The plot of concentration of a reactant versus time for a chemical reaction is shown below. The order of this reaction with respect to the reactant is

  • A
    $0$
  • B
    $1$
  • C
    $2$
  • D
    not possible to determine from this plot

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Which graph represents a zero order reaction $[A_{(g)} \to B_{(g)}]$?

Which of the following plots is correct for a zero-order reaction?

Half life of zero order reaction $A \rightarrow \text{product}$ is $1 \ \text{hour}$,when initial concentration of reactant is $2.0 \ \text{mol L}^{-1}$. The time required to decrease concentration of $A$ from $0.50$ to $0.25 \ \text{mol L}^{-1}$ is:

If the rate constant $(K)$ of a reaction is $1.6 \times 10^{-3} \ mol \ L^{-1} \ min^{-1}$,the order of reaction is

The order of reaction for which the units of rate constant are $mol \ dm^{-3} \ s^{-1}$ is

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