JEE Main 2027 Syllabus
JEE Main Paper 1: Mathematics Syllabus
Unit 01: Sets, Relations, and Functions
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Sets: Sets and their representation; union, intersection, and complement of sets and their algebraic properties; power set.
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Relations & Functions: Types of relations, equivalence relations; functions, one-one, into, and onto functions; composition of functions.
Unit 02: Complex Numbers and Quadratic Equations
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Complex Numbers: Complex numbers as ordered pairs of reals; representation in the form $a + ib$ and on the Argand plane; algebra of complex numbers; modulus and argument (amplitude).
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Quadratic Equations: Quadratic equations in real and complex number systems and their solutions; relation between roots and coefficients; nature of roots; formation of quadratic equations with given roots.
Unit 03: Matrices and Determinants
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Matrices: Types of matrices, matrix algebra, transpose, adjoint, and inverse of a square matrix.
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Determinants: Determinants of order 2 and 3; properties and evaluation; area of triangles using determinants.
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Systems of Equations: Test of consistency and solution of simultaneous linear equations in two or three variables using matrix inversion and Cramer's rule.
Unit 04: Permutations and Combinations
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Counting Principles: Fundamental principle of counting.
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Permutations & Combinations: Meaning of P(n, r) and C(n, r); simple operational applications and problem-solving.
Unit 05: Binomial Theorem
Unit 06: Sequences and Series
Unit 07: Limit, Continuity, and Differentiability
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Functions & Graphs: Real-valued functions, algebra of functions (polynomial, rational, trigonometric, logarithmic, and exponential); inverse functions; graphs of simple functions.
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Limits & Continuity: Standard limits, continuity, and differentiability.
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Differentiation: Sum, difference, product, and quotient rules; differentiation of trigonometric, inverse trigonometric, logarithmic, exponential, composite, and implicit functions; second-order derivatives.
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Applications of Derivatives: Rate of change of quantities; monotonic increasing and decreasing functions; maxima and minima of functions of a single variable.
Unit 08: Integral Calculus
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Indefinite Integrals: Integration as an antiderivative; fundamental integrals involving algebraic, trigonometric, exponential, and logarithmic functions; integration by substitution, by parts, and by partial fractions; trigonometric identities in integration.
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Standard Forms: Evaluation of integrals of the forms:
∫dx/ x² + a², ∫dx/ √x² ± a², ∫dx/ √a² - x², ∫dx/ √a² - x², ∫dx/ ax² + bx + c, ∫dx/√ax² ± bx + c, ∫(px + q) dx/ ax² + bx + c, ∫(px + q) dx/ √ax² + bx + c, ∫√a² + x² dx, ∫√x² - a² dx
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Definite Integrals: Fundamental theorem of calculus; properties of definite integrals; evaluation of definite integrals; area bounded by standard curves.
Unit 09: Differential Equations
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Ordinary Differential Equations: Order and degree of a differential equation.
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Solutions: Solution by separation of variables; solutions of homogeneous differential equations; first-order linear differential equations of the form:
dy/ dx + p(x)y = q(x)
Unit 10: Coordinate Geometry
2D Coordinate System: Cartesian coordinates, distance formula, section formula, locus and its equation, slope of a line, parallel/perpendicular lines, intercepts.
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Straight Lines: Standard forms of equations of a line; intersection of lines; angle between two lines; condition of concurrence of three lines; perpendicular distance of a point from a line; coordinates of centroid, orthocenter, and circumcenter of a triangle.
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Circles & Conic Sections: Standard and general equations of a circle; radius and center; diameter form of a circle equation; intersection of a line and a circle; standard equations and properties of parabola, ellipse, and hyperbola.
Unit 11: Three-Dimensional Geometry
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Points & Lines in Space: Direction cosines and direction ratios; distance between two points; section formula; angle between two intersecting lines.
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Lines: Vector and Cartesian equations of a line; skew lines and shortest distance between them.
Unit 12: Vector Algebra
Unit 13: Statistics and Probability
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Statistics: Measures of dispersion; calculation of mean, median, mode, variance, and standard deviation for grouped and ungrouped data.
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Probability: Probability of an event; addition and multiplication theorems; conditional probability; Bayes' theorem; probability distributions of a random variable.
Unit 14: Trigonometry
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Identities & Equations: Fundamental trigonometric identities and functions.
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Inverse Trigonometry: Inverse trigonometric functions, domains, ranges, and fundamental properties.
JEE Main Paper 1: Physics Syllabus
Unit 01: Physics and Measurement
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Units & Errors: Units of measurement, systems of units, SI units, fundamental and derived units; least count, significant figures, errors in measurement.
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Dimensional Analysis: Dimensions of physical quantities, dimensional analysis, and its applications.
Unit 02: Kinematics
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1D Motion: Frame of reference, motion in a straight line, position-time graph, speed and velocity, uniform and non-uniform motion, average speed and instantaneous velocity, uniformly accelerated motion, velocity-time graph, equations of motion for uniformly accelerated bodies.
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Relative & 2D Motion: Relative velocity; motion in a plane, projectile motion, uniform circular motion.
Unit 03: Laws of Motion
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Newton's Laws: Force and inertia, Newton’s first law; momentum, Newton’s second law; impulse, Newton’s third law.
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Momentum & Friction: Law of conservation of linear momentum and its applications; equilibrium of concurrent forces; static and kinetic friction, laws of friction, rolling friction.
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Circular Dynamics: Dynamics of uniform circular motion; centripetal force and applications (motion of vehicles on level circular roads and banked roads).
