Class 12 Exam  >  Class 12 Videos  >  Aldehyde, Ketone Preparation (Part - 8) - Aldehydes, Ketones and Carboxylic Acids, Chemistry

Aldehyde, Ketone Preparation (Part - 8) - Aldehydes, Ketones and Carboxylic Acids, Chemistry Video Lecture - Class 12

FAQs on Aldehyde, Ketone Preparation (Part - 8) - Aldehydes, Ketones and Carboxylic Acids, Chemistry Video Lecture - Class 12

1. What are aldehydes and ketones?
Ans. Aldehydes and ketones are organic compounds that contain a carbonyl group (C=O). In aldehydes, the carbonyl group is located at the end of the carbon chain, whereas in ketones, it is present in the middle of the chain.
2. How can aldehydes be prepared?
Ans. Aldehydes can be prepared by several methods, such as the oxidation of primary alcohols using oxidizing agents like potassium dichromate or pyridinium chlorochromate. They can also be obtained by the ozonolysis of alkenes or through the hydrolysis of geminal dihalides.
3. What is the process of ketone preparation?
Ans. Ketones can be prepared by the oxidation of secondary alcohols using oxidizing agents like potassium dichromate or pyridinium chlorochromate. Another method involves the oxidation of alkyl benzene or alkyl-substituted cyclohexane using potassium permanganate in acidic medium. Ketones can also be obtained through the Friedel-Crafts acylation reaction.
4. How can carboxylic acids be prepared?
Ans. Carboxylic acids can be prepared by the oxidation of primary alcohols using strong oxidizing agents like potassium dichromate or potassium permanganate. They can also be obtained by the hydrolysis of nitriles or the oxidation of aldehydes. Grignard reagents can also be used to prepare carboxylic acids by reacting with carbon dioxide.
5. What is the difference between aldehydes and ketones?
Ans. The key difference between aldehydes and ketones is the position of the carbonyl group. In aldehydes, the carbonyl group is located at the end of the carbon chain, whereas in ketones, it is present in the middle. Additionally, aldehydes are easily oxidized to form carboxylic acids, whereas ketones do not undergo oxidation easily.
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