For a hypothetical reaction, \( \begin{array}{ll}A+3 B \longrightarrow P & \Delta H=-2 x \mathrm...
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For a hypothetical reaction,
\( \begin{array}{ll}A+3 B \longrightarrow P & \Delta H=-2 x \mathrm{~kJ} / \text { mole of } A \\ \text { \& } M \longrightarrow 2 Q+R & \Delta H=+x \mathrm{~kJ} / \text { mole of } M\end{array} \)
These reactions are carried simultaneously in a reactor such that temperature is not changing. If rate of disappearance of \( B \) is \( y M \sec ^{-1} \) then rate of formation (in \( M \sec ^{-1} \) ) of \( Q \) is:
(a) \( \frac{2}{3} y \)
(b) \( \frac{3}{2} y \)
(c) \( \frac{4}{3} y \)
(d) \( \frac{3}{4} y \)
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