Every year, lakhs of aspirants appear for the NEET UG exam with the goal of securing admission to leading medical colleges in India or overseas. Once the exam concludes, a common concern arises among students: “Which medical college can I expect with my NEET rank?” To simplify this decision-making process, the NEET College Predictor 2026 by MBBS Admission Abroad has been designed. This intelligent and user-friendly tool enables students to estimate their chances of admission to MBBS, BDS, and AYUSH colleges based on their NEET 2026 rank, category, and preferences, helping them make informed choices with confidence.
What is NEET College Predictor 2026?
The NEET College Predictor 2026 is a smart online solution created to assist NEET aspirants in identifying the medical colleges they may qualify for based on their NEET UG rank, category, and chosen course. Whether your goal is MBBS in India, BDS, or exploring MBBS abroad opportunities, this tool provides valuable guidance. It analyzes previous years’ NEET counselling data (including All India Quota and State Quota), historical cut-off trends, seat availability, and reservation criteria to generate a dependable list of colleges where admission chances are high.
How This Tool Operates
This tool is powered by extensive counselling data from previous years and intelligent algorithms to deliver accurate predictions. It compares your NEET rank with historical closing ranks of various medical colleges and evaluates multiple admission factors to provide reliable results.
The prediction process considers:
- Your NEET 2026 rank
- Category (General, SC, ST, OBC, EWS, etc.)
- Preferred course (MBBS, BDS, BAMS, BHMS, and more)
- Home state for State Quota assessment
- Data from All India Quota (AIQ) and State Quota counselling
- The latest seat matrix and cut-off trends
Benefits of Using the NEET College Predictor
After appearing for the NEET exam, students often feel confused while waiting for results and exploring suitable college options. Lack of timely and accurate information can make this phase stressful for both students and parents. The NEET College Predictor simplifies this process by offering clear guidance at the right time.
Key Benefits of Using the NEET College Predictor:
- Saves Time and Effort: Instead of researching multiple colleges individually, the tool instantly provides a customized list based on your rank and preferences.
- Provides Clarity and Direction: It helps you understand which colleges are realistically achievable, boosting confidence during counselling.
- Supports Smart Choice Filling: Assists in arranging colleges in the correct order of preference for better counselling outcomes.
- Minimizes Stress and Uncertainty: Reliable data and structured insights reduce confusion after the exam.
- Improves Admission Possibilities: By focusing on colleges that match your profile, you avoid unnecessary options and make smarter choices.
- Offers Complete College Information: Get details about fees, location, facilities, and previous cut-offs in one place.
Why NEET UG 2026 College Predictor Is Useful
The NEET College Predictor offers multiple features that simplify the medical admission journey for students:
- Based on real and regularly updated NEET counselling data
- Covers both All India Quota (AIQ) and State Quota seats
- Suggests colleges from Government and Private medical institutions
- Useful for Indian, NRI, and international students
- Includes MBBS abroad options with realistic admission chances
- Saves time and effort by showing only relevant colleges
- Provides free expert counselling for personalized guidance
Be flexible and have backups: Don’t rely on one dream college – keep other good options in mind too.
Personalized Guidance with MBBS Admission Abroad
At MBBS Admission Abroad, students receive much more than just online tools—they get end-to-end support throughout their medical admission journey. Experienced counselors are available to guide students at every stage. From NEET counselling choice filling to recommending budget-friendly MBBS universities abroad, the team ensures personalized assistance. They also provide step-by-step support for the application and visa process, along with detailed insights into college infrastructure, facilities, and MCI/NMC recognition status. Students can easily connect with the team via the website or helpline and schedule a free one-on-one counselling session for expert guidance

If you are gearing up for the NEET 2026 exam, having a thorough understanding of the syllabus is crucial. The National Eligibility cum Entrance Test (NEET) is a national-level examination for students aspiring to pursue MBBS, BDS, and other medical courses in India or abroad. The test is primarily based on the NCERT curriculum of Classes 11 and 12, and evaluates knowledge across three key subjects: Biology, Physics, and Chemistry.
