBI=4. Internal Forces: Max 0.000000424 RMS 0.000000281 Search for a local minimum. Step number 3 out of a maximum of 20 All quantities printed in internal units (Hartrees-Bohrs-Radians) Mixed Optimization -- En-DIIS/RFO-DIIS Swapping is turned off. Update second derivatives using D2CorX and points 1 2 3 DE= -2.00D-11 DEPred=-1.64D-11 R= 1.22D+00 Trust test= 1.22D+00 RLast= 2.14D-05 DXMaxT set to 3.00D-01 The second derivative matrix: R1 R2 R3 A1 A2 R1 0.46010 R2 0.01346 0.46010 R3 0.01346 0.01346 0.46010 A1 -0.00713 -0.00713 -0.00713 0.11042 A2 0.01480 0.01480 0.01480 -0.04862 0.12796 A3 0.01482 0.01482 0.01482 -0.04862 -0.03204 D1 -0.02990 -0.02990 -0.02990 0.00345 -0.01842 A3 D1 A3 0.12797 D1 -0.01843 0.03807 ITU= 0 0 0 Eigenvalues --- 0.04585 0.15318 0.16000 0.44664 0.44664 Eigenvalues --- 0.49548 En-DIIS/RFO-DIIS IScMMF= 0 using points: 3 2 1 RFO step: Lambda= 0.00000000D+00. DidBck=F Rises=F RFO-DIIS coefs: 1.30203 -0.34751 0.04548 Iteration 1 RMS(Cart)= 0.00000085 RMS(Int)= 0.00000000 ClnCor: largest displacement from symmetrization is 1.51D-10 for atom 3. Variable Old X -DE/DX Delta X Delta X Delta X New X (Linear) (Quad) (Total) R1 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 R2 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 R3 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 A1 1.84559 0.00000 0.00000 0.00000 0.00000 1.84559 A2 1.84559 0.00000 0.00000 0.00000 0.00000 1.84559 A3 1.84559 0.00000 0.00000 0.00000 0.00000 1.84559 D1 -1.95239 0.00000 0.00000 0.00000 0.00000 -1.95238 Item Value Threshold Converged? Maximum Force 0.000000 0.000002 YES RMS Force 0.000000 0.000001 YES Maximum Displacement 0.000002 0.000006 YES RMS Displacement 0.000001 0.000004 YES Predicted change in Energy=-8.861433D-13 Optimization completed. -- Stationary point found. ---------------------------- ! Optimized Parameters ! ! (Angstroms and Degrees) ! -------------------------- -------------------------- ! Name Definition Value Derivative Info. ! -------------------------------------------------------------------------------- ! R1 R(1,2) 1.018 -DE/DX = 0.0 ! ! R2 R(1,3) 1.018 -DE/DX = 0.0 ! ! R3 R(1,4) 1.018 -DE/DX = 0.0 ! ! A1 A(2,1,3) 105.7445 -DE/DX = 0.0 ! ! A2 A(2,1,4) 105.7445 -DE/DX = 0.0 ! ! A3 A(3,1,4) 105.7445 -DE/DX = 0.0 ! ! D1 D(2,1,4,3) -111.8635 -DE/DX = 0.0 ! -------------------------------------------------------------------------------- GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Input orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 7 0 0.000000 0.000000 0.119245 2 1 0 0.000000 0.937176 -0.278199 3 1 0 -0.811618 -0.468588 -0.278199 4 1 0 0.811618 -0.468588 -0.278199 --------------------------------------------------------------------- Distance matrix (angstroms): 1 2 3 4 1 N 0.000000 2 H 1.017969 0.000000 3 H 1.017969 1.623236 0.000000 4 H 1.017969 1.623236 1.623236 0.000000 Stoichiometry H3N Framework group C3V[C3(N),3SGV(H)] Deg. of