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When there are multiple carbon-carbon double bonds in alternation with carbon-carbon single bonds, resonance may occur.

A. True
B. False

Answer :

Final answer:

The statement about resonance in molecules with alternating double and single bonds is true, as resonance allows for delocalization of electrons. Molecules like butadiene are prime examples of this phenomenon. Resonance structures help stabilize such molecules.


Explanation:

Understanding Resonance in Chemistry

The statement "When there are multiple carbon-carbon double bonds in alternation with carbon-carbon single bonds, resonance may occur" is True. Resonance is a phenomenon that occurs in molecules where electron pairs can be delocalized, leading to multiple valid structures, known as resonance structures.

For example, consider a simple molecule like butadiene, which has alternating double and single bonds: C=C-C=C. In butadiene, the electrons from the double bonds are not fixed in place; they can shift to form different resonance structures, which helps to stabilize the molecule.

Because of resonance, the energy and properties of the molecule can be described more accurately as it allows for greater electron delocalization across the bonding framework. Therefore, the presence of multiple alternating bonds indeed allows resonance to occur.


Learn more about resonance here:

https://brainly.com/question/45707040


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