What is aldol product below of the aldehyde and ketone.

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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What is aldol product below of the aldehyde and ketone

The image displays a chemical structure. It consists of a six-membered carbon ring known as a cyclohexane ring. Attached to the top of the ring is a double-bonded oxygen (O), forming a ketone group, which is characteristic of cyclohexanone. There is also a single methyl group attached to the bottom of the ring. This is a structural representation, commonly used in organic chemistry to depict molecules.
Transcribed Image Text:The image displays a chemical structure. It consists of a six-membered carbon ring known as a cyclohexane ring. Attached to the top of the ring is a double-bonded oxygen (O), forming a ketone group, which is characteristic of cyclohexanone. There is also a single methyl group attached to the bottom of the ring. This is a structural representation, commonly used in organic chemistry to depict molecules.
The image displays the chemical structure of anisic acid, a methoxybenzoic acid. 

### Structure Description:
- **Benzene Ring**: At the center, there is a hexagonal ring representing a benzene ring. This is a common feature in aromatic compounds.
- **Methoxy Group (–OCH₃)**: Attached to one carbon of the benzene ring is a methoxy group. This consists of an oxygen atom bonded to a carbon atom, which in turn is bonded to three hydrogen atoms (–OCH₃).
- **Carboxylic Acid Group (–COOH)**: Attached to the opposite side of the benzene ring is a carboxylic acid functional group. This includes a carbon atom double-bonded to an oxygen atom (carbonyl group) and also bonded to an –OH group, forming the carboxyl group (–COOH).

### Explanation:
Anisic acid is an important compound frequently used in the fragrance industry for its sweet, aromatic properties. It is also significant in organic synthesis and in the study of aromatic carboxylic acids. The methoxy group enhances the compound’s stability and affects its reactivity in chemical reactions. Understanding its structure aids in the comprehension of its chemical behavior and application in various industrial fields.
Transcribed Image Text:The image displays the chemical structure of anisic acid, a methoxybenzoic acid. ### Structure Description: - **Benzene Ring**: At the center, there is a hexagonal ring representing a benzene ring. This is a common feature in aromatic compounds. - **Methoxy Group (–OCH₃)**: Attached to one carbon of the benzene ring is a methoxy group. This consists of an oxygen atom bonded to a carbon atom, which in turn is bonded to three hydrogen atoms (–OCH₃). - **Carboxylic Acid Group (–COOH)**: Attached to the opposite side of the benzene ring is a carboxylic acid functional group. This includes a carbon atom double-bonded to an oxygen atom (carbonyl group) and also bonded to an –OH group, forming the carboxyl group (–COOH). ### Explanation: Anisic acid is an important compound frequently used in the fragrance industry for its sweet, aromatic properties. It is also significant in organic synthesis and in the study of aromatic carboxylic acids. The methoxy group enhances the compound’s stability and affects its reactivity in chemical reactions. Understanding its structure aids in the comprehension of its chemical behavior and application in various industrial fields.
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