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## Compute a purely covalent wave function for F<math>{}_2</math> at the VBSCF level. What would be the L-BOVB solution ?
 
## Compute a purely covalent wave function for F<math>{}_2</math> at the VBSCF level. What would be the L-BOVB solution ?
 
## Compute a purely covalent wave function for F<math>{}_2</math> at the D-BOVB level.
 
## Compute a purely covalent wave function for F<math>{}_2</math> at the D-BOVB level.
## Deduce the RE_<sub>CS</sub> at the VBSCF, L-BOVB and D-BOVB. Compare it with the experimental bond energy : ~40 kcal/mol).
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## Deduce the RE_<sub>CS</sub> at the VBSCF, L-BOVB and D-BOVB. Compare it with the estimated exact bond energy : 39.0 kcal/mol).
  
  
 
<font color=red>'''If you have not finished these first three exercises by the end of tutorial session 1, we recommend that after having completed them you move directly to [[VBTutorial2|tutorial 2]]'''</font>
 
<font color=red>'''If you have not finished these first three exercises by the end of tutorial session 1, we recommend that after having completed them you move directly to [[VBTutorial2|tutorial 2]]'''</font>
 
  
 
== Exercice 4 '''(optional)''' : Solvent effect on C(Me)<math>{}_3</math>-Cl weights ==
 
== Exercice 4 '''(optional)''' : Solvent effect on C(Me)<math>{}_3</math>-Cl weights ==

Version du 5 juillet 2012 à 16:54

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