SRMJEEE 2026 Syllabus: Download PDF, Check Topics and Weightage Here

SRM Joint Engineering Entrance Exam 2026 ( SRMJEEE )

Vikrant Shukla
Updated on Sep 29, 2025 11:40 IST

By Vikrant Shukla, Deputy Manager

SRMJEEE Syllabus 2026: The exam body, Sri Ramaswamy Memorial, conducts the SRM Institute of Science and Technology (SRMIST) exam and prescribes the SRMJEEE syllabus for it, which is released online on its official website and mentioned in the notification PDF. Candidates can check the SRMJEEE syllabus 2026. The SRMJEEE syllabus PDF is also available for download on this page. According to the official syllabus, the SRMJEEE 2026 syllabus encompasses topics from the 10+2 level in Maths/Biology, Physics, Chemistry, and English.

Also, candidates will have to attempt a few questions from the Aptitude section. To achieve a good rank in the SRMJEEE exam, candidates must complete the syllabus of SRMJEEE 2026. Along with the syllabus, candidates must also check the SRMJEEE exam pattern 2026 to know the sections, time duration, and marking scheme of the exam. Check the detailed SRMJEEE syllabus and SRMJEEE chapter-wise syllabus weightage for Maths, Physics, and Chemistry on this page below.

Table of content
  • Download SRMJEEE 2026 Syllabus PDF
  • SRMJEEE 2026 Syllabus for Physics
  • SRMJEEE 2026 Syllabus for Chemistry
  • SRMJEEE 2026 Syllabus for Maths
  • SRMJEEE 2026 Syllabus for Biology
  • SRMJEEE 2026 Syllabus for Aptitude
  • SRMJEEE 2026 Syllabus for English
  • SRMJEEE Syllabus 2026: Chapter Wise Weightage for Physics
  • SRMJEEE Syllabus 2026: Chapter Wise Weightage for Maths
  • SRMJEEE Syllabus 2026: Chapter Wise Weightage for Chemistry
  • Recommended Books for SRMJEEE 2026
  • FAQs related to SRMJEEE syllabus 2026
View More
SRMJEEE Logo

Download SRMJEEE 2026 Syllabus PDF

Candidates can download the SRMJEEE syllabus 2026 below:

Year Download PDF
2026 To be shared soon.
2025 Download PDF
2024 Download PDF
View Syllabus
SRMJEEE Logo

SRMJEEE 2026 Syllabus for Physics

Candidates can check below the syllabus of SRMJEEE 2026 for Physics section below:

Unit

Chapters

Unit 1: Units and Measurement, 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: Newton’s laws of motion - force and inertia - impulse and momentum - law of conservation of linear momentum - applications - 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

Gravitation: 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: Solids - elastic behaviour, stress-strain - Hooke’s law - Modulus of elasticity - relation between them - 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 - 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 plane sheet and uniformly charged thin spherical shell.

Electric potential - potential difference - 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 - Carbon resistors - series and parallel combinations of resistors - 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.

Unit 5: Magnetism and Magnetic effects of current

Earth’s magnetic field and magnetic elements -magnetic field due to a magnetic dipole - torque on a magnetic dipole - tangent law, tangent galvanometer deflection magnetometer - magnetic properties of a material – dia, para and ferromagnetic materials - applications. Magnetic effects of electric current - BiotSavart’s law - force on a moving charge in an uniform magnetic field - moving coil galvanometer - conversion of a galvanometer into voltmeter and ammeter.

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 - power in AC circuits - power factor - wattless current - AC generator and transformer - Electromagnetic waves – characteristics - Electromagnetic spectrum.

Unit 7: Optics

Reflection of light - spherical mirrors - mirror formula - refraction of light -total internal reflection- optical fibers - refraction at spherical surfaces – lenses - thin lens formula - lensmaker's formula – magnification - power of a lens - combination of thin lenses in contact - refraction of light through a prism - Scattering of light -Microscopes and astronomical telescopes .

Wave front and Huygen's principle - reflection and refraction of plane wave at a plane surface- laws 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 – polarization - plane polarised light - Brewster's law.

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 - Davisson-Germer experiment - Alpha-particle scattering experiment - Rutherford's model of atom - Bohr model - hydrogen spectrum.

Unit 9: Nuclear Physics

Nuclear radius, mass, binding energy, density, isotopes, mass defect- Bainbridge mass spectrometer-nuclear forces neutron discovery – radioactivity-α, β and γ decay-half life - mean life-artificial radio activity-radio isotopes-radio carbon dating-radiation hazards. Nuclear fission-nuclear reactor-nuclear fusion-hydrogen bomb - cosmic rays-elementary particles.

Unit 10: Electronic Devices

Semiconductors-doping-types-PN junction diode – biasing-diode as a Rectifier – Special purpose PN junction diodes – LED – photodiode - solar cell and zener diode - characteristics - zener diode as a voltage regulator- transistors-transistor characteristics – amplifier – gain-feedback in amplifiers-logic gates-basic logic gates-NOT, OR, AND, NOR, NAND-universal gates-De Morgan’s theorems.

Q&A Icon
Commonly asked questions
Q:   Do the SRMJEEE questions repeat?
Q:   Is there minus marking in the SRMJEEE exam?
Q:   Does SRMJEEE release question papers?
SRMJEEE Logo

SRMJEEE 2026 Syllabus for Chemistry

Candidates can check below the syllabus for SRMJEEE Chemistry section below:

Unit

Chapters

Unit 1: Solutions

Types of solutions, expression of concentration of solutions of solids in liquids, solubility of gases in liquids, solid solutions, colligative properties - relative lowering of vapour pressure, Raoult's law, elevation of boiling point, depression of freezing point, osmotic pressure, determination of molecular masses using colligative properties, abnormal molecular mass, Van't Hoff factor.

