Draw the major product of this reaction. Ignore any inorganic byproducts. HBr (1 equiv) H₂O2

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### Organic Chemistry Reaction Problem

**Question 17 of 25**

**Problem Statement:**
Draw the major product of this reaction. Ignore any inorganic byproducts.

**Reactants and Conditions:**
- Starting Material: Cyclohexene (represented by a hexagon with a double bond)
- Reagents:
  - HBr (1 equivalent)
  - H₂O₂

**Instructions:**
Depict the structure of the major organic product formed in the reaction using the interactive drawing tool provided below.

**Diagram:**
- Cyclohexene is illustrated at the top of the diagram, represented by a hexagon with one double bond.
- An arrow points downward from Cyclohexene.
- Next to the arrow, the reagents HBr (1 equiv) and H₂O₂ are listed.
- Below the arrow is a dashed box labeled "Select to Draw," indicating where to draw the resultant major product of the reaction.

**Notes:**
- Consider the mechanism of the reaction; the presence of H₂O₂ suggests radical initiation.
- Focus on regioselectivity and stereoselectivity if applicable.
- Ensure the drawn structure is accurate and reflects the use of Hydrogen Bromide (HBr) and Hydrogen Peroxide (H₂O₂).
Transcribed Image Text:### Organic Chemistry Reaction Problem **Question 17 of 25** **Problem Statement:** Draw the major product of this reaction. Ignore any inorganic byproducts. **Reactants and Conditions:** - Starting Material: Cyclohexene (represented by a hexagon with a double bond) - Reagents: - HBr (1 equivalent) - H₂O₂ **Instructions:** Depict the structure of the major organic product formed in the reaction using the interactive drawing tool provided below. **Diagram:** - Cyclohexene is illustrated at the top of the diagram, represented by a hexagon with one double bond. - An arrow points downward from Cyclohexene. - Next to the arrow, the reagents HBr (1 equiv) and H₂O₂ are listed. - Below the arrow is a dashed box labeled "Select to Draw," indicating where to draw the resultant major product of the reaction. **Notes:** - Consider the mechanism of the reaction; the presence of H₂O₂ suggests radical initiation. - Focus on regioselectivity and stereoselectivity if applicable. - Ensure the drawn structure is accurate and reflects the use of Hydrogen Bromide (HBr) and Hydrogen Peroxide (H₂O₂).
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