Chemical Kinetics and Nuclear Chemistry

211 Questions
2026 JEE Mains Numerical
JEE Main 2026 (Online) 28th January Evening Shift

A → B (first reaction)

C → D (second reaction)

Consider the above two first-order reactions. The rate constant for first reaction at 500 K is double of the same at 300 K. At 500 K, 50% of the reaction becomes complete in 2 hour. The activation energy of the second reaction is half of that of first reaction. If the rate constant at 500 K of the second reaction becomes double of the rate constant of first reaction at the same temperature; then rate constant for the second reaction at 300 K is _______ × 10-1 hour-1 (nearest integer).

2026 JEE Mains Numerical
JEE Main 2026 (Online) 24th January Evening Shift

The half-life of ${ }^{65} \mathrm{Zn}$ is 245 days. After $x$ days, $75 \%$ of original activity remained. The value of $x$ in days is $\_\_\_\_$ . (Nearest integer)

(Given: $\log 3=0.4771$ and $\log 2=0.3010$ )

2026 JEE Mains Numerical
JEE Main 2026 (Online) 23rd January Morning Shift

For the thermal decomposition of reactant $\mathrm{AB}(\mathrm{g})$, the following plot is constructed.

JEE Main 2026 (Online) 23rd January Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 6 English

The half life of the reaction is ' $x^{\prime} \,\mathrm{min}$.

$x=$ $\_\_\_\_$ min. (Nearest integer)

2026 JEE Mains Numerical
JEE Main 2026 (Online) 22nd January Evening Shift

Consider $\mathrm{A} \xrightarrow{\mathrm{k}_1} \mathrm{~B}$ and $\mathrm{C} \xrightarrow{\mathrm{k}_2} \mathrm{D}$ are two reactions. If the rate constant $\left(\mathrm{k}_1\right)$ of the $\mathrm{A} \longrightarrow \mathrm{B}$ reaction can be expressed by the following equation $\log _{10} \mathrm{k}=14.34-\frac{1.5 \times 10^4}{\mathrm{~T} / \mathrm{K}}$ and activation energy of $C \longrightarrow D$ reaction $\left(E a_2\right)$ is $\frac{1}{5}$ th of the $A \longrightarrow B$ reaction $\left(E a_1\right)$, then the value of $\left(E a_2\right)$ is

$\_\_\_\_$ $\mathrm{kJ} \mathrm{mol}^{-1}$. (Nearest Integer)

2026 JEE Mains Numerical
JEE Main 2026 (Online) 22nd January Morning Shift

The temperature at which the rate constants of the given below two gaseous reactions become equal is $\_\_\_\_$ K. (Nearest integer)

$ \begin{array}{ll} \mathrm{X} \longrightarrow \mathrm{Y}, & \mathrm{k}_1=10^6 e^{\frac{-30000}{\mathrm{~T}}} \\ \mathrm{P} \longrightarrow \mathrm{Q}, & \mathrm{k}_2=10^4 e^{\frac{-24000}{\mathrm{~T}}} \end{array} $

Given : $\ln 10=2.303$

2026 JEE Mains Numerical
JEE Main 2026 (Online) 21st January Morning Shift

Pre-exponential factors of two different reactions of same order are identical. Let activation energy of first reaction exceeds the activation energy of second reaction by $20 \mathrm{~kJ} \mathrm{~mol}^{-1}$. If $\mathrm{k}_1$ and $\mathrm{k}_2$ are the rate constants of first and second reaction respectively at 300 K , then $\ln \frac{\mathrm{k}_2}{\mathrm{k}_1}$ will be $\_\_\_\_$ . (nearest integer) $\left[\mathrm{R}=8.3 \mathrm{~J} \mathrm{~K}^{-1} \mathrm{~mol}^{-1}\right]$

2026 JEE Mains MCQ
JEE Main 2026 (Online) 28th January Morning Shift

An organic compound undergoes first order decomposition. The time taken for decomposition to $\left(\frac{1}{8}\right)^{\text {th }}$ and $\left(\frac{1}{10}\right)^{\text {th }}$ of its initial concentration are $\mathrm{t}_{1 / 8}$ and $\mathrm{t}_{1 / 10}$ respectively.

