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JEE Advanced 2026: Registration, Exam Date, Eligibility, Pattern, Syllabus

• Updated on 11 Sept, 2025 by Souvik

JEE Advanced 2026: Admission to the Indian Institutes of Technology (IITs) will be based on performance in the JEE Advanced exam. Only the top 2.5 lakh candidates who clear the JEE Main cutoff will be allowed to appear for JEE Advanced. Along with this, students must also satisfy other JEE Advanced Eligibility 2026 rules, such as age limit, number of attempts, and the year of passing Class 12.

 

For the year 2026, IIT Roorkee is likely to conduct the JEE Advanced exam in a fully computer-based format at centres across India and some international locations. The exam is tentatively scheduled for May 2026, while the application process is expected to begin in April 2026. The official JEE Advanced 2026 Exam Date will be announced in December 2025, and the detailed schedule will be available on the official website jeeadv.ac.in in April 2026.

 

On average, about 1.8 lakh students take the test each year, but only around 18% qualify, making it one of the most competitive entrance exams worldwide. The question paper includes topics from Class 11 and 12 Physics, Chemistry, and Mathematics. Final admission into the IITs is allotted on the basis of JEE Advanced ranks through the JoSAA Counselling process.

 

Also Read: Minimum Marks in JEE Advanced to get IIT for the General Category

 

Table of Contents

  1. JEE Advanced 2026 Highlights
  2. JEE Advanced 2026 Exam Dates
  3. JEE Advanced 2026 Eligibility Criteria Changes by IIT Kanpur
  4. JEE Advanced 2026 Application Form
  5. JEE Advanced OBC NCL Declaration Form
  6. JEE Advanced 2026 Syllabus
  7. JEE Advanced 2026 Exam Pattern
  8. JEE Advanced 2026 Preparation Tips
  9. JEE Advanced 2026 Admit Card
  10. JEE Advanced 2026 Exam Centres
  11. JEE Advanced 2026 Result
  12. JEE Advanced 2026 Cutoff
  13. JEE Advanced 2026 Counselling
  14. JEE Advanced 2026 FAQs

 

JEE Advanced 2026 Highlights

Candidates who are going to appear for JEE Advanced 2026 exam can check the table below for JEE Advanced 2026 highlights in the table below.

 

JEE Advanced 2026 Exam Dates

IIT Roorkee will release JEE Advanced 2026 exam dates. Candidates can check the important expected dates related to JEE Advanced 2026 exam in the table below.

 

JEE Advanced 2026 Eligibility Criteria

There are five eligibility criteria for JEE Advanced 2026 exam. Candidates can check JEE Advanced Eligibility Criteria below.

 

Attempts in JEE Advanced 2026

Candidates must check the number of attempts in JEE Advanced 2026 exam below.

  • Candidates can attempt JEE Advanced 2026 exam a maximum of two times in two consecutive years.
  • Candidates who appeared in JEE Advanced 2024 exam are also eligible to appear in JEE Advanced 2026 exam.
  • Also, candidates who are appearing in JEE Advanced 2026, can participate in JEE Advanced 2026 exam.
  • Candidates are not eligible for JEE Advanced 2026 if they appeared in the exam in 2023.

 

Required JEE Main 2026 Scores

Interested candidates must be among the top 2,50,000 candidates in JEE Mains 2026 exam to be eligible for JEE Advanced 2026 exam. Last year, a total of 187223 candidates selected from JEE Main exam to appear for JEE Advanced exam.

 

Age Limit

Candidates can check the required age limit for JEE Advanced exam below.

  • Candidates should have been born on or after October 1, 2001.
  • SC, ST, and PwD candidates are given a five-year age relaxation i.e., candidates should have been born on or after October 1, 1996.

 

Appearance in Class XII Examination

Candidates who have passed the class 12 exam in 2025 or 2026 are eligible to participate in JEE Advanced 2026 exam.

 

JEE Advanced 2026 Application Form

IIT Roorkee is going to release JEE Advanced 2026 Application Form in April 2026. Eligible candidates can check the application link at the official website at jeeadv.ac.in. Candidates can follow the steps to fill out the application form.

