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In all the following exercises, '''<font color=red><math>\pi</math> the system will be taken as active</font>''', and the <math>\sigma</math> system as inactive. In all VB calculations, the <math>\sigma</math> orbitals shall be described by MOs delocalized onto the whole molecule.
 
In all the following exercises, '''<font color=red><math>\pi</math> the system will be taken as active</font>''', and the <math>\sigma</math> system as inactive. In all VB calculations, the <math>\sigma</math> orbitals shall be described by MOs delocalized onto the whole molecule.
  
=Exercises=
 
  
'''Main Exercises'''
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<big><big><center><font color=red> '''***** INPUT FILES TO BE WRITTEN *****''' </font></center></big></big>
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!<big>'''Main exercises'''</big>
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== Exercise 1 : The allyl radical ==
 
== Exercise 1 : The allyl radical ==
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!<big><big><big>'''Additional Optional-Exercises/Homework'''</big></big></big>
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!'''Optional Exercises'''
 
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Version du 12 juillet 2012 à 09:16

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VB applications on PI systems

In all the following exercises, <math>\pi</math> the system will be taken as active, and the <math>\sigma</math> system as inactive. In all VB calculations, the <math>\sigma</math> orbitals shall be described by MOs delocalized onto the whole molecule.


>> general guidelines for BOVB calculations