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NEET
Physics

20 weeks Course Curriculum by Sharmas Physics Class

Here’s a 5‑month NEET Physics curriculum designed from basics to advanced, with weekly concept‑driven sessions, numerical problem sets, and NEET‑level practice. Each month is dedicated to a major topic block – starting with Mechanics, followed by Thermodynamics, then a combined month on Electromagnetism & Electricity, next Optics, and finally Modern Physics with Semiconductors & Revision. 

Assumptions :

5–6 hours per day, 6 days a week → ~20 weeks (≈ 5 months)..
Tools :

  • NCERT Textbooks 

  • Standard reference books (e.g., H.C. Verma, D.C. Pandey, or coaching modules)

  • NEET PYQ compilations (last 10 years) – chapter‑wise & year‑wise

Outcome :

Complete mastery over all NEET Physics topics from basic definitions to advanced application problems.

Overall Assessment Plan Weekly assignments :

Topic‑wise subjective problems, numerical drills, and 25–30 NEET‑level MCQs (including PYQs from that chapter). 50 MCQs covering all topics taught that month – mix of concept recall, numericals, assertion‑reason, and statement‑based questions. Also full 3‑hour NEET Physics mock
(45 questions) + detailed performance analytics (time per question, accuracy per topic, weak‑area diagnosis).​

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Mechanics (Weeks 1–5)

WEEK
TOPICS
DAILY WORK (7-DAY CYCLE)
ASSIGNMENT
MILESTONE
WEEK 1

VECTORS & KINEMATICS : 

• Physical quantities, units & dimensions 

• Scalars & vectors, vector operations 

• Motion in a straight line, motion graphs, equations of motion, relative velocity.

• Concepts, formulas, graphs 

• Kinematics numericals 

• Relative velocity 

• NEET practice 

• PYQs 

• Mixed problems 

• Test & analysis.

Assignment: 

• Vector operations 

• Kinematics numericals 

• Graph-based problems 

• Relative velocity problems 

• NEET-style questions 

Graph-Based + Basic Numerical Assessment

WEEK 2

LAWS OF MOTION + FRICTION : 

• Newton's laws 

• Free-body diagrams 

• Force & acceleration 

• Friction (static & kinetic) 

• Inclined planes 

• Connected-body problems

• FBD practice 

• Friction concepts 

• Inclined-plane problems 

• Connected-body systems 

• PYQs 

• Mixed problems 

• Test & analysis.

Assignment : 

• FBD practice 

• Friction numericals 

• Inclined-plane problems 

• Connected-body problems 


FBD + Friction Assessment

WEEK 3

CIRCULAR MOTION + WORK, ENERGY & POWER : 

• Circular motion 

• Centripetal force 

• Banking of roads 

• Work, energy & power 

• Energy conservation

• Circular-motion concepts 

• Work-energy problems 

• Power problems 

• Energy conservation 

• PYQs 

• Mixed problems 

• Test & analysis.

Assignment: 

• Circular-motion numericals 

• Work-energy problems 

• Power problems 

• Energy-conservation questions 

• Mixed NEET practice 

Circular Motion + WEP Mixed Assessment

WEEK 4

CENTRE OF MASS + LINEAR MOMENTUM : 

• Centre of mass (COM) 

• Motion of COM 

• Linear momentum 

• Impulse 

• Collisions (elastic/inelastic) 

• Coefficient of restitution

• COM concepts 

• Momentum methods 

• Collision concepts 

• PYQs 

• Mixed problems 

• Test & analysis.

Assignment: 

• COM problems 

• Momentum numericals 

• Impulse problems

• Collision problems 

• NEET PYQs 

Mechanics Part-I Test

WEEK 5

ROTATIONAL MOTION : 

• Angular variables 

• Torque 

• Moment of inertia (MOI) • 

Theorems of MOI

 • Angular momentum 

• Rolling motion 

• Equilibrium of rigid bodies

• Angular variables 

• MOI 

• Torque & equilibrium 

• Rolling motion 

• Angular momentum 

• PYQs 

• Mixed problems 

• Test & analysis.

