How can you distinguish between cyclohexanol and cyclohexanecarboxylic acid using IR spectroscopy?
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)
◦ Cyclohexanecarboxylic acid shows a broader OH absorption associated with its carboxylic acid compared with the narrower OH absorption for the alcohol of cyclohexanol.
◦ Cyclohexanol shows a carbonyl absorption that will not be present in cyclohexanecarboxylic acid.
◦ Cyclohexanecarboxylic acid shows a carbonyl absorption that is not be present in cyclohexanol.
◦ A and B
◦ A and C