In the dehydration reaction,
    CH3CONH2P2O5CH3CN,
the hybridization state of carbon changes from:

(1) sp3 to sp2

(2) sp to sp

(3) sp2 to sp

(4) sp to sp3

Subtopic:  conversion chart for n to n carbon |
 85%
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The reagent used in dehydrohalogenation process is:

1. Alcoholic KOH

2. NaNH2

3. C2H5ONa

4. All of these

Subtopic:  conversion chart for n to n carbon |
 75%
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The reaction, CH2=CHCHOHXgives:

1. CH3CHXCHO

2. CH2XCHCHO

3. CH2=CHCHX2

4. None of these

Subtopic:  Differentiation of Organic Compound |
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The reagent used in dehalogenation process is:

1. KOH alc.

2. Zn dust+ alc.

3. Na

4. KOH(aq)

Subtopic:  conversion chart for n to n carbon |
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An unknown compound A has a molecular formula C4H6. When A is treated with excess of Br2 a new substance B with formula C4H6Br4 is formed. A forms a white ppt. with ammoniacal silver nitrate solution. A may be-

1. But-1-yne

2. But-2-yne

3. But-1-ene

4. But-2-ene

Subtopic:  Differentiation of Organic Compound |
 64%
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The appropriate reagent for the following transformation,

  is :

1. Zn(Hg),HCl

2. NH2NH2, OH-

3. H2/Ni

4. NaBH4

Subtopic:  Differentiation of Organic Compound |
 62%
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Which compound would give 5-keto-2-methyl hexanal upon ozonolysis?

1. 2.
3. 4.

Subtopic:  Aldehydes & Ketones |
 68%
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The reduction of an alkyne to alkene using Lindlar's catalyst results into:

1. Cis-addition of hydrogen atoms.

2. Trans-addition of hydrogen atoms.

3. A mixture obtained by cis- and trans-additions of hydrogen which are in equilibrium with each other.

4. A mixture obtained by cis- and trans-additions of hydrogen atoms which are not in equilibrium with each other.

Subtopic:  Differentiation of Organic Compound |
 67%
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Identify Z in the sequence:
\(\mathrm{CH}_ 3-\mathrm{CH}_2-\mathrm{CH}=\mathrm{CH}_2 \xrightarrow{\mathrm{HBr} / \mathrm{H}_2 \mathrm{O}_2} \mathrm{Y} \xrightarrow{\mathrm{C}_2 \mathrm{H}_5 \mathrm{O}^{-}\mathrm{Na}^{+}} \mathrm{Z} \)

1. 
2. 
3.  \( \mathrm{CH}_3-\left(\mathrm{CH}_2\right)_3-\mathrm{O}-\mathrm{CH}_2-\mathrm{CH}_3 \)
4.  \( \mathrm{CH}_3-\left(\mathrm{CH}_2\right)_4-\mathrm{O}-\mathrm{CH}_3 \)
Subtopic:  Ascending and Descending Series |
 73%
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Acetylene can be converted to higher alkyne using the following sequence of reactions:

(1) Na,RX

(2) RMg X,R X

(3) either of these two

(4) none of these

Subtopic:  Ascending and Descending Series |
 55%
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