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Draw all the no-bond resonance structures of isopropyl carbocation. - Chemistry

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प्रश्न

Draw all the no-bond resonance structures of isopropyl carbocation.

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उत्तर

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Theoretical Basis of Organic Reactions
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पाठ 14: Basic Principles of Organic Chemistry - Exercises [पृष्ठ २३२]

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बालभारती Chemistry [English] Standard 11 Maharashtra State Board
पाठ 14 Basic Principles of Organic Chemistry
Exercises | Q 13. | पृष्ठ २३२

संबंधित प्रश्‍न

Find out the most stable species from the following. Justify.

`bar"C""H"_3, bar"C""H"_2"Br", bar"C""Br"_3`


Identify the α-carbon in the following species and give the total number of α-hydrogens.

\[\ce{CH2 = CH - CH2 - CH3}\]


Draw a resonance structure of the following:

Phenol


Draw a resonance structure of the following:

Benzaldehyde


Write true or false. Correct the false statement.

Heterolytic fission results in the formation of free radicals.


Write true or false. Correct the false statement.

Free radicals are negatively charged species.


Choose the correct option.

Hyperconjugation involves overlap of ______ orbitals.


Choose the correct option.

The homologous series of alcohols has general molecular formula ______.


Choose the correct option.

The delocalization of electrons due to overlap between p orbital and sigma bond is called _______.


Which of the following is the strongest nucleophile?


Which of the following statements is INCORRECT about hyperconjugation?


The best reagent for the following conversion is:


The +I inductive effect is shown by which of the following groups?


Which of the following alkyl groups shows maximum positive inductive effect?


IUPAC name of is ______.


Which of the following represents a set of nucleophiles?


Arrange the following free radicals in order of decreasing stability.

  1. Methyl
  2. Vinyl
  3. Allyl
  4. Benzyl

Identify the α-carbons in the following species and give the total number of α-hydrogen.  

\[\ce{CH2 = CH - CH2 - CH3}\]


Identify the α-carbons in the following species and give the total number of α-hydrogen in it.

CH2 = CH − CH2 − CH3


Identify the α - carbons in the following species and give the total number of α-hydrogen.

\[\ce{CH3 - CH2 - \overset{⊕}{C}H - CH2 - CH3}\]


Identify the α-carbons in the following species and give the total number of α-hydrogen.

\[\ce{CH2 = CH - CH2 - CH3}\]


Identify the α-carbon in the following species and give the total number of α-hydrogen.

\[\ce{CH2 = CH - CH2 - CH3}\]


Identify the α-carbons in the following species and give the total number of α-hydrogen.

CH2 = CH - CH2 - CH3


Identify the α - carbon in the following species and give the total number of α-hydrogen. 

\[\ce{CH3 - CH2 - \overset{\oplus}{C}H -CH2 - CH3}\]


Identify the α - carbon in the following species and give the total number of α-hydrogen. 

\[\ce{CH2 = CH - CH2 - CH3}\]


Identify the α-carbons in the following species and give the total number of α-hydrogens.

\[\ce{CH3 - CH2 - \overset{⊕}{C}H - CH2 - CH3}\]


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