My Cart
Your Cart 0

    Your cart is empty.

  • Total (Amount) ₹0.00
Exam Details

JEE MAIN 2026 ONLINE 22ND JANUARY MORNING SHIFT

Review the key details, then start the test when you are ready. You can also open the full package to see related papers.

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.

Explore previous papers
Showing all 75 questions in this paper.

Subject distribution

Physics
25 Qs
Chemistry
25 Qs
Mathematics
25 Qs

Topic distribution

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

Subtopic distribution

Rotational Motion
3 Qs
Geometrical Optics
3 Qs
Electromagnetic Induction
3 Qs
Electrostatics
3 Qs
Haloalkanes And Haloarenes
3 Qs
Matrices And Determinants
2 Qs
Hydrocarbons
2 Qs
Chemical Kinetics And Nuclear Chemistry
2 Qs
Gravitation
2 Qs
Heat And Thermodynamics
2 Qs
Atoms And Nuclei
2 Qs
Solutions
2 Qs

Difficulty distribution

Medium 59 78.7%
Easy 10 13.3%
Hard 6 8%

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
2026 · Physics · Mechanics · Units And Measurements
JEE MAIN 2026 ONLINE 22ND JANUARY MORNING SHIFT

$$\text { Match the LIST-I with LIST-II }$$

List-I List-II
A. Spring constant I. \(\mathrm{M} \mathrm{L}^{2} \, \mathrm{T}^{- 2} \, \mathrm{K}^{- 1}\)\(\mathrm{M} \mathrm{L}^{2} \, \mathrm{T}^{- 2} \, \mathrm{K}^{- 1}\)ML^(2)T^(-2)K^(-1)
B. Thermal conductivity II. \(\mathrm{ML}^{0} \, \mathrm{T}^{- 2}\)\(\mathrm{ML}^{0} \, \mathrm{T}^{- 2}\)ML^(0)T^(-2)
C. Boltzmann constant III. \(\mathrm{M} \mathrm{L}^{2} \, \mathrm{T}^{- 3} \, \mathrm{A}^{- 2}\)\(\mathrm{M} \mathrm{L}^{2} \, \mathrm{T}^{- 3} \, \mathrm{A}^{- 2}\)ML^(2)T^(-3)A^(-2)
D. Inductive reactance IV. \(\mathrm{M} \mathrm{L} \mathrm{T}^{- 3} \, \mathrm{K}^{- 1}\)\(\mathrm{M} \mathrm{L} \mathrm{T}^{- 3} \, \mathrm{K}^{- 1}\)MLT^(-3)K^(-1)
Choose the correct answer from the options given below:
A

A-III, B-II, C-IV, D-I

B

A-I, B-IV, C-II, D-III

C

A-II, B-I, C-IV, D-III

D

A-II, B-IV, C-I, D-III

2
2026 · Chemistry · Physical Chemistry · Chemical Equilibrium
JEE MAIN 2026 ONLINE 22ND JANUARY MORNING SHIFT

Dissociation of a gas $\mathrm{A}_2$ takes place according to the following chemical reaction. At equilibrium, the total pressure is 1 bar at 300 K .

$$\mathrm{A}_2(\mathrm{~g}) \rightleftharpoons 2 \mathrm{~A}(\mathrm{~g})$$

The standard Gibbs energy of formation of the involved substances has been provided below:

$$\begin{array}{|c|c|} \hline \text { Substance } & \Delta \mathrm{G}_{\mathrm{f}}^{\circ} / \mathrm{kJ} \mathrm{~mol}^{-1} \\ \hline \hline \mathrm{~A}_2 & -100.00 \\ \hline \mathrm{~A} & -50.832 \\ \hline \end{array}$$

The degree of dissociation of $\mathrm{A}_2(\mathrm{~g})$ is given by $\left(x \times 10^{-2}\right)^{1 / 2}$ where $x=$

$\_\_\_\_$ . (Nearest integer).

