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JEE Main Physics Syllabus 2026 (Out): Section-Wise Topics, Weightage, Best Books

• Updated on 15 Jan, 2026 by Amrita Das

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JEE Main Physics Syllabus 2026 has been released by NTA. Candidates can download the JEE Main Syllabus for Physics from the official website. The syllabus of JEE Main Physics is divided into two sections, namely, Section A (theory) and Section B (numerical or experimental skills). Overall, the complete syllabus of IIT JEE Physics Syllabus is based on the Class 11 and 12 NCERT Physics syllabus. Test takers should also check the JEE Mains Physics weightage in order to get an idea of important topics. Read further to know more about the JEE Main 2026 Physics Syllabus in detail.

 

Table of Contents
  1. JEE Main Physics Syllabus 2026
  2. JEE Main 2026 Physics Topic-Wise Weightage
  3. JEE Main 2026 Preparation Tips for Physics
  4. Best Books for JEE Main Physics 2026
  5. JEE Main Physics Syllabus 2026 FAQs

 

JEE Main Physics Syllabus 2026

NTA has divided the physics syllabus for JEE Mains 2026 into two sections - Section A and Section B. Both sections include topics from the Class 11 and 12 physics syllabus. Check the following table for the complete syllabus of IIT JEE Main Physics.

 

JEE Main 2026 Physics Syllabus of Section A

Section A of the physics syllabus for JEE Mains 2026 includes units like Kinematics, Laws of Motion, Rotational Motion, Gravitation, Thermodynamics, and more. Check the following table for the complete syllabus of JEE Main Physics Syllabus Section A.

Units

Topics

Physics and Measurement

Physics, technology and society, S. I. Units, fundamental and derived units, least count, accuracy and precision of measuring instruments, measurement errors, Dimensions of Physics quantities, dimensional analysis and its applications.

Kinematics

The frame of reference, motion in a straight line, Position- time graph, speed and velocity; Uniform and non-uniform motion, average speed and instantaneous velocity, uniformly accelerated motion, velocity-time, position-time graph, relations for uniformly accelerated motion, Scalars and Vectors, Vector. Addition and subtraction, zero vector, scalar and vector products, Unit Vector, Resolution of a Vector. Relative Velocity, Motion in a plane, Projectile Motion, Uniform Circular Motion.

Laws of Motion

Force and inertia, Newton’s First law of motion; Momentum, Newton’s Second Law of motion, Impulses; Newton’s Third Law of motion. Law of conservation of linear momentum and its applications. Equilibrium of concurrent forces. Static and Kinetic friction, laws of friction, rolling friction. Dynamics of uniform circular motion: centripetal force and its applications

Work, Energy and Power

Work done by a content force and a variable force; kinetic and potential energies, work-energy theorem, power. The potential energy of spring conservation of mechanical energy, conservative and neoconservative forces; Elastic and inelastic collisions in one and two dimensions.

Rotational Motion

Centre of the mass of a two-particle system, Centre of the mass of a rigid body; Basic concepts of rotational motion; a moment of a force; torque, angular momentum, conservation of angular momentum and its applications; the moment of inertia, the radius of gyration. Values of moments of inertia for simple geometrical objects, parallel and perpendicular axes theorems and their applications. Rigid body rotation equations of rotational motion.

Gravitation

The universal law of gravitation. Acceleration due to gravity and its variation with altitude and depth. Kepler’s law of planetary motion. Gravitational potential energy; gravitational potential. Escape velocity, Orbital velocity of a satellite. Geo stationary satellites.

Properties of Solid and Liquids

Elastic behaviour, Stress-strain relationship, Hooke's Law. Young's modulus, bulk modulus, modulus of rigidity. Pressure due to a fluid column; Pascal's law and its applications. Viscosity. Stokes' law. terminal velocity, streamline and turbulent flow. Reynolds number. Bernoulli's principle and its applications. Surface energy and surface tension, angle of contact, application of surface tension - drops, bubbles and capillary rise. Heat, temperature, thermal expansion; specific heat capacity, calorimetry; change of state, latent heat. Heat transfer-conduction, convection and radiation. Newton's law of cooling

Thermodynamics

Thermal equilibrium, zeroth law of thermodynamics, the concept of temperature. Heat, work and internal energy. The first law of thermodynamics. The second law of thermodynamics: reversible and irreversible processes. Carnot engine and its efficiency

Kinetic Theory of Gases

Equation of state of a perfect gas, work done on compressing a gas, Kinetic theory of gases - assumptions, the concept of pressure. Kinetic energy and temperature: RMS speed of gas molecules: Degrees of freedom. Law of equipartition of energy, applications to specific heat capacities of gases; Mean free path. Avogadro's number.