Unit 2: Electrochemistry

Redox reactions, conductance in electrolytic solutions, specific and molar conductivity, variations of conductivity with concentration, Kohlrausch's Law, electrolysis and law of electrolysis (elementary idea), dry cell-electrolytic cells and Galvanic cells, EMF of a cell, standard electrode potential, Nernst equation and its application to chemical cells, Relation between Gibbs energy change and EMF of a cell, fuel cells, corrosion.

Unit 3: Chemical Kinetics

Rate of a reaction (Average and instantaneous), factors affecting rate of reaction: concentration, temperature, catalyst; order and molecularity of a reaction, rate law and specific rate constant, integrated rate equations and half-life (only for zero and first order reactions), concept of collision theory (elementary idea, no mathematical treatment). Activation energy, Arrhenius equation.

Unit 4: Surface Chemistry

Adsorption - physisorption and chemisorption, factors affecting adsorption of gases on solids, catalysis, homogenous and heterogenous activity and selectivity; enzyme catalysis colloidal state distinction between true solutions, colloids and suspension; lyophilic, lyophobic multi-molecular and macromolecular colloids; properties of colloids; Tyndall effect, Brownian movement, electrophoresis, coagulation, emulsion - types of emulsions.

Unit 5: General Principles and Processes of Isolation of Elements

Principles and methods of extraction - concentration, oxidation, reduction - electrolytic method and refining.

Unit 6: p -Block Elements

Group 16 Elements: General introduction, electronic configuration, oxidation states, occurrence, trends in physical and chemical properties, dioxygen: Preparation, Properties and uses, classification of Oxides, Ozone, Sulphur - allotropic forms; compounds of Sulphur: Preparation Properties and uses of Sulphur-dioxide, Sulphuric Acid: industrial process of manufacture, properties and uses; Oxoacids of Sulphur (Structures only). Group 17 Elements: General introduction, electronic configuration, oxidation states, occurrence, trends in physical and chemical properties; compounds of halogens, Preparation, properties and uses of Chlorine and

Hydrochloric acid, interhalogen compounds, Oxoacids of halogens (structures only). Group 18 Elements: General introduction, electronic configuration, occurrence, trends in physical and chemical properties, uses.

Unit 7:‘d’ and ‘f’ Block Elements

General introduction, electronic configuration, occurrence and characteristics of transition metals, general trends in properties of the first row transition metals - metallic character, ionization enthalpy, oxidation states, ionic radii, colour, catalytic property, magnetic properties, interstitial compounds, alloy formation Lanthanides - Electronic configuration, oxidation states, chemical reactivity and lanthanide contraction and its consequences

Unit 8: Coordination Compounds

Coordination compounds - Introduction, ligands, coordination number, colour, magnetic properties and shapes, IUPAC nomenclature of mononuclear coordination compounds. Bonding, Werner's theory, VBT, and CFT; structure and stereoisomerism, importance of coordination compounds (in qualitative inclusion, extraction of metals and biological system).

Unit 9: Haloalkanes and Haloarenes

Haloalkanes: Nomenclature, nature of C-X bond, physical and chemical properties, mechanism of substitution reactions, optical rotation.

Haloarenes: Nature of C-X bond, substitution reactions (Directive influence of halogen in monosubstituted compounds only). Uses and environmental effects of - dichloromethane, trichloromethane, tetrachloromethane, iodoform, freons, DDT.

Unit 10: Alcohols, Phenols and Ethers

Alcohols: Nomenclature, methods of preparation, physical and chemical properties (of primary alcohols only), identification of primary, secondary and tertiary alcohols, mechanism of dehydration, uses with special reference to methanol and ethanol.

Phenols: Nomenclature, methods of preparation, physical and chemical properties, acidic nature of phenol, electrophillic substitution reactions, uses of phenols.

Ethers: Nomenclature, methods of preparation, physical and chemical properties, uses.

Unit 11: Aldehydes, Ketones and Carboxylic Acids

Aldehydes and Ketones: Nomenclature, nature of carbonyl group, methods of preparation, physical and chemical properties, mechanism of nucleophilic addition, reactivity of alpha hydrogen in aldehydes, uses.

Carboxylic Acids: Nomenclature, acidic nature, methods of preparation, physical and chemical properties; uses.

Unit 12: Organic compounds containing Nitrogen

Amines: Nomenclature, classification, structure, methods of preparation, physical and chemical properties, uses, identification of primary, secondary and tertiary amines.

Cyanides and Isocyanides

Diazonium salts: Preparation, chemical reactions and importance in synthetic organic chemistry

Unit 13: Biomolecules

Carbohydrates - Classification (aldoses and ketoses), monosaccahrides (glucose and fructose), D-L configuration oligosaccharides (sucrose, lactose, maltose), polysaccharides (starch, cellulose, glycogen); Importance of carbohydrates.

Proteins -Elementary idea of - amino acids, peptide bond, polypeptides, proteins, structure of proteins - primary, secondary, tertiary structure and quaternary structures (qualitative idea only), denaturation of proteins; enzymes.

Vitamins - Classification and functions. Nucleic Acids: DNA and RNA.

Unit 14: Polymers

Copolymerization, some important polymers: natural and synthetic like polythene, nylon polyesters, bakelite, and rubber. Biodegradable and non-biodegradable polymers.

Unit 15: Chemistry in Everyday life

Chemicals in medicines - analgesics, tranquilizers antiseptics, disinfectants, antimicrobials, antifertility drugs, antibiotics, antacids, antihistamines. Chemicals in food - preservatives, artificial sweetening agents, elementary idea of antioxidants. Cleansing agents- soaps and detergents, cleansing action.

