Which type of isomerism is exhibited by the octahedral complex $[Co(NH_3)_4Br_2]Cl$?

  • A
    Geometrical and Ionization
  • B
    Geometrical and Optical
  • C
    Optical and Ionization
  • D
    Geometrical only

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Similar Questions

$Ni(CO)_4$ and $[Ni(NH_3)_4]^{2+}$ do not differ in

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Consider the following statements and select the correct option using the codes given.
$(i)$ $[Cr(NH_3)_6][Cr(CN)_6]$ and $[Cr(NH_3)_4(CN)_2][Cr(NH_3)_2(CN)_4]$ are coordination isomers.
$(ii)$ $[Cr(py)_2(H_2O)_2Cl_2]Cl$ and $[Cr(py)_2(H_2O)Cl_3]H_2O$ are linkage isomers.
$(iii)$ $[Pt(NH_3)_4Br_2]Cl_2$ and $[Pt(NH_3)_4Cl_2]Br_2$ are linkage isomers.
$(iv)$ $[NiCl_2(PPh_3)_2]$ (tetrahedral) exhibits geometrical isomerism.

If $[Co(NH_3)_x(NO_2)_y]$ shows facial and meridional isomers, identify the values of $x$ and $y$.

Maximum number of stereoisomers are possible for the octahedral complex $Mabcdef$ :-

Difficult
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Match the following:
List-$I$ (Complex) List-$II$ (Spin only Magnetic moment)
$A$. $[CoF_6]^{3-}$ $I$. $0$
$B$. $[Co(C_2O_4)_3]^{3-}$ $II$. $\sqrt{24}$
$C$. $[FeF_6]^{3-}$ $III$. $\sqrt{8}$
$D$. $[Mn(CN)_6]^{3-}$ $IV$. $\sqrt{35}$
$V$. $\sqrt{15}$

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