When the initial concentration of the reactant is doubled,the half-life period of a zero order reaction:

  • A
    is halved
  • B
    is doubled
  • C
    is tripled
  • D
    remains unchanged

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Similar Questions

The decomposition of $NH_{3}$ on a platinum surface is a zero-order reaction. What are the rates of production of $N_{2}$ and $H_{2}$ if $k = 2.5 \times 10^{-4} \, mol \, L^{-1} \, s^{-1}$?

Consider the reaction $aX \to bY$, for which the rate constant at $30^\circ C$ is $1 \times 10^{-3} \text{ mol L}^{-1} \text{ s}^{-1}$. Which of the following statements are true?
$A$. When concentration of $X$ is increased to four times, the rate of reaction becomes $16$ times.
$B$. The reaction is a second order reaction.
$C$. The half-life period is independent of the concentration of $X$.
$D$. Decomposition of $N_2O_5$ is an example of the above reaction.
$E$. $\ln \frac{[R]_0}{[R]}$ vs time is valid for the above reaction.

The concentration of $R$ in the reaction $R \rightarrow P$ was measured as a function of time and the following data is obtained:
$[R] \text{ (molar)}$ $1.0$ $0.75$ $0.40$ $0.10$
$t \text{ (min.)}$ $0.0$ $0.05$ $0.12$ $0.18$

The order of the reaction is:

The unit of the velocity constant in case of zero order reaction is

In which one of the following reactions,the rate constant has the unit $mol \ L^{-1} \ s^{-1}$?

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