At what concentration of the reactant (in $M$) are the rate constants for first-order,second-order,and third-order reactions equal?

  • A
    $2$
  • B
    $1.5$
  • C
    $1$
  • D
    $0.5$

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Similar Questions

Which of the following statements is $NOT$ true about the rate constant $k$?

For the chemical reaction $2O_3 \rightarrow 3O_2$,the mechanism is given below. What will be the rate law expression?
$O_3 \rightleftharpoons O_2 + O$ ...... (fast)
$O + O_3 \rightarrow 2O_2$ ...... (slow)

Calculate the order of the reaction with respect to $A$ and $B$ based on the following data:
$[A] \ (mol/L)$ $[B] \ (mol/L)$ Rate $(mol/L \cdot s)$
$0.05$ $0.05$ $1.2 \times 10^{-3}$
$0.10$ $0.05$ $2.4 \times 10^{-3}$
$0.05$ $0.10$ $1.2 \times 10^{-3}$

If the concentration of the reactants is increased,the rate of reaction

$A$ reaction $2A + B \xrightarrow{k} C + D$ is first order with respect to $A$ and second order with respect to $B$. Initial concentration $(t = 0)$ of $A$ is $C_0$ while $B$ is $2C_0$. If at $t = 30 \min$ the concentration of $C$ is $C_0/4$,then the rate expression at $t = 30 \min$ is:

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