03. Hybridisation
COORDINATION COMPOUNDS

274133 The hybridization and magnetic nature of $\left[\mathrm{Mn}(\mathrm{CN})_{6}\right]^{4-}$, respectively are :

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
2 $\mathrm{sp}^{3} \mathrm{~d}$ and paramagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and diamagnetic
COORDINATION COMPOUNDS

274134 What is the hybridization present in the complex $\left[\mathrm{Co}\left(\mathrm{NH}_{3}\right)_{6}\right]^{3+}$

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$
2 $\mathrm{sp}^{3} \mathrm{~d}^{2}$
3 $\mathrm{dsp}^{3}$
4 $\mathrm{sp}^{3} \mathrm{~d}$
COORDINATION COMPOUNDS

274135 The hybridisation and magnetic nature of $\left[\mathrm{Mn}(\mathrm{CN})_{6}\right]^{4-}$ and $\left[\mathrm{Fe}(\mathrm{CN})_{6}\right]^{3-}$, respectively are

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
2 $\mathrm{sp}^{2} \mathrm{~d}^{2}$ and diamagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and paramagnetic
COORDINATION COMPOUNDS

274136 According to the valence bond theory the hybridisation of central metal atom is $\mathrm{dsp}^{2}$ for which one of the following compound?

1 $\mathrm{NiCl}_{2} \cdot 6 \mathrm{H}_{2} \mathrm{O}$
2 $\mathrm{K}_{2}\left[\mathrm{Ni}(\mathrm{CN})_{4}\right]$
3 $\left[\mathrm{Ni}(\mathrm{CO})_{4}\right]$
4 $\mathrm{Na}_{2}\left[\mathrm{NiCl}_{4}\right]$
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COORDINATION COMPOUNDS

274133 The hybridization and magnetic nature of $\left[\mathrm{Mn}(\mathrm{CN})_{6}\right]^{4-}$, respectively are :

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
2 $\mathrm{sp}^{3} \mathrm{~d}$ and paramagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and diamagnetic
COORDINATION COMPOUNDS

274134 What is the hybridization present in the complex $\left[\mathrm{Co}\left(\mathrm{NH}_{3}\right)_{6}\right]^{3+}$

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$
2 $\mathrm{sp}^{3} \mathrm{~d}^{2}$
3 $\mathrm{dsp}^{3}$
4 $\mathrm{sp}^{3} \mathrm{~d}$
COORDINATION COMPOUNDS

274135 The hybridisation and magnetic nature of $\left[\mathrm{Mn}(\mathrm{CN})_{6}\right]^{4-}$ and $\left[\mathrm{Fe}(\mathrm{CN})_{6}\right]^{3-}$, respectively are

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
2 $\mathrm{sp}^{2} \mathrm{~d}^{2}$ and diamagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and paramagnetic
COORDINATION COMPOUNDS

274136 According to the valence bond theory the hybridisation of central metal atom is $\mathrm{dsp}^{2}$ for which one of the following compound?

1 $\mathrm{NiCl}_{2} \cdot 6 \mathrm{H}_{2} \mathrm{O}$
2 $\mathrm{K}_{2}\left[\mathrm{Ni}(\mathrm{CN})_{4}\right]$
3 $\left[\mathrm{Ni}(\mathrm{CO})_{4}\right]$
4 $\mathrm{Na}_{2}\left[\mathrm{NiCl}_{4}\right]$
COORDINATION COMPOUNDS

274133 The hybridization and magnetic nature of $\left[\mathrm{Mn}(\mathrm{CN})_{6}\right]^{4-}$, respectively are :

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
2 $\mathrm{sp}^{3} \mathrm{~d}$ and paramagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and diamagnetic
COORDINATION COMPOUNDS

274134 What is the hybridization present in the complex $\left[\mathrm{Co}\left(\mathrm{NH}_{3}\right)_{6}\right]^{3+}$

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$
2 $\mathrm{sp}^{3} \mathrm{~d}^{2}$
3 $\mathrm{dsp}^{3}$
4 $\mathrm{sp}^{3} \mathrm{~d}$
COORDINATION COMPOUNDS

274135 The hybridisation and magnetic nature of $\left[\mathrm{Mn}(\mathrm{CN})_{6}\right]^{4-}$ and $\left[\mathrm{Fe}(\mathrm{CN})_{6}\right]^{3-}$, respectively are

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
2 $\mathrm{sp}^{2} \mathrm{~d}^{2}$ and diamagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and paramagnetic
COORDINATION COMPOUNDS

274136 According to the valence bond theory the hybridisation of central metal atom is $\mathrm{dsp}^{2}$ for which one of the following compound?

1 $\mathrm{NiCl}_{2} \cdot 6 \mathrm{H}_{2} \mathrm{O}$
2 $\mathrm{K}_{2}\left[\mathrm{Ni}(\mathrm{CN})_{4}\right]$
3 $\left[\mathrm{Ni}(\mathrm{CO})_{4}\right]$
4 $\mathrm{Na}_{2}\left[\mathrm{NiCl}_{4}\right]$
COORDINATION COMPOUNDS

274133 The hybridization and magnetic nature of $\left[\mathrm{Mn}(\mathrm{CN})_{6}\right]^{4-}$, respectively are :

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
2 $\mathrm{sp}^{3} \mathrm{~d}$ and paramagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and diamagnetic
COORDINATION COMPOUNDS

274134 What is the hybridization present in the complex $\left[\mathrm{Co}\left(\mathrm{NH}_{3}\right)_{6}\right]^{3+}$

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$
2 $\mathrm{sp}^{3} \mathrm{~d}^{2}$
3 $\mathrm{dsp}^{3}$
4 $\mathrm{sp}^{3} \mathrm{~d}$
COORDINATION COMPOUNDS

274135 The hybridisation and magnetic nature of $\left[\mathrm{Mn}(\mathrm{CN})_{6}\right]^{4-}$ and $\left[\mathrm{Fe}(\mathrm{CN})_{6}\right]^{3-}$, respectively are

1 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
2 $\mathrm{sp}^{2} \mathrm{~d}^{2}$ and diamagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and paramagnetic
COORDINATION COMPOUNDS

274136 According to the valence bond theory the hybridisation of central metal atom is $\mathrm{dsp}^{2}$ for which one of the following compound?

1 $\mathrm{NiCl}_{2} \cdot 6 \mathrm{H}_{2} \mathrm{O}$
2 $\mathrm{K}_{2}\left[\mathrm{Ni}(\mathrm{CN})_{4}\right]$
3 $\left[\mathrm{Ni}(\mathrm{CO})_{4}\right]$
4 $\mathrm{Na}_{2}\left[\mathrm{NiCl}_{4}\right]$