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# Compute bond energies at the L-BOVB and VBCISD levels.
 
# Compute bond energies at the L-BOVB and VBCISD levels.
  
[[Hints and remarks on Exercise 3 of tutorial 1|>> Hints and remarks]]
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!'''Remarks'''
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* We do not recommend to use the ''frgtyp=atom'' specification together with the automatic guess (''guess=auto''). With ''frgtyp=atom'' you should specify orbital guess from HF MOs through an extra $gus section (see manual, and next exercises).
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* A better BOVB bond energies can be obtained by going to the S-BOVB level, as will be seen in TutorialE
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{| class="collapsible collapsed wikitable"
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!'''Hints'''
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* To compute the bond energy at the BOVB level, you can simply use the ROHF energies computed with Gamess for the separate H and F atoms, as the L-BOVB wave function dissociate to uncorrelated H+F fragments.
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* To compute the bond energy at the VBCISD level, you should however compute the separate fragments at this level of theory.
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== Exercise 4 : F<math>{}_2</math> molecule and charge-shift resonance energy ==
 
== Exercise 4 : F<math>{}_2</math> molecule and charge-shift resonance energy ==

Version du 28 juin 2012 à 22:51

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