What is the value of $\frac{\mathrm{t}_{1 / 8}}{\mathrm{t}_{1 / 10}} \times 10$ ?

$ (\log 2=0.3) $

A.

30

B.

9

C.

3

D.

0.9

2026 JEE Mains MCQ
JEE Main 2026 (Online) 24th January Morning Shift

$\mathrm{A} \rightarrow \mathrm{D}$ is an endothermic reaction occurring in three steps (elementary).

(i) $\mathrm{A} \rightarrow \mathrm{B} \Delta \mathrm{H}_i=+\mathrm{ve}$

(ii) $\mathrm{B} \rightarrow \mathrm{C} \Delta \mathrm{H}_{i i}=-\mathrm{ve}$

(iii) $\mathrm{C} \rightarrow \mathrm{D} \Delta \mathrm{H}_{i i i}=-\mathrm{ve}$

Which of the following graphs between potential energy ( $y$-axis) vs reaction coordinate ( $x$-axis) correctly represents the reaction profile of $A \rightarrow D$ ?

A.
JEE Main 2026 (Online) 24th January Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 2 English Option 1
B.
JEE Main 2026 (Online) 24th January Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 2 English Option 2
C.
JEE Main 2026 (Online) 24th January Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 2 English Option 3
D.
JEE Main 2026 (Online) 24th January Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 2 English Option 4
2026 JEE Mains MCQ
JEE Main 2026 (Online) 24th January Morning Shift

At $27^{\circ} \mathrm{C}$ in presence of a catalyst, activation energy of a reaction is lowered by $10 \mathrm{~kJ} \mathrm{~mol}^{-1}$. The logarithm of ratio of $\frac{\mathrm{k} \text { (catalysed) }}{\mathrm{k} \text { (uncatalysed) }}$ is….

(Consider that the frequency factor for both the reactions is same)

A.

1.741

B.

0.1741

C.

17.41

D.

3.482

2026 JEE Mains MCQ
JEE Main 2026 (Online) 23rd January Evening Shift
JEE Main 2026 (Online) 23rd January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 5 English

Given above is the concentration vs time plot for a dissociation reaction : $\mathrm{A} \rightarrow \mathrm{nB}$.

Based on the data of the initial phase of the reaction (initial 10 min ), the value of n is $\_\_\_\_$ .

A.

2

B.

5

C.

4

D.

3

2026 JEE Mains MCQ
JEE Main 2026 (Online) 23rd January Evening Shift

Observe the following reactions at $\mathrm{T}(\mathrm{K})$.

I. $\mathrm{A} \rightarrow$ products.

II. $5 \mathrm{Br}^{-}(\mathrm{aq})+\mathrm{BrO}_3{ }^{-}(\mathrm{aq})+6 \mathrm{H}^{+}(\mathrm{aq}) \rightarrow 3 \mathrm{Br}_2(\mathrm{aq})+3 \mathrm{H}_2 \mathrm{O}(\mathrm{l})$

Both the reactions are started at 10.00 am . The rates of these reactions at 10.10 am are same. The value of $-\frac{\Delta\left[\mathrm{Br}^{-}\right]}{\Delta \mathrm{t}}$ at 10.10 am is $2 \times 10^{-4} \mathrm{~mol} \mathrm{~L}^{-1} \mathrm{~min}^{-1}$. The concentration of A at 10.10 am is $10^{-2} \mathrm{~mol} \mathrm{~L}^{-1}$. What is the first order rate constant (in $\mathrm{min}^{-1}$ ) of reaction $I$ ?

A.

$4 \times 10^{-3}$

B.

$2 \times 10^{-3}$

C.

$10^{-3}$

D.

$10^{-2}$

2026 JEE Mains MCQ
JEE Main 2026 (Online) 22nd January Evening Shift

Correct statements regarding Arrhenius equation among the following are :

A. Factor $e^{-\mathrm{Ea} / \mathrm{RT}}$ corresponds to fraction of molecules having kinetic energy less than Ea.

B. At a given temperature, lower the Ea, faster is the reaction.

C. Increase in temperature by about $10^{\circ} \mathrm{C}$ doubles the rate of reaction.

D. Plot of $\log \mathrm{k}$ vs $\frac{1}{\mathrm{~T}}$ gives a straight line with slope $=-\frac{\mathrm{Ea}}{\mathrm{R}}$.

