The complex with the highest magnitude of crystal field splitting energy $\left(\Delta_0\right)$ is

  • A
    $[Cr(OH_2)_6]^{3+}$
  • B
    $[Ti(OH_2)_6]^{3+}$
  • C
    $[Fe(OH_2)_6]^{3+}$
  • D
    $[Mn(OH_2)_6]^{3+}$

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The complex that has the highest crystal field splitting energy $(\Delta)$ is

The electron distribution in $d^{n}$ coordination complexes depends on the magnitude of crystal field splitting,$(\Delta_{0})$ and pairing energy $(P).$ The condition which favours the formation of high spin complexes is

The homoleptic and octahedral complex of $Co^{2+}$ and $H_2O$ has $.......$ unpaired electron$(s)$ in the $t_{2g}$ set of orbitals.

Match the following complexes in List-$I$ with their electronic configurations in List-$II$.
List-$I$ (Complex)List-$II$ (Electronic configuration of metal/ion)
$A. [Co(NH_3)_6]^{3+}$$I. t_{2g}^5 e_g^0$
$B. [CoF_6]^{3-}$$II. t_{2g}^6 e_g^0$
$C. [Ni(CO)_4]$$III. t_{2g}^4 e_g^2$
$D. [Fe(CN)_6]^{3-}$$IV. t^4 e^6$

The correct order of energies of $d-$ orbitals of a metal ion in a square planar complex is:

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