Draw the starting structure that would lead to the following product under these conditions. Drawing 1. O3 2. H2O2 но

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Chapter1: Chemical Foundations
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**Title:** Drawing the Starting Structure for a Chemical Reaction

**Instructions:**
Draw the starting structure that would lead to the following product under these conditions.

**Reaction Conditions:**
1. \( \text{O}_3 \) (Ozone)
2. \( \text{H}_2\text{O}_2 \) (Hydrogen Peroxide)

**Product Structure:**
The product is a carboxylic acid derived from an alkene. The structure shows two functional groups:
- A carboxylic acid group (O=C-OH) attached to a chain.
- A carbon chain with a ketone group (C=O) located in the middle.

**Diagram Explanation:**
The product consists of a linear chain with six carbon atoms. The first carbon (left side) is part of a carboxylic acid group, followed by four methylene (-CH2-) groups. The fifth carbon has a double-bonded oxygen, forming a ketone. This reflects an oxidative cleavage of an alkene, typically achieved through ozonolysis followed by oxidative work-up using hydrogen peroxide.

**Note:**
To complete the task, depict the alkene that, upon reaction with ozone and subsequent oxidation, results in the displayed carboxylic acid and ketone structure.
Transcribed Image Text:**Title:** Drawing the Starting Structure for a Chemical Reaction **Instructions:** Draw the starting structure that would lead to the following product under these conditions. **Reaction Conditions:** 1. \( \text{O}_3 \) (Ozone) 2. \( \text{H}_2\text{O}_2 \) (Hydrogen Peroxide) **Product Structure:** The product is a carboxylic acid derived from an alkene. The structure shows two functional groups: - A carboxylic acid group (O=C-OH) attached to a chain. - A carbon chain with a ketone group (C=O) located in the middle. **Diagram Explanation:** The product consists of a linear chain with six carbon atoms. The first carbon (left side) is part of a carboxylic acid group, followed by four methylene (-CH2-) groups. The fifth carbon has a double-bonded oxygen, forming a ketone. This reflects an oxidative cleavage of an alkene, typically achieved through ozonolysis followed by oxidative work-up using hydrogen peroxide. **Note:** To complete the task, depict the alkene that, upon reaction with ozone and subsequent oxidation, results in the displayed carboxylic acid and ketone structure.
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