Choose the correct answer from the options given below :

A.

A and B Only

B.

B and D Only

C.

B and C Only

D.

A and C Only

2026 JEE Mains MCQ
JEE Main 2026 (Online) 22nd January Morning Shift

$\mathrm{A} \rightarrow$ product (First order reaction).

Three sets of experiment were performed for a reaction under similar experimental conditions:

Run $1 \Rightarrow 100 \mathrm{~mL}$ of 10 M solution of reactant A

Run $2 \Rightarrow 200 \mathrm{~mL}$ of 10 M solution of reactant A

Run $3 \Rightarrow 100 \mathrm{~mL}$ of 10 M solution of reactant $\mathrm{A}+100 \mathrm{~mL}$ of $\mathrm{H}_2 \mathrm{O}$ added.

The correct variation of rate of reaction is

A.

Run $1=$ Run $2=$ Run 3

B.

Run $3<\operatorname{Run} 1<\operatorname{Run} 2$

C.

Run $1<$ Run $2<$ Run 3

D.

Run $3<$ Run $1=$ Run 2

2026 JEE Mains MCQ
JEE Main 2026 (Online) 21st January Evening Shift

Decomposition of A is a first order reaction at T(K) and is given by  A(g) → B(g) + C(g).

In a closed 1 L vessel, 1 bar A(g) is allowed to decompose at T(K). After 100 minutes, the total pressure was 1.5 bar. What is the rate constant (in min−1) of the reaction? (log 2 = 0.3)

A.

$6.9 × 10^{-4}$

B.

$6.9 × 10^{-3}$

C.

$6.9 × 10^{-1}$

D.

$6.9 × 10^{-2}$

2025 JEE Mains Numerical
JEE Main 2025 (Online) 2nd April Evening Shift

For the reaction $\mathrm{A} \rightarrow \mathrm{B}$ the following graph was obtained. The time required (in seconds) for the concentration of A to reduce to $2.5 \mathrm{~g} \mathrm{~L}^{-1}$ (if the initial concentration of A was $50 \mathrm{~g} \mathrm{~L}^{-1}$ ) is $\qquad$ . (Nearest integer)

Given : $\log 2=0.3010$

JEE Main 2025 (Online) 2nd April Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 24 English
2025 JEE Mains Numerical
JEE Main 2025 (Online) 2nd April Morning Shift

For the reaction A $\to$ products.

JEE Main 2025 (Online) 2nd April Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 26 English

The concentration of A at 10 minutes is _________ $\times 10^{-3} \mathrm{~mol} \mathrm{~L}^{-1}$ (nearest integer). The reaction was started with $2.5 \mathrm{~mol} \mathrm{~L}^{-1}$ of A .

2025 JEE Mains Numerical
JEE Main 2025 (Online) 24th January Evening Shift

Consider a complex reaction taking place in three steps with rate constants $\mathrm{k}_1, \mathrm{k}_2$ and $\mathrm{k}_3$ respectively. The overall rate constant $k$ is given by the expression $k=\sqrt{\frac{k_1 k_3}{k_2}}$. If the activation energies of the three steps are 60, 30 and $10 \mathrm{~kJ} \mathrm{~mol}^{-1}$ respectively, then the overall energy of activation in $\mathrm{kJ} \mathrm{mol}^{-1}$ is _________ . (Nearest integer)

2025 JEE Mains Numerical
JEE Main 2025 (Online) 23rd January Morning Shift

For the thermal decomposition of $\mathrm{N}_2 \mathrm{O}_5(\mathrm{~g})$ at constant volume, the following table can be formed, for the reaction mentioned below.

$2 \mathrm{~N}_2 \mathrm{O}_5(\mathrm{~g}) \rightarrow 2 \mathrm{~N}_2 \mathrm{O}_4(\mathrm{~g})+\mathrm{O}_2(\mathrm{~g})$

Sr. No. Time/s Total pressure/(atm)
1 0 0.6
2 100 '$\mathrm{x}$'

$\mathrm{x}=$ __________ $\times 10^{-3} \mathrm{~atm}$ [nearest integer]

Given : Rate constant for the reaction is $4.606 \times 10^{-2} \mathrm{~s}^{-1}$.