 

How to Fill Out JEE Advanced 2026 Application Form?

Candidates can follow the steps below to fill out the application form for JEE Advanced 2026 exam.

  • First, candidates must register through the official website by providing JEE Main 2026 roll number, password, and security pin.
  • In the next step, students must enter personal details such as their name, parents’ name, and communication details, address details, etc, in the specific column of the JEE Advanced 2026 Application Form.
  • Candidates must select their preferred exam centre when completing the application form.
  • Besides these details, candidates must upload their scanned images, photographs, and other required documents.
  • After filling out the application form, submit the form and take a printout of the confirmation page for future reference.

 

Document Required for JEE Advanced Registration 2026

Candidates can check the documents required for JEE Advanced Registration 2026 below.

  • Class X certificate if the date of birth is mentioned in it or the birth certificate.
  • Class XII (or equivalent examination) certificate
  • Class XII (or equivalent examination) certificate
  • If the candidate’s name is not the same as in the Class X certificate, a gazette notification showing the change of name.
  • Caste certificates as needed.

 

JEE Advanced 2026 Application Fee

Candidates willing to appear in JEE Advanced 2026 exam can check the category-wise application fee in the table below.

 

JEE Advanced OBC NCL Declaration Form

Candidates who belong to Other Backwards Classes (OBC) Non-Creamy Layer (NCL) category can submit their declaration form during registration if they don’t have their official OBC-NCL certificate. They can click on the link below to download JEE Advanced OBC NCL Declaration Form.

 

JEE Advanced 2026 Syllabus

IIT Roorkee will release JEE Advanced 2026 Syllabus soon at the official website. The syllabus includes subjects such as Physics, Chemistry, and Mathematics. Candidates can check the subject-wise JEE Advanced 2026 Syllabus below.

 

JEE Advanced 2026 Syllabus for Physics

Interested candidates can check the topics included in JEE Advanced Physics in the table below.

Chapters

Units

General

Units and dimensions, dimensional analysis; least count, significant figures; Methods of measurement and error analysis for physical quantities about the following experiments: Experiments based on using Vernier calipers and screw gauge (micrometer), Determination of g using simple pendulum, Young’s modulus by Searle’s method, Specific heat of a liquid using calorimeter, focal length of a concave mirror and a convex lens using u-v method, Speed of sound using resonance column, Verification of Ohm’s law using voltmeter and ammeter, and specific resistance of the material of a wire using meter bridge and post office box.

Mechanics

Kinematics in one and two dimensions (Cartesian coordinates only), projectiles; Uniform circular motion; Relative velocity.

Newton’s laws of motion; Inertial and uniformly accelerated frames of reference; Static and dynamic friction; Kinetic and potential energy; Work and power; Conservation of linear momentum and mechanical energy.

Systems of particles; Centre of mass and its motion; Impulse; Elastic and inelastic collisions.

Law of gravitation; Gravitational potential and field; Acceleration due to gravity; Motion of planets and satellites in circular orbits; Escape velocity.

Rigid body, moment of inertia, parallel and perpendicular axes theorems, moment of inertia of uniform bodies with simple geometrical shapes; Angular momentum;

Torque; Conservation of angular momentum; Dynamics of rigid bodies with fixed axis of rotation; Rolling without slipping of rings, cylinders and spheres; Equilibrium of rigid bodies; Collision of point masses with rigid bodies.

Linear and angular simple harmonic motions.

Hooke’s law, Young’s modulus.

Pressure in a fluid; Pascal’s law; Buoyancy; Surface energy and surface tension, capillary rise; Viscosity (Poiseuille’s equation excluded), Stoke’s law; Terminal velocity, Streamline flow, equation of continuity, Bernoulli’s theorem and its applications.

Wave motion (plane waves only), longitudinal and transverse waves, superposition of waves; Progressive and stationary waves; Vibration of strings and air columns; Resonance; Beats; Speed of sound in gases; Doppler effect (in sound).