Q&A Icon
Commonly asked questions
Q:   Does SRMJEEE release mock tests?
Q:   Where can I find SRMJEEE mock tests?
Q:   How are mock tests beneficial in SRMJEEE exam preparations?
SRMJEEE Logo

SRMJEEE 2026 Syllabus for Maths

Check the syllabus for SRMJEEE maths section below:

Unit Topics
Unit 1: Sets, Relations and Functions Sets and their representations, union, intersection and their algebraic properties, relations, equivalence relations, mappings, one-one, into and onto mappings, the composition of mappings.
Unit 2: Complex Numbers and Quadratic Equations Complex numbers in the form a+ib and their representation in a plane. Quadratic equations in real and complex number system and their solutions. Relation between roots and coefficients, nature of roots, formation of quadratic equations with given roots; symmetric functions of roots, and equations reducible to quadratic equations.
Unit 3: Matrices, Determinants and their applications Determinants and matrices of order two and three, minors, cofactors and applications of determinants in finding the area of a triangle, equality, types zero and identity matrix, transpose, symmetric and skew Symmetric. Evaluation of determinants. Addition and multiplication of matrices, simple properties, adjoint and inverse of a matrix, solution of simultaneous linear equations using determinants and matrices using inverses
Unit 4: Combinatorics Permutations and Combinations The fundamental principle of counting, permutation as an arrangement without repetitions and constraint repetitions, no circular permutations. Combination as selection, problems in P(n,r) and C(n,r), factorial, simple applications.
Unit 5: Algebra Theory of Equations, The relation between the roots and coefficients in an equation. Solving the equations when two or more roots of it are connected by certain relation. Equation with real coefficients, the occurrence of complex roots in conjugate pairs and its consequences. Transformation of equations - Reciprocal Equations.
Unit 6: Differential Calculus and its Applications

Polynomials, rational, trigonometric, logarithmic and exponential functions. Inverse functions. Graphs of simple functions. Limits, continuity, differentiation of the sum, difference, product and quotient of two functions, differentiation of trigonometric, inverse Trigonometric, logarithmic, exponential, composite and implicit functions, up to second-order derivatives.

Applications of Differential Calculus: Rate of change of quantities, monotonic-increasing and decreasing functions, maxima and minima of functions of one variable, tangents and normals, Rolle’s and Lagrange’s mean value theorems. Ordinary differential equations, order and degree. Formation of differential equations, and solution of differential equations by the method of separation of variables. Solution of homogeneous and linear differential equations and those of the type dy/dx +p(x)y=q(x).

Unit 7: Integral Calculus and its Applications Fundamental integrals involving algebraic, trigonometric, exponential and logarithmic functions. Integration by substitution, integration using trigonometric identities, and properties of definite integrals. Evaluation of definite integrals excluding the application of definite integrals
Unit 8: Analytical Geometry
  • Straight Lines in Two Dimensions: Straight line - Normal form – Illustrations. Straight line – Symmetric form. Straight line - Reduction into various forms. The intersection of two Straight Lines. The slope of a line, parallel and perpendicular lines, intercepts of a line on the coordinate axes. Family of straight lines - Concurrent lines. Condition for
    Concurrent lines. Cartesian system of rectangular coordinates in the plane, distance formula, area of a triangle and condition for the collinearity of three points and section formula, Concurrent lines - properties Related to a triangle. Centroid and incentre of a triangle, locus and its equation.
  • Circles in Two Dimensions: Standard form of the equation of a circle, general form of the equation of a circle, its radius and centre, equation of a circle in the parametric form, equation of a circle when the endpoints of a diameter are given, points of intersection of a line and a circle with the centre at the origin and condition for a line to be tangent to the circle.
  • Conic Sections in Two Dimensions: Sections of cones, equations of conic
    sections (parabola, ellipse and hyperbola) in standard form. Problems using their geometrical properties.
Unit 9: Vector Algebra Vectors and scalars, addition of vectors, components of a vector in two dimensions
and three-dimensional space, scalar and vector products, scalar and vector triple product. Application of vectors to plane geometry.
Unit 10: Statistics and Probability Distribution Measures of Central Tendency and Dispersion: Calculation of mean, median and
mode of grouped and ungrouped data. Calculation of standard deviation, variance and mean deviation for grouped and ungrouped data. Probability: Probability of an event, addition and multiplication theorems of probability and their applications; Conditional probability; Baye’s theorem, probability distribution of a random variable; Binomial, Poisson and Normal distributions and their properties
Unit 11: Trigonometry Trigonometry ratios, compound angles, solution of triangles, Trigonometric identities and equations-Inverse trigonometric functions definition range and domain Properties of triangles, including, incentre, circumcenter and orthocenter, solution of triangles, Problems related to Heights and distances.
Q&A Icon
Commonly asked questions
Q:   How to prepare for the SRMJEEE exam?
Q:   What is the difficulty level of the SRMJEEE exam?
Q:   Is the paper pattern of SRMJEEE similar to JEE Main?
SRMJEEE Logo

SRMJEEE 2026 Syllabus for Biology

Check the syllabus for SRMJEEE syllabus for Biology section below:

Unit

Chapters

Unit 1: Diversity in Living World

Biodiversity, Importance of classifications, Taxonomy & Systematics, Concept of species and taxonomical hierarchy, Binomial nomenclature, Tools for study of Taxonomy.

Five kingdom classification: Monera, Protista and Fungi into major groups; Lichens; Viruses and Viroids. Salient features of them.

Classification of plants into major groups - Algae, Bryophytes, Pteridophytes, Gymnosperm and Angiosperm - salient and distinguishing features. Angiosperms - classification up to class, characteristic features and examples.

Classification of animals- non chordate up to phyla level and chordate up to class’s level - salient and distinguishing features.

Unit 2: Structural Organization in Animals and Plants

Plant tissues: Morphology and modifications, Tissues, Anatomy and functions of different parts of flowering plants: Root, stem, leaf, inflorescence, flower, fruit and seed. 

Animal tissues: Morphology, anatomy and functions of different systems (digestive, circulatory, Respiratory, nervous and reproductive) of an insect (cockroach)

Unit 3: Cell Structure and Function

Cell theory, Structure of prokaryotic and eukaryotic cell, Plant cell and animal cell. Cell envelope, cell membrane, cell wall. Cell organelles - structure and function: Endomembrane system- endoplasmic reticulum, Golgi bodies, lysosomes, vacuoles, mitochondria, ribosomes, plastids, microbodies: Cytoskeleton, cilia, flagella, centrioles. Nucleus – nuclear membrane, chromatin, nucleolus. 

