An optically active alcohol, A, C4H100 reacts with concentrated H2SO, at 180 °C to form compound B which can exist as cis-trans isomers. Compond A reacts with hot acidified KMNO4 to produce compound C which can reacts dinitrophenylhydrazine but does not react with Tollen's reagent. The reaction between C and Grignard reagent D yields compound E upon hydrolysis. The 8. with 2,4 structural formula for E is as follows: OH H3C-CH2-C-CH3 H3C-C-CH3 Determine the structure A, B, C and D with appropriate reason.

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8.
An optically active alcohol, A, C,H10O reacts with concentrated H2SO4 at 180 °C to
form compound B which can exist as cis-trans isomers. Compond A reacts with hot
acidified KMNO4 to produce compound C which can reacts
dinitrophenylhydrazine but does not react with Tollen's reagent. The reaction
between C and Grignard reagent D yields compound E upon hydrolysis. The
with 2,4
structural formula for E is as follows:
OH
H3C-CH2-C-CH3
H3C-C-CH3
Determine the structure A, B, C and D with appropriate reason.
Transcribed Image Text:8. An optically active alcohol, A, C,H10O reacts with concentrated H2SO4 at 180 °C to form compound B which can exist as cis-trans isomers. Compond A reacts with hot acidified KMNO4 to produce compound C which can reacts dinitrophenylhydrazine but does not react with Tollen's reagent. The reaction between C and Grignard reagent D yields compound E upon hydrolysis. The with 2,4 structural formula for E is as follows: OH H3C-CH2-C-CH3 H3C-C-CH3 Determine the structure A, B, C and D with appropriate reason.
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