Question

In which of the following pairs of molecules/ions, the central atoms have $$s{p^2}$$  hybridisation?

A. $$NO_2^ - \,{\text{and}}\,N{H_3}$$
B. $$B{F_3}\,{\text{and}}\,NO_2^ - $$  
C. $$NH_2^ - \,{\text{and}}\,{H_2}O$$
D. $$B{F_3}\,{\text{and}}\,NH_2^ - $$
Answer :   $$B{F_3}\,{\text{and}}\,NO_2^ - $$
Solution :
Key Idea For $$s{p^2}$$  hybridisation, there must be $$3\sigma - {\text{bonds}}\,\,{\text{or}}\,2\sigma - {\text{bonds}}\,$$     along with a lone pair of electrons.
$$\left( {\text{i}} \right)NO_2^ - \Rightarrow 2\sigma + 1\,lp = 3,$$      $${\text{i}}{\text{.e}}{\text{.}}\,s{p^2}\,\,{\text{hybridisation}}$$
$$\left( {{\text{ii}}} \right)N{H_3} \Rightarrow 3\sigma + 1\,lp = 4,$$      $${\text{i}}{\text{.e}}{\text{.}}\,s{p^3}\,\,{\text{hybridisation}}$$
$$\left( {{\text{iii}}} \right)B{F_3} \Rightarrow 3\sigma + 0\,lp = 3,$$      $${\text{i}}{\text{.e}}{\text{.}}\,s{p^2}\,\,{\text{hybridisation}}$$
$$\left( {{\text{iv}}} \right)NH_2^ - \Rightarrow 2\sigma + 2\,lp = 4,$$      $${\text{i}}{\text{.e}}{\text{.}}\,s{p^3}\,\,{\text{hybridisation}}$$
$$\left( {\text{v}} \right){H_2}O \Rightarrow 2\sigma + 2\,lp = 4,$$      $${\text{i}}{\text{.e}}{\text{.}}\,s{p^3}\,\,{\text{hybridisation}}$$
Thus, among the given pairs, only $$B{F_3}$$  and $$NO_2^ - $$  have $$s{p^2}$$  hybridisation.

Releted MCQ Question on
Inorganic Chemistry >> Chemical Bonding and Molecular Structure

Releted Question 1

The compound which contains both ionic and covalent bonds is

A. $$C{H_4}$$
B. $${H_2}$$
C. $$KCN$$
D. $$KCl$$
Releted Question 2

The octet rule is not valid for the molecule

A. $$C{O_2}$$
B. $${H_2}O$$
C. $${O_2}$$
D. $$CO$$
Releted Question 3

Element $$X$$ is strongly electropositive and element $$Y$$ is strongly electronegative. Both are univalent. The compound formed would be

A. $${X^ + }{Y^ - }$$
B. $${X^ - }{Y^{ + \,}}$$
C. $$X - Y$$
D. $$X \to Y$$
Releted Question 4

Which of the following compounds are covalent?

A. $${H_2}$$
B. $$CaO$$
C. $$KCl$$
D. $$N{a_2}S$$

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Chemical Bonding and Molecular Structure


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