Unit 04: Work, Energy, and Power
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Work & Energy Principles: Work done by constant and variable forces; kinetic and potential energy; work-energy theorem; power.
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Conservation & Motion: Potential energy of a spring; conservation of mechanical energy; conservative and non-conservative forces; motion in a vertical circle.
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Collisions: Elastic and inelastic collisions in one and two dimensions.
Unit 05: Rotational Motion
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Center of Mass: Center of mass of a two-particle system and a rigid body.
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Rotational Dynamics: Moment of a force, torque, angular momentum, conservation of angular momentum and its applications.
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Moment of Inertia: Moment of inertia, radius of gyration, values of moments of inertia for simple geometrical shapes; parallel and perpendicular axis theorems with applications.
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Rigid Body Dynamics: Equilibrium of rigid bodies; equations of rotational motion; comparison of linear and rotational motions.
Unit 06: Gravitation
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Gravitational Fields: Universal law of gravitation; acceleration due to gravity and its variation with altitude and depth.
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Planetary Motion & Potential: Kepler’s laws of planetary motion; gravitational potential and gravitational potential energy.
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Satellites: Escape velocity, orbital velocity, time period, and energy of a satellite.
Unit 07: Properties of Solids and Liquids
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Elasticity: Elastic behavior, stress-strain relationship, Hooke’s Law, Young’s modulus, bulk modulus, and modulus of rigidity.
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Fluids in Motion & Rest: Pressure due to a fluid column, Pascal’s law and its applications, effect of gravity on fluid pressure; viscosity, Stokes' law, terminal velocity, streamline and turbulent flow, critical velocity, Bernoulli’s principle and its applications.
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Surface Tension: Surface energy and surface tension, angle of contact, excess pressure across curved surfaces; applications (drops, bubbles, capillary rise).
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Thermal Properties: Heat, temperature, thermal expansion, specific heat capacity, calorimetry, change of state, latent heat.
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Heat Transfer: Modes of heat transfer (conduction, convection, and radiation).
Unit 08: Thermodynamics
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Laws of Thermodynamics: Thermal equilibrium and the zeroth law (concept of temperature); heat, work, and internal energy; first law of thermodynamics, isothermal and adiabatic processes.
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Reversibility: Second law of thermodynamics; reversible and irreversible processes.
Unit 09: Kinetic Theory of Gases
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Gas Laws & Postulates: Equation of state of a perfect gas; work done in compressing a gas; assumptions of kinetic theory, concept of pressure, kinetic interpretation of temperature, RMS speed of gas molecules.
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Energy Distribution: Degrees of freedom, law of equipartition of energy and its application to specific heat capacities; mean free path, Avogadro’s number.
Unit 10: Oscillations and Waves
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Oscillations: Periodic motion, period, frequency, displacement as a function of time; Simple Harmonic Motion (SHM) and its equation, phase; oscillations of a spring (restoring force, force constant, energy in SHM); simple pendulum and derivation of its time period.
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Wave Motion: Longitudinal and transverse waves, speed of a travelling wave, progressive wave equation; principle of superposition, reflection of waves, standing waves in strings and organ pipes, fundamental modes and harmonics, beats.
Unit 11: Electrostatics
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Charges & Fields: Conservation of charge, Coulomb’s law (forces between two and multiple charges), superposition principle, continuous charge distribution; electric field due to a point charge, field lines, electric dipole, electric field due to a dipole, torque on a dipole in a uniform electric field.
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Gauss’s Law: Electric flux; Gauss’s law and its applications (infinitely long wire, infinite plane sheet, uniformly charged thin spherical shell).
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Potential & Energy: Electric potential due to a point charge, dipole, and charge systems; potential difference, equipotential surfaces; electrical potential energy of a two-charge system and dipole.
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Capacitance: Conductors, insulators, dielectrics, and electric polarization; capacitors, capacitance, combinations in series and parallel; parallel plate capacitor with and without dielectric; energy stored in a capacitor.
Unit 12: Current Electricity
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Conduction: Electric current, drift velocity, mobility and their relation to current; Ohm’s law, electrical resistance, I-V characteristics (ohmic and non-ohmic); electrical energy, power, resistivity, and conductivity; temperature dependence of resistance; series and parallel resistor combinations.
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Circuits & Cells: Internal resistance, potential difference, and EMF of a cell; combinations of cells in series and parallel; Kirchhoff’s laws and applications; Wheatstone bridge, metre bridge.
Unit 13: Magnetic Effects of Current and Magnetism
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Magnetic Fields & Forces: Biot-Savart law (circular loop application); Ampère’s law (straight wire and solenoid); force on moving charges in magnetic and electrical fields; force on a current-carrying conductor; force between parallel currents (definition of ampere).
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Torque & Measuring Instruments: Torque on a current loop; Moving Coil Galvanometer, its sensitivity, and conversion to ammeter and voltmeter.
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Magnetism & Matter: Current loop as a magnetic dipole; bar magnet as an equivalent solenoid, magnetic field lines, field along axial and equatorial lines; torque on a dipole; magnetic materials (diamagnetic, paramagnetic, and ferromagnetic substances); effect of temperature on magnetic properties.
Unit 14: Electromagnetic Induction and Alternating Currents
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Electromagnetic Induction: Faraday’s law, induced EMF and current, Lenz’s law, eddy currents; self and mutual inductance.
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Alternating Currents: Peak and RMS values of AC voltage/current; reactance and impedance; LCR series circuits, resonance, power in AC circuits, wattless current; AC generators and transformers.
