KL Deemed to be University has officially released the KLEEE 2026 syllabus through their latest admission brochure. Reviewing the syllabus before starting your preparation will help you understand exactly what you need to study. The syllabus includes Physics, Chemistry, and Mathematics/Zoology or Botany, and each subject contains important units and topics that you need to prepare for the B.Tech entrance exam at KL University. Knowing all the chapters in advance will make it much easier to plan your study routine and maintain focus.
The KLEEE 2026 exam questions will be directly based on the official syllabus, so preparing accordingly will give you a distinct advantage. You can avoid unnecessary topics, understand the difficulty level of the questions, and study with more confidence. It is also essential to review the KLEEE 2026 exam pattern, so you can understand the number of questions, marks distribution, and overall structure of the exam.
In this article, you’ll get a detailed subject-wise breakdown that will help you organise your preparation smoothly and aim for a better score.
You can download the KLEEE 2026 syllabus PDF from the link below and start preparing the exact topics asked in the exam.
KLEEE 2026 Syllabus: Subject –Wise Topics
The KLEEE 2026 syllabus is divided into three sections: Physics, Chemistry, and Mathematics/Biology. Each subject has its own units and topics that you need to study for the exam. Seeing everything listed in one place will make it easier to understand which chapters to focus on and how to plan your preparation. The tables below provide a detailed discussion of the subject-wise topics, so you can begin your preparation without any confusion.
KLEEE 2026 Physics Syllabus
| Unit | Topics Covered |
| Units and dimensions | Fundamental units in CGS and SI systems, definitions of SI units, supplementary and derived units, dimensions of physical quantities, applications and limits of dimensional analysis, errors in measurements, average values, standard deviation and mean deviation, systematic and random errors, significant figures and rounding off, percentage of errors |
| Elements of vectors | Addition and subtraction of vectors, laws of vector addition, equal and null vectors, unit vectors, Cartesian system, position vector and magnitude, parallelogram law, resultant vector, triangle and polygon laws, relative motion of boat and river, scalar multiplication, scalar product with work and energy examples, vector product with torque and angular momentum examples, scalar and vector products of unit vectors |
| Kinematics Dynamics | Equations of motion under uniform acceleration, freely falling bodies, vertically projected bodies, two-dimensional motion, projectile motion, path, maximum height, time of flight and range, Newton laws of motion, inertia, momentum, force, impulse, types of forces, one dimensional collisions, elastic and inelastic collisions, coefficient of restitution |
| Work Power and Energy | Definitions and units, potential and kinetic energy expressions, work energy theorem, conservation of energy |
| Centre of Mass | Definition, coordinates of centre of mass, velocity, acceleration, characteristics of centre of mass, two-dimensional motion examples, laws of motion of centre of mass, explosions |
| Friction | Causes of friction, static friction, kinetic friction, rolling friction, laws of friction, acceleration on smooth and rough inclined planes |
| Rotatory motion | Rotatory and linear motion relations, centripetal and centrifugal forces, torque, couple, relation between angular momentum and torque, moment of inertia, rotational kinetic energy, parallel and perpendicular axes theorems, moments of inertia of rod, sphere, ring, disc, cylinder and lamina, conservation of angular momentum, vertical circle motion |
| Gravitation | Kepler laws, Newton universal law of gravitation, relation between g and G, variation of g with height, depth, latitude and local conditions, inertial and gravitational masses, escape velocity, orbital velocity, geo stationary satellites and uses |
| Simple Harmonic motion | Definitions and examples, expressions for displacement, velocity, acceleration, time period and frequency, period of simple pendulum, loaded spring, force constant, kinetic and potential energy in SHM |
| Elasticity | Elasticity and plasticity, stress, strain, Hooke law, modulii Y, n and K, Poisson ratio, relation between Y, n, K and s, wire under increasing load, elastic fatigue, strain energy, Searle apparatus for Young modulus |
| Surface Tension | Definition, examples, molecular action, angle of contact, capillarity, capillary rise method, temperature effect, excess pressure inside drops and bubbles |
| Hydrodynamics | Principle of buoyancy, pressure in fluids, Bernoulli theorem, aerodynamic lift, spinning ball motion |
