322905
The mechanism of the reaction involves the following three steps.
I. Nucleophilic attack of water on carbocation.
II. Protonation of an alkene to form carbocation by the electrophilic attack of \(\mathrm{H}_{3} \mathrm{O}^{+}\).
III. Deprotonation to form an alcohol.
Identify the correct sequence for the mechanism of reaction in the acid catalysed hydration of alkenes.
322905
The mechanism of the reaction involves the following three steps.
I. Nucleophilic attack of water on carbocation.
II. Protonation of an alkene to form carbocation by the electrophilic attack of \(\mathrm{H}_{3} \mathrm{O}^{+}\).
III. Deprotonation to form an alcohol.
Identify the correct sequence for the mechanism of reaction in the acid catalysed hydration of alkenes.
322905
The mechanism of the reaction involves the following three steps.
I. Nucleophilic attack of water on carbocation.
II. Protonation of an alkene to form carbocation by the electrophilic attack of \(\mathrm{H}_{3} \mathrm{O}^{+}\).
III. Deprotonation to form an alcohol.
Identify the correct sequence for the mechanism of reaction in the acid catalysed hydration of alkenes.
322905
The mechanism of the reaction involves the following three steps.
I. Nucleophilic attack of water on carbocation.
II. Protonation of an alkene to form carbocation by the electrophilic attack of \(\mathrm{H}_{3} \mathrm{O}^{+}\).
III. Deprotonation to form an alcohol.
Identify the correct sequence for the mechanism of reaction in the acid catalysed hydration of alkenes.