Chemical Kinetics PYQs - Last 5 Years
NEET / Chemistry / Physical Chemistry / 20 recent questions
ChemistryPhysical Chemistry2022-2026
Practice 20 NEET Chemistry questions from Chemical Kinetics. Use the year-wise and type-wise breakdown to prioritize recent PYQs, then continue into the question list below.
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Last 5 Years Chemical Kinetics Questions
Showing 20 of 20 filtered questions.
1Chemical Kinetics
For an elementary chemical reaction, the Arrhenius plot is given below.
If the energy of activation is $6.64 \mathrm{~kJ} \mathrm{~mol}^{-1}$ and $\mathrm{R}=8.3 \mathrm{~J} \mathrm{~K}^{-1} \mathrm{~mol}^{-1}$, the temperature at which the...
If the energy of activation is $6.64 \mathrm{~kJ} \mathrm{~mol}^{-1}$ and $\mathrm{R}=8.3 \mathrm{~J} \mathrm{~K}^{-1} \mathrm{~mol}^{-1}$, the temperature at which the...
MCQ+4 / -12026
2Chemical Kinetics
$2 A \xrightarrow{k} B$ is a zero-order reaction, where $k=1.0 \mathrm{~mol} \mathrm{~L}^{-1} \mathrm{~min}^{-1}$. If the initial concentration of $A$ is 2 M , then the time taken to complete $75 \%$ of the reaction will be
MCQ+4 / -12026
3Chemical Kinetics
For a certain reaction $R \rightarrow$ Product, the plot of concentration $[R]$ vs time has a negative slope as shown. The order of reaction is :
MCQ+4 / -12026
4Chemical Kinetics
Given below is an expression for the rate constant of a first-order reaction occurring at a certain temperature, $\mathrm{T}(\mathrm{K})$.
\(\operatorname{lnk}=14.34-\frac{1.25 \times 10^4}{T}\)
The energy of activation in $\mathrm{kcal} ...
\(\operatorname{lnk}=14.34-\frac{1.25 \times 10^4}{T}\)
The energy of activation in $\mathrm{kcal} ...
MCQ+4 / -12026
5Chemical Kinetics
\(\text { Match List I with List II : }\)
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MCQ+4 / -12026
6Chemical Kinetics
If the half-life ( $t_{1 / 2}$ ) for a first order reaction is 1 minute, then the time required for $99.9 \%$ completion of the reaction is closest to :
MCQ+4 / -12025
7Chemical Kinetics
If the rate constant of a reaction is $0.03 \mathrm{~s}^{-1}$, how much time does it take for $7.2 \mathrm{~mol} \mathrm{~L}^{-1}$ concentration of the reactant to get reduced to $0.9 \mathrm{~mol} \mathrm{~L}^{-1}$ ?
(Given: $\log 2=0.301$...
(Given: $\log 2=0.301$...
MCQ+4 / -12025
8Chemical Kinetics
Rate constants of a reaction at \(500 \mathrm{~K}\) and \(700 \mathrm{~K}\) are \(0.04 \mathrm{~s}^{-1}\) and \(0.14 \mathrm{~s}^{-1}\), respectively; then, activation energy of the reaction is :
(Given: $$\log 3.5=0.5441, \mathrm{R}=8.31 \...
(Given: $$\log 3.5=0.5441, \mathrm{R}=8.31 \...
MCQ+4 / -12024
9Chemical Kinetics
Which of the following plot represents the variation of \(\ln \mathrm{k}\) versus \(\frac{1}{\mathrm{~T}}\) in accordance with Arrhenius equation?
MCQ+4 / -12024
10Chemical Kinetics
Following data is for a reaction between reactants A and B :
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MCQ+4 / -12024
11Chemical Kinetics
Which plot of \(\ln \mathrm{k}\) vs \(\frac{1}{\mathrm{~T}}\) is consistent with Arrhenius equation?
MCQ+4 / -12024
12Chemical Kinetics
The rate of a reaction quadruples when temperature changes from \(27^{\circ} \mathrm{C}\) to \(57^{\circ} \mathrm{C}\). Calculate the energy of activation.
Given $$\mathrm{R}=8.314 \mathrm{~J} \mathrm{~K}^{-1} \mathrm{~mol}^{-1}, \log 4=0.6...
Given $$\mathrm{R}=8.314 \mathrm{~J} \mathrm{~K}^{-1} \mathrm{~mol}^{-1}, \log 4=0.6...
MCQ+4 / -12024
13Chemical Kinetics
Activation energy of any chemical reaction can be calculated if one knows the value of
MCQ+4 / -12024
14Chemical Kinetics
The correct options for the rate law that corresponds to overall first order reaction is
MCQ+4 / -12023
15Chemical Kinetics
For a reaction \(3 \mathrm{~A} \rightarrow 2 \mathrm{~B}\)
The average rate of appearance of \(\mathrm{B}\) is given by \(\frac{\Delta[B]}{\Delta t}\). The correct relation between the average rate of appearance of \(\mathrm{B}\) with the a...
The average rate of appearance of \(\mathrm{B}\) is given by \(\frac{\Delta[B]}{\Delta t}\). The correct relation between the average rate of appearance of \(\mathrm{B}\) with the a...
MCQ+4 / -12023
16Chemical Kinetics
Given below are two statements: one is labelled as Assertion A and the other is labelled as Reason R.
Assertion A : A reaction can have zero activation energy.
Reason R : The minimum extra amount of energy absorbed by reactant molecules so ...
Assertion A : A reaction can have zero activation energy.
Reason R : The minimum extra amount of energy absorbed by reactant molecules so ...
MCQ+4 / -12023
17Chemical Kinetics
For a certain reaction, the rate \(=\mathrm{k}[\mathrm{A}]^{2}[\mathrm{~B}]\), when the initial concentration of A is tripled keeping concentration of \(\mathrm{B}\) constant, the initial rate would
MCQ+4 / -12023
18Chemical Kinetics
For a chemical reaction
4A + 3B \(\to\) 6C + 9D
Rate of formation of C is 6 \(\times\) 10\(-\)2 mol L\(-\)1 s\(-\)1 and rate of disappearance of A is 4 \(\times\) 10\(-\)2 mol L\(-\)1 s\(-\)1. The rate of reaction and amount of B consumed i...
4A + 3B \(\to\) 6C + 9D
Rate of formation of C is 6 \(\times\) 10\(-\)2 mol L\(-\)1 s\(-\)1 and rate of disappearance of A is 4 \(\times\) 10\(-\)2 mol L\(-\)1 s\(-\)1. The rate of reaction and amount of B consumed i...
MCQ+4 / -12022
19Chemical Kinetics
For a first order reaction A \(\to\) Products, initial concentration of A is 0.1 M, which becomes 0.001 M after 5 minutes. Rate constant for the reaction in min\(-\)1 is
MCQ+4 / -12022
20Chemical Kinetics
The given graph is a representation of kinetics of a reaction
The y and x axes for zero and first order reactions, respectively are
The y and x axes for zero and first order reactions, respectively are
MCQ+4 / -12022
