The dicarboxylic acid, ethanedioic acid, can form a polyamide with 1,2-ethanediamine. To illustrate the growth of the polymer, draw the linear trimer that would form if two ethanedioic acid molecules reacted with one 1,2-ethanediamine molecule. • You do not have to consider stereochemistry. • You do not have to explicitly draw H atoms. • Do not include lone pairs in your answer. They will not be considered in the grading. C opy aste ... CHA ChemDoodle Previous Next

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### Formation of a Polyamide from Ethanedioic Acid and 1,2-Ethanediamine

The dicarboxylic acid, **ethanedioic acid**, can form a **polyamide** with **1,2-ethanediamine**. To illustrate the growth of the polymer, you are tasked with drawing the linear **trimer** that would form if **two ethanedioic acid molecules** reacted with **one 1,2-ethanediamine molecule**.

#### Instructions for Drawing the Trimer:
- You do not have to consider stereochemistry.
- You do not have to explicitly draw H atoms.
- Do not include lone pairs in your answer. They will not be considered in the grading.

#### ChemDoodle Interface:
A blank ChemDoodle sketching area is provided for you to draw the required chemical structure. Use the available tools to construct bonds, add atoms, and complete the structure visually.

This exercise is designed to help you understand polymerization reactions and visualize the structural growth of polyamides.
Transcribed Image Text:### Formation of a Polyamide from Ethanedioic Acid and 1,2-Ethanediamine The dicarboxylic acid, **ethanedioic acid**, can form a **polyamide** with **1,2-ethanediamine**. To illustrate the growth of the polymer, you are tasked with drawing the linear **trimer** that would form if **two ethanedioic acid molecules** reacted with **one 1,2-ethanediamine molecule**. #### Instructions for Drawing the Trimer: - You do not have to consider stereochemistry. - You do not have to explicitly draw H atoms. - Do not include lone pairs in your answer. They will not be considered in the grading. #### ChemDoodle Interface: A blank ChemDoodle sketching area is provided for you to draw the required chemical structure. Use the available tools to construct bonds, add atoms, and complete the structure visually. This exercise is designed to help you understand polymerization reactions and visualize the structural growth of polyamides.
**Amidification Reaction: Understanding the Basics**

An amidification reaction is the reaction of a carboxylic acid with an amine (or ammonia) to produce an amide. This process is a crucial aspect of organic chemistry, providing insight into compound formation and functional group interactions.

**Task: Drawing the Carboxylic Acid Structure**

The following amide structure is given, and you are tasked with drawing the corresponding carboxylic acid from which this amide could be formed:

**Amide Structure:**

- O
  - || 
- CH₃-C-NH-CH₃

**Diagram Explanation:**

A ChemDoodle workspace is provided for sketching chemical structures. It includes several tools represented by icons at the top, such as drawing bonds, atoms, rings, and other functionalities necessary for constructing chemical diagrams.

**Practice and Application:**

Using this information, practice constructing chemical structures to visualize transformations between carboxylic acids and amides. This exercise enhances understanding of chemical reactions, molecular geometry, and functional group conversions.
Transcribed Image Text:**Amidification Reaction: Understanding the Basics** An amidification reaction is the reaction of a carboxylic acid with an amine (or ammonia) to produce an amide. This process is a crucial aspect of organic chemistry, providing insight into compound formation and functional group interactions. **Task: Drawing the Carboxylic Acid Structure** The following amide structure is given, and you are tasked with drawing the corresponding carboxylic acid from which this amide could be formed: **Amide Structure:** - O - || - CH₃-C-NH-CH₃ **Diagram Explanation:** A ChemDoodle workspace is provided for sketching chemical structures. It includes several tools represented by icons at the top, such as drawing bonds, atoms, rings, and other functionalities necessary for constructing chemical diagrams. **Practice and Application:** Using this information, practice constructing chemical structures to visualize transformations between carboxylic acids and amides. This exercise enhances understanding of chemical reactions, molecular geometry, and functional group conversions.
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