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1.                  2.  

3.        4.  

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
 62%
Level 2: 60%+
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Wolf Kishner reduction cannot be used in which of the following?

1.            2.   

3.                4.  

Subtopic:  Name Reaction |
Level 3: 35%-60%
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In which of the following reaction equilibrium will shift towards right?

1.         2.  

3.        4.  

Subtopic:  Structural Isomers |
Level 3: 35%-60%
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The major product of the given reaction is

          

1.              2.  

3.               4.  

Subtopic:  Acid Derivatives - Preparation, Properties & Uses |
Level 4: Below 35%
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The product formed in this reaction is

1.          2.  

3.           4.  

Subtopic:  Acid Derivatives - Preparation, Properties & Uses |
Level 3: 35%-60%
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The product which cannot be formed is

1.  

2.  

3.  

4.  

Subtopic:  Name Reaction |
 63%
Level 2: 60%+
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Among the following esters, form a pair of least reactive and most reactive ester towards hydrolysis is-

      

1.  V. III

2.  VI, II

3.  I, IV

4.  I, V

Subtopic:  Isomers & Reaction Mechanism |
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The pKa values of some of the acids are given below

            

What is the correct order of leaving the ability of their conjugate bases?

1.  

2.  

3.  

4.  

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
 52%
Level 3: 35%-60%
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CH3NO23Cl2+3NaOHP.'P'is

1. CCl3CHO

2. CCl3NO2

3. CHCl3

4. CHCl2NO2

Subtopic:  Isomers & Reaction Mechanism |
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Consider the following sequential reaction:
\(\begin{aligned} &\mathrm{RCH}=\mathrm{CH}_2 \xrightarrow[\mathrm{Zn} / \mathrm{H}_2 \mathrm{O}]{\mathrm{O}_3}(\mathrm{~A}) \xrightarrow{\mathrm{LAH}}(\mathrm{~B})+\text { (C), }\\ &\text { (B) and (C) are: } \end{aligned}\)
 

1.  RCHO and HCHO

2.  RCOOH and HCOOH

3. \(\mathrm{RCH}_3 \mathrm{OH} \text { and } \mathrm{HCOOH}\)

4.  

Subtopic:  Aldehydes & Ketones: Preparation & Properties |
 67%
Level 2: 60%+
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