freedom 2 Full point group C3V NOp 6 Largest Abelian subgroup CS NOp 2 Largest concise Abelian subgroup CS NOp 2 Standard orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 7 0 0.000000 0.000000 0.119233 2 1 0 0.000000 0.937176 -0.278211 3 1 0 -0.811618 -0.468588 -0.278211 4 1 0 0.811618 -0.468588 -0.278211 --------------------------------------------------------------------- Rotational constants (GHZ): 293.7322692 293.7322692 190.3130495 ********************************************************************** Population analysis using the SCF density. ********************************************************************** Orbital symmetries: Occupied (A1) (A1) (E) (E) (A1) Virtual (A1) (E) (E) (E) (E) (A1) (E) (E) (A1) (A1) (E) (E) (A1) (A2) (E) (E) (E) (E) (A1) (E) (E) (A1) (E) (E) (A1) The electronic state is 1-A1. Alpha occ. eigenvalues -- -14.30568 -0.84466 -0.45030 -0.45030 -0.25318 Alpha virt. eigenvalues -- 0.07985 0.16923 0.16923 0.67851 0.67851 Alpha virt. eigenvalues -- 0.71437 0.87556 0.87556 0.88554 1.13372 Alpha virt. eigenvalues -- 1.41878 1.41878 1.83051 2.09378 2.24222 Alpha virt. eigenvalues -- 2.24222 2.34640 2.34640 2.79258 2.95070 Alpha virt. eigenvalues -- 2.95070 3.19854 3.42897 3.42897 3.90461 Condensed to atoms (all electrons): 1 2 3 4 1 N 6.703104 0.337976 0.337976 0.337976 2 H 0.337976 0.487753 -0.032369 -0.032369 3 H 0.337976 -0.032369 0.487753 -0.032369 4 H 0.337976 -0.032369 -0.032369 0.487753 Mulliken charges: 1 1 N -0.717031 2 H 0.239010 3 H 0.239010 4 H 0.239010 Sum of Mulliken charges = 0.00000 Mulliken charges with hydrogens summed into heavy atoms: 1 1 N 0.000000 Electronic spatial extent (au): = 26.2372 Charge= 0.0000 electrons Dipole moment (field-independent basis, Debye): X= 0.0000 Y= 0.0000 Z= -1.8465 Tot= 1.8465 Quadrupole moment (field-independent basis, Debye-Ang): XX= -6.1591 YY= -6.1591 ZZ= -8.7225 XY= 0.0000 XZ= 0.0000 YZ= 0.0000 Traceless Quadrupole moment (field-independent basis, Debye-Ang): XX= 0.8545 YY= 0.8545 ZZ= -1.7089 XY= 0.0000 XZ= 0.0000 YZ= 0.0000 Octapole moment (field-independent basis, Debye-Ang**2): XXX= 0.0000 YYY= 0.7689 ZZZ= -1.6140 XYY= 0.0000 XXY= -0.7689 XXZ= -0.8495 XZZ= 0.0000 YZZ= 0.0000 YYZ= -0.8495 XYZ= 0.0000 Hexadecapole moment (field-independent basis, Debye-Ang**3): XXXX= -9.7161 YYYY= -9.7161 ZZZZ= -9.7131 XXXY= 0.0000 XXXZ= 0.0000 YYYX= 0.0000 YYYZ= -0.3115 ZZZX= 0.0000 ZZZY= 0.0000 XXYY= -3.2387 XXZZ= -3.2735 YYZZ= -3.2735 XXYZ= 0.3115 YYXZ= 0.0000 ZZXY= 0.0000 N-N= 1.189456652456D+01 E-N=-1.556686763607D+02 KE= 5.604586478714D+01 Symmetry A' KE= 5.342562899516D+01 Symmetry A" KE= 2.620235791985D+00 1|1| IMPERIAL COLLEGE-CHWS-271|FOpt|RB3LYP|6-31G(d,p)|H3N1|SW2711|24-J an-2014|0||# freq b3lyp/6-31g(d,p) geom=connectivity int=ultrafine opt =vtight||NH3 frequency||0,1|N,0.,-0.0000001,0.1192450785|H,0.000000382 1,0.9371758064,-0.2781993215|H,-0.8116183338,-0.4685877223,-0.27819932 15|H,0.8116179517,-0.4685883841,-0.2781993215||Version=EM64W-G09RevD.0 1|State=1-A1|HF=-56.5577687|RMSD=2.107e-009|RMSF=2.826e-007|Dipole=0., 0.,-0.7264574|Quadrupole=0.6352642,0.6352642,-1.2705284,0.,0.,0.