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 Multiple Choice QuestionsMultiple Choice Questions

11.

Which one of the following is most reactive towards electrophilic reagents?

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12.

Which of the following statement is correct for a nucleophile? 

  • Nucleophile is s Lewis acid

  • Ammonia is a nucleophile

  • Nucleophiles attack low electrons density sites

  • Nucleophiles attack low electrons density sites

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13.

The number of structural isomers possible from the molecular formula C3H9N is 

  • 4

  • 5

  • 2

  • 2

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14.

Two possible stereo-structures of CH3CHOH.COOH, which are optically active, are called

  • diastereomers

  • atropisomers

  • enantiomers

  • enantiomers

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15.

Liquid hydrocarbons can be converted to a mixture of gaseous hydrocarbons by

  • oxidation

  • cracking

  • distillation under reduced pressure

  • distillation under reduced pressure

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16.

In the following the most stable conformation of n-butane is

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17.

Which of the following species is not electrophilic in nature? 

  • Cl+

  • BH3

  • H3O+

  • H3O+


C.

H3O+

Electrophiles are electron deficient species. Among the given H3O+ has lone pair of electron for donation, thus, it is not electron deficient and hence, does not behave like an electrophile.

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18.

The IUPAC name of the compound having the formula CH identical to space straight C minus CH space equals CH subscript 2

  • 3-butene-1-yne

  • 1-butyn-3-ene

  • but-1-yne-3-ene

  • but-1-yne-3-ene

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19.

The stability of carbanions in the following

1 right parenthesis space RC space identical to straight C with minus on top straight H
space 2 right parenthesis space straight C subscript 6 straight H subscript 5 to the power of minus
3 right parenthesis space straight R subscript 2 straight C space equals space straight C to the power of minus straight H
4 right parenthesis space straight R subscript 3 straight C space equals space straight C to the power of minus straight H

is in the order of 

  • (1) > (2) > (3) > (4)

  • (2) > (3) > (4) > (1)

  • (4) > (2) > (3)  > (1)

  • (4) > (2) > (3)  > (1)

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20.

The general molecular formula, which represents the homologous series of alkanols is:

  • CnH2nO2

  • CnH2nO

  • CnH2n+1O

  • CnH2n+1O

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