For the alcohol reaction shown, give the major organic product. OH HBr A K

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**Title: Alcohol Reaction and Major Organic Product**

**Text:**

For the alcohol reaction shown, give the major organic product.

**Reaction Details:**

- **Reactant:** The chemical structure on the left is a branched alcohol. It consists of a central carbon connected to a hydroxyl group (–OH) and three other carbon branches.
  
- **Reagent:** HBr (Hydrobromic acid) is added to the reaction, indicated by the arrow with the delta symbol (∆) suggesting heat is applied.

**Product Analysis:**

- On the right is the expected major product structure. The hydroxyl group from the original alcohol is replaced by a bromine atom (Br), indicating a substitution reaction has occurred in the presence of HBr.

**Note:** The given product is indicated as "incorrect," implying that while the structure resembles the expected output, it may not be the major organic product formed under typical reaction conditions. This requires further analysis or correction.

**Diagram Explanation:**

- The initial structure highlights an alcohol undergoing reaction with HBr.
  
- The resultant structure features a bromine atom substituent in place of the hydroxyl group on the carbon skeleton, following a substitution mechanism.

Consider exploring the reaction mechanism to understand why the given product is incorrect and determine the correct major product based on carbocation stability and Markovnikov's rule.
Transcribed Image Text:**Title: Alcohol Reaction and Major Organic Product** **Text:** For the alcohol reaction shown, give the major organic product. **Reaction Details:** - **Reactant:** The chemical structure on the left is a branched alcohol. It consists of a central carbon connected to a hydroxyl group (–OH) and three other carbon branches. - **Reagent:** HBr (Hydrobromic acid) is added to the reaction, indicated by the arrow with the delta symbol (∆) suggesting heat is applied. **Product Analysis:** - On the right is the expected major product structure. The hydroxyl group from the original alcohol is replaced by a bromine atom (Br), indicating a substitution reaction has occurred in the presence of HBr. **Note:** The given product is indicated as "incorrect," implying that while the structure resembles the expected output, it may not be the major organic product formed under typical reaction conditions. This requires further analysis or correction. **Diagram Explanation:** - The initial structure highlights an alcohol undergoing reaction with HBr. - The resultant structure features a bromine atom substituent in place of the hydroxyl group on the carbon skeleton, following a substitution mechanism. Consider exploring the reaction mechanism to understand why the given product is incorrect and determine the correct major product based on carbocation stability and Markovnikov's rule.
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