NEET Biology Syllabus 2026
| Class 11 Biology Topics | Class 12 Biology Topics |
| Diversity of Living Organisms | Reproduction |
| Structural Organisation in Animals and Plants | Genetics and Evolution |
| Cell Structure and Function | Biology and Human Welfare |
| Plant Physiology | Biotechnology and Its Applications |
| Human Physiology | Ecology and Environment |
NEET Botany Syllabus
| Unit | Topic | Sub Topic |
| 1 | Diversity in the Living World | What is living? Biodiversity; Need for classification; three domains of life; taxonomy and systematics; the concept of species and taxonomic hierarchy; binomial nomenclature; tools for the study of taxonomy – museums, herbaria, botanical gardens, and key. |
| 2 | Structural Organisation in Plants and Animals | Morphology and modifications of root, stem, leaf, inflorescence, flowers, fruits, and seeds. Types of plant tissues and their functions; Structure and functions of different types of animal tissues. |
| 3 | Cell Structure and Function | Cell wall, cell membrane, cytoplasm, nucleus, chloroplasts, mitochondria, endoplasmic reticulum, Golgi bodies, lysosomes, vacuoles; cell division – cell cycle, mitosis, meiosis |
| 4 | Plant Physiology | Transport of water and minerals, photosynthesis, respiration, plant growth and development. |
| 5 | Human Physiology | Digestion and absorption, breathing and respiration, body fluids and circulation, excretory system, nervous system. |
| 6 | Reproduction | Sexual reproduction in flowering plants, human reproductive system. |
| 7 | Genetics and Evolution | Mendelian inheritance, inheritance of blood groups, Rh blood type, pedigree analysis, sex-linked inheritance and sex-influenced traits, mutation and genetic drift, gene flow and speciation. |
| 8 | Biology and Human Welfare | Pathogens; parasites causing human diseases; Basic concepts of immunology – vaccines; cancer; HIV and AIDS; Adolescence, drug and alcohol abuse |
| 9 | Biotechnology | Principles and processes of biotechnology, genetic engineering (recombinant DNA technology). |
| 10 | Ecology and Environment | Organisms and environment; Ecosystem; Biodiversity and its conservation; Pollution. |
NEET Zoology Syllabus
| 1 | Animal Kingdom | Classification and evolution of animals; Aves – structure and function, adaptive radiation; Mammalia – structure, dental formula, dentition, skin, and its derivatives; Animal tissues. |
| 2 | Structural Organisation in Animals | Phylum – Porifera, Coelenterata, Platyhelminthes, and Aschelminthes. Phylum – Annelida, Arthropoda, Mollusca, Echinodermata. Phylum – Chordata; Origin of chordates, notochord, dorsal hollow nerve cord, pharyngeal slits, post-anal tail, characters of chordates up to classes. |
| 3 | Animal Physiology | Digestion and absorption, respiratory system, circulatory system, excretory system, nervous system. |
| 4 | Human Physiology | Locomotion and movement, neural control and coordination, sensory receptors and sensory perception, endocrine system, human health, and diseases. |
| 5 | Reproduction | Reproductive health, reproductive rights, human reproductive system, sexual reproduction in animals. |
| 6 | Genetics and Evolution | Human genome project; DNA fingerprinting, gene expression and regulation, Eukaryotic genome organization. |
| 7 | Biology and Human Welfare | Human diseases; cancer; AIDS; drug and alcohol abuse. |
| 8 | Biotechnology | Application of biotechnology in health and agriculture. |
| 9 | Ecology and Environment | Ecosystems; ecological interactions; conservation of natural resources. |
Important Topics in Biology
To achieve a strong score in Biology, students should give special attention to the following high-scoring topics:
- Human Physiology
- Genetics and Evolution
- Ecology and Environment
- Cell Structure and Functions
- Biotechnology and Its Applications
Tips for Preparing Biology
Here is the content rewritten with clear, effective, and exam-oriented phrasing:
- Study the NCERT textbooks thoroughly, focusing on each line carefully.
- Create concise revision notes for faster recall.
- Regularly practice diagrams to strengthen visual memory.
- Attempt MCQs frequently to improve accuracy and speed.
- Revise each topic multiple times before the exam to ensure strong retention.
NEET 2026 Physics Syllabus
Physics is considered one of the tougher subjects by most NEET aspirants. But if prepared well, it can help boost your rank.