Chemical constituents of living cells: Biomolecules – structure and function of proteins including Enzymes–types, properties, enzyme action, carbodydrates, lipid and nucleic acids.

Cell division: Cell cycle, mitosis, meiosis and their significance.

Unit 4: Plant Physiology

Transport in plants: Movement of water, gases and nutrients, Cell to cell transport – Diffusion,

active transport; Plant – water relations– Imbibition, water potential, osmosis, plasmolysis; Long distance transport of water – Absorption, apoplast, symplast, transpiration pull, root pressure and guttation; Transpiration– Opening and closing of stomata; Uptake and translocation of mineral nutrients– Transport of food, phloem transport. 

Mineral nutrition: Essential minerals, macro and micronutrients and their role, Deficiency symptoms, Mineral toxicity, Elementary idea of Hydroponics, Nitrogen metabolism

Photosynthesis: Significance - site of photosynthesis - Photochemical and biosynthetic phases of photosynthesis, Cyclic and non cyclic photophosphorylation; Chemiosmotic hypothesis; Photorespiration; C3 and C4 pathways; Factors affecting photosynthesis.

Respiration: Cellular respiration – glycolysis, fermentation (anaerobic), Kreb’s cycle and electron transport system (aerobic); Energy relations – Number of ATP molecules generated; Amphibolic pathways; Respiratory quotient.

Plant growth and development: Seed germination, Phases of plant growth and plant growth rate,

Conditions of growth, Differentiation, dedifferentiation and redifferentiation, Sequence of developmental process in a plant cell, Growth regulators: auxin, gibberellin, cytokinin, ethylene, ABA. Seed dormancy, Photoperiodism, Vernalisation.

Unit 5: Human Physiology

Digestion and absorption: Alimentary canal and digestive glands, Role of digestive enzymes and

gastrointestinal hormones, Peristalsis, digestion, absorption and assimilation of proteins, carbohydrates and fats, Calorific value of proteins, carbohydrates and fats, Egestion; Nutritional and digestive disorders– PEM, indigestion, constipation, vomiting, jaundice, diarrhea.

Breathing and Respiration: Respiratory organs in animals, Respiratory system in humans, Mechanism of breathing and its regulation in humans– Exchange of gases, transport of gases and regulation of respiration, Respiratory volumes, Disorders related to respiration-Asthma, Emphysema, Occupational respiratory disorders.

Body fluids and circulation: Composition of blood, blood groups, coagulation of blood, Composition of lymph and its function, Human circulatory system – Structure of human heart and blood vessels, Cardiac cycle, cardiac output, ECG, Double circulation, Regulation of cardiac activity, Disorders of circulatory system - Hypertension, Coronary artery disease, Angina pectoris, Heart failure.

Excretory products and their elimination: Modes of excretion – Ammonotelism, ureotelism, uricotelism, Human excretory system–structure and fuction, Urine formation, Osmoregulation, Regulation of kidney function– Renin - angiotensin, Atrial Natriuretic Factor, ADH and Diabetes insipidus, Role of other organs in excretion, Disorders - Uraemia, Renal failure, Renal calculi, Nephritis, Dialysis and artificial kidney.

Locomotion and Movement: Types of movement – ciliary, flagellar, muscular, skeletal muscle –

contractile proteins and muscle contraction, Skeletal system and its functions, Joints, Disorders of muscular and skeletal system - Myasthenia gravis, Tetany, Muscular dystrophy, Arthritis, Osteoporosis, Gout.

Neural control and coordination: Neuron and nerves, Nervous system in humans– central nervous system, peripheral nervous system and visceral nervous system, Generation and conduction of nerve impulse, Reflex action, Sensory perception, Sense organs, Elementary structure and function of eye and ear.

Chemical coordination and regulation: Endocrine glands and hormones, Human endocrine system -Hypothalamus, Pituitary, Pineal, Thyroid, Parathyroid, Adrenal, Pancreas, Gonads. Mechanism of hormone action, Role of hormones as messengers and regulators, Hypo-and hyperactivity and related disorders: Common disorders e.g. Dwarfism, Acromegaly, Cretinism, goiter, exopthalmic goiter, diabetes, Addison’s disease.

Unit 6: Reproduction

Reproduction in Organisms: Reproduction, a characteristic feature of all organisms for continuation of species, modes of reproduction - asexual and sexual reproduction, asexual reproduction - binary fission, sporulation, budding, gemmule formation, fragmentation, vegetative propagation in plants.

Sexual Reproduction in Flowering Plants: Flower structure, development of male and female gametophytes, pollination - types, agencies and examples, out breeding devices, pollen-pistil interaction, double fertilization, post fertilization events - development of endosperm and embryo, development of seed and formation of fruit, special modes apomixis, parthenocarpy, polyembryony, Significance of seed dispersal and fruit formation.

Human Reproduction: Male and female reproductive systems, microscopic anatomy of testis and ovary, gametogenesis - spermatogenesis and oogenesis, menstrual cycle, fertilization, embryo development up to blastocyst formation, implantation, pregnancy and placenta formation, parturition, lactation.

Reproductive Health: Need for reproductive health and prevention of Sexually Transmitted Diseases (STDs), birth control - need and methods, contraception and medical termination of pregnancy (MTP), amniocentesis, infertility and assisted reproductive technologies - IVF, ZIFT, GIFT.

Unit 7: Genetics and Evolution

Principles of Inheritance and Variation: Heredity and variation, Mendelian inheritance, deviations from Mendelism – incomplete dominance, co - dominance, multiple alleles and inheritance of blood groups, pleiotropy, polygenic inheritance, chromosome theory of inheritance, chromosomes and genes, Sex determination in humans, birds and honey bee, linkage and crossing over, sex linked inheritance - haemophilia, colour blindness, Mendelian disorders in humans – thalassemia, chromosomal disorders in humans, Down's syndrome, Turner's and Klinefelter's syndromes.