2025 JEE Mains Numerical
JEE Main 2025 (Online) 22nd January Morning Shift

$\mathrm{A \rightarrow B}$

The molecule A changes into its isomeric form B by following a first order kinetics at a temperature of 1000 K . If the energy barrier with respect to reactant energy for such isomeric transformation is $191.48 \mathrm{~kJ} \mathrm{~mol}^{-1}$ and the frequency factor is $10^{20}$, the time required for $50 \%$ molecules of A to become B is __________ picoseconds (nearest integer). $\left[\mathrm{R}=8.314 \mathrm{~J} \mathrm{~K}^{-1} \mathrm{~mol}^{-1}\right]$

2025 JEE Mains MCQ
JEE Main 2025 (Online) 8th April Evening Shift

In a first order decomposition reaction, the time taken for the decomposition of reactant to one fourth and one eighth of its initial concentration are $t_1$ and $t_2$ (s), respectively. The ratio $t_1/t_2$ will be:

A.

$\frac{4}{3}$

B.

$\frac{3}{2}$

C.

$\frac{3}{4}$

D.

$\frac{2}{3}$

2025 JEE Mains MCQ
JEE Main 2025 (Online) 7th April Evening Shift

A(g) → B(g) + C(g) is a first order reaction.

Time t
Psystem Pt P

The reaction was started with reactant A only. Which of the following expressions is correct for rate constant k?

A.
$\mathrm{k}=\frac{1}{\mathrm{t}} \ln \frac{\mathrm{p}_{\infty}}{\mathrm{p}_{\mathrm{t}}}$
B.
$\mathrm{k}=\frac{1}{\mathrm{t}} \ln \frac{\mathrm{p}_{\infty}}{2\left(\mathrm{p}_{\infty}-\mathrm{p}_{\mathrm{t}}\right)}$
C.
$\mathrm{k}=\frac{1}{\mathrm{t}} \ln \frac{2\left(\mathrm{p}_{\infty}-\mathrm{p}_{\mathrm{t}}\right)}{\mathrm{p}_{\mathrm{t}}}$
D.
$\mathrm{k}=\frac{1}{\mathrm{t}} \ln \frac{\mathrm{p}_{\infty}}{\left(\mathrm{p}_{\infty}-\mathrm{p}_{\mathrm{t}}\right)}$
2025 JEE Mains MCQ
JEE Main 2025 (Online) 7th April Morning Shift

A person's wound was exposed to some bacteria and then bacterial growth started to happen at the same place. The wound was later treated with some antibacterial medicine and the rate of bacterial decay(r) was found to be proportional with the square of the existing number of bacteria at any instance. Which of the following set of graphs correctly represents the 'before' and 'after' situation of the application of the medicine?

[Given: $N=$ No. of bacteria, $t=$ time, bacterial growth follows $1^{\text {st }}$ order kinetics.]

A.
JEE Main 2025 (Online) 7th April Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 23 English Option 1
B.
JEE Main 2025 (Online) 7th April Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 23 English Option 2
C.
JEE Main 2025 (Online) 7th April Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 23 English Option 3
D.
JEE Main 2025 (Online) 7th April Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 23 English Option 4
2025 JEE Mains MCQ
JEE Main 2025 (Online) 7th April Morning Shift

Reaction $\mathrm{A}(\mathrm{g}) \rightarrow 2 \mathrm{~B}(\mathrm{~g})+\mathrm{C}(\mathrm{g})$ is a first order reaction. It was started with pure A

t/min Pressure of system at time t/mm Hg
10 160
$\infty$ 240

Which of the following option is incorrect?

