9. The best reaction scheme to achieve the following reaction is which of the following? ? (A) HBr, H₂O then LDA (D) Br2, light then NaOEt (B) HBr, H₂O₂ then LDA (E) H₂, Pt then Mg, ether (C) HBr, H₂O₂ then NaOEt (F) none of the above

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**Question 9:** The best reaction scheme to achieve the following reaction is which of the following?

**Reaction Diagram:**

- **Left side:** A cyclohexane molecule
- **Right side:** A cyclohexene molecule with a methyl group substitution (methylcyclohexene)

**Options:**

(A) HBr, H₂O then LDA

(B) HBr, H₂O₂ then LDA

(C) HBr, H₂O₂ then NaOEt

(D) Br₂, light then NaOEt

(E) H₂, Pt then Mg, ether

(F) none of the above

**Explanation:**

The question presents a transformation from a cyclohexane to a methylcyclohexene, asking which reaction scheme will best achieve this conversion from the given options. Each option involves different reagents and conditions applicable for various chemical transformations, such as halogenation, elimination, or reduction.
Transcribed Image Text:**Question 9:** The best reaction scheme to achieve the following reaction is which of the following? **Reaction Diagram:** - **Left side:** A cyclohexane molecule - **Right side:** A cyclohexene molecule with a methyl group substitution (methylcyclohexene) **Options:** (A) HBr, H₂O then LDA (B) HBr, H₂O₂ then LDA (C) HBr, H₂O₂ then NaOEt (D) Br₂, light then NaOEt (E) H₂, Pt then Mg, ether (F) none of the above **Explanation:** The question presents a transformation from a cyclohexane to a methylcyclohexene, asking which reaction scheme will best achieve this conversion from the given options. Each option involves different reagents and conditions applicable for various chemical transformations, such as halogenation, elimination, or reduction.
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