9.10
Most molecules and ions can be represented using unique Lewis structures. However, certain compounds can be shown by multiple, equally valid Lewis structures.
Consider the Lewis structure for sulfur trioxide. The single bonds between each oxygen and the central sulfur atoms satisfy the octet for oxygen atoms. However, to reach a full octet for the sulfur, an additional bond must be formed between sulfur and one of the oxygen atoms. Since any of the three oxygens can form the double bond with sulfur, three different Lewis structures can be drawn.
These multiple Lewis structures are called resonance structures, where the skeletal structures remain the same, but electrons are distributed differently.
All three structures are valid and equivalent representations of the molecule, yet all are non-existent in nature. The actual structure does not oscillate between the resonance structures but is a hybrid or an average of the three Lewis structures, which can be measured in bond lengths.
In sulfite, the length of a sulfur-oxygen single bond is 1.51 angstrom, while in sulfur trioxide, the sulfur-oxygen bond length is 1.42 angstrom. Thus, in the hybrid molecule, the bond length is an interme
The Lewis structure of a nitrite anion (NO2−) may actually be drawn in two different ways, distinguished by the locations of the N-O and N=O bonds.
If…
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