Coordination Compounds
Define crystal field splitting energy.
The extent of crystal field splitting in octahedral complex of the given metal with particular weak field ligand are such that :
The trend of $$+3$$ charged ion with weak field ligand is $$Fe(III) < Cr (III) < Rh(III) < Ir(III)$$, so is the trend of crystal field splitting.
Define crystal field splitting energy.
On the basis of crystal field theory, write the electronic configuration for $$d^{4}$$ ion, if $$\Delta_0 > P$$
The complex that has the highest crystal splitting energy $$(\Delta)$$, is:
Geometrical shapes of the complexes formed by the reaction of $$Ni^{2+}$$ with $$Cl^{-},\ CN^{-}$$ and $$H_{2}O$$, respectively, are:
A metal ion $$M^{n+}$$ having $$d^4$$ valence electronic configuration combines with three bidentate ligands to form a compound. Assuming $$\Delta_0 > P$$: Explain orbital splitting during this complex formation.
Geometrical shapes of the complexes formed by the reaction of $$Ni^{2+}$$ with $$Cl^{-},\ CN^{-}$$ and $$H_{2}O$$, respectively, are:
Select the correct order of magnetic moment (in B.M.) from the following options :
The increasing order of the crystal field splitting power of some common ligands is?
In which of the following complexes of the Co (atomic no. $$=27$$), will the magnitude of $$\Delta_o$$ be the highest?