|PG=C0 3V [C3(N1),3SGV(H1)]||@ ADVERTISING-- HE WHO HAS SOMETHING TO SELL AND GOES AND WHISPERS IN A WELL, IS NOT SO APT TO GET THE DOLLARS AS HE WHO CLIMBS A TREE AND HOLLERS. -- FROM THE BACK OF A SUGAR PACKET Job cpu time: 0 days 0 hours 0 minutes 7.0 seconds. File lengths (MBytes): RWF= 5 Int= 0 D2E= 0 Chk= 1 Scr= 1 Normal termination of Gaussian 09 at Fri Jan 24 17:14:39 2014. Link1: Proceeding to internal job step number 2. ---------------------------------------------------------------------- #N Geom=AllCheck Guess=TCheck SCRF=Check GenChk RB3LYP/6-31G(d,p) Freq ---------------------------------------------------------------------- 1/7=1,10=4,29=7,30=1,38=1,40=1/1,3; 2/12=2,40=1/2; 3/5=1,6=6,7=101,11=2,14=-4,16=1,25=1,30=1,70=2,71=2,74=-5,75=-5,116=1,140=1/1,2,3; 4/5=101/1; 5/5=2,98=1/2; 8/6=4,10=90,11=11/1; 11/6=1,8=1,9=11,15=111,16=1/1,2,10; 10/6=1/2; 6/7=2,8=2,9=2,10=2,18=1,28=1/1; 7/8=1,10=1,25=1/1,2,3,16; 1/7=1,10=4,30=1/3; 99//99; Structure from the checkpoint file: "\\ic.ac.uk\homes\sw2711\Desktop\y3 lab\3rdyearlab\SW_NH3_freq2.chk" ------------- NH3 frequency ------------- Charge = 0 Multiplicity = 1 Redundant internal coordinates found in file. N,0,0.,-0.0000001,0.1192450785 H,0,0.0000003821,0.9371758064,-0.2781993215 H,0,-0.8116183338,-0.4685877223,-0.2781993215 H,0,0.8116179517,-0.4685883841,-0.2781993215 Recover connectivity data from disk. GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Berny optimization. Initialization pass. ---------------------------- ! Initial Parameters ! ! (Angstroms and Degrees) ! -------------------------- -------------------------- ! Name Definition Value Derivative Info. ! -------------------------------------------------------------------------------- ! R1 R(1,2) 1.018 calculate D2E/DX2 analytically ! ! R2 R(1,3) 1.018 calculate D2E/DX2 analytically ! ! R3 R(1,4) 1.018 calculate D2E/DX2 analytically ! ! A1 A(2,1,3) 105.7445 calculate D2E/DX2 analytically ! ! A2 A(2,1,4) 105.7445 calculate D2E/DX2 analytically ! ! A3 A(3,1,4) 105.7445 calculate D2E/DX2 analytically ! ! D1 D(2,1,4,3) -111.8635 calculate D2E/DX2 analytically ! -------------------------------------------------------------------------------- Trust Radius=3.00D-01 FncErr=1.00D-07 GrdErr=1.00D-07 Number of steps in this run= 2 maximum allowed number of steps= 2. GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Input orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 7 0 0.000000 0.000000 0.119245 2 1 0 0.000000 0.937176 -0.278199 3 1 0 -0.811618 -0.468588 -0.278199 4 1 0 0.811618 -0.468588 -0.278199 --------------------------------------------------------------------- Distance matrix (angstroms): 1 2 3 4 1 N 0.000000 2 H 1.017969 0.000000 3 H 1.017969 