Which of the following has a non-zero magnetic moment and $sp^3d^2$ hybridization?

  • A
    $[Ni(CN)_6]^{2-}$
  • B
    $[Mn(NH_3)_6]^{2+}$
  • C
    $[Co(H_2O)_6]^{3+}$
  • D
    None of these

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Similar Questions

$A$ tetrahedral complex ion is formed due to $........$ hybridization.

The species which has four unpaired electrons is

Match the complexes in List-$I$ with their hybridization in List-$II$.
List-$I$ (Complex)List-$II$ (Hybridization)
$A. Ni(CO)_4$$I. sp^3d^2$
$B. [Ni(CN)_4]^{2-}$$II. d^2sp^3$
$C. [Co(NH_3)_6]^{3+}$$III. dsp^2$
$D. [CoF_6]^{3-}$$IV. sp^3$

Explain Valence Bond Theory.

Identify the $CORRECT$ set of details from the following:
$A$. $[Co(NH_{3})_{6}]^{3+}$: Inner orbital complex; $d^{2}sp^{3}$ hybridized
$B$. $[MnCl_{6}]^{3-}$: Outer orbital complex; $sp^{3}d^{2}$ hybridized
$C$. $[CoF_{6}]^{3-}$: Outer orbital complex; $d^{2}sp^{3}$ hybridized
$D$. $[FeF_{6}]^{3-}$: Outer orbital complex; $sp^{3}d^{2}$ hybridized
$E$. $[Ni(CN)_{4}]^{2-}$: Inner orbital complex; $sp^{3}$ hybridized
Choose the correct answer from the options given below:

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