Question:

For the given organic reaction, which of the following is the correct product formed when R' = CH\(_3\), R'' = CH\(_2\)CH\(_3\)?

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When solving organic reactions, identify the functional groups and the positions of the alkyl groups to predict the correct products.
Updated On: Jan 20, 2026
  • \( R' = \text{CH}_3, R'' = \text{CH}_3, R''' = \text{CH}_2\text{CH}_3 \)
  • \( R' = \text{CH}_3, R'' = \text{CH}_3, R''' = \text{CH}_2\text{Cl} \)
  • \( R' = \text{CH}_3, R'' = \text{CH}_3, R''' = \text{C}_4\text{H}_8 \)
  • \( R' = \text{CH}_3, R'' = \text{CH}_3, R''' = \text{CH}_2\text{OH} \)
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The Correct Option is A

Solution and Explanation


Step 1: Understanding the Reaction.
The problem describes a reaction involving alkyl groups R', R'', and R''', which is likely a reaction where the organic molecule undergoes substitution or addition, leading to the formation of a new product.
Step 2: Analyzing the Options.
- (A) \( R' = \text{CH}_3, R'' = \text{CH}_3, R''' = \text{CH}_2\text{CH}_3 \) is the correct product formed from the reaction based on the structure.
- (B), (C), and (D) are incorrect because they involve incorrect alkyl substitutions.
Step 3: Conclusion.
The correct answer is (A) \( R' = \text{CH}_3, R'' = \text{CH}_3, R''' = \text{CH}_2\text{CH}_3 \) as it correctly represents the product of the given reaction.
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