MHT CET · Chemistry · Chemical Kinetics
For the reaction, \(\mathrm{NO}_{2(\mathrm{~g})}+\mathrm{CO}_{(\mathrm{g})} \rightarrow \mathrm{NO}_{(\mathrm{g})}+\mathrm{CO}_{2(\mathrm{~g})}\), rate of formation of \(\mathrm{NO}_{(\mathrm{g})}\) is \(\mathrm{Y} \mathrm{~mol~} \mathrm{dm}{ }^{-3} \mathrm{~s}^{-1}\). Find the rate of disappearance of \(\mathrm{CO}_{(\mathrm{g})}\).
- A \(\mathrm{Y} \mathrm{~mol~} \mathrm{dm}^{-3} \mathrm{~s}^{-1}\)
- B \(2 \mathrm{Y} \mathrm{~mol~} \mathrm{dm}{ }^{-3} \mathrm{~s}^{-1}\)
- C \(\frac{\mathrm{Y}}{2} \mathrm{~mol~} \mathrm{dm}^{-3} \mathrm{~s}^{-1}\)
- D \(\frac{3}{2} Y \mathrm{~mol~} \mathrm{dm}^{-3} \mathrm{~s}^{-1}\)
Answer & Solution
Correct Answer
(A) \(\mathrm{Y} \mathrm{~mol~} \mathrm{dm}^{-3} \mathrm{~s}^{-1}\)
Step-by-step Solution
Detailed explanation
\( -\frac{\Delta[\mathrm{CO}]}{\Delta t} = \frac{\Delta[\mathrm{NO}]}{\Delta t} \) \( -\frac{\Delta[\mathrm{CO}]}{\Delta t} = \mathrm{Y} \mathrm{~mol~} \mathrm{dm}^{-3} \mathrm{~s}^{-1} \)
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