Oscillation and Waves

Periodic motion - period, frequency, displacement as a function of time. Periodic functions. Simple harmonic motion (S.H.M.) and its equation; phase: oscillations of a spring -restoring force and force constant: energy in S.H.M. - Kinetic and potential energies; Simple pendulum - derivation of expression for its time period: Free, forced and damped oscillations, resonance. Wave motion. Longitudinal and transverse waves, speed of a wave. Displacement relation for a progressive wave. Principle of superposition of waves, a reflection of waves. Standing waves in strings and organ pipes, fundamental mode and harmonics. Beats. Doppler Effect in sound

Electrostatics

Electric charges: Conservation of charge. Coulomb's law-forces between two point charges, forces between multiple charges: superposition principle and continuous charge distribution. Electric field: Electric field due to a point charge, Electric field lines. Electric dipole, Electric field due to a dipole. Torque on a dipole in a uniform electric field. Electric flux. Gauss's law and its applications to find field due to infinitely long uniformly charged straight wire, uniformly charged infinite plane sheet and uniformly charged thin spherical shell. Electric potential and its calculation for a point charge, electric dipole and system of charges; Equipotential surfaces, Electrical potential energy of a system of two point charges in an electrostatic field. Conductors and insulators. Dielectrics and electric polarization, capacitor, the combination of capacitors in series and parallel, capacitance of a parallel plate capacitor with and without dielectric medium between the plates. Energy stored in a capacitor

Current Electricity

Electric current. Drift velocity. Ohm's law. Electrical resistance. Resistances of different materials. V-l characteristics of Ohmic and non-ohmic conductors. Electrical energy and power. Electrical resistivity. Colour code for resistors; Series and parallel combinations of resistors; Temperature dependence of resistance. Electric Cell and its Internal resistance, potential difference and emf of a cell, a combination of cells in series and parallel. Kirchhoff’s laws and their applications. Wheatstone bridge. Metre Bridge. Potentiometer - principle and its applications.

Magnetic Effects of Current and Magnetism

Biot - Savart law and its application to current carrying circular loop. Ampere's law and its applications to infinitely long current carrying straight wire and solenoid. Force on a moving charge in uniform magnetic and electric fields. Cyclotron. Force on a current-carrying conductor in a uniform magnetic field. The force between two parallel current carrying conductorsdefinition of ampere. Torque experienced by a current loop in a uniform magnetic field: Moving coil galvanometer, its current sensitivity and conversion to ammeter and voltmeter. Current loop as a magnetic dipole and its magnetic dipole moment. Bar magnet as an equivalent solenoid, magnetic field lines; Earth's magnetic field and magnetic elements. Para-, dia- and ferromagnetic substances. Magnetic susceptibility and permeability. Hysteresis. Electromagnets and permanent magnets.

Electromagnetic Induction and Alternating Current

Electromagnetic induction: Faraday's law. Induced emf and current: Lenz’s Law, Eddy currents. Self and mutual inductance. Alternating currents, peak and RMS value of alternating current/ voltage: reactance and impedance: LCR series circuit, resonance: Quality factor, power in AC circuits, wattless current. AC generator and transformer.

Electromagnetic Waves

Electromagnetic waves and their characteristics, Transverse nature of electromagnetic waves, Electromagnetic spectrum (radio waves, microwaves, infrared, visible, ultraviolet. X-rays. Gamma rays), Applications of e.m. waves.

Optics

Reflection and refraction of light at plane and spherical surfaces, mirror formula. Total internal reflection and its applications. Deviation and Dispersion of light by a; prism; Lens Formula. Magnification. Power of a Lens. Combination of thin lenses in contact. Microscope and Astronomical Telescope (reflecting and refracting ) and their magnifying powers. Wave optics: wavefront and Huygens' principle. Laws of reflection and refraction using Huygens principle. Interference, Young's double-slit experiment and expression for fringe width, coherent sources and sustained interference of light. Diffraction due to a single slit, width of central maximum. Resolving power of microscopes and astronomical telescopes. Polarization, plane-polarized light: Brewster's law, uses of plane-polarized light and Polaroid.

