Chemistry
Chemistry
10th Edition
ISBN: 9781305957404
Author: Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher: Cengage Learning
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**Predict the Major Products of This Organic Reaction**

**Reaction Details:**

The given compound is a cyclopentene, which is a five-membered ring with a double bond.

**Reagents:**

1. Ozone (O₃)
2. Zinc (Zn) and water (H₂O)

**Process:**

This transformation involves the ozonolysis of cyclopentene. Ozonolysis is a reaction where ozone is used to cleave the double bonds of alkenes, forming smaller molecules, typically aldehydes or ketones.

**Expected Products:**

In this reaction, the cyclopentene will undergo oxidative cleavage at the double bond to form a dialdehyde.

**Instructions:**

Students are expected to draw the resulting structure using the given tools by clicking and dragging to create the molecular structure.

**Technical Tip:**

Use the drawing tools provided to illustrate the transformation process, ensuring the changes in bond structure are accurately depicted. Pay attention to the placement of oxygen atoms resulting from the cleavage.
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Transcribed Image Text:**Predict the Major Products of This Organic Reaction** **Reaction Details:** The given compound is a cyclopentene, which is a five-membered ring with a double bond. **Reagents:** 1. Ozone (O₃) 2. Zinc (Zn) and water (H₂O) **Process:** This transformation involves the ozonolysis of cyclopentene. Ozonolysis is a reaction where ozone is used to cleave the double bonds of alkenes, forming smaller molecules, typically aldehydes or ketones. **Expected Products:** In this reaction, the cyclopentene will undergo oxidative cleavage at the double bond to form a dialdehyde. **Instructions:** Students are expected to draw the resulting structure using the given tools by clicking and dragging to create the molecular structure. **Technical Tip:** Use the drawing tools provided to illustrate the transformation process, ensuring the changes in bond structure are accurately depicted. Pay attention to the placement of oxygen atoms resulting from the cleavage.
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