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SRMJEEE

SRMJEEE Syllabus 2026: Physics, Chemistry, Math/Biology & Exam Pattern

Engineering

Updated on June 16, 2026

SRMJEEE Syllabus 2026 is the comprehensive guide for B.Tech admissions, detailing topics across Physics, Chemistry, Mathematics or Biology, Aptitude, and English. The exam features 130 multiple-choice questions to be completed in 2 hours and 30 minutes, with a straightforward marking scheme of +1 for correct answers and no negative marking. This syllabus, based on the NCERT Class 11 and 12 curriculum, is crucial for effective preparation.

Table of Contents

SRMJEEE 2026 B.Tech (UG) Syllabus Overview: Physics, Chemistry, Math/Biology

The SRMJEEE Syllabus 2026 for B.Tech (UG) is comprehensively structured across five main subjects: Physics, Chemistry, Mathematics or Biology, Aptitude, and English. This exam features 130 multiple-choice questions, to be completed in 2 hours and 30 minutes, with a marking scheme of +1 for correct answers and no negative marking.

Subject Questions Marks
Physics 35 questions 35 marks
Chemistry 35 questions 35 marks
Mathematics/Biology 40 questions 40 marks
English & Aptitude 20 questions 20 marks

This distribution highlights the weightage of each subject, with Mathematics/Biology carrying the highest number of questions and marks, reflecting their critical role in the SRMJEEE Syllabus 2026.

To download the SRMJEEE Syllabus 2026 PDF, candidates should refer to the official platform. This section provides details on where the syllabus is released, the official body, and the steps to access the document.

  • Official Body: SRM Institute of Science and Technology (SRMIST)
  • Release Platform: SRMIST's official website (Expected)
  • Official Download Link: Click here to download the syllabus of SRMJEEE.
  • Steps to Download: Click the provided download link on SRMIST's official website (Expected) for the SRMJEEE 2026 Syllabus PDF.

SRMJEEE 2026 Subject-wise Weightage: Physics, Chemistry, Mathematics

This section outlines the key examination pattern for SRMJEEE 2026, providing essential details about the test structure. Understanding these specifics is crucial for candidates preparing for the SRMJEEE Syllabus 2026, ensuring they are well-informed about the exam format and scoring.

Aspect Details
Exam Duration 2 hours 30 minutes
Total Questions 130 multiple-choice questions
Total Marks 130 marks
Marking Scheme +1 for a correct answer, 0 for a wrong answer
Negative Marking No Negative Marking

The table above clearly details the SRMJEEE 2026 exam format, highlighting a straightforward marking scheme with no negative marking, which can be beneficial for test-takers.

Detailed SRMJEEE 2026 Physics Syllabus: Units, Mechanics, Optics, Modern Physics

The SRMJEEE Syllabus 2026 for Physics is comprehensively structured into ten units, covering fundamental concepts from Mechanics to Modern Physics. This detailed breakdown ensures candidates are well-prepared across all essential topics, providing a clear roadmap for their examination preparation.

Units Topics
Unit 1 - Units and Measurement, Mechanics Mechanics Units for measurement, system of units-S.I., fundamental and derived units, measurements - errors in measurement - significant figures, dimensions - dimensional analysis - applications. Laws of Motion: Concept of force - Newton’s laws of motion - projectile motion-uniform circular motion - friction - laws of friction - applications - centripetal force. Work, Energy and Power: Work - energy- potential energy and kinetic energy – power - collision-elastic and inelastic collisions.
Unit 2 - Gravitation, Mechanics of Solids and Fluids The universal law of gravitation, acceleration due to gravity - variation of ‘g’ with altitude, latitude and depth - gravitation potential - escape velocity and orbital velocity – geostationary satellites - Kepler’s laws of planetary motion. Mechanics of solids and fluids: Hooke’s law - Modulli of elasticity - surface tension capillarity - applications – viscosity - Poiseuille’s formula - Stokes law applications - streamline and turbulent flow - Reynolds number - Bernoulli’s theorem - applications.
Unit 3 - Electrostatics Electric charge - Conservation laws - Coulomb's law-principle of superposition - Distribution of charges in a conductor and action at points - continuous charge distribution - electric field - electric field lines - electric dipole - electric field due to a dipole - torque on a dipole in uniform electric field - Electric flux - Gauss's theorem - field due to infinitely long straight wire - uniformly charged infinite equipotential surfaces - electrical potential energy - Dielectrics and electric polarization - capacitors and capacitance - Combination of capacitors in series and in parallel - capacitance of a parallel plate capacitor with and without dielectric medium - energy stored in a capacitor.
Unit 4 - Current Electricity Electric current - drift velocity - mobility - Ohm's law -V-I characteristics - electrical energy and power - electrical resistivity and conductivity - temperature dependence - Internal resistance of a cell - potential difference and emf of a cell - combination of cells in series and in parallel - Kirchhoff's laws – applications - Wheatstone bridge - Metre bridge - Potentiometer - comparison of EMF of two cells - measurement of internal resistance of a cell- Thermo electric current.
Unit 5 - Magnetism and Magnetic Effects of Current Earth’s magnetic field and magnetic element - tangent law, tangent galvanometer deflection magnetometer - Magnetic effects of electric current – Biot Savart’s law - moving coil galvanometer - conversion of a galvanometer into voltmeter and ammeter – Ampere’s law.
Unit 6 - Electromagnetic Induction, Alternating Currents and Electromagnetic Waves Electromagnetic induction - Faraday's laws, induced EMF and current - Lenz's Law – Eddy currents - Self and mutual induction - Alternating currents, peak and RMS value of alternating current/voltage - reactance and impedance - LC oscillations - LCR series circuit - resonance - AC generator and transformer - Electromagnetic waves – characteristics - Electromagnetic spectrum.
Unit 7 - Optics Reflection of light - refraction of light – total internal reflection- optical fibers -refraction at spherical surfaces – lenses - thin lens formula – lens maker's formula – magnification - power of a lens - combination of thin lenses in contact - refraction of light through a prism Wave front and Huygen's principle - reflection and refraction of plane wave at a plane surfacelaws of reflection and refraction using Huygen's principle – Interference - Young's double slit experiment and expression for fringe width - Diffraction due to a single slit -width of central maximum – Polarisation.
Unit 8: Dual Nature of Radiation and Matter & Atomic Physics Dual nature of radiation - Photoelectric effect - Hertz and Lenard's observations - Einstein's photoelectric equation - particle nature of light - Matter waves - wave nature of particles - de-Broglie relation- Alphaparticle scattering experiment - Rutherford's model of atom- Bohr model- hydrogen spectrum
Unit 9: Nuclear Physics Nuclear radius, mass, binding energy
Unit 10 : Electronic Devices

