a.
Interpretation:
To write the products of the given reactions.
Concept introduction:
So many number of reactions are involved in the Carbonyl group. The carbonyl group is electrophilic nature, therefore it undergoes nucleophilic addition reactions.
For example carbonyl group reacts with Grignard reagent, it undergoes nucleophilic addition reactions and form unstable tetrahedral intermediate by the elimination of leaving group. Addition of hydrogen ion to the carbonyl carbon to form alkoxide ion. By the protonation of alkoxide ion forms alcohol.
b.
Interpretation:
To write the products of the given reactions.
Concept introduction:
So many number of reactions are involved in the Carbonyl group. The carbonyl group is electrophilic nature, therefore it undergoes nucleophilic addition reactions.
For example carbonyl group reacts with Grignard reagent, it undergoes nucleophilic addition reactions and form unstable tetrahedral intermediate by the elimination of leaving group. Addition of hydrogen ion to the carbonyl carbon to form alkoxide ion. By the protonation of alkoxide ion forms alcohol.
c.
Interpretation:
To write the products of the given reactions.
Concept introduction:
So many number of reactions are involved in the Carbonyl group. The carbonyl group is electrophilic nature, therefore it undergoes nucleophilic addition reactions.
For example carbonyl group reacts with Grignard reagent, it undergoes nucleophilic addition reactions and form unstable tetrahedral intermediate by the elimination of leaving group. Addition of hydrogen ion to the carbonyl carbon to form alkoxide ion. By the protonation of alkoxide ion forms alcohol.
d.
Interpretation:
To write the products of the given reactions.
Concept introduction:
So many number of reactions are involved in the Carbonyl group. The carbonyl group is electrophilic nature, therefore it undergoes nucleophilic addition reactions.
For example carbonyl group reacts with Grignard reagent, it undergoes nucleophilic addition reactions and form unstable tetrahedral intermediate by the elimination of leaving group. Addition of hydrogen ion to the carbonyl carbon to form alkoxide ion. By the protonation of alkoxide ion forms alcohol.
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Organic Chemistry (8th Edition)
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- These are synthesis questions. You need to show how the starting material can be converted into the product(s) shown. You may use any reactions we have learned. Show all the reagents you need. Show each molecule synthesized along the way and be sure to pay attention to the regiochemistry and stereochemistry preferences for each reaction. If a racemic molecule is made along the way, you need to draw both enantiomers and label the mixture as "racemic". All of the carbon atoms of the products must come from the starting material(s)! ? عنیarrow_forwardThese are synthesis questions. You need to show how the starting material can be converted into the product(s) shown. You may use any reactions we have learned. Show all the reagents you need. Show each molecule synthesized along the way and be sure to pay attention to the regiochemistry and stereochemistry preferences for each reaction. If a racemic molecule is made along the way, you need to draw both enantiomers and label the mixture as "racemic". All of the carbon atoms of the products must come from the starting material(s)! LOH ? H E,Z Mixture Harrow_forwardThese are synthesis questions. You need to show how the starting material can be converted into the product(s) shown. You may use any reactions we have learned. Show all the reagents you need. Show each molecule synthesized along the way and be sure to pay attention to the regiochemistry and stereochemistry preferences for each reaction. If a racemic molecule is made along the way, you need to draw both enantiomers and label the mixture as "racemic".arrow_forward
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