Dual Nature of Matter and Radiation

Dual nature of radiation. Photoelectric effect. Hertz and Lenard's observations; Einstein's photoelectric equation: particle nature of light. Matter waves-wave nature of particle, de Broglie relation. DavissonGermer experiment.

Atoms and Nuclei

Alpha-particle scattering experiment; Rutherford's model of atom; Bohr model, energy levels, hydrogen spectrum. Composition and size of nucleus, atomic masses, isotopes, isobars: isotones. Radioactivity- alpha. beta and gamma particles/rays and their properties; radioactive decay law. Mass-energy relation, mass defect; binding energy per nucleon and its variation with mass number, nuclear fission and fusion.

Electronic Devices

Semiconductors; semiconductor diode: 1- V characteristics in forward and reverse bias; diode as a rectifier; I-V characteristics of LED. the photodiode, solar cell and Zener diode; Zener diode as a voltage regulator. Junction transistor, transistor action, characteristics of a transistor: transistor as an amplifier (common emitter configuration) and oscillator. Logic gates (OR. AND. NOT. NAND and NOR). Transistor as a switch.

 

JEE Main 2026 Physics Syllabus of Section B

Section B of the JEE Physics syllabus includes numerical and experimental topics. Check the following table for the JEE Main 2026 Physics section B syllabus in detail.

S.No.

Topics

1

Vernier callipers-its use to measure the internal and external diameter and depth of a vessel.

2

Screw gauge-its use to determine thickness/ diameter of thin sheet/wire

3

Simple Pendulum-dissipation of energy by plotting a graph between the square of amplitude and time.

4

Metre Scale - the mass of a given object by principle of moments.

5

Young's modulus of elasticity of the material of a metallic wire.

6

Surface tension of water by capillary rise and effect of detergents,

7

Co-efficient of Viscosity of a given viscous liquid by measuring terminal velocity of a given spherical body,

9

Speed of sound in air at room temperature using a resonance tube

10

Specific heat capacity of a given (i) solid and (ii) liquid by method of mixtures.

11

The resistivity of the material of a given wire using metre bridge.

12

The resistance of a given wire using Ohm's law.

14

Resistance and figure of merit of a galvanometer by half deflection method.

15

The focal length of

 

(i) Convex mirror

 

(ii) Concave mirror, and

 

(iii) Convex lens,

 

using the parallax method.

16

The plot of the angle of deviation vs angle of incidence for a triangular prism

17

Refractive index of a glass slab using a travelling microscope.

18

Characteristic curves of a p-n junction diode in forward and reverse bias.

19

Characteristic curves of a Zener diode and finding reverse break down voltage.

20

Characteristic curves of a transistor and finding current gain and voltage gain

21

Identification of Diode. LED, Transistor. IC. Resistor. A capacitor from a mixed collection of such items.

 

JEE Main 2026 Physics Topic-Wise Weightage

Candidates are advised to know the weightage of all important topics in the syllabus of JEE Main Physics 2026. It can help in strategising the preparation plan and dividing the topics accordingly. Check the following table for the topic-wise weightage of JEE Main 2026 Physics Syllabus.

Chapters

Total Questions

Weightage

Electrostatics

1

3.30%

Capacitors

1

3.30%

Simple Harmonic Motion

1

3.30%

Sound Waves

1

3.30%

Elasticity

1

3.30%

Error in Measurement

1

3.30%

Circular Motion

1

3.30%

Electromagnetic Waves

1

3.30%

Semiconductors

1

3.30%

Communication Systems

1

3.30%

Magnetic Effect of Current and Magnetism

2

6.60%

Alternating Current

2

6.60%

Kinetic Theory of Gases & Thermodynamics

2

6.60%

Kinematics

2

6.60%

Work, Energy, and Power

2

6.60%

Laws of Motion

2

6.60%

Centre Of Mass

2

6.60%

Rotational Dynamics

2

6.60%

Modern Physics

2

6.60%

Wave Optics

2

6.60%

Current Electricity

3

9.90%

 