Molecular Basis of Inheritance: DNA as genetic material, Structure of DNA and RNA, DNA packaging and replication, Central dogma, transcription, genetic code, translation, gene expression and regulation - lac operon, genome and human and rice genome projects, DNA fingerprinting.

Evolution: Origin of life, biological evolution and evidences for biological evolution (paleontology, comparative anatomy, embryology and molecular evidences), Darwin's contribution, modern synthetic theory of evolution, mechanism of evolution - variation (mutation and recombination) and natural selection with examples, types of natural selection; Gene flow and genetic drift; Hardy - Weinberg's principle; adaptive radiation; human evolution.

Unit 8: Biology and Human Welfare

Human Health and Diseases: Pathogens, parasites causing human diseases (malaria, dengue, chickengunia, filariasis, ascariasis, typhoid, pneumonia, common cold, amoebiasis, ring worm) and their control, Basic concepts of immunology – vaccines, cancer, HIV and AIDS, Adolescence - drug and alcohol abuse.

Strategies for Enhancement in Food Production: Improvement in food production, Plant breeding, tissue culture, single cell protein, Biofortification, Apiculture and Animal husbandry.

Microbes in Human Welfare: In household food processing, industrial production, sewage treatment, energy generation and microbes as bio-control agents and bio-fertilizers. Antibiotics - production and judicious use.

Unit 9: Biotechnology and Its Applications

Biotechnology - Principles and processes: Genetic Engineering (Recombinant DNA Technology).

Biotechnology and its Application: Application of biotechnology in health and agriculture: Human insulin and vaccine production, stem cell technology, gene therapy, genetically modified organisms - Bt crops; transgenic animals, biosafety issues, bio piracy and patents.

Unit 10: Ecology and Environment

Organisms and Populations: Organisms and environment: Habitat and niche, population and ecological adaptations, population interactions - mutualism, competition, predation, parasitism, population attributes - growth, birth rate and death rate, age distribution.

Ecosystem: Ecosystems: Patterns, components, productivity and decomposition, energy flow, pyramids of number, biomass, energy, nutrient cycles (carbon and phosphorous), ecological succession, ecological services - carbon fixation, pollination, seed dispersal, oxygen release.

Biodiversity and its Conservation: Biodiversity - Concept, patterns, importance, loss of biodiversity, biodiversity conservation, hotspots, endangered organisms, extinction, Red Data Book, biosphere reserves, national parks, sanctuaries and Ramsar sites.

Environmental Issues: Air pollution and its control, water pollution and its control, agrochemicals and their effects, solid waste management, radioactive waste management, greenhouse effect and climate change impact and mitigation, ozone layer depletion, deforestation, any one case study as success story addressing environmental issue(s).

Q&A Icon
Commonly asked questions
Q:   What is the exam pattern of SRMJEEE?
Q:   What is the marking scheme of the SRMJEEE?
Q:   Is there negative marking in the SRMJEEE?
SRMJEEE Logo

SRMJEEE 2026 Syllabus for Aptitude

For aptitude section of SRMJEEE, candidates have to prepare the below topics:

Unit

Chapters

Number System

Properties of numbers, Divisibility rules, Unit digit, Euclid’s algorithm, LCM and GCD

Statistics

Arithmetic mean, weighted mean, Geometric mean

Percentage

Percentage change-increase or decrease

Profit and Loss

Computing percentage of profit or loss and profit/loss value

Quadratic Equation

Nature of roots, Relationship between roots and coefficients, Solutions of quadratic equations

Geometry

Similar triangles, Lines and angles, Circles and Quadrilaterals

Arrangement

Ordering, Grading and Ranking, coding and decoding

Direction Sense test

Finding direction, distance or both

Linear Equation

Solving simultaneous equations, Test of consistency, problems on ages

Trigonometry

Values of trigonometric ratios, Identities, Heights and distances

Q&A Icon
Commonly asked questions
Q:   How to prepare for the SRMJEEE exam?
Q:   What is the difficulty level of the SRMJEEE exam?
Q:   Is the paper pattern of SRMJEEE similar to JEE Main?
SRMJEEE Logo

SRMJEEE 2026 Syllabus for English

Questions in this part contain Comprehension type questions in the form of short passages or lines of poems or a dialogue. The candidate should read the given text and answer the set of Questions. Each question has 4 choices, out of which choose the best answer.

Q&A Icon
Commonly asked questions
Q:   What is the exam pattern of SRMJEEE?
Q:   What is the marking scheme of the SRMJEEE?
Q:   Is there negative marking in the SRMJEEE?
SRMJEEE Logo

SRMJEEE Syllabus 2026: Chapter Wise Weightage for Physics

There are 35 questions in the Physics section, each with 1 mark and no negative marking. The questions are multiple-choice, and the table below outlines the key chapters and their respective weightages.

Chapters

Number of questions expected

Units and Measurements

1-2

Gravitation Mechanics of Solids and Fluids

2-4

Electrostatics

2-4

Current Electricity

2-4

Electrostatics

3-4

Magnetism and Magnetic Effects of Current

3-5

Electromagnetic induction and alternating currents

3-4

Optics

3-4

Dual Nature of Radiation and Matter & Atomic Physics

3-4

Nuclear Physics

4-5

Electronics and Semiconductor Devices

4-5

Read more
Q&A Icon
Commonly asked questions
Q:   What types of questions are asked in the SRMJEEE exam?
Q:   What are the stages in the SRMJEEE exam?
SRMJEEE Logo

SRMJEEE Syllabus 2026: Chapter Wise Weightage for Maths

Mathematics sections consist of the highest number of questions compared to other subjects. Hence, candidates must achieve a high score in this section.

Understanding the topics in Mathematics will help students prioritize specific topics during their final preparations for SRMJEEE. As per the exam pattern, the Mathematics section consists of 40 questions, with each correct answer earning the candidate one mark, and there is no negative marking for wrong attempts. Below is the list of important topics and their weightage in SRMJEEE Mathematics.

