For the reaction: $2 A + B \rightarrow A_2 B$,the rate $= k[A][B]^2$ with $k = 2.0 \times 10^{-6} \ mol^{-2} \ L^2 \ s^{-1}$. Calculate the initial rate of the reaction when $[A] = 0.1 \ mol \ L^{-1}$ and $[B] = 0.2 \ mol \ L^{-1}$. Calculate the rate of reaction after $[A]$ is reduced to $0.06 \ mol \ L^{-1}$.

Vedclass pdf generator app on play store
Vedclass iOS app on app store
The initial rate of the reaction is:
Rate $= k[A][B]^2$
$= (2.0 \times 10^{-6} \ mol^{-2} \ L^2 \ s^{-1})(0.1 \ mol \ L^{-1})(0.2 \ mol \ L^{-1})^2$
$= 8.0 \times 10^{-9} \ mol \ L^{-1} \ s^{-1}$
When $[A]$ is reduced from $0.1 \ mol \ L^{-1}$ to $0.06 \ mol \ L^{-1}$,the concentration of $A$ reacted $= (0.1 - 0.06) \ mol \ L^{-1} = 0.04 \ mol \ L^{-1}$.
According to the stoichiometry $2 A + B \rightarrow A_2 B$,the concentration of $B$ reacted $= \frac{1}{2} \times [A]_{\text{reacted}} = \frac{1}{2} \times 0.04 \ mol \ L^{-1} = 0.02 \ mol \ L^{-1}$.
Then,the remaining concentration of $B$ is $[B] = (0.2 - 0.02) \ mol \ L^{-1} = 0.18 \ mol \ L^{-1}$.
After $[A]$ is reduced to $0.06 \ mol \ L^{-1}$,the rate of the reaction is:
Rate $= k[A][B]^2$
$= (2.0 \times 10^{-6} \ mol^{-2} \ L^2 \ s^{-1})(0.06 \ mol \ L^{-1})(0.18 \ mol \ L^{-1})^2$
$= 3.888 \times 10^{-9} \ mol \ L^{-1} \ s^{-1} \approx 3.89 \times 10^{-9} \ mol \ L^{-1} \ s^{-1}$.

Explore More

Similar Questions

The rate law for the reaction below is given by the expression $Rate = k[A][B]$.
$A + B \to \text{Product}$
If the concentration of $B$ is increased from $0.1 \ M$ to $0.3 \ M$,keeping the concentration of $A$ constant at $0.1 \ M$,the rate constant $(k)$ will be:

At $345 \ K$,the half-life for the decomposition of a sample of a gaseous compound initially at $55.5 \ kPa$ was $340 \ s$. When the pressure was $27.8 \ kPa$,the half-life was found to be $170 \ s$. The order of the reaction is $......$ [integer answer]

Which one of the following is a second order reaction?

$Zn + 2H^{+} \to Zn^{2+} + H_2$
The half-life period is independent of the concentration of zinc at constant $pH$. For the constant concentration of $Zn$,the rate becomes $100$ times when $pH$ is decreased from $3$ to $2$. Identify the correct statements $(pH = -\log [H^{+}])$:
$(A)$ $\frac{dx}{dt} = k[Zn]^0[H^{+}]^2$
$(B)$ $\frac{dx}{dt} = k[Zn][H^{+}]^2$
$(C)$ Rate is not affected if the concentration of zinc is made four times and that of $H^{+}$ ion is halved.
$(D)$ Rate becomes four times if the concentration of $H^{+}$ ion is doubled at constant $Zn$ concentration.

Consider the given graph showing the variation of reactant concentration with time. Three different reactions were started with identical initial concentration of reactants. Which of the following statements is correct?

Vedclass Products

For Students

Vedclass Test Series

Mock tests in real JEE/NEET style with performance analysis. 5-day free trial.

Start Free Trial
For Teachers

Exam Paper Generator

Generate Set A/B/C/D exam papers from 7.5L+ questions in 2 minutes. 3 chapters free.

Try Free
For Institutes

Online Exam Module

Live online exams with unlimited students, 360° analytics & white-label branding.

See Demo