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When alkyl halide is heated with dry Ag(...

When alkyl halide is heated with dry `Ag_(2)O`. It produces `:`

A

ester

B

ether

C

ketone

D

alcohol

Text Solution

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The correct Answer is:
To solve the question "When alkyl halide is heated with dry Ag₂O, it produces:", we can follow these steps: ### Step 1: Identify the Reactants We start with an alkyl halide, which can be represented as R-X, where R is the alkyl group and X is a halogen (like Cl, Br, or I). **Hint:** Remember that alkyl halides have a general formula of R-X, where X is a halogen. ### Step 2: Understand the Role of Ag₂O Silver oxide (Ag₂O) is a reagent that can react with alkyl halides. When heated, it can facilitate the reaction by breaking down and allowing the alkyl group to interact with the halogen. **Hint:** Ag₂O is a dry reagent that can help in the substitution reaction with alkyl halides. ### Step 3: Reaction Mechanism Upon heating, the Ag₂O decomposes, and the alkyl halide (R-X) reacts with it. The halogen (X) from the alkyl halide is replaced by an alkoxy group (R-O) from the silver oxide, leading to the formation of an ether (R-O-R). **Hint:** Look for the formation of an ether in the reaction; the halogen is replaced by an oxygen atom from Ag₂O. ### Step 4: Products Formation The products of this reaction are: 1. Ether (R-O-R) 2. Silver halide (AgX), where X is the halogen that was part of the alkyl halide. **Hint:** Remember that the ether is formed by the combination of two alkyl groups with an oxygen atom. ### Step 5: Conclusion Thus, when an alkyl halide is heated with dry Ag₂O, the main product formed is an ether. **Final Answer:** Ether

To solve the question "When alkyl halide is heated with dry Ag₂O, it produces:", we can follow these steps: ### Step 1: Identify the Reactants We start with an alkyl halide, which can be represented as R-X, where R is the alkyl group and X is a halogen (like Cl, Br, or I). **Hint:** Remember that alkyl halides have a general formula of R-X, where X is a halogen. ### Step 2: Understand the Role of Ag₂O ...
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