In the following reactions,
$(i) CH_3-CH(CH_3)-CH(OH)-CH_3 \xrightarrow{H^{+}/\text{heat}} A \text{ [Major product]} + B \text{ [Minor product]}$
$(ii) A$ $\xrightarrow[\text{in absence of peroxide}]{HBr, \text{dark}} C \text{ [Major product]} + D \text{ [Minor product]}$
the major products $(A)$ and $(C)$ are respectively:

  • A
    $CH_2=C(CH_3)-CH_2-CH_3$ and $CH_3-C(Br)(CH_3)-CH_2-CH_3$
  • B
    $CH_3-C(CH_3)=CH-CH_3$ and $CH_3-C(Br)(CH_3)-CH_2-CH_3$
  • C
    $CH_2=C(CH_3)-CH_2-CH_3$ and $CH_3-CH(CH_3)-CH(Br)-CH_3$
  • D
    $CH_3-C(CH_3)=CH-CH_3$ and $CH_3-CH(CH_3)-CH(Br)-CH_3$

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Compound $A$ with molecular formula $C_4H_9Br$ is treated with aqueous $KOH$ solution. The rate of this reaction depends upon the concentration of compound $A$ only. When another optically active isomer $B$ of this compound was treated with aqueous $KOH$ solution,the rate of reaction was found to be dependent on the concentration of both the compound and $KOH$.
$(i)$ Write down the structural formula of both compounds $A$ and $B$.
$(ii)$ Out of these two compounds,which one will be converted to the product with inverted configuration?

Indicate the correct order of bond energy for the following.

The major product '$P$' formed in the given reaction is:

Identify the correct order of reactivity for the $E_2$ reaction with alcoholic $KOH$ for the following compounds:
$(i)$ $(CH_3)_3C-Cl$
(ii) $(CD_3)_3C-Cl$
(iii) $(CT_3)_3C-Cl$

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The major product of the following reaction is:

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