03. Hybridisation
COORDINATION COMPOUNDS

274141 Which of the following outer octahedral complexes have same number of unpaired electrons?
1.$\left(\mathrm{MnCl}_{6}\right)^{3-}$
3.$\left(\mathrm{CoF}_{6}\right)^{3-}$
2.$\left(\mathrm{FeF}_{6}\right)^{3-}$
4.$\left[\mathrm{Ni}\left(\mathrm{NH}_{3}\right)_{6}\right]^{2+}$

1 1 and 3
2 1 and 2
3 3 and 4
4 2 and 3
COORDINATION COMPOUNDS

274142 The ion that has $\mathbf{s p}^{3} \mathrm{~d}^{2}$ hybridization for the central atom,

1 $\left[\mathrm{ICl}_{4}\right]^{-}$
2 $\left[\mathrm{ICl}_{2}\right]^{-}$
3 $\left[\mathrm{IF}_{6}\right]^{-}$
4 $\left[\mathrm{BrF}_{2}\right]^{-}$
COORDINATION COMPOUNDS

274144 The complexes $\left[\mathrm{Ni}(\mathrm{CO})_{4}\right]$ and $\left[\mathrm{Ni}(\mathrm{CN})_{4}\right]^{2-}$ are, respectively

1 tetrahedral and square planar
2 tetrahedral and tetrahedral
3 square planar and square planar
4 square planar and tetrahedral.
COORDINATION COMPOUNDS

274147 Regarding $\left[\mathrm{Ni}(\mathrm{CN})_4\right]^{--}$complex ion which of the following statements is true?

1 $\mathrm{Ni}^{+2}$ ion is $\mathrm{sp}^3$-hybridized and complex ion is paramagnetic.
2 $\mathrm{Ni}^{+2}$ ion is $\mathrm{dsp}^2$-hybridized and complex ion is diamagnetic
3 $\mathrm{Ni}^{+2}$ ion is $\mathrm{sp}^3$-hybridized and complex ion is diamagnetic
4 $\mathrm{Ni}^{+2}$ ion is $\mathrm{dsp}^2$-hybridized and complex ion is paramagnetic.
COORDINATION COMPOUNDS

274148 Which of the given options are correct for $\left[\mathrm{Fe}(\mathrm{CN})_6\right]^{3-}$ complex?

1 $\mathrm{d}^2 \mathrm{sp}^2$ Hybridization
2 $\mathrm{sp}^3 \mathrm{~d}^2$ Hybridization
3 Paramagnetic
4 Diamagnetic
COORDINATION COMPOUNDS

274141 Which of the following outer octahedral complexes have same number of unpaired electrons?
1.$\left(\mathrm{MnCl}_{6}\right)^{3-}$
3.$\left(\mathrm{CoF}_{6}\right)^{3-}$
2.$\left(\mathrm{FeF}_{6}\right)^{3-}$
4.$\left[\mathrm{Ni}\left(\mathrm{NH}_{3}\right)_{6}\right]^{2+}$

1 1 and 3
2 1 and 2
3 3 and 4
4 2 and 3
COORDINATION COMPOUNDS

274142 The ion that has $\mathbf{s p}^{3} \mathrm{~d}^{2}$ hybridization for the central atom,

1 $\left[\mathrm{ICl}_{4}\right]^{-}$
2 $\left[\mathrm{ICl}_{2}\right]^{-}$
3 $\left[\mathrm{IF}_{6}\right]^{-}$
4 $\left[\mathrm{BrF}_{2}\right]^{-}$
COORDINATION COMPOUNDS

274144 The complexes $\left[\mathrm{Ni}(\mathrm{CO})_{4}\right]$ and $\left[\mathrm{Ni}(\mathrm{CN})_{4}\right]^{2-}$ are, respectively

1 tetrahedral and square planar
2 tetrahedral and tetrahedral
3 square planar and square planar
4 square planar and tetrahedral.
COORDINATION COMPOUNDS

