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Exam Details

JEE MAIN 2025 ONLINE 23RD JANUARY MORNING SHIFT

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Questions 75
Duration 180 mins
Package IIT-JEE Main - Previous Year Papers

Paper pattern & analysis

Filter this paper by subject, topic or subtopic. Every graph updates from the selected questions.

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Showing all 75 questions in this paper.

Subject distribution

Mathematics
25 Qs
Physics
25 Qs
Chemistry
25 Qs

Topic distribution

Algebra
13 Qs
Mechanics
11 Qs
Organic Chemistry
9 Qs
Physical Chemistry
9 Qs
Electricity
8 Qs
Calculus
7 Qs
Inorganic Chemistry
7 Qs
Trigonometry
3 Qs
Modern Physics
3 Qs
Optics
3 Qs
Coordinate Geometry
2 Qs

Subtopic distribution

Electrostatics
3 Qs
Heat And Thermodynamics
3 Qs
Geometrical Optics
3 Qs
Coordination Compounds
3 Qs
Compounds Containing Nitrogen
2 Qs
Electromagnetic Induction
2 Qs
Thermodynamics
2 Qs
Some Basic Concepts Of Chemistry
2 Qs
Ionic Equilibrium
2 Qs
Matrices And Determinants
2 Qs
Vector Algebra
2 Qs
Trigonometric Ratio And Identites
1 Qs

Difficulty distribution

Medium 52 69.3%
Easy 18 24%
Hard 5 6.7%

Question type distribution

Multiple Choices 60 80%
Numerical Answer Type (NAT) 15 20%

Syllabus

Full Syllabus

Sample questions from this paper

Questions are selected across the paper subjects wherever the paper contains that variety.

1
2025 · Mathematics · Trigonometry · Trigonometric Ratio And Identites
JEE MAIN 2025 ONLINE 23RD JANUARY MORNING SHIFT

The value of $\left(\sin 70^{\circ}\right)\left(\cot 10^{\circ} \cot 70^{\circ}-1\right)$ is

A
0
B
2/3
C
1
D
3/2
2
2025 · Physics · Modern Physics · Atoms And Nuclei
JEE MAIN 2025 ONLINE 23RD JANUARY MORNING SHIFT

A radioactive nucleus $\mathrm{n}_2$ has 3 times the decay constant as compared to the decay constant of another radioactive nucleus $n_1$. If initial number of both nuclei are the same, what is the ratio of number of nuclei of $n_2$ to the number of nuclei of $n_1$, after one half-life of $n_1$ ?

A
1/4
B
1/8
C
4
D
8
3
2025 · Chemistry · Organic Chemistry · Compounds Containing Nitrogen
JEE MAIN 2025 ONLINE 23RD JANUARY MORNING SHIFT

Consider the following sequence of reactions to produce major product (A)

JEE Main 2025 (Online) 23rd January Morning Shift Chemistry - Compounds Containing Nitrogen Question 39 English

$\begin{aligned} & \text { Molar mass of product }(\mathrm{A}) \text { is } \mathrm{g} \mathrm{~mol}^{-1} \text {. } \\ & \text { (Given molar mass in } \mathrm{g} \mathrm{~mol}^{-1} \text { of } \mathrm{C}: 12, \mathrm{H}: 1, \mathrm{O}: 16, \mathrm{Br}: 80, \mathrm{~N}: 14, \mathrm{P}: 31 \text { ) }\end{aligned}$

Enter a numerical response
4
2025 · Mathematics · Algebra · Quadratic Equation And Inequalities
JEE MAIN 2025 ONLINE 23RD JANUARY MORNING SHIFT

If the equation $\mathrm{a}(\mathrm{b}-\mathrm{c}) \mathrm{x}^2+\mathrm{b}(\mathrm{c}-\mathrm{a}) \mathrm{x}+\mathrm{c}(\mathrm{a}-\mathrm{b})=0$ has equal roots, where $\mathrm{a}+\mathrm{c}=15$ and $\mathrm{b}=\frac{36}{5}$, then $a^2+c^2$ is equal to _________

Enter a numerical response
5
2025 · Physics · Electricity · Electrostatics
JEE MAIN 2025 ONLINE 23RD JANUARY MORNING SHIFT

A positive ion $A$ and a negative ion $B$ has charges $6.67 \times 10^{-19} \mathrm{C}$ and $9.6 \times 10^{-10} \mathrm{C}$, and masses $19.2 \times 10^{-27} \mathrm{~kg}$ and $9 \times 10^{-27} \mathrm{~kg}$ respectively. At an instant, the ions are separated by a certain distance $r$. At that instant the ratio of the magnitudes of electrostatic force to gravitational force is $\mathrm{P} \times 10^{-13}$, where the value of P is _________.

(Take $\frac{1}{4 \pi \varepsilon_0}=9 \times 10^9 \mathrm{Nm}^2 \mathrm{C}^{-1}$ and universal gravitational constant as $6.67 \times 10^{-11} \mathrm{Nm}^2 \mathrm{~kg}^{-2}$ )

Enter a numerical response
6
2025 · Chemistry · Physical Chemistry · Chemical Kinetics And Nuclear Chemistry
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 $4.606 \times 10^{-2} \mathrm{~s}^{-1}$.

Enter a numerical response