Which of the following inner orbital complexes exhibits both geometrical and optical isomerism?

  • A
    $[Cr(en)_3]^{3+}$
  • B
    $[IrF_3(H_2O)_2(NH_3)]$
  • C
    $[NiCl_2(en)_2]$
  • D
    $[Co(CN)_2(ox)_2]^{3-}$

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Similar Questions

Which one of the following will be able to show $cis-trans$ isomerism?

The magnetic moment of $Fe^{2+}$ is $B.M$.

How many geometrical isomers are possible for the square planar complex $[Pt(NO_2)(Py)(NH_3)(NO_2)]$?

Match List-$I$ with List-$II$ :
List-$I$ (Complexes) List-$II$ (Types)
$a$. $[Co(NH_3)_5NO_2]Cl_2$ and $[Co(NH_3)_5ONO]Cl_2$ $i$. Linkage isomerism
$b$. $[Cr(NH_3)_6][Co(CN)_6]$ and $[Cr(CN)_6][Co(NH_3)_6]$ $ii$. Coordination isomerism
$c$. $[Co(NH_3)_5(SO_4)]Br$ and $[Co(NH_3)_5Br]SO_4$ $iii$. Ionisation isomerism
$d$. $[Cr(H_2O)_6]Cl_3$ and $[Cr(H_2O)_5Cl]Cl_2 \cdot H_2O$ $iv$. Solvate isomerism

Choose the correct answer from the options given below :

What type of isomerism is exhibited by $[Co(NH_3)_6][Cr(CN)_6]$ and $[Cr(NH_3)_6][Co(CN)_6]$?

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