274147 Regarding $\left[\mathrm{Ni}(\mathrm{CN})_4\right]^{--}$complex ion which of the following statements is true?

1 $\mathrm{Ni}^{+2}$ ion is $\mathrm{sp}^3$-hybridized and complex ion is paramagnetic.
2 $\mathrm{Ni}^{+2}$ ion is $\mathrm{dsp}^2$-hybridized and complex ion is diamagnetic
3 $\mathrm{Ni}^{+2}$ ion is $\mathrm{sp}^3$-hybridized and complex ion is diamagnetic
4 $\mathrm{Ni}^{+2}$ ion is $\mathrm{dsp}^2$-hybridized and complex ion is paramagnetic.
COORDINATION COMPOUNDS

274148 Which of the given options are correct for $\left[\mathrm{Fe}(\mathrm{CN})_6\right]^{3-}$ complex?

1 $\mathrm{d}^2 \mathrm{sp}^2$ Hybridization
2 $\mathrm{sp}^3 \mathrm{~d}^2$ Hybridization
3 Paramagnetic
4 Diamagnetic
COORDINATION COMPOUNDS

274141 Which of the following outer octahedral complexes have same number of unpaired electrons?
1.$\left(\mathrm{MnCl}_{6}\right)^{3-}$
3.$\left(\mathrm{CoF}_{6}\right)^{3-}$
2.$\left(\mathrm{FeF}_{6}\right)^{3-}$
4.$\left[\mathrm{Ni}\left(\mathrm{NH}_{3}\right)_{6}\right]^{2+}$

1 1 and 3
2 1 and 2
3 3 and 4
4 2 and 3
COORDINATION COMPOUNDS

274142 The ion that has $\mathbf{s p}^{3} \mathrm{~d}^{2}$ hybridization for the central atom,

1 $\left[\mathrm{ICl}_{4}\right]^{-}$
2 $\left[\mathrm{ICl}_{2}\right]^{-}$
3 $\left[\mathrm{IF}_{6}\right]^{-}$
4 $\left[\mathrm{BrF}_{2}\right]^{-}$
COORDINATION COMPOUNDS

274144 The complexes $\left[\mathrm{Ni}(\mathrm{CO})_{4}\right]$ and $\left[\mathrm{Ni}(\mathrm{CN})_{4}\right]^{2-}$ are, respectively

1 tetrahedral and square planar
2 tetrahedral and tetrahedral
3 square planar and square planar
4 square planar and tetrahedral.
COORDINATION COMPOUNDS

274147 Regarding $\left[\mathrm{Ni}(\mathrm{CN})_4\right]^{--}$complex ion which of the following statements is true?

1 $\mathrm{Ni}^{+2}$ ion is $\mathrm{sp}^3$-hybridized and complex ion is paramagnetic.
2 $\mathrm{Ni}^{+2}$ ion is $\mathrm{dsp}^2$-hybridized and complex ion is diamagnetic
3 $\mathrm{Ni}^{+2}$ ion is $\mathrm{sp}^3$-hybridized and complex ion is diamagnetic
4 $\mathrm{Ni}^{+2}$ ion is $\mathrm{dsp}^2$-hybridized and complex ion is paramagnetic.
COORDINATION COMPOUNDS

274148 Which of the given options are correct for $\left[\mathrm{Fe}(\mathrm{CN})_6\right]^{3-}$ complex?

1 $\mathrm{d}^2 \mathrm{sp}^2$ Hybridization
2 $\mathrm{sp}^3 \mathrm{~d}^2$ Hybridization
3 Paramagnetic
4 Diamagnetic
COORDINATION COMPOUNDS

274141 Which of the following outer octahedral complexes have same number of unpaired electrons?
1.$\left(\mathrm{MnCl}_{6}\right)^{3-}$
3.$\left(\mathrm{CoF}_{6}\right)^{3-}$
2.$\left(\mathrm{FeF}_{6}\right)^{3-}$
4.$\left[\mathrm{Ni}\left(\mathrm{NH}_{3}\right)_{6}\right]^{2+}$

1 1 and 3
2 1 and 2
3 3 and 4
4 2 and 3
COORDINATION COMPOUNDS

274142 The ion that has $\mathbf{s p}^{3} \mathrm{~d}^{2}$ hybridization for the central atom,

1 $\left[\mathrm{ICl}_{4}\right]^{-}$
2 $\left[\mathrm{ICl}_{2}\right]^{-}$
3 $\left[\mathrm{IF}_{6}\right]^{-}$
4 $\left[\mathrm{BrF}_{2}\right]^{-}$
COORDINATION COMPOUNDS