| Viscosity | Streamline flow, viscosity concept, Poiseuille equation, viscosity coefficient determination, temperature variation |
| Expansion of Solids Liquids Gases | Linear, superficial and cubical expansion, mechanical lever method, bimetallic thermostat, real and apparent expansion of liquids, density variation, anomalous expansion of water, Regnault method, specific gravity bottle method, volume and pressure coefficients of gases, Regnault and Jolly apparatus, absolute zero, Kelvin scale, Boyle law, Charles law, ideal gas equation |
| Thermodynamics | Calorie, thermal capacity, specific heat, latent heat, law of mixtures, Joule law, mechanical equivalent of heat, phases of matter, triple point, Cp and Cv, isothermal and adiabatic processes, PV and T relations, external work done by ideal gas, internal energy, zeroth law, first law, second law, Cp minus Cv equals R |
| Thermal Radiations | Nature of thermal radiation, Prevost theory, emissive and absorptive powers, black body radiation, Kirchoff law, Newton law of cooling, laws of black body radiation, Stefan law, Wien law, Planck formula qualitative |
| Sound | Propagation of sound, wave equation, velocity in solids liquids and gases, effect of temperature, pressure, density and humidity, natural and forced vibrations, resonance, stationary waves in strings, transverse wave laws, sonometer verification, beats, Doppler effect formulas, uses and limitations |
| Geometrical Optics | Focault method for velocity of light, critical angle, total internal reflection, optical fibres, lens maker formula, image defects and corrections, Ramsden and Huygens eyepieces, dispersion of light, refractive index of prism, pure spectrum, spectrometer working, prism angle, minimum deviation, dispersive power, emission spectra, line, band and continuous spectra, absorption spectra, Fraunhoffer lines |
| Physical Optics | Nature of light, corpuscular theory, wave theory, electromagnetic theory, quantum ideas, interference, coherent sources, Young double slit experiment, diffraction Fresnel and Fraunhoffer, straight edge diffraction qualitative, polarization, plane polarized light by reflection and double refraction, polaroids |
| Magnetism | Magnetic pole strength, inverse square law, magnetic induction on axial and equatorial lines, couple on magnet, magnetic moment, tangent law, deflection magnetometer Tan A and Tan B, inverse square law verification, vibration magnetometer, M and BH determination, magnetic materials dia, para, ferro, antiferro and ferri, properties, electron theory, permeability and susceptibility |
| Electro Statics | Coulomb law, permittivity, electric field, electric lines, force on charge, electric potential, potential due to point charge, potential energy in uniform field, electron volt, relation between E and V, capacitance, dielectric constant, parallel plate capacitor, series and parallel capacitor combinations, energy in capacitor, dielectric effect on energy, types of capacitors and uses |
| Current Electricity | Ohm law, specific resistance, conductance, temperature dependence of resistivity, thermistor, emf, internal resistance, back emf, Kirchoff laws, Wheatstone bridge, metre bridge, potentiometer principle, emf comparison, internal resistance of cell |
| Thermo Electricity | Seebeck effect, Peltier effect, Thomson effect, thermo emf variation, neutral and inversion temperatures, thermocouple applications |
| Electro Magnetics | Oersted experiment, Biot Savart law, Tesla, Ampere law, magnetic field of straight wire, circular coil, force on moving charge, force on current conductor, force between parallel conductors, Ampere definition, Fleming left hand rule, torque on coil, tangent galvanometer, moving coil galvanometer, shunt and uses, ammeter and voltmeter conversion, electromagnetic induction, magnetic flux, induced emf, Faraday law, Lenz law, Fleming right hand rule, self and mutual inductance, Henry |
| Atomic Physics | Electron discovery, e by m by Thomson, electron charge by Millikan principle, photoelectric effect, laws, Einstein equation, Millikan verification, photocells, X ray spectra, Mosley law, Compton effect, dual nature of matter, de Broglie hypothesis |
| Nuclear Physics | Nucleus composition, nuclear forces, mass defect, binding energy, neutron discovery, fission, chain reaction, nuclear reactor principle, fusion, energy of sun and stars, carbon nitrogen cycle, proton proton cycle, elementary particles |
| Semiconductor Devices | Junction diode, depletion layer, barrier potential, forward and reverse bias, VI characteristics, half wave and full wave rectifiers, Zener regulator, pnp and npn transistors, transistor characteristics, common emitter amplifier block diagram qualitative |
