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Exercises · 4.31

Q.What do you understand by bond pairs and lone pairs of electrons? Illustrate by giving one example of each type.

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Bond pairs are shared electrons between two atoms forming a covalent bond, while lone pairs are unshared valence electrons localized on a single atom. For example, in water (H2OH_2O), each O–H bond is a bond pair, and the two remaining pairs on oxygen are lone pairs.

The Core Idea: Why Electrons Pair Up

In Lewis dot structures, we represent valence electrons as dots around atomic symbols. The central principle is that atoms tend to achieve a stable noble-gas electron configuration (usually an octet, or a duet for hydrogen) by either sharing or transferring electrons. When two atoms share a pair of electrons, that shared pair constitutes a bond pair — it "belongs" to both atoms simultaneously and holds them together. Any valence electron pair that remains on a single atom and is not involved in bonding is called a lone pair (also known as a non-bonding pair).

The distinction matters because lone pairs occupy more space around the central atom than bond pairs do (they are under the influence of only one nucleus), which directly affects molecular shape, polarity, and reactivity.

Step-by-Step Explanation

  1. Bond pairs A bond pair consists of two electrons that are shared between two atoms. In a single covalent bond, exactly one bond pair is shared; in a double bond, two bond pairs; in a triple bond, three bond pairs. Example: In the hydrogen molecule H2H_2, each hydrogen atom contributes one electron. The two electrons are shared, forming a single bond pair:

H:HH : H

The colon represents the bond pair. Both hydrogen atoms now have a duet (two electrons), satisfying the helium configuration.

  1. Lone pairs A lone pair is a pair of valence electrons that is not shared with another atom. These electrons are localized on a single atom and are often shown as two dots placed on that atom in a Lewis structure. Lone pairs influence the geometry of the molecule because they repel more strongly than bond pairs. Example: In the ammonia molecule NH3NH_3, nitrogen has five valence electrons. It forms three single bonds with three hydrogen atoms, using three of its electrons. The remaining two electrons form a lone pair on the nitrogen atom:

H:N¨:HH : \ddot{N} : H

(with the third H attached similarly). The lone pair is the pair of dots above N. …

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