Draw the structure of the organic product of the reaction between cyclohexene and 03 then (CH3)2 S. • Use the wedge/hash bond tools to indicate stereochemistry where it exists. Separate multiple products using the + sign from the drop-down menu. • In cases where there is more than one answer, just draw one. O 99-85 I... ? ChemDoodle Sn [F ↑

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**Reaction: Cyclohexene with Ozone and Dimethyl Sulfide**

This exercise involves drawing the organic product of a reaction between cyclohexene and ozone (O₃), followed by the reduction with dimethyl sulfide ((CH₃)₂S).

### Instructions:

1. **Starting Materials:**
   - Cyclohexene
   - Ozone (O₃)
   - Dimethyl Sulfide ((CH₃)₂S)

2. **Expected Product:**
   - The reaction is a typical ozonolysis, which involves breaking the carbon-carbon double bond.

3. **Drawing Guidance:**
   - Use the wedge/hash bond tools to accurately depict the stereochemistry if applicable.
   - If multiple products are possible, illustrate them using the '+' sign from the menu, but focus on drawing one main product.

### Steps for Reaction:

1. **Ozonolysis with O₃:**
   - The reaction with ozone cleaves the double bond in cyclohexene, resulting in an ozonide intermediate.

2. **Reduction with (CH₃)₂S:**
   - The ozonide is then reduced using dimethyl sulfide, typically leading to the formation of carbonyl compounds such as aldehydes or ketones.

Make sure to accurately convey the chemical structure and utilize the appropriate tools to emphasize any relevant stereochemical aspects.
Transcribed Image Text:**Reaction: Cyclohexene with Ozone and Dimethyl Sulfide** This exercise involves drawing the organic product of a reaction between cyclohexene and ozone (O₃), followed by the reduction with dimethyl sulfide ((CH₃)₂S). ### Instructions: 1. **Starting Materials:** - Cyclohexene - Ozone (O₃) - Dimethyl Sulfide ((CH₃)₂S) 2. **Expected Product:** - The reaction is a typical ozonolysis, which involves breaking the carbon-carbon double bond. 3. **Drawing Guidance:** - Use the wedge/hash bond tools to accurately depict the stereochemistry if applicable. - If multiple products are possible, illustrate them using the '+' sign from the menu, but focus on drawing one main product. ### Steps for Reaction: 1. **Ozonolysis with O₃:** - The reaction with ozone cleaves the double bond in cyclohexene, resulting in an ozonide intermediate. 2. **Reduction with (CH₃)₂S:** - The ozonide is then reduced using dimethyl sulfide, typically leading to the formation of carbonyl compounds such as aldehydes or ketones. Make sure to accurately convey the chemical structure and utilize the appropriate tools to emphasize any relevant stereochemical aspects.
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