Also Check: KLEEE 2026 Physics Syllabus PDF
KLEEE 2026 Chemistry Syllabus
| Unit | Topics Covered |
| Atomic Structure | Electromagnetic radiation, wave nature, wavelength, frequency, wave number, hydrogen spectrum, Rydberg equation, Lyman, Balmer, Paschen, Bracket, Pfund series, Rutherford model, Bohr model, energy and radius of hydrogen orbits, limitations, Zeeman and Stark effects, Sommerfeld modifications, quantum numbers, Pauli principle, de Broglie equation, Heisenberg uncertainty principle, shapes of s, p, d orbitals, orbital energy sequence, Aufbau principle, Hund rule, electronic configuration up to atomic number 30, stability and magnetic behaviour |
| Nuclear Chemistry | Nuclear particles, isotopes, isobars, isotones, isodiapheres, nuclear mass defect, mass energy relation, binding energy, n over p ratio, magic numbers, nuclear reactions, fusion, fission, differences between nuclear and chemical reactions, radioactivity, units Curie, Rutherford, Becquerel, natural and artificial radioactivity, disintegration series, group displacement law, decay constant, half life, numerical problems, radioactive isotopes O18, P32, U238, C14, I131 and uses |
| Periodic Classification | Periodic laws based on atomic number and electron configuration, structure of long form periodic table, s, p, d, f blocks, outer electronic configuration, periodic trends in atomic size, ionic radius, oxidation state, ionization potential, electron affinity, electronegativity, reasons for trends |
| Chemical Bonding | Ionic bonding, factors for formation, Born Haber cycle of NaCl, FCC structure of NaCl, BCC structure of CsCl, coordination number, properties of ionic substances, covalent bonding, octet rule, Lewis structures, valence bond theory, sigma and pi bonds, dipole moment, hybridization sp, sp two, sp three, dsp three, d two sp three, shapes of molecules, bond length, bond angle, VSEPR theory, hydrogen bonding inter and intra molecular |
| Stoichiometry | Stoichiometric equation, stoichiometric amounts, mole concept, gram atom, gram molecule, formula weight, numerical calculations, weight to weight, weight to volume, volume to volume relations, empirical and molecular formula, oxidation number, redox reactions, balancing by ion electron and oxidation number method |
| Gaseous State | Boyle law, Charles law, Avogadro law, ideal gas equation PV equal nRT, values of R, numerical problems, Graham law of diffusion, Dalton law of partial pressures, kinetic theory of gases, PV equal one third m n c square, RMS velocity, most probable velocity, average kinetic energy |
| Solutions | Solution definition, solvent, solute, concentration terms molarity, molality, normality, mole fraction, numerical problems, vapour pressure, effect of temperature, Raoult law |
| Acids and Bases | Arrhenius concept, Lowry Bronsted concept, Lewis concept, ionic product of water, pH of strong and weak acids and bases, buffer solutions, buffer action, pH of acid buffers, indicators, pH range, selection of indicators, hydrolysis of salts |
| Electrochemistry | Metallic conductors, electrolytes, Arrhenius ionization, Faraday laws, numerical problems, galvanic cells, cell notation, cell reactions, Nernst equation, EMF calculation |
| Chemical Equilibrium and Chemical Kinetics | Reversible reactions, dynamic equilibrium, law of mass action, equilibrium constant, factors affecting equilibrium, Haber process, Le Chatelier principle, rate of reaction, factors concentration, temperature, catalyst, rate law, rate constant, order and molecularity, first order equation, half life, collision theory |
| Chemical Energetics | Internal energy, enthalpy, exothermic and endothermic reactions, heats of reaction, formation, combustion, neutralization, Hess law, numerical problems |
| Surface Chemistry | Adsorption and absorption, physical and chemical adsorption, adsorption of gases on metals, adsorption from solutions, colloids, dispersed phase, dispersion medium, lyophilic and lyophobic sols, examples smoke, cloud, blood, milk, starch solution, gold sol, micelles, emulsions, emulsifying agents, catalysis homogeneous, heterogeneous, auto catalysis |
| Hydrogen and Its Compounds | Hardness of water and removal, heavy water preparation, properties and uses, hydrogen peroxide preparation, concentration, oxidizing and reducing nature, structure and uses |
| Alkali and Alkaline Earth Metals | Electronic configuration, periodic position, trends, chemical properties of oxides, halides, carbonates, extraction of sodium Castner and Down process, extraction of magnesium, alloys magnalium and electron, compounds sodium hydroxide, sodium bicarbonate, magnesium sulphate, plaster of Paris, lime mortar, gypsum |