Unit 15: Electromagnetic Waves
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Properties & Spectrum: Displacement current; electromagnetic waves and their transverse nature; electromagnetic spectrum (radio waves, microwaves, infrared, visible, ultraviolet, X-rays, gamma rays) and their applications.
Unit 16: Optics
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Ray Optics: Reflection at spherical mirrors, mirror formula; refraction at plane and spherical surfaces, thin lens formula, lens maker's formula, total internal reflection (TIR) and applications; magnification, power of a lens, combination of thin lenses; refraction through a prism.
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Optical Instruments: Microscopes and astronomical telescopes (reflecting and refracting) and their magnifying powers.
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Wave Optics: Wavefronts and Huygens’ principle; laws of reflection and refraction via Huygens' principle; interference (Young’s double-slit experiment, fringe width, coherent sources); diffraction (single slit, width of central maximum); polarization (plane-polarized light, Brewster’s law, polaroids).
Unit 17: Dual Nature of Matter and Radiation
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Photoelectric Effect: Dual nature of radiation, Hertz and Lenard’s observations, Einstein’s photoelectric equation, particle nature of light.
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Matter Waves: De Broglie relation and wave nature of matter.
Unit 18: Atoms and Nuclei
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Atomic Models: Alpha-particle scattering experiment, Rutherford’s model, Bohr model, energy levels, hydrogen spectrum.
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Nuclear Physics: Nuclear composition and size, atomic masses, mass-energy relation, mass defect, binding energy per nucleon vs. mass number, nuclear fission and fusion.
Unit 19: Electronic Devices
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Semiconductors: semiconductor diode: I-V characteristics in forward and reverse bias, diode as a rectifier; I-V characteristics of LED, the photodiode, solar cell, Zener diode, Zener diode as a voltage regulator.
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Logic Gates: Basic logic gates (OR, AND, NOT, NAND, NOR).
Unit 20: Experimental Skills
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Mechanics & Properties of Matter:
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Vernier Calipers (measuring internal/external diameter and depth of a vessel).
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Screw Gauge (measuring thickness/diameter of thin sheets and wires).
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Simple Pendulum (energy dissipation via amplitude vs. time plot).
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Metre Scale (mass determination using the principle of moments).
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Young’s Modulus of elasticity of a metallic wire.
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Surface Tension of water by capillary rise and effect of detergents.
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Coefficient of Viscosity via terminal velocity of a spherical body.
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Heat & Waves:
8. Speed of sound in air at room temperature using a resonance tube.
9. Specific heat capacity of solids and liquids using the method of mixtures.
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Electricity & Magnetism:
10. Resistivity of a wire material using a metre bridge.
11. Resistance of a wire using Ohm’s law.
12. Resistance and figure of merit of a galvanometer by the half-deflection method.
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Optics:
13. Focal length of convex mirror, concave mirror, and convex lens using the parallax method.
14. Angle of deviation vs. angle of incidence plot for a triangular prism.
15. Refractive index of a glass slab using a travelling microscope.
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Semiconductors & Components:
16. Characteristic curves of a P-N junction diode in forward and reverse bias.
17. Characteristic curves of a Zener diode and determination of reverse breakdown voltage.
18. Component identification (diode, LED, resistor, capacitor) from a mixed collection.
JEE Main Paper 1: Chemistry Syllabus
Section A: Physical Chemistry:
Unit 01: Some Basic Concepts in Chemistry
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Matter & Stoichiometry: Matter and its nature, Dalton's atomic theory; concept of atom, molecule, element, and compound; laws of chemical combination; atomic and molecular masses, mole concept, molar mass, percentage composition, empirical and molecular formulae.
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Chemical Reactions: Balancing chemical equations, stoichiometric calculations.
Unit 02: Atomic Structure
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Early Models & Quantum Theory: Nature of electromagnetic radiation, photoelectric effect; hydrogen atom spectrum, Bohr model (postulates, derivations of electron energy, and orbital radii), limitations of Bohr's model.
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Quantum Mechanical Concepts: Dual nature of matter, De Broglie relationship, Heisenberg uncertainty principle; concept of atomic orbitals as one-electron wave functions, variation of Ψ and Ψ² with r for 1s and 2s orbitals.
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Quantum Numbers & Orbitals: Principal , azimuthal/angular momentum , magnetic, and spin quantum numbers; shapes of s, p, and d orbitals; rules for electron filling (Aufbau principle, Pauli exclusion principle, Hund's rule); electronic configurations and extra stability of half-filled and completely filled subshells.
Unit 03: Chemical Bonding and Molecular Structure
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Ionic Bonding: Kossel-Lewis approach, formation of ionic bonds, factors affecting ionic bond formation, calculation of lattice enthalpy.
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Covalent Bonding: Electronegativity, Fajan's rules, dipole moment; Valence Shell Electron Pair Repulsion (VSEPR) theory and shapes of simple molecules.
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Modern Bonding Theories:
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Valence Bond Theory (VBT): Postulates, hybridization involving s, p, and d orbitals, resonance.
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Molecular Orbital Theory (MOT): Linear Combination of Atomic Orbitals (LCAO), types of molecular orbitals (sigma, pi), bonding and antibonding orbitals; MO electronic configuration of homonuclear diatomic molecules; bond order, bond length, and bond energy.
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Intermolecular Forces: Elementary idea of metallic bonding, hydrogen bonding (types and applications).