Class 11 Physics Topic | Class 12 Physics Topics |
Physical world and Measurement | Electrostatics |
| Kinematics | Current Electricity |
| Laws of Motion | Magnetic Effects of Current |
| Work, Energy and Power | Electromagnetic Induction |
| Gravitation | Electromagnetic Waves |
| Thermodynamics | Optics |
| Oscillations and Waves | Dual Nature of Matter |
| Properties of Bulk Matter | Atoms and Nuclei |
| Behaviour of Perfect Gas and Kinetic Theory | Electronic Devices |
NEET Physics Syllabus
| Unit | Topic | Subtopic |
| 1 | Physics and Measurement | Units of measurements, System of Units, SI Units, fundamental and derived units, least count, significant figures, Errors in measurements, Dimensions of physical quantities, dimensional analysis, and applications. |
| 2 | Kinematics | The frame of reference, motion in a straight line, Position-time graph, speed, velocity; Uniform and non-uniform motion, average speed, instantaneous velocity, uniformly accelerated motion, velocity-time, position-time graphs, uniformly accelerated motion equations. Scalars and Vectors, vector addition and subtraction, scalar and vector products, Unit Vector, Resolution of a Vector, Relative Velocity, Motion in a plane, Projectile Motion, Uniform Circular Motion. |
| 3 | Laws of Motion | Force and inertia, Newton’s First Law of motion; Momentum, Newton’s Second Law, Impulses; Newton’s Third Law. Law of conservation of linear momentum, Equilibrium of concurrent forces. Static and Kinetic friction, laws of friction, rolling friction. Dynamics of uniform circular motion: centripetal force, applications: vehicle on a level circular road, vehicle on a banked road. |
| 4 | Work, Energy, and Power | Work done by a constant and variable force; kinetic and potential energies, work-energy theorem, power. Potential energy of spring, conservation of mechanical energy, conservative and non-conservative forces; motion in a vertical circle: Elastic and inelastic collisions in one and two dimensions. |
| 5 | Rotational Motion | Centre of mass of a two-particle system, rigid body; Basic concepts of rotational motion; moment of a force; torque, angular momentum, conservation of angular momentum, applications; Moment of inertia, radius of gyration, values of moments of inertia for simple geometrical objects, parallel and perpendicular axes theorems, applications. Equilibrium of rigid bodies, rotational motion equations, and comparison of linear and rotational motions. |
| 6 | Gravitation | The universal law of gravitation. Acceleration due to gravity, variation with altitude and depth. Kepler’s laws of planetary motion. Gravitational potential energy; gravitational potential. Escape velocity, Motion of a satellite, orbital velocity, time period, energy of satellite. |
| 7 | Properties of Solids and Liquids | Elastic behavior, Stress-strain relationship, Hooke’s Law. Young’s modulus, bulk modulus, and mand modulus of rigidity. Pressure due to a fluid column; Pascal’s law, applications. Effect of gravity on fluid pressure. Viscosity. Stokes’ law. Terminal velocity, streamline and turbulent flow, critical velocity. Bernoulli’s principle and applications. Surface energy and surface tension, angle of contact, excess pressure across a curved surface, capillary rise. Heat, temperature, thermal expansion, specific heat capacity, calorimetry, latent heat. Heat transfer- conduction, convection, and radiation. |
| 8 | Thermodynamics | Thermal equilibrium, zeroth law of thermodynamics, concept of temperature. Heat, work, internal energy. The first law of thermodynamics, isothermal and adiabatic processes. The second law of thermodynamics: reversible and irreversible processes. |
| 9 | Kinetic Theory of Gases | Equation of state of a perfect gas, work done on compressing a gas, Kinetic theory of gases – assumptions, concept of pressure. Kinetic interpretation of temperature, RMS speed of gas molecules, Degrees of freedom. Law of equipartition of energy, applications to specific heat capacities of gases; Mean free path, Avogadro’s number. |
| 10 | Oscillations and Waves | Oscillations and periodic motion – time period, frequency, displacement as a function of time. Periodic functions. Simple harmonic motion (SHM), equation, phase: oscillations of a spring -restoring force and force constant: energy in SHM – Kinetic and potential energies; Simple pendulum – expression for time period: Wave motion. Longitudinal and transverse waves, speed of traveling wave. Displacement relation for a progressive wave. Principle of superposition of waves, reflection of waves. Standing waves in strings and organ pipes, harmonics. Beats. |