| Group Elements | Electronic configuration, trends, aluminium occurrence, extraction, electrolytic purification, properties, uses, aluminothermic process, potash alum preparation and uses, electron deficient compounds, diborane preparation, properties, structure |
| Fourth Group Elements | Electronic configuration, trends, allotropy of carbon diamond and graphite, preparation, properties and uses of silicon and SiO two, comparison of SiO two with CO two, producer gas and water gas preparation and uses |
| Fifth Group Elements | Electronic configuration, trends, hydrides, oxides, halides, oxy acids of nitrogen and phosphorus, industrial preparation and uses of ammonia and super phosphate of lime |
| Sixth Group Elements | Electronic configuration, trends, allotropy, hydrides, oxides, halides, oxy acids of oxygen and sulphur, ozone preparation and uses, sodium thiosulphate preparation and uses |
| Seventh Group Elements | Electronic configuration, trends, fluorine and chlorine preparation, properties and uses, oxides and oxy acids of chlorine, bleaching powder preparation, properties and uses |
| Noble Gases | Discovery, occurrence, isolation, chemistry of noble gases and uses |
| Transition Elements d Block | Electronic configuration, properties oxidation states, colour, alloy formation, magnetic properties, coordination complexes Werner notation |
| Environmental Chemistry | Environment terms, pollutants, speciation, dissolved oxygen, threshold limit, air pollution CO, NOₓ, SOₓ, acid rain, greenhouse effect, water pollution, BOD, inorganic and organic pollutants, water treatment, ozone layer depletion and CFC |
| Hydrocarbons I Alkanes and Alkenes | Sigma and pi bonds, homologous series, isomerism chain, position, functional, IUPAC naming, methane and ethane preparation reduction of alkyl halides, Wurtz, Grignard, decarboxylation, Kolbe electrolysis, Sabatier Senderens reaction, properties halogenation, nitration, pyrolysis, oxidation, ethylene preparation dehydration, dehydrohalogenation, dehalogenation, properties addition reactions, polymerisation, oxidation |
| Hydrocarbons II | Acetylene preparation, oxidation, addition reactions, trimerization, benzene preparation from acetylene, coal tar, |
Also Check: KLEEE 2026 Chemistry Syllabus PDF
KLEEE 2026 Mathematics Syllabus
| Unit | Topics Covered |
| Algebra | Functions, types of functions, algebra of real valued functions, surds and logarithms, mathematical induction and applications, permutations and combinations, linear permutations, circular permutations, binomial theorem for positive integral index, binomial theorem for any rational index, applications, binomial coefficients, partial fractions, exponential and logarithmic series, quadratic expressions, quadratic inequations, theory of equations, relations between roots and coefficients, transformation of equations, reciprocal equations, cubic equations, Cardan method, biquadratic equations, Ferrari and Descartes methods, matrices and determinants, types of matrices, algebra of matrices, determinants of two by two and three by three, simultaneous linear equations in two and three variables, rank of matrix, complex numbers, properties, Demoivre theorem, trigonometric expansions |
| Trigonometry | Trigonometric functions, graphs, periodicity, trigonometric ratios of compound angles, multiple angles, sub multiple angles, transformations, trigonometric equations, inverse trigonometric functions, hyperbolic and inverse hyperbolic functions, properties of triangles, heights and distances in two-dimensional plane |
| Vector Algebra | Scalar product, angle between two vectors, properties of dot product, applications, vector product, right handed and left handed systems, properties of cross product, scalar triple product, vector triple product, product of four vectors, lines, equation of line through a point and parallel to a vector, line through two points, angle between lines, skew lines, shortest distance, intersection condition, collinearity of points, planes, equation of plane through a point and perpendicular to a vector, plane given distance from origin and unit normal, plane through a point and parallel to two vectors, plane through two points and parallel to a vector, plane through three non collinear points, plane through intersection of two planes, distance from point to plane, plane containing two lines, angle between planes, angle between line and plane, sphere, equation of sphere for given centre and radius, sphere with diameter endpoints |
| Probability | Addition theorem, multiplication theorem, conditional probability, Bayes theorem, mean and variance of random variable, binomial distribution, Poisson distribution, normal distribution |
