7. MO Diagram. Consider the molecule [Cr(CO)6]²*. e) bonding (nb), and antibonding (*) orbitals, fully label the diagram and add the correct number of electrons. Construct an MO diagram considering only o bonding. Indicate bonding, non- Draw the crystal field splitting diagram for [Cr(CO)e]²* and put the correct number of f) electrons in. Would this compound be paramagnetic or diamagnetic? g) field splitting in your above diagram? Draw a picture of the orbital interaction that is occurring and label the symmetry of the orbitals involved. What interaction of the CO ligands with the metal affects the magnitude of the crystal

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7.
MO Diagram. Consider the molecule [Cr(CO)6]²*.
e)
bonding (nb), and antibonding (*) orbitals, fully label the diagram and add the correct number
of electrons.
Construct an MO diagram considering only o bonding. Indicate bonding, non-
Draw the crystal field splitting diagram for [Cr(CO)e]²* and put the correct number of
f)
electrons in. Would this compound be paramagnetic or diamagnetic?
g)
field splitting in your above diagram? Draw a picture of the orbital interaction that is occurring and
label the symmetry of the orbitals involved.
What interaction of the CO ligands with the metal affects the magnitude of the crystal
Transcribed Image Text:7. MO Diagram. Consider the molecule [Cr(CO)6]²*. e) bonding (nb), and antibonding (*) orbitals, fully label the diagram and add the correct number of electrons. Construct an MO diagram considering only o bonding. Indicate bonding, non- Draw the crystal field splitting diagram for [Cr(CO)e]²* and put the correct number of f) electrons in. Would this compound be paramagnetic or diamagnetic? g) field splitting in your above diagram? Draw a picture of the orbital interaction that is occurring and label the symmetry of the orbitals involved. What interaction of the CO ligands with the metal affects the magnitude of the crystal
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