Thermal physics

Thermal expansion of solids, liquids and gases; Calorimetry, latent heat; Heat conduction in one dimension; Elementary concepts of convection and radiation; Newton’s law of cooling; Ideal gas laws; Specific heats (Cv and Cp for monoatomic and diatomic gases); Isothermal and adiabatic processes, bulk modulus of gases; Equivalence of heat and work; First law of thermodynamics and its applications (only for ideal gases); Blackbody radiation: absorptive and emissive powers; Kirchhoff’s law; Wien’s displacement law, Stefan’s law.

Electricity and magnetism

Coulomb’s law; Electric field and potential; Electrical potential energy of a system of point charges and electrical dipoles in a uniform electrostatic field; Electric field lines; Flux of electric field; Gauss’s law and its application in simple cases, such as, to find field due to infinitely long straight wire, uniformly charged infinite plane sheet and uniformly charged thin spherical shell.

Capacitance; Parallel plate capacitor with and without dielectrics; Capacitors in series and parallel; Energy stored in a capacitor.

Electric current; Ohm’s law; Series and parallel arrangements of resistances and cells; Kirchhoff’s laws and simple applications; Heating effect of current.

Biot–Savart’s law and Ampere’s law; Magnetic field near a current-carrying straight wire, along the axis of a circular coil and inside a long straight solenoid; Force on a moving charge and a current-carrying wire in a uniform magnetic field.

Magnetic moment of a current loop; Effect of a uniform magnetic field on a current loop; Moving coil galvanometer, voltmeter, ammeter and their conversions. Electromagnetic induction: Faraday’s law, Lenz’s law; Self and mutual inductance; RC, LR and LC circuits with d.c. and a.c. sources.

Optics

Rectilinear propagation of light; Reflection and refraction at plane and spherical surfaces; Total internal reflection; Deviation and dispersion of light by a prism; Thin lenses; Combinations of mirrors and thin lenses; Magnification.

Wave nature of light: Huygen’s principle, interference limited to Young’s double-slit experiment.

Modern physics

Atomic nucleus; Alpha, Beta and Gamma radiations; Law of radioactive decay; Decay constant; Half-life and mean life; Binding energy and its calculation; Fission and fusion processes; Energy calculation in these processes.

Photoelectric effect; Bohr’s theory of hydrogen-like atoms; Characteristic and continuous X-rays, Moseley’s law; de Broglie wavelength of matter waves.

 

JEE Advanced 2026 Syllabus for Chemistry

Interested candidates can check the topics included in JEE Advanced Chemistry in the table below.

Chapters

Units

Physical Chemistry

General topics

Concept of atoms and molecules; Dalton’s atomic theory; Mole concept; Chemical formulae; Balanced chemical equations; Calculations (based on mole concept) involving common oxidation-reduction, neutralisation, and displacement reactions; Concentration in terms of mole fraction, molarity, molality and normality.

Gaseous and liquid states

Absolute scale of temperature, ideal gas equation; Deviation from ideality, van der Waals equation; Kinetic theory of gases, average, root mean square and most probable velocities and their relation with temperature; Law of partial pressures; Vapour pressure; Diffusion of gases.

Atomic structure and chemical bonding

Bohr model, spectrum of hydrogen atom, quantum numbers; Wave-particle duality, de Broglie hypothesis; Uncertainty principle; Qualitative quantum mechanical picture of hydrogen atom, shapes of s, p and d orbitals; Electronic configurations of elements (up to atomic number 36); Aufbau principle; Pauli’s exclusion principle and Hund’s rule; Orbital overlap and covalent bond; Hybridisation involving s, p and d orbitals only; Orbital energy diagrams for homonuclear diatomic species; Hydrogen bond; Polarity in molecules, dipole moment (qualitative aspects only); VSEPR model and shapes of molecules (linear, angular, triangular, square planar, pyramidal, square pyramidal, trigonal bipyramidal, tetrahedral and octahedral).