1.623236 0.000000 4 H 1.017969 1.623236 1.623236 0.000000 Stoichiometry H3N Framework group C3V[C3(N),3SGV(H)] Deg. of freedom 2 Full point group C3V NOp 6 Largest Abelian subgroup CS NOp 2 Largest concise Abelian subgroup CS NOp 2 Standard orientation: --------------------------------------------------------------------- Center Atomic Atomic Coordinates (Angstroms) Number Number Type X Y Z --------------------------------------------------------------------- 1 7 0 0.000000 0.000000 0.119233 2 1 0 0.000000 0.937176 -0.278211 3 1 0 -0.811618 -0.468588 -0.278211 4 1 0 0.811618 -0.468588 -0.278211 --------------------------------------------------------------------- Rotational constants (GHZ): 293.7322692 293.7322692 190.3130495 Standard basis: 6-31G(d,p) (6D, 7F) There are 20 symmetry adapted cartesian basis functions of A' symmetry. There are 10 symmetry adapted cartesian basis functions of A" symmetry. There are 20 symmetry adapted basis functions of A' symmetry. There are 10 symmetry adapted basis functions of A" symmetry. 30 basis functions, 49 primitive gaussians, 30 cartesian basis functions 5 alpha electrons 5 beta electrons nuclear repulsion energy 11.8945665246 Hartrees. NAtoms= 4 NActive= 4 NUniq= 2 SFac= 4.00D+00 NAtFMM= 60 NAOKFM=F Big=F Integral buffers will be 131072 words long. Raffenetti 2 integral format. Two-electron integral symmetry is turned on. One-electron integrals computed using PRISM. NBasis= 30 RedAO= T EigKep= 2.83D-02 NBF= 20 10 NBsUse= 30 1.00D-06 EigRej= -1.00D+00 NBFU= 20 10 Initial guess from the checkpoint file: "\\ic.ac.uk\homes\sw2711\Desktop\y3 lab\3rdyearlab\SW_NH3_freq2.chk" B after Tr= 0.000000 0.000000 0.000000 Rot= 1.000000 0.000000 0.000000 0.000000 Ang= 0.00 deg. Initial guess orbital symmetries: Occupied (A1) (A1) (E) (E) (A1) Virtual (A1) (E) (E) (E) (E) (A1) (E) (E) (A1) (A1) (E) (E) (A1) (A2) (E) (E) (E) (E) (A1) (E) (E) (A1) (E) (E) (A1) Keep R1 ints in memory in symmetry-blocked form, NReq=993785. Requested convergence on RMS density matrix=1.00D-08 within 128 cycles. Requested convergence on MAX density matrix=1.00D-06. Requested convergence on energy=1.00D-06. No special actions if energy rises. SCF Done: E(RB3LYP) = -56.5577687305 A.U. after 1 cycles NFock= 1 Conv=0.33D-09 -V/T= 2.0091 DoSCS=F DFT=T ScalE2(SS,OS)= 1.000000 1.000000 Range of M.O.s used for correlation: 1 30 NBasis= 30 NAE= 5 NBE= 5 NFC= 0 NFV= 0 NROrb= 30 NOA= 5 NOB= 5 NVA= 25 NVB= 25 Symmetrizing basis deriv contribution to polar: IMax=3 JMax=2 DiffMx= 0.00D+00 G2DrvN: will do 5 centers at a time, making 1 passes. Calling FoFCou, ICntrl= 3107 FMM=F I1Cent= 0 AccDes= 0.00D+00. End of G2Drv F.D. properties file 721 does not exist. End of G2Drv F.D. properties file 722 does not exist. End of G2Drv F.D. properties file 788 does not exist. IDoAtm=1111 Differentiating once with respect to electric field. with respect to dipole field. Differentiating once with respect to nuclear coordinates. Keep R1 ints in memory in symmetry-blocked form, NReq=970448. There are 9 degrees of freedom in the 1st order CPHF. IDoFFX=4 NUNeed= 9. 