The unit of the rate constant for a second-order reaction is ......

  • A
    $mol \cdot L^{-1} \cdot s^{-1}$
  • B
    $mol^{-1} \cdot L \cdot s^{-1}$
  • C
    $mol \cdot L^{-1} \cdot s$
  • D
    $mol^{-1} \cdot L \cdot s^{-1}$

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For a zero order reaction,will the molecularity be equal to zero? Explain.

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

For the reaction $H_{2(g)} + Br_{2(g)} \rightarrow 2HBr_{(g)}$,the experimental data suggests the rate law is $\text{Rate} = K[H_2][Br_2]^{1/2}$. Find the order of the reaction and its molecularity.

For the reaction $A_2 + B_2 \to 2AB$,the experimental data is given below. Determine the order of the reaction.
Experiment No. $[A_2] \text{ (M)}$ $[B_2] \text{ (M)}$ Rate $(M \cdot s^{-1})$
$1$ $0.1$ $0.1$ $1.6 \times 10^{-4}$
$2$ $0.1$ $0.2$ $3.2 \times 10^{-4}$
$3$ $0.2$ $0.1$ $3.2 \times 10^{-4}$

For a reaction $A + B \to$ product,it was found that the rate of reaction increases four times if the concentration of $A$ is doubled,but the rate of reaction remains unaffected if the concentration of $B$ is doubled. Hence,the rate law for the reaction is

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