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MHT CET · Chemistry · Chemical Kinetics

For the reaction \(\mathrm{N}_{2(\mathrm{~g})}+3 \mathrm{H}_{2(\mathrm{~g})} \rightarrow 2 \mathrm{NH}_{3(\mathrm{~g})}\) rate of disappearance of \(\mathrm{N}_{2(\mathrm{~g})}\) is \(2.22 \times 10^{-3} \mathrm{~mol} \mathrm{dm}^{-3}\). What is the rate of appearance of \(\mathrm{NH}_{3(\mathrm{~g})}\) ?

  1. A \(4.44 \times 10^{-3} \mathrm{~mol} \mathrm{dm}^{-3}\)
  2. B \(1.11 \times 10^{-3} \mathrm{~mol} \mathrm{dm}^{-3}\)
  3. C \(2.22 \times 10^{-3} \mathrm{~mol} \mathrm{dm}^{-3}\)
  4. D \(3.33 \times 10^{-3} \mathrm{~mol} \mathrm{dm}^{-3}\)
Verified Solution

Answer & Solution

Correct Answer

(A) \(4.44 \times 10^{-3} \mathrm{~mol} \mathrm{dm}^{-3}\)

Step-by-step Solution

Detailed explanation

\(\begin{aligned} & -\frac{\mathrm{d}\left[\mathrm{N}_2\right]}{\mathrm{dt}}=-\frac{1}{5} \frac{\mathrm{d}\left[\mathrm{H}_2\right]}{\mathrm{dt}}=+\frac{1}{5} \frac{\mathrm{d}\left[\mathrm{NH}_3\right]}{\mathrm{dt}} \\ & 2.22 \times 10^{-3}=\frac{1}{2} \frac{\mathrm{d}\left(\mathrm{NH}_3\right)}{\mathrm{dt}} \\ & \frac{\mathrm{d}\left(\mathrm{NH}_3\right)}{\mathrm{dt}}=4.44 \times 10^{-3} \mathrm{~mol} \mathrm{dm}^{-3}\end{aligned}\)