Chapters

Number of questions expected

Sets, Relations and Functions

2-3

Complex Numbers And Quadratic Equations

3-4

Matrices And Determinants

2-3

Permutation and Combination

2-3

Probability

3-4

Algebra

3-4

Differential Calculus and its

Applications

3-4

Integral Calculus and its Applications

3-4

Analytical Geometry

4-5

Vector Algebra

4-5

Statistics And Probability Distribution

4-5

Trigonometry

3-4

Read more
Q&A Icon
Commonly asked questions
Q:   What are the topics from Mathematics in SRMJEEE syllabus?

Explore subject-wise topics asked in SRMJEEE

Select your preferred subject

Complement of a SetEqual SetsUniversal SetFinite and Infinite SetEmpty SetSets and their RepresentationsRelations and FunctionsCartesian Products of SetsFunctionsRelationsBinomial TheoremBinomial Theorem for Positive Integral IndexComposition of Functions and Invertible FunctionTypes of FunctionsTypes of RelationsProperties of Inverse Trigonometric FunctionsInverse Trigonometric FunctionsBasic Concepts of Inverse Trigonometric FunctionsTypes of MatrixTranspose of a MatrixSymmetric and Skew Symmetric MatricesInvertible MatricesOperations on MatricesDeterminantsDeterminantsIntegration as Inverse Process of DifferentiationDifferentiationStandard DeviationAssumed Mean MethodCorrelation and RegressionZ Score TableCube and CuboidComplement of a SetEqual SetsUniversal SetFinite and Infinite SetEmpty SetSets and their RepresentationsRelations and FunctionsCartesian Products of SetsFunctionsRelationsBinomial TheoremBinomial Theorem for Positive Integral IndexComposition of Functions and Invertible FunctionTypes of FunctionsTypes of RelationsProperties of Inverse Trigonometric FunctionsInverse Trigonometric FunctionsBasic Concepts of Inverse Trigonometric FunctionsTypes of MatrixTranspose of a MatrixSymmetric and Skew Symmetric MatricesInvertible MatricesOperations on MatricesDeterminantsDeterminantsIntegration as Inverse Process of DifferentiationDifferentiationStandard DeviationAssumed Mean MethodCorrelation and RegressionZ Score TableCube and CuboidOverviewDIMENSIONS OF PHYSICAL QUANTITIESDIMENSIONAL FORMULAESignificant FiguresDIMENSIONAL ANALYSIS AND ITS APPLICATIONSINTERNATIONAL SYSTEM OF UNITSOverviewChange of StateIdeal Gas Equation and Absolute TemperatureThermal ExpansionHeat TransferSpecific HeatCalorimetryTemperature and HeatMeasurement of TemperatureThermodynamic ProcessCarnot EngineReversible and Irreversible ProcessThermal EquilibriumThermodynamic State Variables Equation of StateOverviewFirst Law of ThermodynamicsSecond Law of ThermodynamicsBehaviour of GasesKinetic Theory of Ideal GasOverviewPeriodic and Oscillatory MotionSimple PendulumSimple Harmonic MotionOverviewSpeed of a Travelling WaveDisplacement Relation in a Progressive WaveSuperposition PrincipleBeatsReflection of WavesKinematic Equation Uniformly of Accelerated MotionInstantaneous Velocity and SpeedOverviewAccelerationResolution of VectorsVector Addition by Analytical MethodScalars and VectorsMultiplication of Vectors by Real NumbersAddition and Subtraction of VectorsOverviewProjectile MotionMotion in a PlaneConservation of MomentumEquilibrium of a ParticleCircular MotionCommon Forces in MechanicsSolving Problems in MechanicsConservation of Mechanical EnergyPotential Energy of SpringPowerKinetic EnergyCollisionWorkConcept of Potential EnergyMoment of InertiaOverviewCentre of MassVector Product of Two VectorsTorque and Angular MomentumMotion of Centre of MassEquilibrium of a Rigid BodyOverviewAngular Velocity and Relation with Linear VelocityDynamics of Rotational Motion About a Fixed AxisKinematics of Rotational Motion About a Fixed AxisAngular Momentum of Rotation About a Fixed AxisKeplers LawOverviewEscape SpeedEarth SatellitesEnergy of an Orbiting SatelliteStress Strain CurveElastic ModuliApplications of Elastic Behaviour of MaterialsSurface TensionBernoulli PrinciplePressure in FluidsViscosityStreamline FlowForces between Multiple ChargesConductors and InsulatorsBasic Properties of Electric ChargeElectric ChargeElectric Charge and FieldElectric FluxElectric Charge and FieldElectric Field LinesContinuous Charge DistributionInterference Light Waves Youngs ExperimentRefraction Reflection Plane Wave Huygens PrincipleRefraction Reflection Plane Wave Huygens PrincipleEinstein Photoelectric TheoryPhotoelectric Effect Wave Theory LightPhotoelectric EffectElectron EmissionOverviewBohr Model of Hydrogen AtomRadioactivityPhysics Nuclei OverviewSize of NucleusBinding EnergyNuclear EnergySemiconductor Devices OverviewSemiconductor Devices OverviewSemiconductor DiodeDiode as RectifierIntrinsic SemiconductorExtrinsic SemiconductorOverviewPotential Due to Point ChargeCombination of CapacitorsElectrostatic PotentialEnergy Stored in a CapacitorCapacitors and CapacitanceEffect of Dielectric on CapacitanceElectrostatics of ConductorsPotential Energy of a System of ChargesPotential due to a System of ChargesElectric CurrentOverviewElectrical Energy and PowerTemperature Dependence of ResistivityWheatstone BridgeOverviewOhms LawKirchhoffs LawDrift of Electrons and the Origin of ResistivityTorque on Current Loop Magnetic DipoleMotion in Magnetic FieldSolenoidMagnetic Field due to a Current ElementMagnetic Field on Axis of Circular Current LoopAmpere Circuital LawMagnetic ForceOverviewMoving Coil GalvanometerMagnetism and MatterMagnetic Properties of MaterialsMagnetisation and Magnetic IntensityBar MagnetElectromagnetismMotional Electromotive ForceExperiments of Faraday and HenryAlternating Current OverviewTransformerAC Voltage Applied to a ResistorAC Voltage Applied to an InductorAC Voltage applied to a CapacitorAC Voltage applied to a Series LCR circuitRepresentation of AC Current and Voltage by VectorElectromagnetic SpectrumElectromagnetic WavesDisplacement CurrentTotal Internal ReflectionRefraction through a PrismOptical InstrumentsDerivation of Lens FormulaReflection of Light by Spherical MirrorsRefraction at Spherical Surface and by LensesDerive Equation of Motion by Calculus methodAlternating Current OverviewMole Concept and Molar MassSTOICHIOMETRY AND STOICHIOMETRIC CALCULATIONSPercentage CompositionLaws of Chemical CombinationAtomic and Molecular MassesProperties of Matter and their MeasurementImportance of ChemistryOverviewOverviewAtomic ModelsDiscovery of Sub Atomic ParticlesTowards Quantum Mechanical Model of AtomQuantum Mechanical Model of AtomElectronic Configuration Types of ElementsPeriodic Table Electronic Configuration of ElementPeriodic Trends in Properties of ElementsGenesis of Periodic ClassificationNomenclature of Elements with Atomic NumbersPresent Form of Periodic TableChemical Bonding and Molecular StructureHybridizationValence Bond TheoryMolecular Orbital TheoryHydrogen BondingIonic or Electrovalent BondKossel-Lewis Approach to Chemical BondingBond ParametersBonding in Homonuclear Diatomic MoleculesVSEPR TheoryApplications of Chemical BondingEquilibrium ProcessesHomogeneous EquilibriaFactors Affecting EquilibriaApplications of Equilibrium ConstantIonization of Acids and BasesIonic Equilibrium in SolutionEquilibrium in Chemical ProcessesSolubility Equilibria of Sparingly Soluble SaltsHeter Heterogeneous EquilibriaOxidation NumberClassification of Organic CompoundsIsomerismNomenclature of Organic CompoundsQuantitative AnalysisQualitative Analysis of Organic CompoundsOverviewStructural Representations of Organic CompoundsFundamental Concepts in Organic Reaction MechanismTetravalence of Carbon Shapes of Organic CompoundsMethods of Purification of Organic CompoundsClassificationAlkanesAlkenesAlkynesAromatic HydrocarbonCarcinogenicity and ToxicityAbnormal Molar MassColligative Properties and Molar MassSolubilityProteinsVitaminsCarbohydratesEnzymesHormonesNucleic AcidsElectrolytic Cells and ElectrolysisCorrosionGalvanic CellFuel CellsNernst EquationElectrochemical CellsBatteriesRate of ReactionIntegrated Rate EquationsCollision Theory of Chemical ReactionsTemperature Dependence of the Rate of a ReactionFactors Influencing Rate of a ReactionBonding in Metal CarbonylsDifference between Glucose and Fructose
SRMJEEE Logo

