The reaction of 3-methylbutan-2-ol with HBr gives:

1. 2-Bromo-3-methyl butane 2. 2-Bromo-2-methyl butane
3. 3-Bromo-2-methyl butane 4. 3-Bromo-3-methyl butane

Subtopic:  Alcohols: Preparation & Properties |
 56%
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The reaction of hydrogen iodide with methoxybenzene gives:

1. Phenol

2. Iodomethane

3. Phenol and Iodomethane

4. None of the above

Subtopic:  Ethers: Preparation & Properties, Uses |
 78%
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The reaction of hydrogen iodide with benzyl ethyl ether gives:

1. Ethanol

2. Benzyl iodide

3. Benzyl iodide and Ethanol

4. None of the above

Subtopic:  Ethers: Preparation & Properties, Uses |
 56%
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The correct sequence of reactions is:

1.  
2.   
3.
4.

Subtopic:  Phenols: Preparation & Properties |
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The correct set of reactions among the following is:

1.
2.
3.
4. None of the above
Subtopic:  Alcohols: Preparation & Properties |
 76%
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\(\large{\mathrm{CH_3CH_2CHON}a+\mathrm{CH_3CH_2CH_2Br \rightarrow}}\)

 
The major product of above Williamson's ether synthesis will be:

1. 1-Propoxypropane 2. 2-Propoxypropane
3. 3-Propoxypropane 4. 4-Propoxypropane
Subtopic:  Ethers: Preparation & Properties, Uses |
 76%
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The incorrect reaction among the following is:

1.
2.
3.
4.
Subtopic:  Phenols: Preparation & Properties |
 70%
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The major product of Williamson’s ether synthesis reaction would be:
 

1. Benzene 2. Methoxy benzene
3. Ethoxy benzene 4. Ethane
Subtopic:  Ethers: Preparation & Properties, Uses |
 90%
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In the following Williamson’s synthesis reaction,

CH3CH2ONa + CH3-Br → ?

The product will be:

1. 1-Methoxyethane 2. 2-Methoxyethane
3. 3-Methoxyethane 4. 4-Methoxyethane
Subtopic:  Ethers: Preparation & Properties, Uses |
 85%
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Dehydration of ethanol in acidic medium yields:

1. Ethyne

2. Ethanol

3. Ethane

4. Ethene

Subtopic:  Alcohols: Preparation & Properties |
 84%
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