Assignment: 

• Moment-of-inertia problems 

• Torque & equilibrium 

• Rolling-motion numericals 

• Angular-momentum problems 

• NEET practice

Moment of Inertia + Rolling Assessment

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ELECTRICTY & MAGNETISM (Weeks 6 – 10)

WEEK
TOPICS
DAILY WORK (7-DAY CYCLE)
ASSIGNMENT
MILESTONE
WEEK 6

ELECTROSTATICS : 

  • Electric charge 

  • properties of charge,

  • Coulomb's law, 

  • Superposition principle, 

  • Electric field & field lines, 

  • Electric dipole, 

  • dipole moment, 

  • Field due to dipole, 

  • Torque on dipole

  • Electrostatics concepts 

  • Coulomb's law numericals, 

  • superposition problems, 

  • electric-field problems, 

  • dipole problems, 

  • NEET questions, 

  • PYQs, 

  • test & analysis.

  • Coulomb's-law numericals, 

  • Superposition problems, 

  • Electric-field problems, 

  • Dipole problems, 

  • NEET questions

Electrostatics Concept + Numerical Assessment

WEEK 7

ELECTRIC POTENTIAL & CAPACITANCE : 

  • Electric potential & potential difference, 

  • Potential due to point charge & dipole, 

  • Equipotential surfaces, 

  • Relation between E and V, 

  • Capacitance & capacitors, 

  • Dielectric & energy stored in capacitor, 

  • Combination of capacitors

  • Potential concepts,

  • E–V relation, 

  • capacitor concepts, 

  • combination problems, 

  • dielectric problems, 

  • energy storage, 

  • PYQs, 

  • mixed problems, 

  • test & analysis.

  • Potential problems, 

  • Capacitor combinations, 

  • Dielectric problems, 

  • Energy-storage numericals, 

  • NEET PYQs

Capacitance + Energy Assessment

WEEK 8

CURRENT ELECTRICITY : 

  • Electric current & drift velocity, 

  • Ohm's law, 

  • resistance & resistivity, 

  • Series & parallel combinations, 

  • EMF & internal resistance, 

  • Kirchhoff's laws, 

  • Wheatstone bridge, 

  • Metre bridge & potentiometer

  • Circuit concepts, 

  • Ohm's law applications, 

  • Kirchhoff's laws, 

  • bridge & potentiometer problems, 

  • PYQs, 

  • mixed numericals, 

  • test & analysis.

  • Circuit reduction, 

  • Kirchhoff's laws problems, 

  • Bridge problems, 

  • Potentiometer problems, 

  • NEET PYQs

Electrostatics + Current Electricity Test

WEEK 9

MAGNETIC EFFECTS OF CURRENT : 

  • Magnetic field & field lines, 

  • Lorentz force, 

  • Biot-Savart law, 

  • Magnetic field due to straight wire & circular loop, 

  • Ampere's law, 

  • Force on current-carrying conductor, 

  • Moving-coil galvanometer

  • Magnetic field concepts, 

  • force on charges & conductors,

  • Biot-Savart & Ampere's law problems, 

  • galvanometer applications, 

  • mixed problems, 

  • PYQs, 

  • test & analysis.

  • Magnetic-force numericals, 

  • Biot-Savart problems, 

  • Ampere's law applications, 

  • Galvanometer problems, 

  • NEET PYQs

Magnetic Effects Numerical Assessment

WEEK 10

MAGNETISM + ELECTROMAGNETIC INDUCTION :

  • Magnetic dipole & bar magnet, 

  • Earth's magnetism, 

  • Magnetic materials, 

  • Magnetic flux, 

  • Faraday's law, 

  • Lenz's law & motional EMF, 

  • Self & mutual inductance

  • Magnetism concepts, 

  • magnetic materials, 

  • Faraday & Lenz law problems, 

  • Motional EMF, 

  • inductance numericals, 

  • Mix of PYQs, 

  • test & analysis.