SRMJEEE Syllabus 2026: Chapter Wise Weightage for Chemistry

As part of the PCM, Chemistry is equally weighted and asks for equal attention to have a comprehensive understanding.

Chemistry is important in SRMJEEE as it comprises 35 questions in total. Each question carries one mark, and there is no negative marking. Based on past question patterns, we have compiled a breakdown of chapters and their expected number of questions. Below are the details of the SRMJEEE Chemistry chapter-wise weightage.

Chapters

Number of questions expected

Solutions

2-3

Electrochemistry

3-4

Chemical Kinetics

3-4

Surface Chemistry

2-3

Electrolysis

2-3

P Block Elements

3-4

D And F Block Elements

3-4

Coordination Compounds

2-3

Haloalkanes And Haloarene

2-3

Alcohols, Phenols And Ethers

2-3

Aldehydes, Ketones And Carboxylic Acids

3-4

Organic Compounds Containing Nitrogen

2-3

Biomolecules

1-3

Polymers

2-3

Application Of Chemistry

1-2

Read more
Q&A Icon
Commonly asked questions
Q:   What are the topics from Chemistry in SRMJEEE syllabus?
SRMJEEE Logo

Recommended Books for SRMJEEE 2026

Candidates can check below the books that cover the syllabus of SRMJEEE 2026 and can be used for the exam preparation.

List of Best Books for SRMJEEE 2026 for Maths

Candidates can check the SRMJEEE 2026 best books for maths below:

Name of the book
Author
Differential Calculus for IIT-JEE
Amit Agarwal
Integral Calculus for IIT-JEE
Calculus and Analytical Geometry Thomas and Finney
Problems in Calculus of One Variable I A Maron
Coordinate Geometry for IIT-JEE S K Goyal
Algebra for JEE Main & Advanced by
Arihant Publications
Vectors & RD Geometry
Trigonometry in JEE Main & Advanced
Course in Mathematics for IIT-JEE TMH Publications
Higher Algebra 4th Edition Hall and Knight

List of Best Books for SRMJEEE 2026 for Physics

Candidates can check the SRMJEEE 2026 best books for Physics below:

Name of the book Author
Mechanics Part 1 & 2 DC Pandey
Understanding Physics Electricity Magnetism DC Pandey
Concepts of Physics by HC Verma
Physics Problems IE Irodov
NCERT Physics NCERT

List of Best Books for SRMJEEE 2026 for Chemistry

Candidates can check the SRMJEEE 2026 best books for Chemistry below:

Book name Author Name
Organic Chemistry Morrison & Boyd
Organic Chemistry Solomon and Fryhle
A Guide to Mechanism in Organic Chemistry Peter Sykes
Concise Inorganic Chemistry J D Lee
Text Books for Inorganic Chemistry for Competitions O P Tandon
University Chemistry Bruce Mahan
Modern Approach to Chemical Calculations R C Mukherjee
Numerical Chemistry 22/e P Bahadur