9 vectors produced by pass 0 Test12= 1.39D-15 1.11D-08 XBig12= 4.73D+00 1.32D+00. AX will form 9 AO Fock derivatives at one time. 9 vectors produced by pass 1 Test12= 1.39D-15 1.11D-08 XBig12= 3.59D-01 3.00D-01. 9 vectors produced by pass 2 Test12= 1.39D-15 1.11D-08 XBig12= 3.20D-03 1.99D-02. 9 vectors produced by pass 3 Test12= 1.39D-15 1.11D-08 XBig12= 2.38D-06 7.56D-04. 9 vectors produced by pass 4 Test12= 1.39D-15 1.11D-08 XBig12= 1.20D-09 1.25D-05. 4 vectors produced by pass 5 Test12= 1.39D-15 1.11D-08 XBig12= 3.54D-13 2.11D-07. InvSVY: IOpt=1 It= 1 EMax= 2.22D-16 Solved reduced A of dimension 49 with 9 vectors. Isotropic polarizability for W= 0.000000 8.57 Bohr**3. End of Minotr F.D. properties file 721 does not exist. End of Minotr F.D. properties file 722 does not exist. End of Minotr F.D. properties file 788 does not exist. ********************************************************************** Population analysis using the SCF density. ********************************************************************** Orbital symmetries: Occupied (A1) (A1) (E) (E) (A1) Virtual (A1) (E) (E) (E) (E) (A1) (E) (E) (A1) (A1) (E) (E) (A1) (A2) (E) (E) (E) (E) (A1) (E) (E) (A1) (E) (E) (A1) The electronic state is 1-A1. Alpha occ. eigenvalues -- -14.30568 -0.84466 -0.45030 -0.45030 -0.25318 Alpha virt. eigenvalues -- 0.07985 0.16923 0.16923 0.67851 0.67851 Alpha virt. eigenvalues -- 0.71437 0.87556 0.87556 0.88554 1.13372 Alpha virt. eigenvalues -- 1.41878 1.41878 1.83051 2.09378 2.24222 Alpha virt. eigenvalues -- 2.24222 2.34640 2.34640 2.79258 2.95070 Alpha virt. eigenvalues -- 2.95070 3.19854 3.42897 3.42897 3.90461 Condensed to atoms (all electrons): 1 2 3 4 1 N 6.703104 0.337976 0.337976 0.337976 2 H 0.337976 0.487753 -0.032369 -0.032369 3 H 0.337976 -0.032369 0.487753 -0.032369 4 H 0.337976 -0.032369 -0.032369 0.487753 Mulliken charges: 1 1 N -0.717031 2 H 0.239010 3 H 0.239010 4 H 0.239010 Sum of Mulliken charges = 0.00000 Mulliken charges with hydrogens summed into heavy atoms: 1 1 N 0.000000 APT charges: 1 1 N -0.391081 2 H 0.130361 3 H 0.130360 4 H 0.130360 Sum of APT charges = 0.00000 APT charges with hydrogens summed into heavy atoms: 1 1 N 0.000000 Electronic spatial extent (au): = 26.2372 Charge= 0.0000 electrons Dipole moment (field-independent basis, Debye): X= 0.0000 Y= 0.0000 Z= -1.8465 Tot= 1.8465 Quadrupole moment (field-independent basis, Debye-Ang): XX= -6.1591 YY= -6.1591 ZZ= -8.7225 XY= 0.0000 XZ= 0.0000 YZ= 0.0000 Traceless Quadrupole moment (field-independent basis, Debye-Ang): XX= 0.8545 YY= 0.8545 ZZ= -1.7089 XY= 0.0000 XZ= 0.0000 YZ= 0.0000 Octapole moment (field-independent basis, Debye-Ang**2): XXX= 0.0000 YYY= 0.7689 ZZZ= -1.6140 XYY= 0.0000 XXY= -0.7689 XXZ= -0.8495 XZZ= 0.0000 