Unit 04: Chemical Thermodynamics
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Fundamentals: System and surroundings, extensive and intensive properties, state functions, path functions, types of thermodynamic processes.
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First Law of Thermodynamics: Concept of work (w), heat (q), internal energy (U), and enthalpy (H); heat capacity, molar heat capacity; Hess's law of constant heat summation; standard enthalpies of formation, combustion, bond dissociation, atomization, sublimation, phase transition, ionization, solution, and hydration.
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Second Law of Thermodynamics: Spontaneity of processes, ΔS of the universe and ΔG of the system as criteria for spontaneity. ΔG° (standard Gibbs energy change) and equilibrium constant.
Unit 05: Solutions
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Concentration Terms: Molality, molarity, mole fraction, mass percentage, volume percentage.
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Vapour Pressure & Ideal Solutions: Vapour pressure of solutions, Raoult's law; ideal and non-ideal solutions, vapour pressure-composition plots.
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Colligative Properties: Relative lowering of vapour pressure, elevation of boiling point, depression of freezing point, osmotic pressure; determination of molecular mass using colligative properties.
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Abnormal Molar Masses: Association and dissociation of solutes, van 't Hoff factor and its calculations.
Unit 06: Equilibrium
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Physical Equilibrium: Dynamic nature of equilibrium; solid-liquid, liquid-gas, gas-gas, and solid-gas equilibria; Henry's law.
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Chemical Equilibrium: Law of chemical equilibrium, equilibrium constants (Kp and Kc) and their significance, the significance of ΔG and ΔG° in chemical equilibrium,factors affecting equilibrium (concentration, pressure, temperature, addition of inert gas), effect of catalyst, Le Chatelier’s principle.
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Ionic Equilibrium: Weak and strong electrolytes, degree of ionization; acid-base theories (Arrhenius, Brønsted-Lowry, Lewis); ionization of acids and bases, acid-base equilibria (multistage ionization) and ionization constants; autoionization of water, pH scale, common ion effect; salt hydrolysis and pH calculation of salt solutions; solubility of sparingly soluble salts, solubility product, buffer solutions and buffer capacity.
Unit 07: Redox Reactions and Electrochemistry
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Redox Reactions: Electronic concept of oxidation and reduction, oxidation number rules, balancing redox equations (ion-electron and oxidation number methods).
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Electrolytic Conduction: Metallic vs. electrolytic conduction, conductance, conductivity, molar conductivity and its variation with concentration; Kohlrausch's law and its applications.
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Electrochemical Cells: Galvanic and electrolytic cells; types of electrodes, standard electrode potentials, half-cell and overall cell reactions, EMF of a cell; Nernst equation and applications; relation between cell potential cell and Gibbs free energy, commercial cells (dry cell, lead-acid accumulator, fuel cells).
Unit 08: Chemical Kinetics
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Reaction Rates: Rate of a chemical reaction, average and instantaneous rate; factors affecting rate (concentration, temperature, pressure, catalyst); rate law, rate constant and its units; order and molecularity of reactions.
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Integrated Rate Equations: Differential and integrated forms of zero-order and first-order reactions; half-life.
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Reaction Dynamics: Temperature dependence of rate constants, Arrhenius equation, activation energy; collision theory of bimolecular gaseous reactions (qualitative concept).
Section B: Inorganic Chemistry
Unit 09: Classification of Elements and Periodicity in Properties
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Periodic Classification: Modern periodic law, long form of the periodic table; division into s, p, d, and f blocks.
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Periodic Trends: Periodic trends in physical and chemical properties: atomic and ionic radii, ionization enthalpy, electron gain enthalpy, valence, oxidation states, and chemical reactivity.
Unit 10: p-Block Elements (Groups 13 to 18)
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General Trends: Electronic configurations, general trends in physical and chemical properties across periods and down groups.
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Anomalous Properties: Unique behavior and anomalous properties of the first element of each group.
Unit 11: d- and f-Block Elements
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Transition Elements (d-Block): General electronic configuration, occurrence, and general characteristics; trends in first-row transition elements: metallic character, atomic radii, ionization enthalpy, variable oxidation states, color, catalytic properties, magnetic properties, complex formation, formation of interstitial compounds, and alloy formation.
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Important Compounds: Preparation, properties, and oxidizing actions of Potassium Dichromate and Potassium Permanganate.
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Inner Transition Elements (f-Block):
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Lanthanoids: Electronic configuration, oxidation states, and lanthanoid contraction (causes and consequences).
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Actinoids: Electronic configuration and general oxidation states.
Unit 12: Coordination Compounds
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Structure & Nomenclature: Werner's theory, ligands, coordination number, denticity, chelation; IUPAC nomenclature of mononuclear coordination compounds; isomerism (structural and stereoisomerism).
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Bonding & Properties: Valence Bond Theory (VBT) and basic concepts of Crystal Field Theory (CFT); splitting of d-orbitals in octahedral and tetrahedral fields; magnetic properties and color of coordination complexes.
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Applications: Role of coordination compounds in qualitative chemical analysis, metallurgy/metal extraction, and biological systems
Section C: Organic Chemistry
Unit 13: Purification and Characterisation of Organic Compounds
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Purification Methods: Principles and applications of crystallization, sublimation, distillation (simple, fractional, steam, under reduced pressure), differential extraction, and chromatography (column, thin-layer, paper).
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Qualitative Analysis: Detection of extra elements (Nitrogen, Sulphur, Phosphorus, and Halogens) via Lassaigne's test.
