Which compound (structure with letter) best fits the product of the following reaction? H₂ H Br Br B OH $$86 BBD BB from Br E Br L Pd Br ? Br OH Br M Br OH

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**Title: Understanding Reaction Outcomes: Cycloalkene Hydrogenation**

**Which compound (structure with letter) best fits the product of the following reaction?**

**Reaction:**

- **Reactant:** Cyclohexene derivative
- **Reagent:** Hydrogen gas (H₂)
- **Catalyst:** Palladium (Pd)

The goal is to identify the product formed from the hydrogenation reaction of the cyclohexene derivative shown.

**Options:**

Compounds are labeled from A through M.

- **A:** Cyclohexane with a bromine atom attached.
- **B:** Di-bromo cyclohexane.
- **C:** Cyclohexanol (OH group) attached.
- **D:** Cyclohexene with a bromine atom (bromocyclohexene).
- **E:** Bromocyclohexane.
- **F:** Cyclohexanol with a bromine atom.
- **G:** Cyclohexanone (carbonyl group).
- **H:** Cyclopropyl-cyclohexane.
- **I & J:** Different stereoisomers of di-bromo cyclohexane (denoted by wedges and dashes for stereochemistry).
- **K:** Cyclohexadecane.
- **L:** Cyclohexane with a propanone side chain.
- **M:** Cyclohexane with an acetic acid side chain.

**Explanation of Reaction:**

In this hydrogenation reaction, the double bond in the cyclohexene derivative is reduced to a single bond, forming a saturated cyclohexane derivative. The likely product would not have any additional functional groups such as alcohol, ketone, or additional double bonds unless specified. The presence of bromine may remain if initially present.

By analyzing the structures, determine which compound best represents the hydrogenated product keeping in mind the stereochemistry and appropriate attachment of substituents.
Transcribed Image Text:**Title: Understanding Reaction Outcomes: Cycloalkene Hydrogenation** **Which compound (structure with letter) best fits the product of the following reaction?** **Reaction:** - **Reactant:** Cyclohexene derivative - **Reagent:** Hydrogen gas (H₂) - **Catalyst:** Palladium (Pd) The goal is to identify the product formed from the hydrogenation reaction of the cyclohexene derivative shown. **Options:** Compounds are labeled from A through M. - **A:** Cyclohexane with a bromine atom attached. - **B:** Di-bromo cyclohexane. - **C:** Cyclohexanol (OH group) attached. - **D:** Cyclohexene with a bromine atom (bromocyclohexene). - **E:** Bromocyclohexane. - **F:** Cyclohexanol with a bromine atom. - **G:** Cyclohexanone (carbonyl group). - **H:** Cyclopropyl-cyclohexane. - **I & J:** Different stereoisomers of di-bromo cyclohexane (denoted by wedges and dashes for stereochemistry). - **K:** Cyclohexadecane. - **L:** Cyclohexane with a propanone side chain. - **M:** Cyclohexane with an acetic acid side chain. **Explanation of Reaction:** In this hydrogenation reaction, the double bond in the cyclohexene derivative is reduced to a single bond, forming a saturated cyclohexane derivative. The likely product would not have any additional functional groups such as alcohol, ketone, or additional double bonds unless specified. The presence of bromine may remain if initially present. By analyzing the structures, determine which compound best represents the hydrogenated product keeping in mind the stereochemistry and appropriate attachment of substituents.
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