  • Magnetic-field problems, 

  • Material-based concepts, 

  • Faraday/Lenz problems, 

  • Motional EMF problems, 

  • Inductance numericals

Magnetism + EMI Assessment

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ELECTRICITY & THERMAL PHYSICS (Weeks 11 –14)

WEEK
TOPICS
DAILY WORK (7-DAY CYCLE)
ASSIGNMENT
MILESTONE
WEEK 11

ALTERNATING CURRENT + GRAVITATION : 

  • AC voltage & current, 

  • RMS, 

  • average & peak values, 

  • Reactance, 

  • impedance, 

  • LCR circuit & resonance, 

  • Transformer & power factor,

  •  Gravitation & gravitational field, 

  • Variation of g, Escape velocity & orbital velocity, 

  • Satellites

  • AC circuit concepts, 

  • LCR problems, 

  • transformer applications, 

  • gravitation concepts, 

  • satellite problems, 

  • PYQs, 

  • mixed numericals, 

  • test & analysis.

  • RMS & peak value problems, 

  • LCR circuit numericals, 

  • Transformer problems, 

  • Gravitation numericals, 

  • Satellite motion problems, 

  • NEET practice

Electricity + Gravitation Mixed Assessment

WEEK 12

FLUID MECHANICS : 

  • Pressure & Pascal's law, 

  • Atmospheric pressure, 

  • Buoyancy & Archimedes' principle, 

  • Continuity equation, 

  • Streamline flow & Bernoulli's theorem, 

  • Application of Bernoulli's theorem, 

  • Viscosity & Stokes' law, 

  • Terminal velocity

  • Fluid concepts, 

  • Bernoulli's applications, 

  • viscosity & terminal velocity, 

  • numerical practice, 

  • PYQs, 

  • test & analysis.

  • Pressure & buoyancy problems, 

  • Continuity equation problems, 

  • Bernoulli's theorem applications, 

  • Viscosity numericals, 

  • Terminal velocity problems

Fluid Mechanics Assessment

WEEK 13

ELASTICITY + SURFACE TENSION : 

  • Stress, strain & Hooke's law, 

  • Young's modulus, 

  • Bulk modulus & shear modulus, 

  • Elastic energy, 

  • Surface tension & surface energy, 

  • Excess pressure in drops & bubbles, 

  • Capillarity, 

  • Effect of temperature, 

  • impurities & detergents

  • Elasticity concepts, 

  • modulus relations, 

  • surface phenomena, 

  • capillarity, 

  • numerical practice, 

  • PYQs, 

  • test & analysis.

  • Modulus numericals, 

  • Elastic energy problems, 

  • Drops & bubbles problems, 

  • Capillarity problems, 

  • NEET questions

Elasticity + Surface Tension Assessment

WEEK 14

HEAT & CALORIMETRY + THERMAL PROPERTIES : 

  • Temperature, 

  • heat & specific heat, 

  • Heat capacity & calorimetry, 

  • Change of state & latent heat, 

  • Thermal expansion (linear, superficial, volume), 

  • Conduction, convection & radiation

  • Thermal concepts, 

  • calorimetry, 

  • change of state, 

  • thermal expansion, 

  • heat transfer concepts, 

  • numericals, 

  • PYQs, 

  • test & analysis.

  • Calorimetry problems, 

  • Latent heat questions, 

  • Thermal expansion numericals, 

  • Heat transfer problems, 

  • NEET PYQs

Thermal Properties Assessment

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THERMAL PHYSICS , WAVE  &  OPTICS (Weeks 15 –18)

WEEK
TOPICS
DAILY WORK (7-DAY CYCLE)
ASSIGNMENT
MILESTONE
WEEK 15

KINETIC THEORY OF GASES : 

  • Equation of state of ideal gas, 

  • Kinetic theory assumptions, 

  • Molecular speed & distribution, 

  • RMS, 

  • average & most probable speed, 

  • Law of equipartition of energy, 

  • Real gases & deviation, 

  • Mean free path

  • KTG concepts, 

  • ideal gas equation applications, 

  • molecular speeds, 

  • energy equipartition, 

  • numerical practice, 

  • PYQs, 

  • test & analysis.