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Quantitative Analysis: Principles of estimation of Carbon, Hydrogen, Nitrogen (Dumas and Kjeldahl methods), Halogens (Carius method), Sulphur, and Phosphorus; determination of empirical and molecular formulae with calculations.
Unit 14: Some Basic Principles of Organic Chemistry
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Structure & Hybridization: Tetravalency of carbon, hybridization (s, p), molecular shapes; classification of organic compounds based on functional groups.
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Nomenclature & Isomerism: Trivial and IUPAC nomenclature; structural isomerism (chain, position, functional, metamerism, tautomerism) and stereoisomerism (geometrical and optical).
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Reaction Mechanisms: Homolytic and heterolytic bond fission; structure, shape, and stability of reaction intermediates (carbocations, carbanions, free radicals); electrophiles and nucleophiles.
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Electronic Effects: Inductive effect , electromeric effect, resonance/mesomeric effect, and hyperconjugation.
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Reaction Types: Common types of organic reactions (substitution, addition, elimination, and rearrangement).
Unit 15: Hydrocarbons
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Alkanes: Nomenclature, preparation methods, physical and chemical properties; conformations of ethane (Sawhorse and Newman projections); mechanism of free-radical halogenation.
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Alkenes: Nomenclature, preparation, geometrical isomerism, electrophilic addition reactions: addition of halogens, water and hydrogen halides (Markovnikov's rule and peroxide/Kharasch effect); ozonolysis and polymerization.
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Alkynes: Nomenclature, preparation, physical and chemical properties; acidic nature of terminal alkynes; addition reactions (halogens, water); linear and cyclic polymerization.
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Aromatic Hydrocarbons: Nomenclature, structure of benzene, resonance and aromaticity (Hückel's rule); mechanism of electrophilic aromatic substitution (halogenation, nitration, sulphonation, Friedel-Crafts alkylation and acylation); directive influence of functional groups in mono-substituted benzenes.
Unit 16: Organic Compounds Containing Halogens (Haloalkanes & Haloarenes)
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Haloalkanes & Haloarenes: General methods of preparation, physical properties, chemical reactions, nature of the C--X bond; mechanisms of nucleophilic substitution
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Polyhalogen Compounds: Environmental effects and uses of chloroform, iodoform, freons, and DDT.
Unit 17: Organic Compounds Containing Oxygen
Unit 18: Organic Compounds Containing Nitrogen
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Amines: Nomenclature, classification, structure, and preparation methods; physical properties, basic character and factors affecting basicity (inductive, steric, and solvation effects); identification tests for primary, secondary, and tertiary amines (Hinsberg test, carbylamine reaction, reaction with nitrous acid).
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Diazonium Salts: Preparation, chemical reactions (sandmeyer, Gattermann, azo coupling), and synthetic utility in aromatic synthesis.
Unit 19: Biomolecules
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Carbohydrates: Classification (aldoses and ketoses); monosaccharides (structure and configuration of D-glucose and D-fructose); oligosaccharides (glycosidic linkage in sucrose, lactose, maltose); polysaccharides (starch, cellulose, glycogen).
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Proteins: Amino acids (elementary idea, essential/non-essential amino acids, zwitterion structure), peptide bond, polypeptides; primary, secondary, tertiary, and quaternary structures of proteins (qualitative overview); denaturation of proteins; enzymes.
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Vitamins & Hormones: Classification, biological functions, and deficiency diseases of vitamins; general introduction and biological functions of hormones.
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Nucleic Acids: Chemical composition of DNA and RNA (nucleosides, nucleotides, phosphodiester linkage); double-helical structure of DNA; biological functions of nucleic acids (replication and protein synthesis).
Unit 20: Principles Related to Practical Chemistry
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Qualitative Organic Analysis:
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Detection of extra elements in organic compounds.
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Functional group identification: Hydroxyl (alcoholic and phenolic), Carbonyl (aldehyde and ketone), Carboxyl, and Amino groups.
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Organic & Inorganic Preparations:
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Inorganic: Mohr's salt, Potash alum.
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Organic: Acetanilide, p-nitroacetanilide, Aniline yellow, Iodoform.
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Titrimetric Exercises: Acid-base titrations with indicators; redox titrations:
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Oxalic acid vs. KMnO4
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Mohr's salt vs.KMnO4
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Qualitative Salt Analysis (Systematic Cation & Anion Detection):
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Cations: Pb 2+, Cu 2+, Al3+ , Fe 3+ , Zn 2+ , Ni2+ , Ca 2+ , Ba 2+ , Mg 2+ , NH4+
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Anions: CO3 2− , S 2-, SO4 2− , NO3 -, NO2 -, Cl -, Br -, I - (insoluble salts excluded).
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Physical Chemistry Experiments:
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Enthalpy of solution of CuSO4 2
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Enthalpy of neutralization of a strong acid and strong base.
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Preparation of lyophilic and lyophobic sols.
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Kinetic study of the reaction between iodide ions and hydrogen peroxide at room temperature.
JEE Main Paper 2 Syllabus
Paper 2A (B.Arch.)-Mathematics
Unit 01: Sets, Relations, and Functions
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Sets: Representation, types of sets, subset, power set, operations (union, intersection, complement), and algebraic properties.
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Relations: Definition, types of relations (reflexive, symmetric, transitive), and equivalence relations.
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Functions: Domain, co-domain, and range; one-one, into, and onto mappings; composite functions.
Unit 02: Complex Numbers and Quadratic Equations
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Complex Numbers: Ordered pairs of reals, algebraic form (a + ib), Argand plane representation, algebra of complex numbers, modulus, and argument (amplitude).