| Coordinate Geometry | Locus, translation of axes, rotation of axes, straight line, pair of straight lines, three dimensional coordinate planes, distance between points, section formula, direction cosines, direction ratios, angle between lines, projection of a line, plane and its general equation, forms of plane equation, circles and system of circles, conics including parabola ellipse and hyperbola, tangents, normals, pole and polar, applications, polar coordinates |
| Calculus | Functions, limits, continuity, differentiation, methods of differentiation, successive differentiation, Leibnitz theorem, applications of derivatives, partial differentiation, Euler theorem on homogeneous functions, integration methods, definite integrals, applications to areas, reduction formulae, numerical integration, trapezoidal rule, Simpson rule, differential equations, formation and solution of first order first degree equations, second order linear homogeneous equations |
Also Check: KLEEE 2026 Mathematics Syllabus PDF
KLEEE 2026 Zoology Syllabus
| Unit | Topics Covered |
| Zoology the Basics | Nature and scope of Zoology, relation with other sciences, basic ideas of classification, need for classification, five kingdom classification Monera Protista Plantae Fungi Animalia, species concept and levels of classification, binomial nomenclature, Protista with prokaryotic and eukaryotic unicellular forms |
| Invertebrate Phyla | Main characters and simple classification of Protozoa Porifera Coelenterata or Cnidaria Platyhelminthes Nemathelminthes Annelida Arthropoda Mollusca Echinodermata |
| Animal Organisation | Types of symmetry asymmetry radial biradial bilateral with examples, coelom formation schizocoelic and enterocoelic, acoelom pseudocoelom true coelom with examples, basic animal tissues |
| Locomotion and Reproduction in Protozoa | Pseudopodia cilia flagella, amoeboid movement sol gel idea, ciliary and flagellar movement synchronal metachronal effective and recovery strokes, encystment in Amoeba and Euglena, binary fission transverse longitudinal, conjugation in Vorticella and its significance |
| Animal Associations | Meaning and examples of mutualism commensalism parasitism, life cycle and structure of Entamoeba histolytica Plasmodium vivax Taenia solium Wuchereria bancrofti, list of parasites with common name vector mode of transmission affected systems and diseases |
| Phylum Annelida | Earthworm Pheretima studied in detail |
| Phylum Arthropoda | Cockroach external features digestive respiratory nervous systems, life cycle and uses of silkworm, insect mouth parts biting chewing piercing sucking sponging siphoning, useful insects honey bee lac insect, harmful insects bed bug louse mosquito housefly |
| Man and Biosphere | Abiotic factors light temperature water, biotic factors producers consumers decomposers, pond ecosystem zones ecological pyramids energy flow, population ecology density growth regulation, pollution air water land sources effects prevention, wildlife conservation laws in India, biotechnology alcohol enzymes antibiotics monoclonal antibodies vaccines hormones |
| Phylum Chordata | General characters classification till classes, fishes cartilaginous and bony, Amphibia Urodela Anura Apoda, Reptilia Squamata Rhynchocephalia Crocodilia Chelonia, poisonous and non-poisonous snakes venom toxicity first aid treatment, Aves Carinatae Ratitae, Mammalia Prototheria Metatheria Eutheria |
| Functional Anatomy of Rabbit I | Digestive system compared with frog, nutrients and their roles, digestive enzymes and process, respiratory system and gas transport, circulatory system heart arteries veins comparison with frog working of heart blood coagulation |
| Functional Anatomy of Rabbit II | Excretory system nephron structure urine formation comparison with frog, muscles sliding filament idea joints types, reproductive system comparison with frog fertilisation development gastrulation gestation viviparity, nervous system central peripheral autonomic, endocrine glands and their hormones |
| Genetics | Mendel laws, sex determination XO ZZ ZW honey bee method hormone roles, sex linked inheritance incomplete sex limited sex influenced traits, gene regulation, blood groups ABO Rh and its importance in pregnancy and transfusion |
| Organic Evolution | Origin of life, theories of evolution Lamarck Darwin De Vries, modern ideas variation Hardy Weinberg rule natural selection drift speciation micro and macro evolution, evidences of evolution |
| Applied Zoology | Poultry layers broilers diseases, dairy and poultry breeding cloning, immunity disorders AIDS hepatitis allergies |
Also Check: KLEEE 2026 Zoology Syllabus PDF
KLEEE 2026 Botany Syllabus
| Unit | Topics Covered |
