Consider the reaction below. What functional group is present in the reactant; and, what type of reaction would occur?

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Consider the reaction below. What functional group is present in the reactant; and, what type of reaction would occur?

 


 
 
 

 

 

 

 

The image presents the chemical structure of N-ethyl-N-methylbenzamide, an organic compound. 

### Structural Description:

- **Benzene Ring**: On the left side of the structure, there is a six-carbon benzene ring, depicted as a hexagon with alternating double bonds.
  
- **Amide Group**: Connected to the benzene ring is an amide group:
  - **Carbonyl Group (C=O)**: The carbon atom double-bonded to an oxygen atom.
  - **Nitrogen Atom (N)**: Attached to the carbon of the carbonyl group.

- **Substituents on the Nitrogen**:
  - **Ethyl Group (CH2CH3)**: A two-carbon chain (ethyl group) is attached to the nitrogen atom.
  - **Methyl Group (CH3)**: A one-carbon chain (methyl group) is attached to the nitrogen atom.

This structure features both amine and carbonyl functional groups, representing a typical amide linkage with additional alkyl substitutions on the nitrogen, contributing to the molecule's unique chemical properties.
Transcribed Image Text:The image presents the chemical structure of N-ethyl-N-methylbenzamide, an organic compound. ### Structural Description: - **Benzene Ring**: On the left side of the structure, there is a six-carbon benzene ring, depicted as a hexagon with alternating double bonds. - **Amide Group**: Connected to the benzene ring is an amide group: - **Carbonyl Group (C=O)**: The carbon atom double-bonded to an oxygen atom. - **Nitrogen Atom (N)**: Attached to the carbon of the carbonyl group. - **Substituents on the Nitrogen**: - **Ethyl Group (CH2CH3)**: A two-carbon chain (ethyl group) is attached to the nitrogen atom. - **Methyl Group (CH3)**: A one-carbon chain (methyl group) is attached to the nitrogen atom. This structure features both amine and carbonyl functional groups, representing a typical amide linkage with additional alkyl substitutions on the nitrogen, contributing to the molecule's unique chemical properties.
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