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Quadratic Equations: Solutions in real and complex number systems, relation between roots and coefficients, nature of roots, and formation of equations with given roots.
Unit 03: Matrices and Determinants
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Matrices: Types, algebraic operations, transpose, adjoint, and inverse of square matrices (order 2 and 3).
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Determinants: Evaluation of determinants, properties, and area of triangles using determinants.
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Linear Systems: Test of consistency and solving simultaneous linear equations in two or three variables using matrix inversion or Cramer's rule.
Unit 04: Permutations and Combinations
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Combinatorics: Fundamental principle of counting (addition and multiplication principles).
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Formulas & Applications: Meaning and calculation of P(n, r) and C(n, r) with straightforward word-problem applications.
Unit 05: Binomial Theorem and Its Simple Applications
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Expansion: Binomial theorem for positive integral indices.
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Key Terms: Finding the general term, middle term(s), and simple coefficient-based problems.
Unit 06: Sequences and Series
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Progressions: Arithmetic Progression (A.P.) and Geometric Progression (G.P.).
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Means: Insertion of Arithmetic Means (A.M.) and Geometric Means (G.M.) between two numbers.
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Properties: Algebraic relation between A.M. and G.M
Unit 07: Limit, Continuity, and Differentiability
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Functions: Real-valued functions; polynomial, rational, trigonometric, exponential, and logarithmic functions; inverse functions and graphs.
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Limits & Continuity: Evaluating limits, algebra of limits, testing continuity of functions.
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Differentiation: Sum, difference, product, and quotient rules; derivatives of trigonometric, inverse trigonometric, exponential, logarithmic, composite, and implicit functions; second-order derivatives.
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Applications of Derivatives (AOD): Rate of change, monotonic behavior (increasing/decreasing functions), and finding maxima/minima for functions of a single variable.
Unit 08: Integral Calculus
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Indefinite Integration: Anti-derivatives; integration by substitution, parts, and partial fractions.
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Standard Forms: Evaluation of standard algebraic/quadratic/radical integrand types:
∫dx/ x² + a², ∫dx/ √x² ± a², ∫dx/ √a² - x², ∫dx/ √a² - x², ∫dx/ ax² + bx + c, ∫dx/√ax² ± bx + c, ∫(px + q) dx/ ax² + bx + c, ∫(px + q) dx/ √ax² + bx + c, ∫√a² + x² dx, ∫√x² - a² dx
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Definite Integration: Fundamental theorem of calculus and standard properties of definite integrals.
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Area Bounded by Curves: Calculating enclosed areas between simple standard curves and coordinate axes.
Unit 09: Differential Equations
Unit 10: Coordinate Geometry
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2D Basics: Distance formula, section formula, locus, slope, parallel/perpendicular conditions, intercept form.
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Straight Lines: Equations of lines in various forms, point of intersection, angle between lines, concurrency of three lines, perpendicular distance from a point, and coordinates of triangle centers (centroid, orthocenter, circumcenter).
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Circles: Standard and general equations, radius and center, diameter form, and line-circle intersection.
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Conic Sections: Standard equations, eccentricity, and properties of Parabolas, Ellipses, and Hyperbolas.
Unit 11: Three-Dimensional Geometry (3D)
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Coordinates & Direction: Coordinates in space, distance formula, section formula, direction cosines (DC) and direction ratios (DR).
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Lines in Space: Equation of a straight line in vector and Cartesian forms, angle between intersecting lines, condition for skew lines, and shortest distance between skew lines.
Unit 12: Vector Algebra
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Basics: Vectors and scalars, addition/subtraction, magnitude, and components in 2D and 3D space.
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Products: Dot product (scalar product), cross product (vector product), and their geometric applications.
Unit 13: Statistics and Probability
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Statistics: Measures of central tendency (mean, median, mode) and dispersion (mean deviation, standard deviation, and variance for grouped/ungrouped data).
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Probability: Classical probability, addition and multiplication theorems, conditional probability, Bayes' theorem, and probability distributions of discrete random variables.
Unit 14: Trigonometry
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Identities: Fundamental trigonometric ratios, compound angles, multiple/submultiple angles.
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Inverse Trigonometry: Domain, range, principal value branches, and fundamental properties of inverse trigonometric functions.
JEE Main Paper 2A (B.Arch) Aptitude Test Syllabus
Unit 01: Awareness of Architecture, Built Environment & General Mental Ability
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Architectural Awareness & Heritage:
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Famous national and international architects and their iconic creations.
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Historic and contemporary landmark buildings, monuments, and world heritage sites.
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Common architectural terms, terminology, styles, and basic structural forms.
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Building Materials & Textures:
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Identification and properties of construction materials (e.g., brick, stone, timber, concrete, glass, steel).
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Visual recognition of natural and artificial surface textures relevant to architecture and the built environment.
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2D to 3D Spatial Visualization:
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Visualizing 3D solid objects and structures from given 2D orthographic projections (plans and elevations).
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Identifying different viewpoints and sides (top view, front view, side/profile view) of complex 3D objects.
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Surface counting, hidden edge identification, and counting total blocks/faces in a 3D composite figure.
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Analytical & Mental Reasoning:
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Visual Reasoning: Pattern completion, mirror and water images, figure matrix, paper folding/cutting, and odd-one-out shapes.
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Numerical & Verbal Ability: Number series, spatial coding, logical deductions, and critical thinking.
