Find the rate law for the reaction,$CHCl_{3(g)} + Cl_{2(g)} \rightarrow CCl_{4(g)} + HCl_{(g)}$ if the order of reaction with respect to $CHCl_{3(g)}$ is $1$ and with respect to $Cl_{2(g)}$ is $1/2$.

  • A
    Rate $= k[CHCl_3][Cl_2]^{1/2}$
  • B
    Rate $= k[CHCl_3]^2[Cl_2]^{1/2}$
  • C
    Rate $= k[CHCl_3]^{3/2}[Cl_2]$
  • D
    Rate $= k[CHCl_3]^{1/2}[Cl_2]$

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$2 \ NO + 2 \ H_2 \rightarrow N_2 + 2 \ H_2O$
The above reaction has been studied at $800^{\circ} C$. The related data are given in the table below.
Reaction serial number Initial pressure of $H_2$ / $kPa$ Initial Pressure of $NO$ / $kPa$ Initial rate $(-\frac{dp}{dt}) / (kPa \ s^{-1})$
$1$ $65.6$ $40.0$ $0.135$
$2$ $65.6$ $20.1$ $0.033$
$3$ $38.6$ $65.6$ $0.214$
$4$ $19.2$ $65.6$ $0.106$

The order of the reaction with respect to $NO$ is $...........$

For the reaction $A + B \xrightarrow{K} C$,identify the incorrect order of reaction indicated against the rate expression.

In the given reaction sequence,if $K_3 > K_2 > K_1$,then the rate-determining step is:

For the decomposition of a compound $AB$ at $600 \ K$,the following data were obtained:
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$0.20$$2.75 \times 10^{-8}$
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