A.
Initial pressure of A is 80 mm Hg
B.
The reaction never goes to completion
C.
Partial pressure of A after 10 minute is 40 mm Hg
D.
Rate constant of the reaction is $1.693 \mathrm{~min}^{-1}$
2025 JEE Mains MCQ
JEE Main 2025 (Online) 4th April Evening Shift

Consider the following plots of $\log$ of rate constant $\mathrm{k}(\log \mathrm{k})$ vs $\frac{1}{\mathrm{~T}}$ for three different reactions. The correct order of activation energies of these reactions is :

JEE Main 2025 (Online) 4th April Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 19 English

A.
$\mathrm{Ea}_2>\mathrm{Ea}_1>\mathrm{Ea}_3$
B.
$\mathrm{Ea}_1>\mathrm{Ea}_3>\mathrm{Ea}_2$
C.
$\mathrm{Ea}_3>\mathrm{Ea}_2>\mathrm{Ea}_1$
D.
$\mathrm{Ea}_1>\mathrm{Ea}_2>\mathrm{Ea}_3$
2025 JEE Mains MCQ
JEE Main 2025 (Online) 4th April Evening Shift

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

A.
0.5 hour
B.
15 min
C.
60 min
D.
4 hour
2025 JEE Mains MCQ
JEE Main 2025 (Online) 4th April Morning Shift

For $\mathrm{A}_2+\mathrm{B}_2 \rightleftharpoons 2 \mathrm{AB}$

$\mathrm{E}_{\mathrm{a}}$ for forward and backward reaction are 180 and $200 \mathrm{~kJ} \mathrm{~mol}^{-1}$ respectively

If catalyst lowers $\mathrm{E}_{\mathrm{a}}$ for both reaction by $100 \mathrm{~kJ} \mathrm{~mol}^{-1}$.

Which of the following statement is correct?

A.
Catalyst does not alter the Gibbs energy change of a reaction.
B.
The enthalpy change for the reaction is $+20 \mathrm{~kJ} \mathrm{~mol}^{-1}$.
C.
Catalyst can cause non-spontaneous reactions to occur.
D.
The enthalpy change for the catalysed reaction is different from that of uncatalysed reaction.
2025 JEE Mains MCQ
JEE Main 2025 (Online) 4th April Morning Shift

Rate law for a reaction between $A$ and $B$ is given by

$\mathrm{r}=\mathrm{k}[\mathrm{~A}]^{\mathrm{n}}[\mathrm{~B}]^{\mathrm{m}}$

If concentration of $A$ is doubled and concentration of $B$ is halved from their initial value, the ratio of new rate of reaction to the initial rate of reaction $\left(\frac{r_2}{r_1}\right)$ is

A.
$(\mathrm{n}-\mathrm{m})$
B.
$2^{(\mathrm{n}-m)}$
C.
$\frac{1}{2^{m+n}}$
D.
$(\mathrm{m}+\mathrm{n})$
2025 JEE Mains MCQ
JEE Main 2025 (Online) 3rd April Evening Shift

Consider the following statements related to temperature dependence of rate constants.

Identify the correct statements.

A. The Arrhenius equation holds true only for an elementary homogenous reaction.

B. The unit of $A$ is same as that of $k$ in Arrhenius equation.

C. At a given temperature, a low activation energy means a fast reaction.

D. A and Ea as used in Arrhenius equation depend on temperature.

E. When $\mathrm{Ea} \gg \mathrm{RT}, \mathrm{A}$ and Ea become interdependent.

Choose the correct answer from the options given below:

A.
A, C and D Only
B.
B, D and E Only
C.
B and C Only
D.
A and B Only
2025 JEE Mains MCQ
JEE Main 2025 (Online) 3rd April Morning Shift

In a reaction $A+B \rightarrow C$, initial concentrations of $A$ and $B$ are related as $[A]_0=8[B]_0$. The half lives of $A$ and $B$ are 10 min and 40 min , respectively. If they start to disappear at the same time, both following first order kinetics, after how much time will the concentration of both the reactants be same?

A.
20 min
B.
40 min
C.
80 min
D.
60 min
2025 JEE Mains MCQ
JEE Main 2025 (Online) 2nd April Evening Shift

Reactant A converts to product D through the given mechanism (with the net evolution of heat):

A → B     slow;     ΔH = +ve

B → C     fast;     ΔH = -ve

C → D     fast;     ΔH = -ve

Which of the following represents the above reaction mechanism?