Energetics

First law of thermodynamics; Internal energy, work and heat, pressure-volume work; Enthalpy, Hess’s law; Heat of reaction, fusion and vapourization; Second law of thermodynamics; Entropy; Free energy; Criterion of spontaneity.

Chemical equilibrium

Law of mass action; Equilibrium constant, Le Chatelier’s principle (effect of concentration, temperature and pressure); Significance of G and G0 in chemical equilibrium; Solubility product, common ion effect, pH and buffer solutions; Acids and bases (Bronsted and Lewis concepts); Hydrolysis of salts.

Electrochemistry

Electrochemical cells and cell reactions; Standard electrode potentials; Nernst equation and its relation; Electrochemical series, emf of galvanic cells; Faraday’s laws of electrolysis; Electrolytic conductance, specific, equivalent and molar conductivity, Kohlrausch’s law; Concentration cells.

Chemical kinetics

Rates of chemical reactions; Order of reactions; Rate constant; First order reactions; Temperature dependence of rate constant (Arrhenius equation).

Solid state

Classification of solids, crystalline state, seven crystal systems (cell parameters a, b, c, alpha, beta, gamma), close packed structure of solids (cubic), packing in fcc, bcc and hcp lattices; Nearest neighbours, ionic radii, simple ionic compounds, point defects.

Solutions

Raoult’s law; Molecular weight determination from lowering of vapour pressure, elevation of boiling point and depression of freezing point.

Surface chemistry

Elementary concepts of adsorption (excluding adsorption isotherms); Colloids: types, methods of preparation and general properties; Elementary ideas of emulsions, surfactants and micelles (only definitions and examples).

Nuclear chemistry

Radioactivity: isotopes and isobars; Properties of alpha, Beta and Gamma rays; Kinetics of radioactive decay (decay series excluded), carbon dating; Stability of nuclei with respect to proton-neutron ratio; Brief discussion on fission and fusion reactions.

Inorganic Chemistry

Isolation/preparation and properties of the following non-metals

Boron, silicon, nitrogen, phosphorus, oxygen, sulphur and halogens; Properties of allotropes of carbon (only diamond and graphite), phosphorus and sulphur.

Preparation and properties of the following compounds

Oxides, peroxides, hydroxides, carbonates, bicarbonates, chlorides and sulphates of sodium, potassium, magnesium and calcium; Boron: diborane, boric acid and borax; Aluminium: alumina, aluminium chloride and alums; Carbon: oxides and oxyacid (carbonic acid); Silicon: silicones, silicates and silicon carbide; Nitrogen: oxides, oxyacids and ammonia; Phosphorus: oxides, oxyacids (phosphorus acid, phosphoric acid) and phosphine; Oxygen: ozone and hydrogen peroxide; Sulphur: hydrogen sulphide, oxides, sulphurous acid, sulphuric acid and sodium thiosulphate; Halogens: hydrohalic acids, oxides and oxyacids of chlorine, bleaching powder; Xenon fluorides.

Transition elements (3d series)

Definition, general characteristics, oxidation states and their stabilities, colour (excluding the details of electronic transitions) and calculation of spin-only magnetic moment; Coordination compounds: nomenclature of mononuclear coordination compounds, cis-trans and ionisation isomerisms, hybridisation and geometries of mononuclear coordination compounds (linear, tetrahedral, square planar and octahedral).

Preparation and properties of the following compounds

Oxides and chlorides of tin and lead; Oxides, chlorides and sulphates of Fe2+, Cu2+ and Zn2+; Potassium permanganate, potassium dichromate, silver oxide, silver nitrate, silver thiosulphate.

Ores and minerals

Commonly occurring ores and minerals of iron, copper, tin, lead, magnesium, aluminium, zinc and silver.

Extractive metallurgy

Chemical principles and reactions only (industrial details excluded); Carbon reduction method (iron and tin); Self-reduction method (copper and lead);

Electrolytic reduction method (magnesium and aluminium); Cyanide process (silver and gold).

Principles of qualitative analysis

Groups I to V (only Ag+, Hg2+, Cu2+, Pb2+, Bi3+, Fe3+, Cr3+, Al3+, Ca2+, Ba2+, Zn2+, Mn2+ and Mg2+); Nitrate, halides (excluding fluoride), sulphate and sulphide.

