If $\Delta_0 < P$,the correct electronic configuration for a $d^4$ system is .....

  • A
    $t_{2g}^3 e_g^1$
  • B
    $t_{2g}^4 e_g^0$
  • C
    $t_{2g}^2 e_g^2$
  • D
    $t_{2g}^0 e_g^4$

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Similar Questions

The electronic spectrum of $[Ti(H_2O)_6]^{3+}$ gives a single broad peak with a maxima at $20300 \, cm^{-1}$. The crystal field stabilization energy is equal to .......... $kJ \, mol^{-1}$

Low spin complex of $d^6$ cation in an octahedral field will have the following energy:
($\Delta_o =$ crystal field splitting energy in an octahedral field,$P =$ Electron pairing energy)

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$

Consider the following complexes:
$[CoCl(NH_3)_5]^{2+},$ $[Co(CN)_6]^{3-}$
$(A)$ $(B)$
$[Co(NH_3)_5(H_2O)]^{3+},$ $[Cu(H_2O)_4]^{2+}$
$(C)$ $(D)$
The correct order of $A, B, C,$ and $D$ in terms of the wavenumber of light absorbed is:

How many of the following ligands are stronger than $H_2O$? $S^{2-}$,$Br^{-}$,$C_2O_4^{2-}$,$CN^{-}$,$en$,$NH_3$,$CO$,$OH^{-}$

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