Unit 02: Three-Dimensional Perception & Design Principles
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Perception of Scale, Proportion & Aesthetics:
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Understanding scale, relative proportions, balance, symmetry, and rhythm in objects, building elements, and facades.
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Architectural elements (e.g., arches, domes, vaults, columns, lintels, cantilevers, fenestrations).
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Color Theory & Texture Design:
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Color wheel fundamentals: primary, secondary, and tertiary colors.
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Color schemes and harmonies (complementary, analogous, monochromatic, warm vs. cool tones).
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Contrast, tonal value, light, shade, and shadow rendering using pencil techniques.
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Geometric Transformations & 3D Manipulations:
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Boolean Operations: Union (combining shapes), subtraction (cutting out voids), intersection, and extrusion of 2D/3D shapes.
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Spatial Transformations: 2D and 3D rotations, reflections, scaling, and tessellations.
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Surface Development: Unfolding 3D geometric solids (cubes, prisms, pyramids, cones, cylinders) into flat 2D nets/sheets.
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Plan, Elevation & 2D/3D Compositions:
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Generating standard orthographic drawings (plan, front elevation, side elevation) and isometric/axonometric 3D views.
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Designing abstract or geometric 2D compositions using shapes (circles, triangles, rectangles) with visual balance.
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Assembling 3D forms to create dynamic sculptural and architectural compositions.
JEE Main Paper 2A (B.Arch) Drawing Test (Part III) Syllabus
Unit 01: Memory Drawing of Urban Scenes, Public Spaces & Activities
Unit 02: Landscape Drawing, Natural Environments & Rural Life
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Natural Landscapes & Water Bodies:
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Riverfronts, lakesides, beaches, canals, waterfalls, and ghats.
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Dense forests, jungles, hillscapes, rock formations, and valleys.
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Botanical & Horticultural Elements:
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Accurate rendering of different tree species (canopy, trunk texture, branching patterns), foliage, shrubs, flowering plants, and potted gardens.
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Botanical gardens, structured park pathways, and lawn layouts.
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Rural Life & Vernacular Settings:
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Village scenes, mud and thatched-roof huts, courtyards, village wells, and farm fields.
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Domestic animals, cattle sheds, tractors, bullock carts, and rural artisans/craftspeople at work.
JEE Main Paper 2B (B.Planning) Mathematics Syllabus
Unit 01: Sets, Relations, and Functions
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Sets: Representation, types of sets, subset, power set, operations (union, intersection, complement), and algebraic properties.
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Relations: Definition, types of relations (reflexive, symmetric, transitive), and equivalence relations.
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Functions: Domain, co-domain, and range; one-one, into, and onto mappings; composite functions.
Unit 02: Complex Numbers and Quadratic Equations
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Complex Numbers: Ordered pairs of reals, algebraic form (a + ib), Argand plane representation, algebra of complex numbers, modulus, and argument (amplitude).
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Quadratic Equations: Solutions in real and complex number systems, relation between roots and coefficients, nature of roots, and formation of equations with given roots.
Unit 03: Matrices and Determinants
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Matrices: Types, algebraic operations, transpose, adjoint, and inverse of square matrices (order 2 and 3).
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Determinants: Evaluation of determinants, properties, and area of triangles using determinants.
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Linear Systems: Test of consistency and solving simultaneous linear equations in two or three variables using matrix inversion or Cramer's rule.
Unit 04: Permutations and Combinations
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Combinatorics: Fundamental principle of counting (addition and multiplication principles).
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Formulas & Applications: Meaning and calculation of P(n, r) and C(n, r) with straightforward word-problem applications.
Unit 05: Binomial Theorem and Its Simple Applications
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Expansion: Binomial theorem for positive integral indices.
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Key Terms: Finding the general term, middle term(s), and simple coefficient-based problems.
Unit 06: Sequences and Series
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Progressions: Arithmetic Progression (A.P.) and Geometric Progression (G.P.).
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Means: Insertion of Arithmetic Means (A.M.) and Geometric Means (G.M.) between two numbers.
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Properties: Algebraic relation between A.M. and G.M
Unit 07: Limit, Continuity, and Differentiability
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Functions: Real-valued functions; polynomial, rational, trigonometric, exponential, and logarithmic functions; inverse functions and graphs.
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Limits & Continuity: Evaluating limits, algebra of limits, testing continuity of functions.
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Differentiation: Sum, difference, product, and quotient rules; derivatives of trigonometric, inverse trigonometric, exponential, logarithmic, composite, and implicit functions; second-order derivatives.
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Applications of Derivatives (AOD): Rate of change, monotonic behavior (increasing/decreasing functions), and finding maxima/minima for functions of a single variable.
Unit 08: Integral Calculus
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Indefinite Integration: Anti-derivatives; integration by substitution, parts, and partial fractions.
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Standard Forms: Evaluation of standard algebraic/quadratic/radical integrand types:
∫dx/ x² + a², ∫dx/ √x² ± a², ∫dx/ √a² - x², ∫dx/ √a² - x², ∫dx/ ax² + bx + c, ∫dx/√ax² ± bx + c, ∫(px + q) dx/ ax² + bx + c, ∫(px + q) dx/ √ax² + bx + c, ∫√a² + x² dx, ∫√x² - a² dx
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Definite Integration: Fundamental theorem of calculus and standard properties of definite integrals.
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Area Bounded by Curves: Calculating enclosed areas between simple standard curves and coordinate axes.
Unit 09: Differential Equations
Unit 10: Coordinate Geometry
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2D Basics: Distance formula, section formula, locus, slope, parallel/perpendicular conditions, intercept form.