| 11 | Electrostatics | Electric charges, Conservation of charge, Coulomb’s law, and superposition principle. Electric field: due to a point charge, Electric field lines. Electric dipole, Torque on dipole. Electric flux, Gauss’s law, applications: infinite line charge, plane sheet, spherical shell. Electric potential, potential difference, Equipotential surfaces, Electrical potential energy. Conductors, insulators, capacitors, capacitance, parallel and series combinations, Energy stored in capacitor. |
| 12 | Current Electricity | Electric current, Drift velocity, Ohm’s law, Electrical resistance, V-I characteristics, Electrical energy and power. Resistivity, conductivity. Series and parallel resistors, Temperature dependence of resistance. Kirchhoff’s laws, Wheatstone bridge, Metre Bridge. |
| 13 | Magnetic Effects of Current and Magnetism | Biot-Savart law, circular loop, Ampere’s law, applications: infinite wire, solenoid. Force on moving charge in magnetic and electric fields. Force on the current-carrying conductor. Torque on a current loop, Moving coil galvanometer. Current loop as a magnetic dipole. Bar magnet, magnetic dipole, Torque in a uniform field. Para-, dia-, and ferromagnetic substances. |
| 14 | Electromagnetic Induction and Alternating Currents | Faraday’s laws, Lenz’s Law, Eddy currents. Self and mutual inductance. Alternating currents, peak and RMS values, reactance and impedance, LCR series circuit, resonance, power in AC circuits, AC generator and transformer. |
| 15 | Electromagnetic Waves | Displacement current, Electromagnetic waves, Transverse nature, Electromagnetic spectrum (radio waves, microwaves, infrared, visible, ultraviolet, X-rays, Gamma rays), Applications. |
| 16 | Optics | Reflection of light, spherical mirrors, mirror formula. Refraction, thin lens formula, lens maker formula. Total internal reflection, applications. Magnification, Power of a Lens. Combination of lenses. Microscope, Telescope. Wave optics: wavefront, Huygens’ principle, Interference, Young’s experiment, Diffraction, Polarization. |
| 17 | Dual Nature of Matter and Radiation | Dual nature of radiation. Photoelectric effect, Einstein’s equation, de Broglie relation. |
| 18 | Atoms and Nuclei | Alpha-particle scattering, Rutherford’s model, Bohr model, hydrogen spectrum. Nucleus composition, Mass-energy relation, mass defect, binding energy, nuclear fission, fusion. |
| 19 | Electronic Devices | Semiconductors, Diodes, LED, photodiode, solar cell, Zener diode, voltage regulator. Logic gates (OR, AND, NOT, NAND, NOR). |
| 20 | Experimental Skills | Vernier calipers, Screw gauge, Simple pendulum, Young’s modulus, Surface tension, Viscosity, Speed of sound, Specific heat capacity, Resistance, Ohm’s law, Focal length measurement, Refractive index, Characteristic curves of diode and Zener diode. |
NEET 2026 Chemistry Syllabus
Chemistry is divided into three parts: Physical Chemistry, Organic Chemistry, and Inorganic Chemistry.
| Class 11 Chemistry Topics | Class 12 Chemistry Topics |
Some Basic Concepts of Chemistry | The Solid State |
| Structure of Atom | Solutions |
| Classification of Elements | Electrochemistry |
| Chemical Bonding | Chemical Kinetics |
| States of Matter | Surface Chemistry |
| Thermodynamics | Coordination Compounds |
| Equilibrium | Haloalkanes and Haloarenes |
| Redox Reactions | Alcohols, Phenols and Ethers |
| Hydrogen | Aldehydes, Ketones and Carboxylic Acids |
| The s-Block Element | Biomolecules |
| Some p-Block Elements | Polymers |
| Hydrocarbons | Chemistry in Everyday Life |
| Organic Chemistry: Basic Principles |
NEET Chemistry Syllabus
| Unit | Topic | Subtopics |
| 1 | Some Basic Concepts of Chemistry | Matter and its nature, Dalton’s atomic theory; Concept of atom, molecule, element, and compound; Physical quantities and their measurements in Chemistry, precision and accuracy, significant figures, S.I. Units, dimensional analysis; Laws of chemical combinations, Atomic and molecular masses, mole concept and molar mass, percentage composition, empirical and molecular formula, chemical reactions, stoichiometry, and calculations based on stoichiometry. |