Organic Chemistry

Concepts

Hybridisation of carbon and bonds; Shapes of simple organic molecules; Structural and geometrical isomerism; Optical isomerism of compounds containing up to two asymmetric centres, (R, S and E, Z nomenclature excluded); IUPAC nomenclature of simple organic compounds (only hydrocarbons, mono-functional and bi-functional compounds); Conformations of ethane and butane (Newman projections); Resonance and hyperconjugation; Keto-enoltautomerism; Determination of empirical and molecular formulae of simple compounds (only combustion method); Hydrogen bonds: definition and their effects on physical properties of alcohols and carboxylic acids; Inductive and resonance effects on acidity and basicity of organic acids and bases; Polarity and inductive effects in alkyl halides; Reactive intermediates produced during homolytic and heterolytic bond cleavage; Formation, structure and stability of carbocations, carbanions and free radicals.

Preparation, properties and reactions of alkanes

Homologous series, physical properties of alkanes (melting points, boiling points and density); Combustion and halogenation of alkanes; Preparation of alkanes by Wurtz reaction and decarboxylation reactions.

Preparation, properties and reactions of alkenes and alkynes

Physical properties of alkenes and alkynes (boiling points, density and dipole moments); Acidity of alkynes; Acid catalysed hydration of alkenes and alkynes (excluding the stereochemistry of addition and elimination); Reactions of alkenes with KMnO4 and ozone; Reduction of alkenes and alkynes; Preparation of alkenes and alkynes by elimination reactions; Electrophilic addition reactions of alkenes with X2, HX, HOX and H2O (X=halogen); Addition reactions of alkynes; Metal acetylides.

Reactions of benzene

Structure and aromaticity; Electrophilic substitution reactions: halogenation, nitration, sulphonation, Friedel-Crafts alkylation and acylation; Effect of o-, m- and p-directing groups in monosubstituted benzenes.

Phenols

Acidity, electrophilic substitution reactions (halogenation, nitration and sulphonation); Reimer-Tieman reaction, Kolbe reaction.

Characteristic reactions of the following (including those mentioned above)

Alkyl halides: rearrangement reactions of alkyl carbocation, Grignard reactions, nucleophilic substitution reactions; Alcohols: esterification, dehydration and oxidation, reaction with sodium, phosphorus halides, ZnCl2/concentrated HCl, conversion of alcohols into aldehydes and ketones; Ethers: Preparation by Williamson’s Synthesis; Aldehydes and Ketones: oxidation, reduction, oxime and hydrazone formation; aldol condensation, Perkin reaction; Cannizzaro reaction; haloform reaction and nucleophilic addition reactions (Grignard addition); Carboxylic acids: formation of esters, acid chlorides and amides, ester hydrolysis; Amines: basicity of substituted anilines and aliphatic amines, preparation from nitro compounds, reaction with nitrous acid, azo coupling reaction of diazonium salts of aromatic amines, Sandmeyer and related reactions of diazonium salts; carbylamine reaction; Haloarenes: nucleophilic aromatic substitution in haloarenes and substituted haloarenes (excluding Benzyne mechanism and Cine substitution).

Carbohydrates

Classification: mono- and di-saccharides (glucose and sucrose); Oxidation, reduction, glycoside formation and hydrolysis of sucrose.

Amino acids and peptides

General structure (only primary structure for peptides) and physical properties

Properties and uses of some important polymers

Natural rubber, cellulose, nylon, Teflon and PVC

Practical organic chemistry

Detection of elements (N, S, halogens); Detection and identification of the following functional groups: hydroxyl (alcoholic and phenolic), carbonyl (aldehyde and ketone), carboxyl, amino and nitro; Chemical methods of separation of monofunctional organic compounds from binary mixtures.

 

JEE Advanced 2026 Syllabus for Mathematics

Interested candidates can check the topics included in JEE Advanced Mathematics in the table below.