YZZ= 0.0000 YYZ= -0.8495 XYZ= 0.0000 Hexadecapole moment (field-independent basis, Debye-Ang**3): XXXX= -9.7161 YYYY= -9.7161 ZZZZ= -9.7131 XXXY= 0.0000 XXXZ= 0.0000 YYYX= 0.0000 YYYZ= -0.3115 ZZZX= 0.0000 ZZZY= 0.0000 XXYY= -3.2387 XXZZ= -3.2735 YYZZ= -3.2735 XXYZ= 0.3115 YYXZ= 0.0000 ZZXY= 0.0000 N-N= 1.189456652456D+01 E-N=-1.556686764069D+02 KE= 5.604586481084D+01 Symmetry A' KE= 5.342562901233D+01 Symmetry A" KE= 2.620235798507D+00 Exact polarizability: 9.826 0.000 9.826 0.000 0.000 6.068 Approx polarizability: 11.922 0.000 11.922 0.000 0.000 7.117 Calling FoFJK, ICntrl= 100127 FMM=F ISym2X=1 I1Cent= 0 IOpClX= 0 NMat=1 NMatS=1 NMatT=0. Full mass-weighted force constant matrix: Low frequencies --- -6.1415 -4.4910 -4.4904 0.0014 0.0035 0.0150 Low frequencies --- 1089.3562 1693.9270 1693.9271 Diagonal vibrational polarizability: 0.1277144 0.1277148 3.3003692 Harmonic frequencies (cm**-1), IR intensities (KM/Mole), Raman scattering activities (A**4/AMU), depolarization ratios for plane and unpolarized incident light, reduced masses (AMU), force constants (mDyne/A), and normal coordinates: 1 2 3 A1 E E Frequencies -- 1089.3562 1693.9270 1693.9271 Red. masses -- 1.1800 1.0644 1.0644 Frc consts -- 0.8250 1.7995 1.7995 IR Inten -- 145.4307 13.5574 13.5574 Atom AN X Y Z X Y Z X Y Z 1 7 0.00 0.00 0.12 -0.07 0.00 0.00 0.00 0.07 0.00 2 1 0.00 -0.21 -0.53 0.76 0.00 0.00 0.00 0.15 0.26 3 1 0.18 0.11 -0.53 0.08 -0.39 0.22 0.39 -0.53 -0.13 4 1 -0.18 0.11 -0.53 0.08 0.39 -0.22 -0.39 -0.53 -0.13 4 5 6 A1 E E Frequencies -- 3461.3881 3589.9394 3589.9394 Red. masses -- 1.0272 1.0883 1.0883 Frc consts -- 7.2514 8.2640 8.2640 IR Inten -- 1.0592 0.2698 0.2698 Atom AN X Y Z X Y Z X Y Z 1 7 0.00 0.00 0.04 0.08 0.00 0.00 0.00 0.08 0.00 2 1 0.00 0.55 -0.18 0.02 0.00 0.00 0.00 -0.75 0.31 3 1 -0.47 -0.27 -0.18 -0.56 -0.34 -0.27 -0.34 -0.17 -0.15 4 1 0.47 -0.27 -0.18 -0.56 0.34 0.27 0.34 -0.17 -0.15 ------------------- - Thermochemistry - ------------------- Temperature 298.150 Kelvin. Pressure 1.00000 Atm. Atom 1 has atomic number 7 and mass 14.00307 Atom 2 has atomic number 1 and mass 1.00783 Atom 3 has atomic number 1 and mass 1.00783 Atom 4 has atomic number 1 and mass 1.00783 Molecular mass: 17.02655 amu. Principal axes and moments of inertia in atomic units: 1 2 3 Eigenvalues -- 6.14417 6.14417 9.48301 X -0.46411 0.88578 0.00000 Y 0.88578 0.46411 0.00000 Z 0.00000 0.00000 1.00000 This molecule is an oblate symmetric top. Rotational symmetry number 3. Rotational temperatures (Kelvin) 14.09691 14.09691 9.13357 Rotational constants (GHZ): 293.73227 293.73227 190.31305 Zero-point vibrational energy 90428.6 (Joules/Mol) 21.61295 (Kcal/Mol) Vibrational temperatures: 1567.34 2437.18 2437.18 4980.16 5165.12 (Kelvin) 5165.12 Zero-point correction= 0.034442 (Hartree/Particle) Thermal correction to Energy= 0.037305 Thermal correction to Enthalpy= 0.038250 Thermal correction to Gibbs Free Energy= 0.016403 