| 2 | Structure of Atom | Discovery of sub-atomic particles (electron, proton, neutron); Thomson and Rutherford atomic models and their limitations; Nature of electromagnetic radiation, Photoelectric effect; Spectrum of the hydrogen atom, Bohr model of a hydrogen atom – its postulates, Energy levels, hydrogen spectrum; Limitations of Bohr model; Explanation of line spectra of hydrogen; Wave-particle duality, de Broglie relation, Uncertainty principle; Quantum mechanical model of atom, orbitals and quantum numbers; Aufbau principle, Pauli’s exclusion principle, Hund’s rule, electronic configuration of atoms, stability of half-filled and completely filled orbitals. |
| 3 | Classification of Elements and Periodicity in Properties | Modern periodic law and the periodic table, periodic trends in properties of elements – atomic radius, electronegativity, electron gain enthalpy, ionization enthalpy; Electronic configurations of elements and the periodic table, Anomalous properties of second-period elements. |
| 4 | Chemical Bonding and Molecular Structure | Valence electrons, ionic bond, covalent bond, bond parameters, Lewis structure, polar character of covalent bond, covalent character of ionic bond, hybridization, resonance, geometry of molecules (VSEPR theory), molecular orbital theory (LCAO method) – bonding and antibonding molecular orbitals, bond order, electronic configuration of homo and hetero diatomic molecules, resonance, polarity. |
| 5 | States of Matter: Gases and Liquids | Three states of matter, intermolecular interactions, types of bonding, melting and boiling points, gas laws (Boyle’s law, Charles’ law, Gay Lussac’s law, Avogadro’s law), ideal gas equation, Avogadro number, deviation from ideal behavior, liquefaction of gases, critical temperature. Liquid state – vapor pressure, viscosity, surface tension (qualitative idea). |
| 6 | Thermodynamics | Thermodynamic systems, surroundings, work, heat, energy, extensive and intensive properties, state functions, and types of processes. The first law of thermodynamics – internal energy and enthalpy, heat capacity, and specific heat, measurement of U and H, Hess’s law, enthalpy of bond dissociation, combustion, formation, atomization, sublimation, phase transition, ionization, solution. The second law of thermodynamics; the spontaneity of processes; ΔG and ΔS criteria for equilibrium, Third law of thermodynamics. |
| 7 | Equilibrium | Equilibrium in physical and chemical processes, dynamic nature of equilibrium, law of mass action, equilibrium constant, factors affecting equilibrium – Le Chatelier’s principle; ionic equilibrium – ionization of acids and bases, strong and weak electrolytes, degree of ionization, ionization of polybasic acids, acid strength, factors affecting acid strength, electrostatic interpretation of acid strength, Lewis concept of acids and bases. Equilibrium involving gases – Ostwald’s dilution law, Henry’s law, solubility of gases in liquids, solubility product and its applications. |
| 8 | Redox Reactions | Oxidation and reduction, oxidation number, redox reactions, oxidizing and reducing agents, balancing redox reactions by oxidation number method and ion-electron method, redox potentials, electrochemical cells, electrolytic and galvanic cells; emf of a cell, standard electrode potential, Nernst equation, relation between emf and equilibrium constant, electrochemical series and its applications. |
| 9 | Hydrogen | Position of hydrogen in the periodic table, isotopes, preparation, properties, and uses; physical and chemical properties of water; heavy water; hydrogen peroxide – preparation, reactions, uses, and storage; hydrogen as a fuel. |
| 10 | s-Block Elements (Alkali and Alkaline Earth Metals) | Group 1 Elements: Alkali metals – Electronic configuration, atomic and ionic radii, ionization enthalpy, hydration enthalpy, bonding, physical and chemical properties, anomalous properties of lithium; important compounds – sodium carbonate, sodium chloride, sodium hydroxide, sodium hydrogen carbonate, biological importance of sodium and potassium. Group 2 Elements: Alkaline earth metals – Electronic configuration, atomic and ionic radii, ionization enthalpy, hydration enthalpy, bonding, physical and chemical properties, uses, biological importance of magnesium and calcium. |
| 11 | p-Block Elements | Group 13 to Group 18 elements – Electronic configuration, atomic and ionic radii, ionization enthalpy, hydration enthalpy, physical and chemical properties, important compounds, anomalous properties, allotropes (carbon, sulfur), interhalogen compounds, noble gases. |