| World of Plant Life | Science of Botany, origin of Botany, important landmarks, uses of plants, differences between plants and animals, diversity in habitats Mesophytes, Xerophytes, Hydrophytes, Halophytes, Epiphytes, Mangroves, diversity in forms Herbs, Shrubs, Trees, Twiners, Lianes, diversity in life span Ephemerals, Annuals, Biennials, Perennials, nutritional methods Parasites, Saprophytes, Symbionts, Autotrophs, branches of Botany and applied Botany Phycology, Mycology, Lichenology, Bacteriology, Virology, Microbiology, Bryology, Pteridology, Morphology, Embryology, Palynology, Anatomy, Cytology, Taxonomy, Ecology, Genetics, Palaeobotany, Agriculture, Horticulture, Forestry, Pharmacology, Plant breeding, Plant pathology, Biotechnology |
| Institutes and Botanists of India | Contributions of BSI, NBRI, CIMAP, IARI, ICRISAT, FRI, ICAR, contributions of Birbal Sahni, P Maheswari, M O P Iyengar, M S Swaminathan, K C Mehta |
| Vegetative Morphology | Root characteristics, types of root system, regions of root, root modifications, stem characteristics and functions, stem types, buds, branching types, stem modifications, leaf base, stipules, petiole, venation, phyllotaxy, simple and compound leaves, leaf modifications |
| Reproductive Morphology | Racemose and cymose inflorescences, mixed and special inflorescences, terminal, axillary and intercalary inflorescences, cauliflory, structure of flower, sex distribution, symmetry, merosity, thalamus types, bracts and bracteoles, perianth, aestivation, calyx, corolla, androecium, gynoecium, pollination types, contrivances, pollinating agents, anther and ovule structure, ovule types, embryo sac development, fertilization, post fertilization changes, types of fruits simple, aggregate and multiple, true and false fruits, dispersal of fruits and seeds |
| Classification of Flowering Plants | Principles of classification, nomenclature, Bentham and Hooker system, study of Malvaceae, Fabaceae, Caesalpiniaceae, Asteraceae, Solanaceae, Liliaceae |
| Economic Botany | Botanical name, family, useful part, varieties, economic importance of paddy, wheat, jowar, bajra, red gram, Bengal gram, groundnut, coconut, cotton, jute, mango, banana, neem, amla |
| Cell Biology | Ultrastructure of eukaryotic cell, differences between plant and animal cells, chromosomes, nucleic acids |
| Cell Division | Mitosis, meiosis |
| Internal Organisation of Plants | Meristems, simple, complex and secretory tissues, epidermal, ground and vascular tissue systems, root apex, stem apex, anatomy of dicot and monocot roots, stems and leaves, normal secondary growth in dicot stem |
| Biotechnology | Scope, applications and aspects of biotechnology, genetic engineering, tissue culture, single cell protein, somatic hybridization, mushroom cultivation white button mushroom |
| Plant Kingdom | Classification cryptogams and phanerogams, features of algae, fungi, bryophytes, pteridophytes, gymnosperms and angiosperms, structure and life history of Spirogyra, Rhizopus, Funaria, Pteris and Cycas |
| Microbiology | Branches of applied microbiology and importance, bacteria structure, nutrition, reproduction, economic importance, viruses structure of TMV and bacteriophage, multiplication, transmission, symptoms of viral plant diseases and control |
| Plant Pathology | Historical account, classification of plant diseases, control measures, symptoms, causative organism and control of blast of paddy, red rot of sugarcane, grain smut of sorghum, citrus canker |
| Plants and Environment | Scope of ecology, levels of organisation, abiotic factors light, temperature and water, biotic factors producers, consumers and decomposers, plant communities hydrophytes, mesophytes, xerophytes, soil formation, soil profile, soil components, soil erosion, soil conservation |
| Crop Improvement | Aims of plant breeding, organisations, introduction, selection, hybridisation, hybrid vigour, polyploidy breeding, mutation breeding |
| Plant Physiology | Water relations, water potential, osmosis, plasmolysis, imbibition, water absorption active and passive, ascent of sap root pressure theory, cohesion tension theory, transpiration mechanism, factors, mineral nutrition macro and microelements, essentiality, NPK role, ion absorption active and passive, carrier theories, fertilisers inorganic, organic, bio fertilisers, enzymes properties, classification, mechanism, photosynthesis pigments, photolysis, photophosphorylation, C three, C four, CAM pathways, photorespiration, factors, translocation of solutes Munch hypothesis, respiration types, glycolysis, Krebs cycle, ETS, fermentation, nitrogen metabolism biological nitrogen fixation, protein synthesis transcription and translation, genetic code, plant hormones auxins, gibberellins, cytokinins, ABA, ethylene, photoperiodism, seed germination and dormancy |
Also Check: KLEEE 2026 Botany Syllabus PDF
KLEEE 2026 Exam Pattern
You can check the KLEEE 2026 exam pattern below to understand how the test is set.