[ Given : $\mathrm{R}=8 \mathrm{~J} \mathrm{~mol}^{-1} \mathrm{~K}^{-1}, \log 2=0.3010, \log 3=0.48$ ]

Assume degree of dissociation is not negligible.

Enter a numerical response
3
2026 · Mathematics · Algebra · Matrices And Determinants
JEE MAIN 2026 ONLINE 22ND JANUARY MORNING SHIFT

Let A be a $3 \times 3$ matrix such that $\mathrm{A}+\mathrm{A}^{\mathrm{T}}=\mathrm{O}$. If $\mathrm{A}\left[\begin{array}{c}1 \\ -1 \\ 0\end{array}\right]=\left[\begin{array}{l}3 \\ 3 \\ 2\end{array}\right], \mathrm{A}^2\left[\begin{array}{c}1 \\ -1 \\ 0\end{array}\right]=\left[\begin{array}{c}-3 \\ 19 \\ -24\end{array}\right]$ and $\operatorname{det}(\operatorname{adj}(2 \operatorname{adj}(\mathrm{~A}+\mathrm{I})))=(2)^\alpha \cdot(3)^\beta \cdot(11)^\gamma, \alpha, \beta, \gamma$ are non-negative integers, then $\alpha+\beta+\gamma$ is equal to $\_\_\_\_$

Enter a numerical response
4
2026 · Physics · Mechanics · Rotational Motion
JEE MAIN 2026 ONLINE 22ND JANUARY MORNING SHIFT

A circular disc has radius $R_1$ and thickness $T_1$. Another circular disc made of the same material has radius $R_2$ and thickness $T_2$. If the moment of inertia of both discs are same and $\frac{R_1}{R_2}=2$ then $\frac{T_1}{T_2}=\frac{1}{\alpha}$. The value of $\alpha$ is $\_\_\_\_$ .

Enter a numerical response
5
2026 · Chemistry · Physical Chemistry · Electrochemistry
JEE MAIN 2026 ONLINE 22ND JANUARY MORNING SHIFT

Consider the following electrochemical cell at 298 K

$\mathrm{Pt}\left|\mathrm{HSnO}_2^{-}(\mathrm{aq})\right| \mathrm{Sn}(\mathrm{OH})_6{ }^{2-}(\mathrm{aq})\left|\mathrm{OH}^{-}(\mathrm{aq})\right| \mathrm{Bi}_2 \mathrm{O}_3(\mathrm{~s}) \mid \mathrm{Bi}(\mathrm{s})$.

If the reaction quotient at a given time is $10^6$, then the cell EMF $\left(\mathrm{E}_{\text {cell }}\right)$ is

$\_\_\_\_$ $\times 10^{-1} \mathrm{~V}$ (Nearest integer).

Given the standard half-cell reduction potential as

$$\mathrm{E}_{\mathrm{Bi}_2 \mathrm{O}_3 / \mathrm{Bi}, \mathrm{OH}^{-}}^{\circ}=-0.44 \mathrm{~V} \text { and } \mathrm{E}_{\mathrm{Sn}(\mathrm{OH})_6^{2-} / \mathrm{HSnO}_2^{-}, \mathrm{OH}^{-}}^{\circ}=-0.90 \mathrm{~V}$$

Enter a numerical response
6
2026 · Mathematics · Algebra · Permutations And Combinations
JEE MAIN 2026 ONLINE 22ND JANUARY MORNING SHIFT

Let ABC be a triangle. Consider four points $\mathrm{p}_1, \mathrm{p}_2, \mathrm{p}_3, \mathrm{p}_4$ on the side AB , five points $p_5, p_6, p_7, p_8, p_9$ on the side $B C$, and four points $p_{10}, p_{11}, p_{12}, p_{13}$ on the side AC . None of these points is a vertex of the triangle ABC . Then the total number of pentagons, that can be formed by taking all the vertices from the points $p_1, p_2, \ldots, p_{13}$, is $\_\_\_\_$

Enter a numerical response