A.
JEE Main 2025 (Online) 2nd April Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 25 English Option 1
B.
JEE Main 2025 (Online) 2nd April Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 25 English Option 2
C.
JEE Main 2025 (Online) 2nd April Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 25 English Option 3
D.
JEE Main 2025 (Online) 2nd April Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 25 English Option 4
2025 JEE Mains MCQ
JEE Main 2025 (Online) 29th January Evening Shift

Drug $X$ becomes ineffective after $50 \%$ decomposition. The original concentration of drug in a bottle was $16 \mathrm{mg} / \mathrm{mL}$ which becomes $4 \mathrm{mg} / \mathrm{mL}$ in 12 months. The expiry time of the drug in months is _________.

Assume that the decomposition of the drug follows first order kinetics.

A.

12

B.

3

C.

6

D.

2

2025 JEE Mains MCQ
JEE Main 2025 (Online) 29th January Morning Shift

The reaction $A_2 + B_2 \rightarrow 2AB$ follows the mechanism:

$A_2 \overset{k_1}{\underset{k_{-1}}{\rightleftharpoons}} A + A$ (fast)

$A + B_2 \xrightarrow{k_2} AB + B$ (slow)

$A + B \rightarrow AB$ (fast)

The overall order of the reaction is:

A.

3

B.

2.5

C.

1.5

D.

2

2025 JEE Mains MCQ
JEE Main 2025 (Online) 28th January Evening Shift

Consider an elementary reaction

$ \mathrm{A}(\mathrm{~g})+\mathrm{B}(\mathrm{~g}) \rightarrow \mathrm{C}(\mathrm{~g})+\mathrm{D}(\mathrm{~g}) $

If the volume of reaction mixture is suddenly reduced to $\frac{1}{3}$ of its initial volume, the reaction rate will become ' $x^{\prime}$ times of the original reaction rate. The value of $x$ is :

A.

3

B.

9

C.

$\frac{1}{3}$

D.

$\frac{1}{9}$

2025 JEE Mains MCQ
JEE Main 2025 (Online) 28th January Evening Shift

For bacterial growth in a cell culture, growth law is very similar to the law of radioactive decay. Which of the following graphs is most suitable to represent bacterial colony growth ?

Where N - Number of Bacteria at any time, $\mathrm{N}_0$ - Initial number of Bacteria.

A.
JEE Main 2025 (Online) 28th January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 35 English Option 1
B.
JEE Main 2025 (Online) 28th January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 35 English Option 2
C.
JEE Main 2025 (Online) 28th January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 35 English Option 3
D.
JEE Main 2025 (Online) 28th January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 35 English Option 4
2025 JEE Mains MCQ
JEE Main 2025 (Online) 28th January Morning Shift

JEE Main 2025 (Online) 28th January Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 28 English

For a given reaction $\mathrm{R} \rightarrow \mathrm{P}, \mathrm{t}_{1 / 2}$ is related to $[\mathrm{A}]_0$ as given in table.

Given: $\log 2=0.30$

Which of the following is true?

A. The order of the reaction is $1 / 2$.

B. If $[\mathrm{A}]_0$ is 1 M , then $\mathrm{t}_{1 / 2}$ is $200 \sqrt{10} \mathrm{~min}$

C. The order of the reaction changes to 1 if the concentration of reactant changes from 0.100 M to 0.500 M.

D. $\mathrm{t}_{1 / 2}$ is 800 min for $[\mathrm{A}]_0=1.6 \mathrm{M}$

Choose the correct answer from the options given below:

A.
A and C Only
B.
A, B and D Only
C.
A and B Only
D.
C and D Only
2025 JEE Mains MCQ
JEE Main 2025 (Online) 24th January Evening Shift

Given below are two statements :

Statement (I) : JEE Main 2025 (Online) 24th January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 29 English 1 is valid for first order reaction.

Statement (II) : JEE Main 2025 (Online) 24th January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 29 English 2 is valid for first order reaction.

In the light of the above statements, choose the correct answer from the options given below :

A.
Both Statement I and Statement II are false
B.
Statement I is true but Statement II is false
C.
Statement I is false but Statement II is true
D.
Both Statement I and Statement II are true
2025 JEE Mains MCQ
JEE Main 2025 (Online) 24th January Morning Shift

For a reaction, $\mathrm{N}_2 \mathrm{O}_{5(\mathrm{~g})} \rightarrow 2 \mathrm{NO}_{2(\mathrm{~g})}+\frac{1}{2} \mathrm{O}_{2(\mathrm{~g})}$ in a constant volume container, no products were present initially. The final pressure of the system when $50 \%$ of reaction gets completed is

A.
$5 / 2$ times of initial pressure
B.
$7 / 2$ times of initial pressure
C.
$7 / 4$ times of initial pressure
D.
5 times of initial pressure
2025 JEE Mains MCQ
JEE Main 2025 (Online) 23rd January Evening Shift

Which of the following graphs most appropriately represents a zero order reaction?

