The total number of optically active compounds formed in the following reaction is
$CH_3CH_2C(CH_3)=CHOCH(CH_3)_2$ $\xrightarrow{HBr}$

  • A
    $0$
  • B
    $6$
  • C
    $4$
  • D
    $2$

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Similar Questions

Chloroform on reduction with zinc dust and water gives:

$Cl-CH_2-C(CH_3)_2-CH_2-CH_2-Cl + I^- \xrightarrow[DMF]{} \text{product}$; The major product of this reaction is:

Identify the compound that undergoes $S_{N}1$ mechanism most rapidly.

Consider the above chemical reaction. Product $A$ is:

Arrange the following compounds in order of decreasing rate of hydrolysis for $S_N1$ reaction:
$(i)$ $C_6H_5CH_2Br$
(ii) $p-CH_3-C_6H_4-CH_2Br$
(iii) $p-CH_3CH_2-C_6H_4-CH_2Br$
(iv) $p-(CH_3)_2CH-C_6H_4-CH_2Br$

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