This table provides a comprehensive overview of the SRMJEEE 2026 Physics syllabus, detailing the key units and their respective topics from fundamental principles to advanced concepts.

Detailed SRMJEEE 2026 Mathematics Syllabus: Algebra, Calculus, Geometry, Statistics

The SRMJEEE Syllabus 2026 for Mathematics covers a comprehensive range of topics essential for engineering aspirants. This section details the key units, ensuring candidates are well-prepared for the examination. The Mathematics section carries 40 questions, each worth one mark.

  • Unit 1: Sets, Relations and Functions
  • Unit 2: Complex Numbers and Quadratic Equations
  • Unit 3: Matrices, Determinants and their Applications
  • Unit 4: Combinatorics
  • Unit 5: Algebra
  • Unit 6: Differential Calculus and its Applications

Beyond these foundational topics, the SRMJEEE 2026 Mathematics syllabus extends into advanced areas of calculus, geometry, and statistics, alongside specific examination details.

Topic Details
Mathematics Syllabus Unit 7 Integral Calculus and its Applications
Mathematics Syllabus Unit 8 Analytical Geometry
Mathematics Syllabus Unit 9 Vector Algebra
Mathematics Syllabus Unit 10 Statistics and Probability Distribution
Mathematics Syllabus Unit 11 Trigonometry
Number of Questions in Mathematics/Biology Section 40 questions
Marks for Mathematics/Biology Section 40 marks

SRMJEEE 2026 Syllabus vs JEE Main Syllabus: Key Differences and Overlaps

The SRMJEEE Syllabus 2026 is primarily based on the NCERT curriculum of Class 11 and Class 12. This section details the structure, subjects, and key features of the SRMJEEE examination, providing essential information for prospective candidates.

  • Syllabus Basis: NCERT curriculum of Class 11 and Class 12
  • Subjects Covered: Physics, Chemistry, Mathematics or Biology, English, and Aptitude
  • Total Questions: 130 multiple choice questions (MCQs)
  • Exam Duration: 2 hours 30 minutes (150 minutes)
  • Negative Marking: No negative marking
  • Subject Choice: Biology can be chosen instead of Mathematics for specific B.Tech programs.

Frequently Asked Questions

What is SRMJEEE Syllabus 2026?

The SRMJEEE Syllabus 2026, released by SRMIST, details topics from Physics, Chemistry, Mathematics, English, and Aptitude sections. It outlines the subjects for the SRMJEE exam.

What are the eligibility requirements for SRMJEEE Syllabus 2026?

SRMJEEE 2026 B.Tech admissions have specific eligibility criteria. Kashmiri Migrants are eligible for relaxation in these admission requirements.

How do I apply for SRMJEEE Syllabus 2026?

You apply for SRMJEEE 2026 B.Tech UG Engineering Admissions. The SRMJEEE Syllabus is part of the complete guide available when you apply for these programs.

What is the application timeline for SRMJEEE Syllabus 2026?

The application timeline for SRMJEEE 2026 will be announced on the official website (Expected).

What is the expected cutoff for SRMJEEE Syllabus 2026?

Expected SRMJEEE 2026 cutoffs, prepared based on previous year's trends and exam analysis, are available course-wise. Candidates can also check the 2025 cutoff for reference.

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