Sum of electronic and zero-point Energies= -56.523326 Sum of electronic and thermal Energies= -56.520463 Sum of electronic and thermal Enthalpies= -56.519519 Sum of electronic and thermal Free Energies= -56.541365 E (Thermal) CV S KCal/Mol Cal/Mol-Kelvin Cal/Mol-Kelvin Total 23.409 6.326 45.979 Electronic 0.000 0.000 0.000 Translational 0.889 2.981 34.441 Rotational 0.889 2.981 11.463 Vibrational 21.632 0.364 0.075 Q Log10(Q) Ln(Q) Total Bot 0.285062D-07 -7.545061 -17.373146 Total V=0 0.198299D+09 8.297321 19.105287 Vib (Bot) 0.144588D-15 -15.839868 -36.472644 Vib (V=0) 0.100581D+01 0.002514 0.005789 Electronic 0.100000D+01 0.000000 0.000000 Translational 0.276150D+07 6.441145 14.831285 Rotational 0.713940D+02 1.853662 4.268214 ***** Axes restored to original set ***** ------------------------------------------------------------------- Center Atomic Forces (Hartrees/Bohr) Number Number X Y Z ------------------------------------------------------------------- 1 7 0.000000000 0.000000000 0.000000642 2 1 0.000000000 0.000000372 -0.000000214 3 1 -0.000000322 -0.000000186 -0.000000214 4 1 0.000000322 -0.000000186 -0.000000214 ------------------------------------------------------------------- Cartesian Forces: Max 0.000000642 RMS 0.000000283 FormGI is forming the generalized inverse of G from B-inverse, IUseBI=4. GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad Berny optimization. Internal Forces: Max 0.000000426 RMS 0.000000282 Search for a local minimum. Step number 1 out of a maximum of 2 All quantities printed in internal units (Hartrees-Bohrs-Radians) Second derivative matrix not updated -- analytic derivatives used. The second derivative matrix: R1 R2 R3 A1 A2 R1 0.44953 R2 -0.00256 0.44953 R3 -0.00256 -0.00256 0.44953 A1 0.00870 0.00870 -0.00722 0.05336 A2 0.02140 -0.00142 0.02398 -0.04151 0.14022 A3 -0.00142 0.02140 0.02398 -0.04151 -0.02110 D1 -0.01807 -0.01807 -0.01191 -0.02513 -0.00319 A3 D1 A3 0.14022 D1 -0.00319 0.03080 ITU= 0 Eigenvalues --- 0.04540 0.15059 0.15953 0.44972 0.45387 Eigenvalues --- 0.45406 Angle between quadratic step and forces= 52.36 degrees. Linear search not attempted -- first point. Iteration 1 RMS(Cart)= 0.00000084 RMS(Int)= 0.00000000 ClnCor: largest displacement from symmetrization is 7.08D-13 for atom 4. Variable Old X -DE/DX Delta X Delta X Delta X New X (Linear) (Quad) (Total) R1 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 R2 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 R3 1.92368 0.00000 0.00000 0.00000 0.00000 1.92368 A1 1.84559 0.00000 0.00000 0.00000 0.00000 1.84559 A2 1.84559 0.00000 0.00000 0.00000 0.00000 1.84559 A3 1.84559 0.00000 0.00000 0.00000 0.00000 1.84559 D1 -1.95239 0.00000 0.00000 0.00000 0.00000 -1.95238 Item Value Threshold Converged? Maximum Force 0.000000 0.000002 YES RMS Force 0.000000 0.000001 YES Maximum Displacement 0.000002 0.000006 YES RMS Displacement 0.000001 0.000004 YES