Hydrogenation of 3-carene (below) can yield two steroisomeric alkane products. Draw their structures. The reaction actually only yields one of the two products. Put a box around the product formed and explain your choice.

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Hydrogenation of 3-carene (below) can yield two steroisomeric alkane products. Draw their structures. The reaction actually only yields one of the two products. Put a box around the product formed and explain your choice. 

This image depicts the structural formula of a hydrocarbon compound, specifically a cyclic hydrocarbon with a six-membered ring and double bond characteristics.

**Detailed Explanation:**

1. **Six-Membered Ring:** The core structure of the compound is a hexagon, representing a six-membered carbon ring, which is typical of cyclic hydrocarbons.

2. **Double Bond:** Within the hexagon, there is a double line between two of the carbon atoms, indicating a double bond. This represents the presence of a degree of unsaturation in the ring.

3. **Attached Groups:**
   - **Top of the Ring:** Attached to the top carbon of the ring is a methyl group, denoted as CH₃.
   - **Bottom Left of the Ring:** Attached to another carbon atom in the ring is another methyl group (CH₃).
   - **Bottom Left of the Ring (Wedge and Dash Representation):** This carbon also has a wedge and dash notation associated with it:
     - **Wedge Bond:** This indicates that the group is coming out of the plane towards the viewer.
     - **Dash Bond:** This indicates that the group is going into the plane away from the viewer. Both these bonds represent the spatial orientation of the methyl groups (CH₃).

This structural formula is characteristic of certain cyclic hydrocarbons and is useful in understanding their chemical properties, reactivity, and spatial configuration.
Transcribed Image Text:This image depicts the structural formula of a hydrocarbon compound, specifically a cyclic hydrocarbon with a six-membered ring and double bond characteristics. **Detailed Explanation:** 1. **Six-Membered Ring:** The core structure of the compound is a hexagon, representing a six-membered carbon ring, which is typical of cyclic hydrocarbons. 2. **Double Bond:** Within the hexagon, there is a double line between two of the carbon atoms, indicating a double bond. This represents the presence of a degree of unsaturation in the ring. 3. **Attached Groups:** - **Top of the Ring:** Attached to the top carbon of the ring is a methyl group, denoted as CH₃. - **Bottom Left of the Ring:** Attached to another carbon atom in the ring is another methyl group (CH₃). - **Bottom Left of the Ring (Wedge and Dash Representation):** This carbon also has a wedge and dash notation associated with it: - **Wedge Bond:** This indicates that the group is coming out of the plane towards the viewer. - **Dash Bond:** This indicates that the group is going into the plane away from the viewer. Both these bonds represent the spatial orientation of the methyl groups (CH₃). This structural formula is characteristic of certain cyclic hydrocarbons and is useful in understanding their chemical properties, reactivity, and spatial configuration.
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