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NCERT Exemplar · Q74

Q.Assertion: Phenols give o- and p-nitrophenol on nitration with dilute nitric acid.
Reason: -OH group present in phenol is o-, p-directing.

(i) Assertion and reason both are correct statements and reason is the correct explanation for assertion.
(ii) Assertion and reason both are correct statements but reason is not the correct explanation for assertion.
(iii) Assertion is correct statement but reason is wrong statement.
(iv) Assertion is wrong statement but reason is correct statement.
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The -OH group is strongly activating and ortho/para-directing, and with dilute HNO3, phenol undergoes nitration to give a mixture of o- and p-nitrophenol -- so both the assertion and reason are correct, and the reason correctly explains the assertion. The answer is (i).

The key here is understanding Electrophilic Aromatic Substitution (EAS) -- how substituents already on the ring control where the next group goes. Phenol's -OH group has lone pairs that donate electron density into the ring through resonance, making the ortho and para positions more electron-rich than the meta position. When an electrophile like the nitronium ion (NO2+) attacks, it preferentially hits those activated positions.

The assertion says phenol gives o- and p-nitrophenol on nitration with dilute nitric acid -- true. (With concentrated nitric acid, phenol is heavily oxidised and tars form; dilute acid is mild enough for controlled nitration, giving a mixture of ortho and para isomers.)

The reason states that the -OH group is o-, p-directing -- also true, and this directly explains why nitration happens at those positions. …

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