Draw a six-carbon alkyne that can exist as diastereomers. (The molecule should contain only carbon and hydrogen atoms.)

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Draw a six-carbon alkyne that can exist as diastereomers. (The molecule should contain only carbon and hydrogen atoms.)

**Organic Chemistry: Alkyne Diastereomers**

To enhance your understanding of stereoisomerism in alkynes, let's explore a practical example. Follow these instructions to draw a six-carbon alkyne that can exist as diastereomers. Remember, the molecule should contain only carbon and hydrogen atoms.

**Instructions:**
1. On the provided graph paper grid, draw your structure ensuring clarity and accuracy.
2. Consider the placement of a triple bond (characteristic of alkynes) within the carbon chain.
3. Analyze how substituents on the carbon chain can lead to the formation of diastereomers (non-mirror image non-superimposable stereoisomers).

Here is a blank graph for you to utilize in your drawing:

![Graph Paper Grid](image_url)

**Key Concepts:**
- **Diastereomers** are a type of stereoisomer. Unlike enantiomers, diastereomers are not mirror images of each other.
- For alkynes, the presence of at least one chiral center (carbon with four different groups attached) can result in diastereomers.

Take your time and explore how varying the position of substituents along the carbon chain can lead to different diastereomer forms.

Happy drawing!
Transcribed Image Text:**Organic Chemistry: Alkyne Diastereomers** To enhance your understanding of stereoisomerism in alkynes, let's explore a practical example. Follow these instructions to draw a six-carbon alkyne that can exist as diastereomers. Remember, the molecule should contain only carbon and hydrogen atoms. **Instructions:** 1. On the provided graph paper grid, draw your structure ensuring clarity and accuracy. 2. Consider the placement of a triple bond (characteristic of alkynes) within the carbon chain. 3. Analyze how substituents on the carbon chain can lead to the formation of diastereomers (non-mirror image non-superimposable stereoisomers). Here is a blank graph for you to utilize in your drawing: ![Graph Paper Grid](image_url) **Key Concepts:** - **Diastereomers** are a type of stereoisomer. Unlike enantiomers, diastereomers are not mirror images of each other. - For alkynes, the presence of at least one chiral center (carbon with four different groups attached) can result in diastereomers. Take your time and explore how varying the position of substituents along the carbon chain can lead to different diastereomer forms. Happy drawing!
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