MCQ
Formic acid can reduce
- ATollen's reagent
- BMercuric chloride
- C$KMn{O_4}$
- ✓All of these
Fehling solution -
$HCOOH + 2CuO \to C{O_2} + {H_2}O + \mathop {C{u_2}O}\limits_{{\text{(Red}}\,{\text{ppt}})} $
Mercury chloride -
$2HCOOH + 2HgC{l_2} \to 2C{O_2} + 4HCl + \mathop {2Hg}\limits_{{\text{(Black)}}} $
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$A \to {\text{Product ;}}\,\, - \frac{{d[A]}}{{dt}} = {k_1}{[A]^o}$
$B \to {\text{Product ;}}\,\, - \frac{{d[B]}}{{dt}} = {k_2}{[B]}$
Units of $k_1$ and $k_2$ are expressed in terms of molarity $(M)$ and time $(sec^{-1})$ as
$S{O_2} + N{O_2} \rightleftharpoons S{O_3} + NO$
If we take one mole of each of four gases in one $L$ container. What would be equilibrium concentration of $NO$ and $NO_2$ respectively