| Particular | Details |
| Exam Mode | Online remote proctored test and offline pen and paper test |
| Exam Medium | English |
| Sessions | 3 sessions |
| Sections | 3 sections |
| Exam Duration | 180 minutes |
| Total Marks | 75 marks |
| Marking Scheme |
|
| Type of Questions | Multiple choice questions |
| Number of Questions | 75 questions |
| Answer Choices | 4 options for each question |
For more details, check out the KLEEE Exam Pattern 2026 Page.
KLEEE 2026 Preparation Tips
Preparing for the KLEEE 2026 exam becomes much easier when you follow a clear study plan and use the right methods. A few simple habits can help you stay organised, understand the chapters better, and improve your score. The table below shares some easy and practical tips that you can follow every day while preparing for the exam.
| Tip | How It Helps You |
| Know the complete syllabus | When you go through the full syllabus, you understand exactly which chapters to study. This helps you focus on the right topics instead of getting confused or wasting time on areas that are not needed. |
| Solve previous year’s papers | Solving old papers gives you a real idea of the question pattern, difficulty level, and the type of problems that are usually asked. It also helps you understand which chapters are more important. |
| Practice mock tests regularly | Mock tests help you manage time, improve accuracy, and handle pressure like a real exam. The more you practice, the more confident you feel during the actual test. |
| Revise important topics often | Regular revision keeps formulas, concepts and methods fresh in your mind. This helps you avoid silly mistakes and boosts your confidence during problem solving. |
| Make a simple study plan | A basic daily plan keeps you disciplined and ensures balanced study time for all subjects. It also reduces last minute stress because you know exactly what to do each day. |
| Focus on weak areas | Giving extra time to your weak chapters helps you improve your overall score. Even small improvements in these areas can make a big difference in the final result. |
| Study NCERT level basics | NCERT level concepts give you a strong base, especially in Physics and Chemistry. If your basics are clear, solving higher level questions becomes much easier. |
| Avoid long gaps in preparation | Studying consistently helps you remember concepts better. Long breaks can make you forget what you already learned, so short, regular study sessions work best. |
| Take short breaks while studying | Small breaks keep your mind fresh and help you stay focused for longer periods. This prevents mental fatigue and improves your overall productivity. |
| Stay calm before the exam | A relaxed and clear mind helps you think better during the test. When you stay calm, you solve questions faster and avoid unnecessary mistakes. |
Enjoy Extra Benefits with SR
Counselling
Processing fees on loan
Discounted Applications
GD PI preparation
Frequently Asked Questions
The KLEEE 2026 syllabus comprises three main subjects: Physics, Chemistry, and Mathematics/Biology. Each subject is divided into multiple units and topics. To complete it efficiently, first review all the chapters to understand the scope of the syllabus, then prioritize the more important units. Create a daily schedule and incorporate practice questions with revision to ensure each topic receives adequate attention.
Time management is crucial for success. Divide your study time according to your strengths and weaknesses in each subject of the KLEEE 2026 syllabus. Dedicate more time to challenging subjects but continue regular practice for easier ones as well. Include short breaks, mock tests, and revision sessions in your routine to maintain focus and improve efficiency.
Yes, mock tests are extremely important. They help you understand the question pattern, difficulty level, and time pressure. After each mock test, carefully analyze your mistakes and revise the related topics from the KLEEE 2026 syllabus. Regular practice with mock tests improves accuracy, speed, and confidence during the actual exam.
Focus on the more important topics first, as they have a greater impact on your score. However, do not completely ignore the less important topics, as a few easy questions from them can fetch your valuable marks. Use the KLEEE 2026 syllabus as a guide to create a balanced study plan to complete the entire syllabus without wasting time.
Start your revision at least 2-3 weeks before the exam. Create concise notes of formulas, key concepts, and challenging problems from the KLEEE 2026 syllabus. Solve past years' questions and mock tests alongside your notes. This combination will help you quickly recall important topics, improve your problem-solving speed, and build confidence before the exam.
Are You Interested in KLEEE ?