274144 The complexes $\left[\mathrm{Ni}(\mathrm{CO})_{4}\right]$ and $\left[\mathrm{Ni}(\mathrm{CN})_{4}\right]^{2-}$ are, respectively

1 tetrahedral and square planar
2 tetrahedral and tetrahedral
3 square planar and square planar
4 square planar and tetrahedral.
COORDINATION COMPOUNDS

274147 Regarding $\left[\mathrm{Ni}(\mathrm{CN})_4\right]^{--}$complex ion which of the following statements is true?

1 $\mathrm{Ni}^{+2}$ ion is $\mathrm{sp}^3$-hybridized and complex ion is paramagnetic.
2 $\mathrm{Ni}^{+2}$ ion is $\mathrm{dsp}^2$-hybridized and complex ion is diamagnetic
3 $\mathrm{Ni}^{+2}$ ion is $\mathrm{sp}^3$-hybridized and complex ion is diamagnetic
4 $\mathrm{Ni}^{+2}$ ion is $\mathrm{dsp}^2$-hybridized and complex ion is paramagnetic.
COORDINATION COMPOUNDS

274148 Which of the given options are correct for $\left[\mathrm{Fe}(\mathrm{CN})_6\right]^{3-}$ complex?

1 $\mathrm{d}^2 \mathrm{sp}^2$ Hybridization
2 $\mathrm{sp}^3 \mathrm{~d}^2$ Hybridization
3 Paramagnetic
4 Diamagnetic
COORDINATION COMPOUNDS

274141 Which of the following outer octahedral complexes have same number of unpaired electrons?
1.$\left(\mathrm{MnCl}_{6}\right)^{3-}$
3.$\left(\mathrm{CoF}_{6}\right)^{3-}$
2.$\left(\mathrm{FeF}_{6}\right)^{3-}$
4.$\left[\mathrm{Ni}\left(\mathrm{NH}_{3}\right)_{6}\right]^{2+}$

1 1 and 3
2 1 and 2
3 3 and 4
4 2 and 3
COORDINATION COMPOUNDS

274142 The ion that has $\mathbf{s p}^{3} \mathrm{~d}^{2}$ hybridization for the central atom,

1 $\left[\mathrm{ICl}_{4}\right]^{-}$
2 $\left[\mathrm{ICl}_{2}\right]^{-}$
3 $\left[\mathrm{IF}_{6}\right]^{-}$
4 $\left[\mathrm{BrF}_{2}\right]^{-}$
COORDINATION COMPOUNDS

274144 The complexes $\left[\mathrm{Ni}(\mathrm{CO})_{4}\right]$ and $\left[\mathrm{Ni}(\mathrm{CN})_{4}\right]^{2-}$ are, respectively

1 tetrahedral and square planar
2 tetrahedral and tetrahedral
3 square planar and square planar
4 square planar and tetrahedral.
COORDINATION COMPOUNDS

274147 Regarding $\left[\mathrm{Ni}(\mathrm{CN})_4\right]^{--}$complex ion which of the following statements is true?

1 $\mathrm{Ni}^{+2}$ ion is $\mathrm{sp}^3$-hybridized and complex ion is paramagnetic.
2 $\mathrm{Ni}^{+2}$ ion is $\mathrm{dsp}^2$-hybridized and complex ion is diamagnetic
3 $\mathrm{Ni}^{+2}$ ion is $\mathrm{sp}^3$-hybridized and complex ion is diamagnetic
4 $\mathrm{Ni}^{+2}$ ion is $\mathrm{dsp}^2$-hybridized and complex ion is paramagnetic.
COORDINATION COMPOUNDS

274148 Which of the given options are correct for $\left[\mathrm{Fe}(\mathrm{CN})_6\right]^{3-}$ complex?

1 $\mathrm{d}^2 \mathrm{sp}^2$ Hybridization
2 $\mathrm{sp}^3 \mathrm{~d}^2$ Hybridization
3 Paramagnetic
4 Diamagnetic