MCQ
$C{H_3} - C{H_2} - Cl $ $ \xrightarrow{alcKOH} $ $A$, the product is
- A$C{H_3}C{H_2}OK$
- B$C{H_3}CHO$
- C$C{H_3}C{H_2}OC{H_2}C{H_3}$
- ✓$C{H_2} = C{H_2}$
Haloalkanes in the presence of alcoholic $KOH$ undergoes elimination reaction or dehydrohalogenation reaction..
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Here $A$ and $B$ on hydrolysis respectively gives
$NH_3{_{(g)}}\ \rightleftharpoons \ \frac {1}{2} {N_2}_{(g)} + \frac {3}{2} {H_2}_{(g)}$ ; $K_P$
The degree of dissociation $(\alpha )$ of $NH_3$ is related to total equilibrium pressure $(P^o )$ as