A.
JEE Main 2025 (Online) 23rd January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 32 English Option 1
B.
JEE Main 2025 (Online) 23rd January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 32 English Option 2
C.
JEE Main 2025 (Online) 23rd January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 32 English Option 3
D.
JEE Main 2025 (Online) 23rd January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 32 English Option 4
2025 JEE Mains MCQ
JEE Main 2025 (Online) 22nd January Evening Shift

Consider the given figure and choose the correct option :

JEE Main 2025 (Online) 22nd January Evening Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 34 English

A.
Activation energy of both forward and backward reaction is $E_1+E_2$ and reactant is more stable than product.
B.
Activation energy of forward reaction is $E_1+E_2$ and product is more stable than reactant.
C.
Activation energy of backward reaction is $\mathrm{E}_1$ and product is more stable than reactant.
D.
Activation energy of forward reaction is $E_1+E_2$ and product is less stable than reactant.
2025 JEE Mains MCQ
JEE Main 2025 (Online) 22nd January Morning Shift

Which of the following statement is not true for radioactive decay?

A.
Half life is $\ln 2$ times of $\frac{1}{\text { rate constant }}$.
B.
Decay constant increases with increase in temperature.
C.
Decay constant does not depend upon temperature.
D.
Amount of radioactive substance remained after three half lives is $\frac{1}{8}$ th of original amount.
2024 JEE Mains Numerical
JEE Main 2024 (Online) 9th April Evening Shift

Consider the following first order gas phase reaction at constant temperature $ \mathrm{A}(\mathrm{g}) \rightarrow 2 \mathrm{B}(\mathrm{~g})+\mathrm{C}(\mathrm{g})$

If the total pressure of the gases is found to be 200 torr after 23 $\mathrm{sec}$. and 300 torr upon the complete decomposition of A after a very long time, then the rate constant of the given reaction is ________ $\times 10^{-2} \mathrm{~s}^{-1}$ (nearest integer)

[Given : $\log _{10}(2)=0.301$]

2024 JEE Mains Numerical
JEE Main 2024 (Online) 9th April Morning Shift

Given below are two statements :

Statement I : The rate law for the reaction $A+B \rightarrow C$ is rate $(r)=k[A]^2[B]$. When the concentration of both $\mathrm{A}$ and $\mathrm{B}$ is doubled, the reaction rate is increased "$x$" times.

Statement II : JEE Main 2024 (Online) 9th April Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 49 English

The figure is showing "the variation in concentration against time plot" for a "$y$" order reaction.

The Value of $x+y$ is __________.

2024 JEE Mains Numerical
JEE Main 2024 (Online) 8th April Morning Shift

Consider the following reaction

$\mathrm{A}+\mathrm{B} \rightarrow \mathrm{C}$

The time taken for A to become $1 / 4^{\text {th }}$ of its initial concentration is twice the time taken to become $1 / 2$ of the same. Also, when the change of concentration of B is plotted against time, the resulting graph gives a straight line with a negative slope and a positive intercept on the concentration axis.

The overall order of the reaction is ________.

2024 JEE Mains Numerical
JEE Main 2024 (Online) 6th April Evening Shift

Consider the two different first order reactions given below

$\begin{aligned} & \mathrm{A}+\mathrm{B} \rightarrow \mathrm{C} \text { (Reaction 1) } \\ & \mathrm{P} \rightarrow \mathrm{Q} \text { (Reaction 2) } \end{aligned}$

The ratio of the half life of Reaction 1 : Reaction 2 is $5: 2$ If $t_1$ and $t_2$ represent the time taken to complete $2 / 3^{\text {rd }}$ and $4 / 5^{\text {th }}$ of Reaction 1 and Reaction 2 , respectively, then the value of the ratio $t_1: t_2$ is _________ $\times 10^{-1}$ (nearest integer). [Given : $\log _{10}(3)=0.477$ and $\log _{10}(5)=0.699$]

2024 JEE Mains Numerical
JEE Main 2024 (Online) 6th April Morning Shift

Time required for $99.9 \%$ completion of a first order reaction is _________ times the time required for completion of $90 \%$ reaction.(nearest integer)

2024 JEE Mains Numerical
JEE Main 2024 (Online) 5th April Evening Shift

Consider the following single step reaction in gas phase at constant temperature.