Chapters

Units

Algebra

Algebra of complex numbers, addition, multiplication, conjugation, polar representation, properties of modulus and principal argument, triangle inequality, cube roots of unity, geometric interpretations.

Quadratic equations with real coefficients, relations between roots and coefficients, formation of quadratic equations with given roots, and symmetric functions of roots. Arithmetic, geometric and harmonic progressions, arithmetic, geometric and harmonic means, sums of finite arithmetic and geometric progressions, infinite geometric series, sums of squares and cubes of the first n natural numbers.

Logarithms and their properties.

Permutations and combinations, binomial theorem for a positive integral index, properties of binomial coefficients.

Matrices

Matrices as a rectangular array of real numbers, equality of matrices, addition, multiplication by a scalar and product of matrices, transpose of a matrix, determinant of a square matrix of order up to three, inverse of a square matrix of order up to three, properties of these matrix operations, diagonal, symmetric and skew-symmetric matrices and their properties, solutions of simultaneous linear equations in two or three variables.

Probability

Addition and multiplication rules of probability, conditional probability, Bayes' Theorem, independence of events, computation of probability of events using permutations and combinations.

Trigonometry

Trigonometric functions, their periodicity and graphs, addition and subtraction formulae, formulae involving multiple and sub-multiple angles, general solution of trigonometric equations.

Relations between sides and angles of a triangle, sine rule, cosine rule, half-angle formula and the area of a triangle, inverse trigonometric functions (principal value only).

Analytical geometry

Two dimensions: Cartesian coordinates, distance between two points, section formulae, shift of origin.

Equation of a straight line in various forms, angle between two lines, distance of a point from a line; Lines through the point of intersection of two given lines, equation of the bisector of the angle between two lines, concurrency of lines; Centroid, orthocentre, incentre and circumcentre of a triangle.

Equation of a circle in various forms, equations of tangent, normal and chord. Parametric equations of a circle, the intersection of a circle with a straight line or a circle, the equation of a circle through the points of intersection of two circles and those of a circle and a straight line.

Equations of a parabola, ellipse and hyperbola in standard form, their foci, directrices and eccentricity, parametric equations, equations of tangent and normal. Locus problems.

Three dimensions: Direction cosines and direction ratios, equation of a straight line in space, equation of a plane, distance of a point from a plane.

Differential calculus

Real valued functions of a real variable, into, onto and one-to-one functions, sum, difference, product and quotient of two functions, composite functions, absolute value, polynomial, rational, trigonometric, exponential and logarithmic functions. Limit and continuity of a function, limit and continuity of the sum, difference, product and quotient of two functions, L’Hospital rule of evaluation of limits of functions.

Even and odd functions, inverse of a function, continuity of composite functions, intermediate value property of continuous functions.

Derivative of a function, derivative of the sum, difference, product and quotient of two functions, chain rule, derivatives of polynomial, rational, trigonometric, inverse trigonometric, exponential and logarithmic functions.

Derivatives of implicit functions, derivatives up to order two, geometrical interpretation of the derivative, tangents and normals, increasing and decreasing functions, maximum and minimum values of a function, Rolle’s theorem and Lagrange’s mean value theorem.

Integral calculus

Integration as the inverse process of differentiation, indefinite integrals of standard functions, definite integrals and their properties, the fundamental theorem of integral calculus.

Integration by parts, integration by the methods of substitution and partial fractions, and application of definite integrals to the determination of areas involving simple curves.

Formation of ordinary differential equations, solution of homogeneous differential equations, the separation of variables method, and linear first-order differential equations.

Vectors

Addition of vectors, scalar multiplication, dot and cross products, scalar triple products and their geometrical interpretations.

 

JEE Advanced 2026 Exam Pattern

IIT Roorkee will release the JEE Advanced 2026 Exam Pattern on the official website. Candidates can check the exam pattern in the table below. The question paper will include 54 questions in each paper.

 

JEE Advanced 2026 Preparation Tips

Candidates who are preparing for the JEE Advanced 2026 exam can follow the tips below to prepare for the exam.

