Différences entre les versions de « VBTutorial1 »
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## Compute a VBCISD wave function, freezing the 1s core orbital of fluorine in the VBCI calculation (''NCOR=1'' option), and printing only structures which have a coefficient superior to 0.01 (''ctol=0.01'' option) ; | ## Compute a VBCISD wave function, freezing the 1s core orbital of fluorine in the VBCI calculation (''NCOR=1'' option), and printing only structures which have a coefficient superior to 0.01 (''ctol=0.01'' option) ; | ||
## Compare structure weights at the VBSCF, L-BOVB and VBCI levels | ## Compare structure weights at the VBSCF, L-BOVB and VBCI levels | ||
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− | * To | + | * To go from L-VBSCF to L-BOVB level, starting from the input of the VBSCF wave function as a template, you should simply : |
− | * | + | ** add the ''bovb'' keyword in "$ctrl" section of the VBSCF input ; |
+ | ** change ''iscf=5'' by ''iscf=2'' ; | ||
+ | ** suppress structures with minor weights at the VBSCF level from the '$str'' section | ||
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<big>[[General_guidelines_for_BOVB_calculations| >> general guidelines for BOVB calculations]]</big> | <big>[[General_guidelines_for_BOVB_calculations| >> general guidelines for BOVB calculations]]</big> | ||
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== Exercise 3 : F<math>{}_2</math> molecule and charge-shift resonance energy == | == Exercise 3 : F<math>{}_2</math> molecule and charge-shift resonance energy == |
Version du 9 juillet 2012 à 12:46
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Basics of VB theory and XMVB program
Main exercises | ||||
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Exercise 1 : Starting up with the H<math>{}_2</math> moleculeTwo Gamess and XMVB input files for the H<math>{}_2</math> molecule are provided in the Exercise folder on the tutorial machines :
There are VBSCF calculations with the 6-31G(d,p) basis set. Just inspect these inputs, run the gamess-xmvb program (using : vbrun h2-atom and : vbrun h2-sao, and analyze the outputs. Then these input files could serve you as templates for the next exercises. Exercise 2 : HF molecule : weights and bond energy
Exercise 3 : F<math>{}_2</math> molecule and charge-shift resonance energy
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Optional exercises - homework | ||||||
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Exercise 4 : The lone pairs of H2O(for further reading, see S. Shaik and P.C. Hiberty, "The Chemist's Guide to VB theory", Wiley, Hoboken, New Jersey, 2008, pp. 107-109) This exercise aims at comparing two descriptions of the lone pairs of H<math>{}_2</math>O : (i) the MO description in terms of non-equivalent canonical MOs and (ii) the « rabbit-ear » VB description in terms of two equivalent hybrid orbitals.
Exercice 5 : Solvent effect on C(Me)<math>{}_3</math>-Cl weights
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