9:16 Question 26 of 32 Draw the starting alkyne that would lead to this major product under these conditions. Select to Draw Submit HBr (excess)

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**Title: Identifying the Starting Alkyne for Halogenation Reaction**

**Question 26 of 32**

**Objective:** 
Draw the starting alkyne that would lead to this major product under these conditions.

**Instructions:**
1. In the provided space (dashed box), select to draw the structural formula of an alkyne.
2. React the alkyne with hydrogen bromide (HBr) in excess.

**Product Description:**
The chemical structure shown as the major product contains a hexane chain with two bromine (Br) atoms attached on the same carbon.

**Chemical Reaction Overview:**
- The alkyne will undergo hydrohalogenation in the presence of excess HBr.
- The reaction proceeds through a Markovnikov addition mechanism, resulting in the addition of bromine atoms to the more substituted carbon.

**Diagram Explanation:**
- The product shows a hexane backbone with bromine atoms attached to the second carbon from the right.
- This indicates that the reaction begins with an alkyne, where the addition of HBr leads to the formation of a dibromoalkane.

**Conclusion:**
Understanding how to draw starting alkynes for specific halogenated products allows students to predict the outcome of hydrohalogenation reactions effectively.
Transcribed Image Text:**Title: Identifying the Starting Alkyne for Halogenation Reaction** **Question 26 of 32** **Objective:** Draw the starting alkyne that would lead to this major product under these conditions. **Instructions:** 1. In the provided space (dashed box), select to draw the structural formula of an alkyne. 2. React the alkyne with hydrogen bromide (HBr) in excess. **Product Description:** The chemical structure shown as the major product contains a hexane chain with two bromine (Br) atoms attached on the same carbon. **Chemical Reaction Overview:** - The alkyne will undergo hydrohalogenation in the presence of excess HBr. - The reaction proceeds through a Markovnikov addition mechanism, resulting in the addition of bromine atoms to the more substituted carbon. **Diagram Explanation:** - The product shows a hexane backbone with bromine atoms attached to the second carbon from the right. - This indicates that the reaction begins with an alkyne, where the addition of HBr leads to the formation of a dibromoalkane. **Conclusion:** Understanding how to draw starting alkynes for specific halogenated products allows students to predict the outcome of hydrohalogenation reactions effectively.
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