  • Prioritise Important Topics: Candidates should focus on high-scoring subjects and topics in the JEE Advanced syllabus. This helps maximise your overall score by concentrating on areas that carry more weight.
  • Practice Regularly: Candidates must solve many problems, including previous years' JEE Advanced Question Papers and mock tests. This practice helps familiarise you with the exam pattern and builds confidence.
  • Revise Thoroughly: Candidates should allocate regular time for revision in their study schedule. Revisit key concepts and formulas frequently to reinforce learning and retain information.
  • Seek Clarifications: Candidates should not hesitate to seek help from teachers, peers, or online resources if they encounter any doubts. Clarifying doubts promptly ensures a clear understanding of concepts.
  • Analyse Performance: Candidates should regularly evaluate their progress by analysing performance in practice tests and mock exams. Identify areas where mistakes are made and take corrective measures to avoid repeating them.
  • Manage Time Effectively: Candidates should practice solving questions within the stipulated time frame per the JEE Advanced exam pattern. Develop strategies to tackle different questions efficiently and allocate time wisely during the exam.
  • Stay Healthy and Focused: Candidates must maintain a healthy life and stay mentally prepared. A healthy body supports a healthy mind, vital for peak performance in exams like JEE Advanced.

Check Dropper's Strategy for JEE 2026: IIT JEE Main & Advanced Study Plan

 

JEE Advanced 2026 Admit Card

IIT Roorkee is expected to release JEE Advanced 2026 Admit Card in May 2026, in online mode. Candidates who will complete their registration can download JEE Advanced 2026 from the official website at jeeadv.ac.in.

 

How to Download JEE Advanced 2026 Admit Card?

Registered candidates can download JEE Advanced 2026 Admit Card by following the steps below.

  • Go to the official website at jeeadv.ac.in.
  • Find and click on JEE Advanced 2026 Admit Card link.
  • Enter the required credentials.
  • Click on submit; the admit card will be displayed on the screen.
  • Download the admit card and take a printout of it.

 

JEE Advanced 2026 Exam Centres

IIT Roorkee will release the complete list of JEE Advanced 2026 Exam Centres list along with the official website at the official website. Candidates can check the country and state-wise JEE Advanced 2026 exam centres in the table below.

 

JEE Advanced 2026 Result

JEE Advanced 2026 Result is expected to be released in June 2026. Candidates who will appear for the exam can download the result at the official website at jeeadv.ac.in. The credentials require to check JEE Advanced 2026 Result are the registration number and date of birth. Qualified candidates can participate in JoSAA Counselling process. The result is released in both the form of marks and ranks. The JEE Advanced 2026 Mark vs Rank indicates candidates' scores translated into a specific rank in the exam.

 

JEE Advanced 2026 Cutoff

IIT Roorkee will release JEE Advanced 2026 Cutoff after the declaration of JEE Advanced Result 2026. The cutoff is the minimum marks to be secured to qualify JEE Advanced 2026 exam. Candidates can refer to the previous years’ JEE Advanced Cutoff for different categories in the table below.

 

JEE Advanced Marks vs Rank 2026

Candidates can check the rank they can achieve based on their secured marks. JEE Advanced Marks vs Rank 2026 will be released after the examination. Till then, they can refer to the previous year’s JEE Advanced Marks vs Rank.

JEE Advanced Marks vs Rank

JEE Advanced 2025 Marks

JEE Advanced 2025 AIR (All India Rank)

278+

1 to 101

262 to 234

201 to 500

234 to 208

501-1000

208 to 193

1001-1500

193 to 181

1501-2000

179 to 172

2001-2500

172 to 165

2501-3000

165 to 154

3001-4000

154 to 149

4001-4500

149 to 145

4501-5000

145 to 135

5001-6701

135 to 120

6801-9901

120 to 110

1001-13001

109 to 105

13101-14901

104 to 100

15001-17001

99 to 94

17101-19901

94 to 86

2001-24901

85 to 80

25001-29101

79 to 74

29201-33801

 

JEE Advanced 2026 Counselling

Candidates who will qualify JEE Advanced 2026 exam can participate in the counselling process. JoSAA conducts JEE Advanced counselling for admission to the IITs, and NITs, and other institutes. Candidates can follow the steps below for JEE Advanced Counselling.

