This question has multiple parts. Work all the parts to get the most points. For the Wolff-Kishner reduction reaction below, show the mechanism starting from the hydrazone intermediate: H2NNH2 + N2 КОН

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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**Question:**

This question has multiple parts. Work all the parts to get the most points.

For the Wolff-Kishner reduction reaction below, show the mechanism starting from the hydrazone intermediate:

**Diagram Explanation:**

The diagram shows a chemical reaction involving the Wolff-Kishner reduction. It includes a cyclohexanone derivative (with a carbonyl group on a bicyclic structure) as the starting molecule. This molecule reacts with hydrazine (H₂NNH₂) in the presence of potassium hydroxide (KOH) to form a hydrocarbon with the elimination of nitrogen gas (N₂).

- **Reactant:** A bicyclic compound with a ketone functional group.
- **Reagents:** Hydrazine (H₂NNH₂) and Potassium hydroxide (KOH).
- **Products:** A fully reduced bicyclic hydrocarbon and nitrogen gas (N₂).
Transcribed Image Text:**Question:** This question has multiple parts. Work all the parts to get the most points. For the Wolff-Kishner reduction reaction below, show the mechanism starting from the hydrazone intermediate: **Diagram Explanation:** The diagram shows a chemical reaction involving the Wolff-Kishner reduction. It includes a cyclohexanone derivative (with a carbonyl group on a bicyclic structure) as the starting molecule. This molecule reacts with hydrazine (H₂NNH₂) in the presence of potassium hydroxide (KOH) to form a hydrocarbon with the elimination of nitrogen gas (N₂). - **Reactant:** A bicyclic compound with a ketone functional group. - **Reagents:** Hydrazine (H₂NNH₂) and Potassium hydroxide (KOH). - **Products:** A fully reduced bicyclic hydrocarbon and nitrogen gas (N₂).
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