An alkene “A” on reaction with O3 and Zn - H2O gives propanone and ethanal in an equimolar ratio. The addition of HCl to alkene “A” gives “B” as the major product. The structure of product “B” is:

1.  2.
3. 4.
 

Subtopic:  Isomers & Reaction Mechanism |
 83%
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Carbonyl compounds undergo nucleophilic addition because of 

1. The electrophilic carbonyl carbon forms a sigma bond with the nucleophile.

2. Electromeric effect.

3. Electronegativity difference of carbon and oxygen atoms.

4. None of the above

Subtopic:  Isomers & Reaction Mechanism |
 57%
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Carboxylic acids are more acidic than phenol and alcohol because of 

1. formations of dimers

2. highly acidic hydrogen

3. resonance stabilization of their conjugate base

4. intermolecular hydrogen bonding 

Subtopic:  Carboxylic Acids: Preparation & Properties |
 71%
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Acetaldehyde cannot exhibit

1. Iodoform test

2. Benedict's test

3. Lucas test

4. Tollen's test

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
 77%
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Ketones(R1COR2)R1=R2=alkyl groups, can be obtained in one step by:

1. hydrolysis of esters

2. oxidation of primary alcohols

3. oxidation of secondary alcohols

4. reaction of acid halides and alcohols

Subtopic:  Isomers & Reaction Mechanism |
 81%
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The product formed by the reaction of chlorine with benzaldehyde in the absence of catalyst is

1. benzoyl chloride

2. benzyl chloride

3. chlorobenzene

4. o-chlorobenzaldehyde

Subtopic:  Acid Derivatives - Preparation, Properties & Uses |
 63%
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The precipitate formed on heating ethanal with Fehling's solution is:

1. \(\mathrm{CuO}\) 2. \(\mathrm{Cu}\)
3. \(\mathrm{Cu}+\mathrm{Cu}_2 \mathrm{O}+\mathrm{CuO}\) 4. \(\text{Cu}_2O\)
Subtopic:  Name Reaction |
 76%
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Monomer of trioxane is

1. formaldehyde

2. acetone

3. isoprene

4. acetaldehyde

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
 58%
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Which will not give formaldehyde on heating or up distillation?

1. paraldehyde

2. trioxane

3. formalin

4. paraformalehyde 

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
 50%
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Given the following reaction:
CH3
CHO+HCNX
(Assume compound X has a chiral centre)
The optical activity associated with product X would be: 

1. Laevorotatory 
2. Dextrorotatory
3. Mesocompound
4. Racemic mixture

Subtopic:  Isomers & Reaction Mechanism |
 75%
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