JEE Main 2026 Preparation Tips for Physics

Candidates must start preparing for the JEE Main exam way earlier than the exam date. They should start preparing at least 6 months earlier to cover the complete JEE Main Syllabus 2026. For physics preparation, candidates can follow the given tips below-

  • Prioritize Modern Physics, Electrostatics, Current Electricity, Optics, and Thermodynamics, as these contribute heavily.
  • Use NCERT + HC Verma + PYQs for strengthening basics.
  • Practice numerical-based problems daily; avoid relying only on theory.
  • Revise formulas weekly using a formula sheet or flashcards.

 

Best Books for JEE Main Physics 2026

It is important for candidates to select the right book to start with the JEE Main preparation. The right yet best books would help the candidates to score better. Check the following table for the list of best books for JEE Mains Physics 2026.

Author/Publisher

Name of Book

NCERT

NCERT Textbooks for Class 11 and 12

D.C. Pandey, Arihant Publications

Understanding Physics for JEE Main & Advanced

H.C. Verma

Concepts of Physics, Volume 1 and 2

Halliday, Resnick and Walker

Fundamentals of Physics

Sashi Bhusan Tiwari

Problems and Solutions of Physics

 

JEE Main Physics Syllabus 2026 FAQs

Is the JEE Main Physics Syllabus 2026 tough for average students?

The JEE Main Physics Syllabus 2026 is considered moderate in difficulty for most students. It mainly tests conceptual clarity and numerical problem-solving skills. With regular practice, the Physics Syllabus of JEE Main becomes manageable.

Can I complete the JEE Main Physics Syllabus 2026 in 6 months?

Yes, candidates can complete the JEE Main Physics Syllabus 2026 in 6 months with a proper study plan. Daily revision and topic-wise practice are essential. Consistent mock tests help in mastering the JEE Main Physics Syllabus.

How much time is required to complete the JEE Main Physics Syllabus 2026?

On average, the JEE Main Physics Syllabus 2026 can be completed in 4 to 6 months. The duration depends on the student’s basic understanding of Physics. Strong fundamentals help cover the IIT JEE Physics Syllabus faster.

What topics are included in the JEE Main Physics Syllabus 2026?

The JEE Main Physics Syllabus 2026 includes topics from Class 11 and Class 12 Physics. Important units include Mechanics, Thermodynamics, Electrodynamics, Optics, and Modern Physics. All questions in exams are strictly based on the NTA JEE Physics Syllabus.

Is the JEE Main Physics Syllabus 2026 based on NCERT books?

Yes, the JEE Main Physics Syllabus 2026 is largely based on NCERT textbooks. Concepts, formulas, and theory follow the NCERT curriculum. Reading the NCERT thoroughly helps in covering the JEE Physics Syllabus.

How many chapters are there in the JEE Main Physics Syllabus 2026?

The JEE Main Physics Syllabus 2026 consists of around 20 to 22 chapters combined from Class 11 and 12. The exact number depends on topic grouping by NTA. Students should prepare all chapters listed in the JEE Main Physics Syllabus 2026.

Which topics carry more weight in the JEE Main Physics Syllabus 2026?

High-weightage topics in the JEE Main Physics Syllabus 2026 include Current Electricity, Modern Physics, Laws of Motion, and Electrostatics. These topics frequently appear in the exam. Focusing on them strengthens overall performance in the JEE Physics Syllabus.

Is the JEE Main Physics Syllabus 2026 the same for all sessions?

Yes, the JEE Main Physics Syllabus remains the same for all exam sessions. NTA does not change the syllabus between attempts. Candidates can prepare once according to the JEE Physics Syllabus 2026.

Are numerical questions important in the JEE Main Physics Syllabus 2026?

Numerical questions play a major role in the JEE Physics Syllabus 2026. Most Physics questions are calculation-based and concept-driven. Regular practice improves speed and accuracy for the JEE Main Physics Syllabus 2026.

How should I revise the JEE Main Physics Syllabus 2026 effectively?

Effective revision of the JEE Main Physics Syllabus 2026 requires formula revision and concept clarity. Solving previous year questions helps identify weak areas. Frequent mock tests ensure a strong command over the Physics Syllabus of JEE Main.

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