Draw the structure of the organic product of the reaction between cyclohexene and H₂, Pd/C. • 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.

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**Drawing the Structure of the Organic Product in Cyclohexene Hydrogenation**

**Instructions for Students:**

1. **Understanding the Reaction:**
   - The reaction involves cyclohexene and hydrogen gas (H₂) in the presence of a palladium on carbon (Pd/C) catalyst.
   - This is a hydrogenation reaction, a type of addition reaction where hydrogen atoms are added to the carbon-carbon double bond.

2. **Drawing the Product:**
   - Start with the cyclohexene structure, which is a six-membered ring with one double bond.
   - In the hydrogenation reaction, the double bond is saturated (broken), and two hydrogen atoms are added to the carbons that were double-bonded.
   - The structure of cyclohexane, a ring with single bonds between all carbons, should be drawn.

3. **Using Stereochemistry Tools:**
   - For this particular reaction (hydrogenation of cyclohexene to cyclohexane), stereochemistry (three-dimensional arrangement of atoms) does not need to be considered as the product is symmetrical.
   - However, for future reference, use the wedge/hash bond tools to indicate stereochemistry where it exists.

4. **Multiple Products:**
   - If a reaction results in multiple products, separate them using the "+" sign from the drop-down menu in your drawing tool.
   - In this reaction, only one product (cyclohexane) is formed.

5. **Simplifying Choices:**
   - If a reaction can yield more than one answer, you only need to draw one possible product.

**Guidelines to Follow:**

- Use the drawing tools responsibly to accurately represent the structure.
- Focus on the clean, correct depiction of the bonds and rings.

**Example:**

- Cyclohexene: C6H10 (where there is one double bond among the six carbon ring).
- Product after hydrogenation: Cyclohexane (C6H12), where the ring is fully saturated with single bonds only.

By following these instructions, you'll ensure that your representation of the chemical reaction and resulting product is precise and clear.
Transcribed Image Text:**Drawing the Structure of the Organic Product in Cyclohexene Hydrogenation** **Instructions for Students:** 1. **Understanding the Reaction:** - The reaction involves cyclohexene and hydrogen gas (H₂) in the presence of a palladium on carbon (Pd/C) catalyst. - This is a hydrogenation reaction, a type of addition reaction where hydrogen atoms are added to the carbon-carbon double bond. 2. **Drawing the Product:** - Start with the cyclohexene structure, which is a six-membered ring with one double bond. - In the hydrogenation reaction, the double bond is saturated (broken), and two hydrogen atoms are added to the carbons that were double-bonded. - The structure of cyclohexane, a ring with single bonds between all carbons, should be drawn. 3. **Using Stereochemistry Tools:** - For this particular reaction (hydrogenation of cyclohexene to cyclohexane), stereochemistry (three-dimensional arrangement of atoms) does not need to be considered as the product is symmetrical. - However, for future reference, use the wedge/hash bond tools to indicate stereochemistry where it exists. 4. **Multiple Products:** - If a reaction results in multiple products, separate them using the "+" sign from the drop-down menu in your drawing tool. - In this reaction, only one product (cyclohexane) is formed. 5. **Simplifying Choices:** - If a reaction can yield more than one answer, you only need to draw one possible product. **Guidelines to Follow:** - Use the drawing tools responsibly to accurately represent the structure. - Focus on the clean, correct depiction of the bonds and rings. **Example:** - Cyclohexene: C6H10 (where there is one double bond among the six carbon ring). - Product after hydrogenation: Cyclohexane (C6H12), where the ring is fully saturated with single bonds only. By following these instructions, you'll ensure that your representation of the chemical reaction and resulting product is precise and clear.
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