Predicted change in Energy=-9.118263D-13 Optimization completed. -- Stationary point found. ---------------------------- ! Optimized Parameters ! ! (Angstroms and Degrees) ! -------------------------- -------------------------- ! Name Definition Value Derivative Info. ! -------------------------------------------------------------------------------- ! R1 R(1,2) 1.018 -DE/DX = 0.0 ! ! R2 R(1,3) 1.018 -DE/DX = 0.0 ! ! R3 R(1,4) 1.018 -DE/DX = 0.0 ! ! A1 A(2,1,3) 105.7445 -DE/DX = 0.0 ! ! A2 A(2,1,4) 105.7445 -DE/DX = 0.0 ! ! A3 A(3,1,4) 105.7445 -DE/DX = 0.0 ! ! D1 D(2,1,4,3) -111.8635 -DE/DX = 0.0 ! -------------------------------------------------------------------------------- GradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGradGrad 1|1| IMPERIAL COLLEGE-CHWS-271|Freq|RB3LYP|6-31G(d,p)|H3N1|SW2711|24-J an-2014|0||#N Geom=AllCheck Guess=TCheck SCRF=Check GenChk RB3LYP/6-31 G(d,p) Freq||NH3 frequency||0,1|N,0.,-0.0000001,0.1192450785|H,0.00000 03821,0.9371758064,-0.2781993215|H,-0.8116183338,-0.4685877223,-0.2781 993215|H,0.8116179517,-0.4685883841,-0.2781993215||Version=EM64W-G09Re vD.01|State=1-A1|HF=-56.5577687|RMSD=3.256e-010|RMSF=2.834e-007|ZeroPo int=0.0344424|Thermal=0.0373053|Dipole=0.,0.,-0.7264574|DipoleDeriv=-0 .3088821,0.,0.,0.,-0.3088834,0.0000009,0.,0.0000014,-0.5554784,0.16132 99,0.,0.,0.,0.0445925,0.0937742,0.,0.1861335,0.1851594,0.0737764,-0.05 05491,-0.0812113,-0.050549,0.1321456,-0.0468873,-0.1611967,-0.093067,0 .1851594,0.0737765,0.0505492,0.0812113,0.050549,0.1321455,-0.0468874,0 .1611967,-0.0930671,0.1851594|Polar=9.8262281,0.,9.8262233,0.,0.000005 2,6.0675499|PG=C03V [C3(N1),3SGV(H1)]|NImag=0||0.63161108,0.,0.6316111 9,0.,-0.00000006,0.22812006,-0.06038477,-0.00000012,0.00000005,0.05982 543,-0.00000012,-0.36068946,0.11894863,0.00000014,0.39661599,0.0000000 7,0.17856970,-0.07604004,-0.00000006,-0.14162354,0.07583140,-0.2856133 3,-0.13003561,-0.10301257,0.00027966,0.00278187,-0.00242591,0.31241847 ,-0.13003566,-0.13546080,-0.05947426,-0.03437959,-0.01796326,-0.018473 09,0.14583452,0.14402295,-0.15464591,-0.08928477,-0.07604002,0.0147852 1,0.01133743,0.00010432,0.12264961,0.07081172,0.07583140,-0.28561312,0 .13003573,0.10301252,0.00027969,-0.00278188,0.00242590,-0.02708474,0.0 1858074,0.01721112,0.31241823,0.13003578,-0.13546101,-0.05947434,0.034 37958,-0.01796328,-0.01847309,-0.01858071,0.00940115,0.00713564,-0.145 83466,0.14402319,0.15464583,-0.08928490,-0.07604002,-0.01478521,0.0113 3744,0.00010432,-0.01721111,0.00713566,0.00010432,-0.12264955,0.070811 82,0.07583140||0.,0.,-0.00000064,0.,-0.00000037,0.00000021,0.00000032, 0.00000019,0.00000021,-0.00000032,0.00000019,0.00000021|||@ MODELS ARE TO BE USED, NOT BELIEVED. -- PARAPHRASED BY H. THIEL IN "PRINCIPLES OF ECONOMETRICS" Job cpu time: 0 days 0 hours 0 minutes 4.0 seconds. File lengths (MBytes): RWF= 5 Int= 0 D2E= 0 Chk= 1 Scr= 1 Normal termination of Gaussian 09 at Fri Jan 24 17:14:43 2014.