$CrCl_3 \cdot xNH_3$ can exist as a complex. $A$ $0.1 \ m$ aqueous solution of this complex shows a depression in freezing point of $0.558^{\circ} C$. Assuming $100 \%$ ionisation of this complex and that the coordination number of $Cr$ is $6$,the complex will be: (Given $K_f = 1.86 \ K \ kg \ mol^{-1}$)

  • A
    $[Cr(NH_3)_6]Cl_3$
  • B
    $[Cr(NH_3)_4Cl_2]Cl$
  • C
    $[Cr(NH_3)_5Cl]Cl_2$
  • D
    $[Cr(NH_3)_3Cl_3]$

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