| 12 | Organic Chemistry: Some Basic Principles and Techniques | Introduction to organic chemistry, tetravalency of carbon, structural representations, classification, hydrocarbons (alkanes, alkenes, alkynes, aromatic hydrocarbons – benzene), nomenclature, isomerism, purification techniques (distillation, crystallization, chromatography), qualitative and quantitative analysis. |
| 13 | Hydrocarbons | Classification, isomerism, IUPAC nomenclature, reactions of alkanes (combustion, halogenation), stability of alkenes (Markownikoff’s and anti-Markownikoff’s rule), addition reactions of alkenes (hydrogen, halogens, water, hydrogen halides – mechanism), geometry (cis-trans isomerism), electrophilic substitution reactions (halogenation, nitration, Friedel-Crafts alkylation/acylation), effect of o-, m-, p-directors. |
| 14 | Environmental Chemistry | Air, water, and soil pollution, chemical reactions in the atmosphere, smog, major atmospheric pollutants, acid rain, ozone depletion, greenhouse effect, pollution from industrial waste, and green chemistry for pollution control. |
| 15 | Solid State | Classification of solids (molecular, ionic, covalent, metallic), amorphous vs. crystalline solids, unit cell in 2D and 3D, density of unit cell, packing in solids, packing efficiency, voids, number of atoms per unit cell, point defects, electrical and magnetic properties, band theory, conductors, semiconductors (n-type, p-type). |
| 16 | Solutions | Types of solutions, concentration expressions (molality, molarity, mole fraction, percentage), Raoult’s law, ideal and non-ideal solutions, colligative properties (relative lowering of vapor pressure, freezing point depression, boiling point elevation, osmotic pressure), molecular mass determination, van’t Hoff factor. |
| 17 | Electrochemistry | Redox reactions, EMF of a cell, standard electrode potential, Nernst equation, relation between EMF and equilibrium constant, spontaneous and non-spontaneous processes, electrochemical series, electrochemical cells (electrolytic, galvanic), fuel cells, corrosion. |
| 18 | Chemical Kinetics | Reaction rate, factors affecting rate, rate law, specific rate constant, integrated rate equations, half-life (first-order reactions), collision theory, activation energy, Arrhenius equation. |
| 19 | Surface Chemistry | Adsorption (physisorption, chemisorption), factors affecting adsorption of gases on solids, catalysis (homogeneous, heterogeneous), activity and selectivity of solid catalysts. |
| 20 | General Principles and Processes of Isolation of Elements | Extraction principles and methods (concentration, oxidation, reduction), electrolytic method, refining, occurrence, and extraction of Al, Cu, Zn, Fe. |
NEET 2026 Important Chapters and Topics: Subject-wise Breakdown
Let’s divide each subject further to help you prepare better:
Physics
- Important and Easy: Laws of Motion, Modern Physics, Dual Nature of Matter
- Important but Difficult: Rotational Motion, Thermodynamics
- Not Important but Easy: Units & Dimensions, Elasticity
- Not Important and Difficult: Surface Tension, Error Analysis
Chemistry
- Important and Easy: Biomolecules, Environmental Chemistry, Solid State
- Important but Difficult: Electrochemistry, Chemical Kinetics
- Not Important but Easy: Chemistry in Everyday Life
- Not Important and Difficult: Qualitative Salt Analysis
Biology
- Important and Easy: Reproduction in Organisms, Ecology, Biotechnology
- Important but Difficult: Human Physiology, Genetics\
- Not Important but Easy: Strategies for Enhancement in Food Production
- Not Important and Difficult: Microbes in Human Welfare
NEET 2026: Best Reference Books
Reading from the right books makes a big difference. Here are some of the best books for NEET preparation
| Physics | Chemistry | Biology |
| Concepts of Physics by H.C. Verma (Vol 1 & 2) | NCERT Chemistry Textbooks (Class 11 & 12) | NCERT Biology Textbooks (Class 11 & 12) |
| NCERT Physics Textbooks | Physical Chemistry by O.P. Tandon | Trueman’s Biology |
| D.C. Pandey Series | Organic Chemistry by Morrison and Boyd | Dinesh Objective Biology |
Study Plan and Strategy
- Start your preparation at least one year before the exam.
- Create a monthly and weekly timetable.
- Focus on NCERT first and then move to reference books.
- Take online mock tests to evaluate your performance.
- Keep time for revision and don’t ignore weak topics.