$2 \mathrm{~A}_{(\mathrm{g})}+\mathrm{B}_{(\mathrm{g})} \rightarrow \mathrm{C}_{(\mathrm{g})}$

The initial rate of the reaction is recorded as $\mathrm{r}_1$ when the reaction starts with $1.5 \mathrm{~atm}$ pressure of $\mathrm{A}$ and $0.7 \mathrm{~atm}$ pressure of B. After some time, the rate $r_2$ is recorded when the pressure of C becomes $0.5 \mathrm{~atm}$. The ratio $\mathrm{r}_1: \mathrm{r}_2$ is _________ $\times 10^{-1}$. (Nearest integer)

2024 JEE Mains Numerical
JEE Main 2024 (Online) 5th April Morning Shift

During Kinetic study of reaction $\mathrm{2 A+B \rightarrow C+D}$, the following results were obtained :

$\mathrm{A [M]}$ $\mathrm{B [M]}$ initial rate of formation of $\mathrm{D}$
I 0.1 0.1 $6.0\times10^{-3}$
II 0.3 0.2 $7.2\times10^{-2}$
III 0.3 0.4 $2.88\times10^{-1}$
IV 0.4 0.1 $2.40\times10^{-2}$

Based on above data, overall order of the reaction is _________.

2024 JEE Mains Numerical
JEE Main 2024 (Online) 4th April Evening Shift

Consider the following reaction, the rate expression of which is given below

$\begin{aligned} & \mathrm{A}+\mathrm{B} \rightarrow \mathrm{C} \\ & \text { rate }=\mathrm{k}[\mathrm{A}]^{1 / 2}[\mathrm{~B}]^{1 / 2} \end{aligned}$

The reaction is initiated by taking $1 \mathrm{~M}$ concentration of $\mathrm{A}$ and $\mathrm{B}$ each. If the rate constant $(\mathrm{k})$ is $4.6 \times 10^{-2} \mathrm{~s}^{-1}$, then the time taken for $\mathrm{A}$ to become $0.1 \mathrm{~M}$ is _________ sec. (nearest integer)

2024 JEE Mains Numerical
JEE Main 2024 (Online) 4th April Morning Shift

Consider the following transformation involving first order elementary reaction in each step at constant temperature as shown below.

JEE Main 2024 (Online) 4th April Morning Shift Chemistry - Chemical Kinetics and Nuclear Chemistry Question 48 English

Some details of the above reactions are listed below.

Step Rate constant (sec$^{-1}$) Activation energy (kJ mol$^{-1}$)
1 $\mathrm{k_1}$ 300
2 $\mathrm{k_2}$ 200
3 $\mathrm{k_3}$ $\mathrm{Ea_3}$

If the overall rate constant of the above transformation (k) is given as $\mathrm{k=\frac{k_1 k_2}{k_3}}$ and the overall activation energy $(\mathrm{E}_{\mathrm{a}})$ is $400 \mathrm{~kJ} \mathrm{~mol} \mathrm{~m}^{-1}$, then the value of $\mathrm{Ea}_3$ is ________ integer)

2024 JEE Mains Numerical
JEE Main 2024 (Online) 1st February Evening Shift
The following data were obtained during the first order thermal decomposition of a gas A at constant volume :

$\mathrm{A}(\mathrm{g}) \rightarrow 2 \mathrm{~B}(\mathrm{~g})+\mathrm{C}(\mathrm{g})$

S.No. Time /s Total pressure /(atm)
1. 0 0.1
2. 115 0.28

The rate constant of the reaction is ________ $\times 10^{-2} \mathrm{~s}^{-1}$ (nearest integer)