The reaction $3ClO^{-} \rightarrow ClO_{3}^{-} + 2Cl^{-}$ occurs in the following two steps:
$(i)$ $ClO^{-} + ClO^{-} \xrightarrow{K_{1}} ClO_{2}^{-} + Cl^{-}$ (Slow step)
$(ii)$ $ClO_{2}^{-} + ClO^{-} \xrightarrow{K_{2}} ClO_{3}^{-} + Cl^{-}$ (Fast step)
Then the rate of the given reaction is equal to . . . . . . .

  • A
    $K_{1}[ClO^{-}]^{2}$
  • B
    $K_{1}[ClO^{-}]^{2}$
  • C
    $K_{2}[ClO_{2}^{-}][ClO^{-}]$
  • D
    $K_{2}[ClO^{-}]^{3}$

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Similar Questions

........ of a reaction cannot be determined experimentally.

If a reaction occurs in the following two steps:
$i) \ 2 ClO^{-} \rightarrow ClO_2^{-} + Cl^{-}$
$ii) \ ClO_2^{-} + ClO^{-} \rightarrow ClO_3^{-} + Cl^{-}$
Find the reaction intermediate.

The value of the rate constant of a pseudo first order reaction:

$A$ reaction is first order with respect to $A$ and second order with respect to $B$. What is the effect on the reaction rate if the concentration of $B$ is increased $3$ times?

What is the order of reaction for $A + B \to C$?
$Observation$ $[A] \ (mol \ L^{-1})$ $[B] \ (mol \ L^{-1})$ $Rate \ (mol \ L^{-1} \ sec^{-1})$
$1$ $0.1$ $0.1$ $2 \times 10^{-3}$
$2$ $0.2$ $0.1$ $4 \times 10^{-3}$
$3$ $0.1$ $0.2$ $8 \times 10^{-3}$

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