MCQ
$N_2H_4 + IO_3^ -+ 2H^+ + Cl^-\to ICl + N_2 + 3H_2O$
The equivalent masses of $N_2H_4$ and $KIO_3$ respectively are
- A$8$ and $35.6$
- B$8$ and $87$
- ✓$8$ and $53.5$
- D$16$ and $53.5$
The equivalent masses of $N_2H_4$ and $KIO_3$ respectively are
Eq. wt. of $\mathrm{KIO}_{3}=\frac{214}{4}=53.5$
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