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The compound which can give Amine with K...

The compound which can give Amine with KOH and `Br_(2)` is-

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To solve the question, we need to identify the compound that can yield an amine when reacted with KOH and Br2. This reaction is known as the Hofmann Bromamide Degradation. ### Step-by-Step Solution: 1. **Understand the Reaction**: The Hofmann Bromamide Degradation involves the conversion of an amide to a primary amine. The general reaction can be represented as: \[ RCONH_2 + Br_2 + 2 KOH \rightarrow RNH_2 + K_2CO_3 + 2 KBr + 2 H_2O \] Here, RCONH2 is an amide, and upon reaction, it yields RNH2 (a primary amine) along with other byproducts. 2. **Identify the Functional Group**: For a compound to undergo this reaction, it must contain an amide functional group (RCONH2). The presence of the carbonyl (C=O) and the nitrogen (NH2) is crucial. 3. **Examine the Options**: We need to look at the provided options to find a compound that contains the amide functional group. The options typically include various functional groups, and we need to identify which one is an amide. 4. **Select the Correct Compound**: Among the options, we are looking for a compound that has the structure RCONH2. If we find an option that fits this structure, it will be the correct answer. 5. **Conclusion**: After evaluating the options, the compound that contains the amide group (RCONH2) will be the one that can give an amine upon reaction with KOH and Br2. ### Final Answer: The compound which can give an amine with KOH and Br2 is the one that contains the amide functional group (RCONH2).
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NTA MOCK TESTS-NTA JEE MOCK TEST 19-CHEMISTRY
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  2. The end products of the following sequence of reactions are

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  3. The compound which can give Amine with KOH and Br(2) is-

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  4. underset((2)aq.KOH)overset((1)Cl(2)//U.V.)(rarr) A overset(50% NaOH)(r...

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  6. Find the number of optical isomers for this sizes compound.

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  7. Give the order of reaction rate with alc-KOH

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  13. The set which was all the species planar is : -

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  14. Hydrogen peroxide oxidises thiosulphate ion to-

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