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Straight Lines: Equations of lines in various forms, point of intersection, angle between lines, concurrency of three lines, perpendicular distance from a point, and coordinates of triangle centers (centroid, orthocenter, circumcenter).
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Circles: Standard and general equations, radius and center, diameter form, and line-circle intersection.
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Conic Sections: Standard equations, eccentricity, and properties of Parabolas, Ellipses, and Hyperbolas.
Unit 11: Three-Dimensional Geometry (3D)
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Coordinates & Direction: Coordinates in space, distance formula, section formula, direction cosines (DC) and direction ratios (DR).
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Lines in Space: Equation of a straight line in vector and Cartesian forms, angle between intersecting lines, condition for skew lines, and shortest distance between skew lines.
Unit 12: Vector Algebra
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Basics: Vectors and scalars, addition/subtraction, magnitude, and components in 2D and 3D space.
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Products: Dot product (scalar product), cross product (vector product), and their geometric applications.
Unit 13: Statistics and Probability
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Statistics: Measures of central tendency (mean, median, mode) and dispersion (mean deviation, standard deviation, and variance for grouped/ungrouped data).
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Probability: Classical probability, addition and multiplication theorems, conditional probability, Bayes' theorem, and probability distributions of discrete random variables.
Unit 14: Trigonometry
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Identities: Fundamental trigonometric ratios, compound angles, multiple/submultiple angles.
-
Inverse Trigonometry: Domain, range, principal value branches, and fundamental properties of inverse trigonometric functions.
JEE (Main) Paper 2B (B.Planning)
Unit 01: Architectural Awareness & Mental Ability
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Awareness of Persons, Buildings, and Materials:
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Key architectural personalities, iconic national and international buildings, and famous urban planning projects.
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Identification and application of common building materials (e.g., brick, concrete, glass, steel, timber, stone).
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Objects and Texture in Built-Environment:
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Recognition of spatial textures, materials, and objects related to architecture, land planning, and the built environment.
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Spatial & 3D Visualization:
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Visualizing three-dimensional objects from two-dimensional drawings (orthographic projections to isometric/axonometric views).
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Identifying different sides, views (top, front, side/elevation), and hidden edges of three-dimensional objects.
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Analytical Reasoning & Mental Ability:
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Visual Reasoning: Pattern completion, mirror images, paper folding/cutting, counting geometric figures, and series continuation.
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Numerical Reasoning: Data interpretation, numerical series, ratios, and basic spatial quantitative logic.
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Verbal Reasoning: Analogy, classification, direction sense, logical sequences, and verbal logic tasks.
Unit 02: Three-Dimensional Perception & Design Fundamentals
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Three-Dimensional Perception:
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Understanding, observing, and estimating the relative scale and proportions of objects, building forms, structural elements, and human figures.
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Visual Elements & Harmony:
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Principles of color theory, color harmony, contrast, light and shadow effects, texture integration, and balance in spatial design.
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Form Transformation (2D & 3D):
-
Boolean Operations: Union (addition), subtraction (subtractive forms), and intersection of geometric forms.
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Spatial Transformations: Rotation, scaling, mirroring, surface development (unfolding 3D shapes into 2D nets), and generation of volumes.
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Projections & Views: Deriving top plans, front/side elevations, section views, and 3D isometric perspectives of given objects.
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Composition & Spatial Design:
JEE (Main) Paper 2B (B.Planning)
Unit 01: General Awareness
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Knowledge of Cities & Architecture: Prominent Indian and global cities, capital cities, smart cities, mega-cities, historical planning layouts, and landmark urban developments.
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Development & Environmental Issues: Urban sprawl, environmental degradation, climate change, solid waste management, housing shortages, traffic congestion, and sustainable development.
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Government Schemes & Programs: Major Indian central and state initiatives related to urban and rural development (e.g., AMRUT, PMAY, Smart Cities Mission, Swachh Bharat Mission, HRIDAY, PM-GATI Shakti).
Unit 02: Social Sciences
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History & Colonial Urbanization:
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Rise of nationalism (global and Indian freedom movement).
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The 19th-century global economy, industrialization, and colonial expansion.
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Evolution of colonial cities (e.g., Bombay, Calcutta, Madras, New Delhi) and dual-city layouts.
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Resources & Infrastructure:
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Resource types, conservation, and management (water, minerals, energy, forest).
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Agricultural patterns, industrial zones, transport systems, and national economy.
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Polity & Governance:
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The Constitution of India, federalism, power-sharing structures, local governance (73rd and 74th Constitutional Amendment Acts), political parties, and democratic processes.
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Socio-Economic Development & Settlement Study:
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Concepts of economic growth vs. development, economic sectors, poverty, and inequality.
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Urbanization patterns, rural-urban migration, social exclusion, demographics, and types of human settlements (nucleated, dispersed, linear).
Unit 03: Thinking Skills & Quantitative Aptitude
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Comprehension & Verbal Logic: Reading comprehension based on urban, social, or planning passages; critical reasoning and logical deduction.
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Map Reading & Spatial Mathematics:
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Map scale interpretation, converting representative fractions (RF), calculating ground distance and area from map units.
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Direction sense, bearings, coordinates, and spatial orientation.
-
Data Interpretation & Statistics:
-
Reading and analyzing charts, graphs (bar, line, pie), and data tables.
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Basic statistical concepts: mean, median, mode, standard deviation, percentages, ratios, and quantitative reasoning.