List of Best Books for SRMJEEE 2026 for English

Candidates can check the SRMJEEE 2026 best books for English below:

Book name Author Name
English is Easy Chetananand Singh
Barron’s Pocket Guide to Vocabulary Samuel C. Brownstein
Word Power Made Easy Norman Lewis
Objective General English RS Aggarwal
High School English Grammar and Composition Wren & Martin

List of Best Books for SRMJEEE 2026 for Biology

Candidates can check the SRMJEEE 2026 best books for Biology below:

Book name Author Name

Trueman’s Elementary Biology

Chetananand Singh

Pradeep – A text for Biology

Samuel C. Brownstein

Together with Biology

Norman Lewis

G R Bathla Publications

RS Aggarwal

List of Best Books for SRMJEEE 2026 for Aptitude

Candidates can check the SRMJEEE 2026 best books for aptitude section below:

Book name Author Name

Quantitative Aptitude for Competitive Examination

R.S. Aggarwal

Fast track Objective Arithmetic

Rajesh Verma

Teach yourself Quantitative Aptitude

Arun Sharma

The Pearson Guide to Quantitative Aptitude for Competitive Examination 

The Pearson

Read More:

Read more
Q&A Icon
Commonly asked questions
Q:   What are some best books for SRMJEEE preparation?
View list of Books
SRMJEEE Logo

FAQs related to SRMJEEE syllabus 2026

Check here for additional FAQs related to the SRMJEEE syllabus 2026:

Q&A Icon
Commonly asked questions
Q:   Who conducts the SRMJEEE exam?
Q:   Is there campus placement in the SRMJEEE exam?
Q:   What is the SRMJEEE syllabus?
Q:   What types of questions are asked in the SRMJEEE exam?
Q:   What are the topics in the SRMJEEE exam?
qna

SRMJEEE Exam

Student Forum

chatAnything you would want to ask experts?
Write here...

Answered 3 weeks ago

For the SRMJEEE document verification, candidates need to arrange the following documents - 

  1. BTech Counseling call letter
  2. SRMJEE Rank card
  3. Admit Card/Hall ticket of the +2 board examination
  4. Mark sheet of Class 10th as proof of date of birth
  5. Mark sheet of Class 12th or its equivalent (if results are annou

...Read more

A

Aayushi Harsha

Contributor-Level 7

Answered 3 weeks ago

Candidates must follow the below instructions to appear in the remote proctored exam:

  • Do not move from your seats.
  • Don't take bio breaks during the exam.
  • Sit facing the screen throughout the exam.
  • Do not use mobile phones, digital watches, or any other electronic devices.
  • Do not wear sunglasses or headph

...Read more

M

Mayank Kumari

Contributor-Level 7

Answered 3 weeks ago

While attempting the SRMJEEE question papers, candidates need to know that only one question will appear on the screen and either the candidate should answer the question or skip. Once moved to next question, they will not be able to come back to answered/skipped questions. On completion, they will

...Read more

C

Chanchal Sinha

Contributor-Level 7

Answered 3 weeks ago

While appearing for the exam candidates need to login using details the provided credentials in the admit card (Password). The exam will be of 120 minutes. Candidates must login at least 60 minutes before and photograph of themselves and ID proof along with reading the instructions. No student will

...Read more

S

Satyendra Katarya

Contributor-Level 7

Answered 3 weeks ago

To appear in the SRMJEEE exam, candidates NEET to follow the below:

They must have a functioning laptop with camera and microphone feature along with the below specifications -  

  • Intel i3 (4TH Gen) equivalent CPU or above.
  • 4gb RAM or above.
  • Internet Speed - Minimum 1 MBPS
  • 2 Gb free hard disk space
  • Windows

...Read more

M

Mamona Rai

Contributor-Level 7

Answered 3 weeks ago

To book the slots, candidates will have to access the Admission Portal button under their respective SRMJEEE logins from the official page. They can then proceed to book the slots as per their convenience as well as availability on the particular date. After slot booking of SRMJEEE, candidates will

...Read more

L

Lalit Jain

Contributor-Level 7

Answered 3 weeks ago

The SRMJEEE slot booking is a procedure through which candidates can book their preferred exam date and time for the remote proctored test.

V

Vikrant Shukla

Contributor-Level 10

Answered 4 weeks ago

Yes, you don't have to buy specific books seperately for SRMJEEE preparations. You can refer to your 10+2 NCERT books from classes 10 to 12. However, you can purchase practice papers for solve past year question papers and strengthen your preparations.

N

Nishtha Chaudhary

Contributor-Level 7

Answered 4 weeks ago

There are specific books for SRMJEEE preparation exclusively, candidates are advised to refer to the course books, NCERT, and supplementary books to crack the entrance exam.

M

Mani Mehra

Contributor-Level 7

Answered 4 weeks ago

As per the official SRMJEEE syllabus for Chemistry there are a total of 35 questions. These questions will be based on Electrochemistry, Solutions, Surface Chemistry, Chemical Kinetics, Alcohols, Phenols and Ethers, p-Block Elements, Ketones and Carboxylic Acids, Aldehydes, Organic compounds contain

...Read more

A

Aayushi Harsha

Contributor-Level 7

8 Institutes accepting SRMJEEE

  • 19.00 Lakh
  • 4 years
  • |
  • Full Time
  • 12.00 Lakh
  • 4 years
  • |
  • Full Time
    • 4 years
    • |
    • Full Time
    • 8.00 Lakh
    • 4 years
    • |
    • Full Time

    Explore more B.Tech exams with upcoming dates

    SAT Registration Deadline for November Test Oct '25
    JEE Main 2026 Notification Oct '25 - Oct '25
    DTU LEET 2025 Application Form Dates Oct '25
    VITEEE 2026 application form Nov '25
    SAEEE 2026 application form Phase I Nov '25

    News & Updates

    Latest NewsPopular News