  • KTG numericals, 

  • Gas laws problems, 

  • Molecular speed problems, 

  • Equipartition problems, 

  • Real gas questions, 

  • NEET PYQs

Kinetic Theory of Gases Assessment

WEEK 16

THERMODYNAMICS : 

  • Zeroth law of thermodynamics, 

  • First law of thermodynamics, 

  • Work done in thermodynamic processes, 

  • Isothermal,

  •  adiabatic, 

  • isobaric, 

  • isochoric processes, 

  • Heat engines & efficiency, 

  • Second law of thermodynamics, 

  • Entropy & its change

  • Thermodynamics laws, 

  • processes, 

  • heat engines, 

  • efficiency, 

  • entropy, 

  • numericals, 

  • PYQs, 

  • test & analysis.

  • Thermodynamic process problems, 

  • Heat engine problems, 

  • Efficiency numericals, 

  • Entropy problems, 

  • NEET PYQs

Thermodynamics Concept + Numerical Assessment

WEEK 17

SHM + WAVES : 

  • SHM – definition & examples, 

  • Equation of SHM, 

  • Energy in SHM, 

  • Superposition of waves, 

  • Wave equation, 

  • Transverse & longitudinal waves, 

  • Reflection & refraction of waves, 

  • Wave characteristics

  • SHM concepts, 

  • wave properties, 

  • superposition, 

  • refraction, 

  • interference basics, 

  • numericals, 

  • PYQs, 

  • test & analysis.

  • SHM numericals, 

  • Wave equation problems, 

  • Superposition problems, 

  • Reflection & refraction questions, 

  • NEET PYQs

SHM + Waves Assessment

WEEK 18

SOUND + WAVE OPTICS + RAY OPTICS : 

  • Sound waves & their characteristics, 

  • Doppler effect, 

  • Interference of light, 

  • Diffraction of light, 

  • Polarization, 

  • Ray optics – reflection & refraction, 

  • Lens formula, 

  • Mirror & lens combinations

  • Sound, wave optics & ray optics concepts, 

  • interference, 

  • diffraction, 

  • polarization, 

  • lens formula, 

  • ray diagrams, 

  • numericals, 

  • PYQs, 

  • test & analysis.

  • Sound & Doppler problems, 

  • Interference & diffraction numericals, 

  • Polarization questions, 

  • Ray optics problems, 

  • NEET PYQs

Complete Optics Assessment

table 4.webp

MODERN PHYSICS, SEMICONDUCTORS & COMPLETE REVISION (Weeks 19 – 20)

WEEK
TOPICS
DAILY WORK (7-DAY CYCLE)
MILESTONE
WEEK 19

MODERN PHYSICS : 

  • Dual nature of radiation & matter, 

  • Photoelectric effect, 

  • Einstein's photoelectric equation, 

  • Bohr model & its postulates, 

  • Hydrogen spectrum, 

  • de Broglie hypothesis, 

  • Heisenberg uncertainty principle, 

  • Nuclear physics, 

  • Radioactivity, 

  • Nuclear reactions

  • Modern Physics concepts, 

  • numericals, 

  • NEET PYQs, 

  • previous year questions, 

  • test & analysis.

Modern Physics Concept + Numerical Assessment

WEEK 20

SEMICONDUCTORS & COMPLETE REVISION : 

  • Intrinsic & extrinsic semiconductors, 

  • PN junction diode, 

  • Diode applications, 

  • Transistors, 

  • Digital electronics, 

  • Complete revision of full syllabus, 

  • Formula revision, 

  • Important derivations, 

  • High-weightage topics, 

  • Mistake analysis

  • Semiconductors concepts, 

  • applications, 

  • full syllabus revision, 

  • formula review, 

  • mega test & analysis.

Semiconductors Concept + Complete Syllabus Revision Done

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