5. Metabolism of carbamezapene to give a diol metabolite as shown in the following equation can be classified as 'N CONH₂ Carbamazepine . Aromatic hydroxylation - Allylic oxidation Alkene oxidation Benzylic oxidation HO OH N CONH₂

Chemistry for Today: General, Organic, and Biochemistry
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Chapter15: Carboxylic Acids And Esters
Section: Chapter Questions
Problem 15.56E: Dihydroxyacetone reacts with phosphoric acid to form the monoester called dihydroxyacetone...
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5. Metabolism of carbamezapene to give a diol metabolite as shown in the following
equation can be classified as
CONH2
Carbamazepine
A. Aromatic hydroxylation
B. Allylic oxidation
C. Alkene oxidation
D. Benzylic oxidation
HO
OH
N
CONH₂
Transcribed Image Text:5. Metabolism of carbamezapene to give a diol metabolite as shown in the following equation can be classified as CONH2 Carbamazepine A. Aromatic hydroxylation B. Allylic oxidation C. Alkene oxidation D. Benzylic oxidation HO OH N CONH₂
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