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In the presence of acid, the hydrolysis of methyl cyanide gives
  • a)
    Methanoic acid
  • b)
    Ethanoic acid
  • c)
    Methylamine
  • d)
    Methyl alcohol
Correct answer is option 'B'. Can you explain this answer?
Most Upvoted Answer
In the presence of acid, the hydrolysis of methyl cyanide givesa)Metha...
Hydrolysis of Methyl Cyanide in the Presence of Acid
The hydrolysis of methyl cyanide (CH3CN) in the presence of acid involves the reaction of the cyanide group with water to form a carboxylic acid.

Reaction:
CH3CN + 2H2O → CH3COOH + NH3

Explanation:
- Methyl cyanide reacts with water (H2O) in the presence of acid to form acetic acid (CH3COOH) and ammonia (NH3).
- The acid catalyst helps in the hydrolysis process by providing protons to facilitate the reaction.
- The cyanide group (-CN) undergoes nucleophilic attack by water, resulting in the formation of a carboxylic acid group (-COOH).
- The ammonia produced acts as a byproduct in this reaction.

Correct Answer:
The correct product obtained from the hydrolysis of methyl cyanide in the presence of acid is ethanoic acid, also known as acetic acid (CH3COOH).
Therefore, option B) Ethanoic acid is the correct answer in this case.
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In the presence of acid, the hydrolysis of methyl cyanide givesa)Methanoic acidb)Ethanoic acidc)Methylamined)Methyl alcoholCorrect answer is option 'B'. Can you explain this answer?
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