Select the amide formed by this reaction (water is also formed). Assume that a reaction occurs, even though this is a difficult reaction to accomplish in the lab without using a substance called thionyl chloride. Answer choices:

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Chapter1: Chemical Foundations
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**Transcription for Educational Website:**

**Select the amide formed by this reaction (water is also formed).** 

Assume that a reaction occurs, even though this is a difficult reaction to accomplish in the lab without using a substance called thionyl chloride.

**Reaction:**

A schematic representation showing the reaction between acetic acid (ethanoic acid) and cyclohexanamine:
- Reactants: 
  - A molecule of acetic acid (\(CH_3COOH\)) 
  - A molecule of cyclohexanamine (\(C_6H_{11}NH_2\))

**Answer Choices:**

- **A**
  - Acetic acid forms an amide linkage with cyclohexanamine.
- **B**
  - Incorrect structure with the carboxylic acid group still present.
- **C**
  - Incorrect amide linkage with extraneous molecular modifications.
- **D**
  - Correct structure showing the amide linkage formed correctly, without additional carboxylic acid groups.

The objective is to identify the correct molecular structure of the amide product from the given options, which occurs through the reaction of the acetic acid with cyclohexanamine, resulting in the formation of an amide bond and the release of water.
Transcribed Image Text:**Transcription for Educational Website:** **Select the amide formed by this reaction (water is also formed).** Assume that a reaction occurs, even though this is a difficult reaction to accomplish in the lab without using a substance called thionyl chloride. **Reaction:** A schematic representation showing the reaction between acetic acid (ethanoic acid) and cyclohexanamine: - Reactants: - A molecule of acetic acid (\(CH_3COOH\)) - A molecule of cyclohexanamine (\(C_6H_{11}NH_2\)) **Answer Choices:** - **A** - Acetic acid forms an amide linkage with cyclohexanamine. - **B** - Incorrect structure with the carboxylic acid group still present. - **C** - Incorrect amide linkage with extraneous molecular modifications. - **D** - Correct structure showing the amide linkage formed correctly, without additional carboxylic acid groups. The objective is to identify the correct molecular structure of the amide product from the given options, which occurs through the reaction of the acetic acid with cyclohexanamine, resulting in the formation of an amide bond and the release of water.
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