In the reaction, P is: 

(1) CH3COCHO

(2) CH3COOCH3

(3) CH3COCH2OH

(4) none of these

 

 

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
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Acetaldehyde reacts with PCl5, to give:

(1) ethyl chloride

(2) ethylene chloride

(3) ethylidene dichloride

(4) trichloroacetaldehyde

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
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The reaction  is an example of:

(1) Wolf rearrangement

(2) Favorskii rearrangement

(3) Steven's rearrangement

(4) Wagner-Meerwin rearrangement

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
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Stephen's reaction is reduction of:

(1) alkyl cyanide with LiAlH4

(2) alkyl cyanide with SnCl2 and HCl

(3) alkyl isocyanide with Na and alcohol

(4) acyl halide in the presence of Pd/BaSO4

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
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Which of the following does not undergo polymerization?

(1) CH3CHO

(2) HCHO

(3) CH3COCH3

(4) None of these

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
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Formaldehyde can be distinguished from acetaldehyde by:

1. Fehling's solution

2. Schiff's reagent

3. Ammonia

4. Ammoniacal AgNO3

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
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In Tischenko's reaction an aldehyde is heated with catalyst:

(1) NaOH

(2) Al(OC2H5)3

(3) Al2O3

(4) Mg/Hg

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
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Formalin is:

1. Formaldehyde

2. Formaldehyde+methanol

3. Formaldehyde+methanol+water

4. Formaldehyde+water

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
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Doctors detect diabetes disease by testing the presence of glucose in urine with:

(1) Nessler's reagent

(2) Fehling's solution

(3) Fenton's reagent

(4) Silver nitrate solution

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
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Acetals are:

1. Aldehyde

2. Diethers

3. Ketones

4. Hydroxy aldehyde

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
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