MCQ
$s{p^3}$ hybridisation is found in
- A$CO_3^{2 - }$
- B$B{F_3}$
- C$NO_3^ - $
- ✓$N{H_3}$
Due to the presence of one lone pair, it is pyramidal in shape.
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$N_2H_4 + IO_3^-+ 2H^+ + Cl^- \rightarrow ICl + N_2 + 3H_2O$
The equivalent masses of $N_2H_4$ and $KIO_3$ respectively are :-
