Class 12 Chemistry MCQs | Chapter 8: Aldehydes, Ketones And Carboxylic Acids – Part 7
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Class 12 Chemistry MCQs | Chapter 8: Aldehydes, Ketones and Carboxylic Acids – Part 7

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601. Which statement best explains why formaldehyde does not undergo ordinary aldol reaction?
ⓐ. It has no carbonyl group.
ⓑ. It lacks \(\alpha\)-hydrogen.
ⓒ. It is a ketone.
ⓓ. It contains a \(COOH\) group.
602. Which assertion-reason pair is correctly evaluated? Assertion: Benzaldehyde undergoes Cannizzaro reaction in concentrated alkali. Reason: Benzaldehyde lacks \(\alpha\)-hydrogen and cannot form an enolate for ordinary aldol reaction.
ⓐ. Assertion is true, but Reason is false.
ⓑ. Both are true, but Reason does not explain Assertion.
ⓒ. Both are true, and Reason explains Assertion.
ⓓ. Assertion is false, but Reason is true.
603. Which product is obtained after acidification of sodium benzoate formed in Cannizzaro reaction of benzaldehyde?
ⓐ. Benzoic acid
ⓑ. Benzyl chloride
ⓒ. Benzyl alcohol
ⓓ. Benzene
604. Which set contains only aldehydes capable of Cannizzaro reaction?
ⓐ. \(CH_3CHO\), \(CH_3CH_2CHO\)
ⓑ. \(CH_3CHO\), \(C_6H_5CHO\)
ⓒ. \(HCHO\), \(CH_3CHO\)
ⓓ. \(HCHO\), \(C_6H_5CHO\)
605. What is the directing nature of the \( -CHO \) group in electrophilic aromatic substitution?
ⓐ. Deactivating and meta-directing
ⓑ. Activating and ortho-directing
ⓒ. Activating and para-directing
ⓓ. Deactivating and ortho-directing
606. Which product is mainly formed when benzaldehyde undergoes nitration?
ⓐ. \(o\)-nitrobenzaldehyde
ⓑ. \(p\)-nitrobenzaldehyde
ⓒ. \(m\)-nitrobenzaldehyde
ⓓ. \(2,4\)-dinitrobenzaldehyde
607. Which electronic effect mainly explains the meta-directing nature of \( -CHO \) in benzaldehyde?
ⓐ. Strong \(+I\) effect only
ⓑ. Strong \(+M\) effect only
ⓒ. Hyperconjugation from \( -CHO \)
ⓓ. \(-I\) and \(-M\) withdrawal
608. What is the major product when benzaldehyde reacts with bromine in the presence of a Lewis acid?
ⓐ. \(o\)-bromobenzaldehyde
ⓑ. \(m\)-bromobenzaldehyde
ⓒ. \(p\)-bromobenzaldehyde
ⓓ. benzyl bromide
609. Why is the benzene ring of benzaldehyde less reactive than benzene toward electrophilic substitution?
ⓐ. The \( -CHO \) group withdraws ring electron density.
ⓑ. The \( -CHO \) group donates electron density to the ring.
ⓒ. The benzene ring loses aromaticity permanently.
ⓓ. The aldehyde group changes into \(COOH\) first.
610. Which group attached to benzene is deactivating and meta-directing like \( -CHO \)?
ⓐ. \( -OH \)
ⓑ. \( -NHCOCH_3 \)
ⓒ. \( -CH_3 \)
ⓓ. \( -COCH_3 \)
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