  • Register for counselling on the JoSAA portal using your JEE credentials.
  • Fill in your institute and course preferences; lock your choices before the deadline.
  • Participate in mock allotment rounds to gauge possible seat allocation and revise choices if needed.
  • JoSAA conducts multiple seat allotment rounds; seats are allocated based on merit, category, and availability.
  • Download the provisional allotment letter if allotted a seat, pay the seat acceptance fee, and upload documents for online verification.
  • Once the documents are verified and the fee is paid, final admission is confirmed, and candidates must report to their allotted IIT to complete further admission procedures.

 

JEE Advanced 2026 FAQs

Which IIT will conduct JEE Advanced 2026?

JEE Advanced 2026 will be conducted by IIT Roorkee. JEE Main 2026 qualified candidates who achieve rank among the top 2.5 lakh candidates could apply for the JEE Advanced exam. Candidates can appear in JEE Advanced two consecutive times. JEE Advanced 2026 will be held in CBT mode with two papers.

Is the JEE Advanced 2026 syllabus released?

JEE Advanced Syllabus 2026: IIT Roorkee will release the PDF of the JEE Advanced 2026 syllabus. Candidates can now download the syllabus for JEE Advanced 2026 preparation. The JEE Advanced syllabus 2026 remains the same as the previous year and covers topics the candidates study in classes 11 and 12.

What is the cutoff for JEE Advanced 2026?

The minimum marks required to qualify for JEE Advanced are 35% for the general category, 31.5% for OBC-NCL/EWS, and 17.5% for SC/ST/PwD candidates. While the JEE Advanced cutoff is the minimum mark required for passing the IIT JEE Advanced exam, each institute's admission cutoff will differ.

Is JEE 2026 tough?

JEE 2026 can be easy or challenging, depending on whether the NTA makes the exam moderate or difficult. Preparing carefully for every scenario is crucial. You should not be concerned with these issues throughout your JEE Advanced Preparation 2026.

How many days are there for JEE Advanced 2026?

The organizing institute, IIT Roorkee, is set to conduct the JEE Advanced 2026 examination tentatively in May 2026. The exam will be held in two sessions: Paper 1 is scheduled from 9:00 AM to 12:00 PM IST, and Paper 2 will occur from 2:30 PM to 5:30 PM IST.

Is the 75 per cent criteria removed for 2026?

No, the 75% criteria have not been removed from JEE 2026. 5. Is 75% criteria removed from JEE 2026 for OBC? No, OBC category students also require a minimum of 75% marks for admission to NITs, IIITs and GFTIs and to appear in JEE Advanced if they are amongst the top 2,50,000 JEE Main rankers.

Is JEE Advanced 2026 going to be tough?

JEE Advanced exam is considered one of India's most difficult. Only the top 2,50,000 JEE Main qualifiers are allowed to appear in the exam. The exam is considered too challenging due to the testing format.

How many seats are there in IIT 2026?

JoSAA Seat Matrix 2026: JoSAA will release the JoSAA 2026 seat matrix online. Candidates can check the JoSAA 2026 seat matrix at josaa.nic.in. As per the previous year's JoSAA seat matrix, the total seats in IITs are 17740, while the number of seats in NITs and IIITs is 24229 and 8546, respectively.

Who is eligible for JEE Advanced 2026?

Candidates born on or after 1st October 2001 are eligible for JEE Advanced 2026. Candidates in the PwD, ST, or SC categories are granted a 5-year relaxation in the age limit criteria, making those born on or after 1st October 1996 eligible for JEE Advanced 2026.

Can 2nd dropper give JEE Advanced 2026?

Yes, a second-time dropper can appear for JEE Advanced 2026. Dropper candidates are allowed a maximum of two consecutive attempts for JEE Advanced, similar to regular candidates. Any previous attempts count towards this limit.