Which of the following will give $Fe^{3+}$ ions in solution?

  • A
    $[Fe(CN)_6]^{3-}$
  • B
    $Fe_2(SO_4)_3$
  • C
    $[Fe(CN)_6]^{4-}$
  • D
    $(NH_4)_2SO_4 \cdot FeSO_4 \cdot 6H_2O$

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An octahedral complex with the formula $CoCl_3 \cdot nNH_3$ upon reaction with excess of $AgNO_3$ solution gives $2$ moles of $AgCl$. Consider the oxidation state of $Co$ in the complex is '$x$'. The value of $x+n$ is . . . . .

Which coordination complex from the following contains a neutral ligand?

The volume (in $mL$) of $0.1 \, M \, AgNO_3$ required for complete precipitation of chloride ions present in $20 \, mL$ of $0.01 \, M$ solution of $[Cr(H_2O)_5Cl]Cl_2$ as silver chloride is $..........$.

What is the coordination number of $Co$ in the complex $[CoF_6]^{3-}$?

One mole of the octahedral complex compound $Co(NH_3)_5Cl_3$ gives $3$ moles of ions on dissolution in water. One mole of the same complex reacts with excess of $AgNO_3$ solution to yield two moles of $AgCl_{(s)}$. The structure of the complex is :

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