For a reaction $r = k[A][B]^2$,if the concentration of $A$ is doubled,the rate of reaction:

  • A
    increases by $2$
  • B
    decreases by $\frac{1}{2}$
  • C
    increases by $4$
  • D
    decreases by $2$

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Similar Questions

The conversion of $A \to B$ follows second order kinetics. Doubling the concentration of $A$ will increase the rate of formation of $B$ by a factor of:

For a reaction $A + B \rightarrow \text{product}$,if $[A]$ is doubled keeping $[B]$ constant,the rate of reaction doubles. Calculate the order of reaction with respect to $A$.

Determine the order of reaction on the basis of following data for the reaction $A + B \to C$.
Exp.$[A]$$[B]$Rate of reaction $(mol \ L^{-1} \ s^{-1})$
$1$$0.1$$0.1$$2 \times 10^{-3}$
$2$$0.4$$0.1$$0.8 \times 10^{-2}$
$3$$0.1$$0.2$$1.6 \times 10^{-2}$
(in $.5$)

For the elementary reaction $M \rightarrow N$,the rate of disappearance of $M$ increases by a factor of $8$ upon doubling the concentration of $M$. The order of the reaction with respect to $M$ is :

$A_{(g)} + 2B_{(g)} \to$ product is an elementary reaction. Which of the following is incorrect?

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