Hydrolysis of an actal H₂C ·ctla 10 Hz C #₂² =²=0/ 1 Нас 1 CH3 CH XO thOH+ CH₂ = CH₂

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Products of hydrolysis of an acetal

### Title: Hydrolysis of an Acetal

**Description:**

The image illustrates the chemical structure involved in the hydrolysis of an acetal. The diagram consists of chains and rings representing carbon (C) and hydrogen (H) atoms, as well as oxygen (O) atoms involved in the acetal linkage.

**Chemical Structure Breakdown:**

- **Left Side of the Chain:**
  - The structure begins with a carbon atom bonded to a methyl group (CH₃) and a CH₂ group. 
  - It continues to a second carbon, bonded to another CH₃ and CH₂ group. 
  - This carbon is further connected to an oxygen atom.

- **Central Section:**
  - The oxygen atom is linked to another CH₂ group, which connects to a CH group. 
  - This CH group is bonded to another CH₃ group.
  - Another oxygen atom is connected to this carbon.

- **Right Side of the Chain:**
  - Extending from this oxygen atom is a chain consisting of two CH₂ groups.
  - The chain continues with another CH₂ group which is part of the acetal linkage.

- **Additional Information:**
  - Water (H₂O) and a proton (H⁺) are shown to signify the conditions of acetal hydrolysis.

**Concept Explanation:**

Acetal hydrolysis is a chemical reaction in which an acetal compound is converted into its constituent aldehydes or ketones by reaction with water under acidic conditions. This diagram provides a visual representation of the molecular changes that occur during the hydrolysis process.
Transcribed Image Text:### Title: Hydrolysis of an Acetal **Description:** The image illustrates the chemical structure involved in the hydrolysis of an acetal. The diagram consists of chains and rings representing carbon (C) and hydrogen (H) atoms, as well as oxygen (O) atoms involved in the acetal linkage. **Chemical Structure Breakdown:** - **Left Side of the Chain:** - The structure begins with a carbon atom bonded to a methyl group (CH₃) and a CH₂ group. - It continues to a second carbon, bonded to another CH₃ and CH₂ group. - This carbon is further connected to an oxygen atom. - **Central Section:** - The oxygen atom is linked to another CH₂ group, which connects to a CH group. - This CH group is bonded to another CH₃ group. - Another oxygen atom is connected to this carbon. - **Right Side of the Chain:** - Extending from this oxygen atom is a chain consisting of two CH₂ groups. - The chain continues with another CH₂ group which is part of the acetal linkage. - **Additional Information:** - Water (H₂O) and a proton (H⁺) are shown to signify the conditions of acetal hydrolysis. **Concept Explanation:** Acetal hydrolysis is a chemical reaction in which an acetal compound is converted into its constituent aldehydes or ketones by reaction with water under acidic conditions. This diagram provides a visual representation of the molecular changes that occur during the hydrolysis process.
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