Lesson 1Week 4: Properties of matter an' fluids — elasticity, pressure, buoyancy; targeted problem sets an' conceptual checksStudy elasticity, surface tension, an' fluid statics fi understand real-life applications an' NEET models. Practice pressure, buoyancy, an' Bernoulli questions wid stress pon units, approximations, an' conceptual pitfalls.
Stress, strain and Young’s modulus basicsElastic potential energy and springs in seriesPressure in fluids and Pascal’s lawBuoyancy, Archimedes’ principle and floatationBernoulli’s theorem and continuity equationConceptual and numeric fluid MCQ drillsLesson 2Week 10: Revision, full-length mock, error analysis an' final targeted improvement planConsolidate all ten weeks wid full-length mock tests, detailed error analysis, an' topic-wise revision. Build a final improvement plan focusin' pon weak areas, exam temperament, an' last-week NEET strategy.
Full-length NEET pattern physics mock testSection-wise time management strategiesError log creation and analysis methodsTargeted revision of weak topic clustersHigh-yield formula and concept flash reviewFinal week exam strategy and mindset planLesson 3Week 7: Electricity an' magnetism I — electrostatics, capacitors, Gauss’s law; formula mastery an' layered exercisesBegin electricity an' magnetism wid electrostatics an' capacitors. Focus pon field, potential, Gauss’s law, an' basic RC ideas, usin' formula sheets, visual field lines, an' layered exercises weh increase in difficulty.
Coulomb’s law and electric field patternsElectric flux and Gauss’s law applicationsElectric potential and equipotential surfacesCapacitance, series and parallel networksDielectrics and energy stored in capacitorsFormula drills and layered electrostatics MCQsLesson 4Week 5: Thermodynamics an' kinetic theory — laws, specific heats, calorimetry; former-year question focusCover laws of thermodynamics, heat transfer, an' kinetic theory wid emphasis pon NEET-relevant formulae. Practice calorimetry, specific heats, an' ideal gas processes usin' past-year styled questions an' summary notes.
Thermal expansion and specific heat basicsZeroth and first laws of thermodynamicsIsothermal, adiabatic and cyclic processesHeat transfer: conduction, convection, radiationCalorimetry and phase change numericalsKinetic theory and gas equation MCQsLesson 5Week 2: Newtonian mechanics an' applications — laws, friction, circular motion; practice plan an' homeworkMaster Newton’s laws, friction, an' circular motion wid structured examples. Learn free-body diagrams, constraint relations, an' common NEET traps, then apply dem through graded problems an' targeted homework practice.
Newton’s laws and free-body diagramsTension, normal reaction and pseudo forceStatic and kinetic friction with limiting caseCircular motion: centripetal force and bankingCommon NEET patterns in force problemsDaily homework and timed practice setsLesson 6Week 9: Modern physics an' optics — photoelectric effect, atomic models, ray an' wave optics; problem clusters an' conceptual MCQsCover modern physics an' optics, from photoelectric effect an' atomic models to ray an' wave optics. Emphasis pon standard derivations, sign conventions, an' typical NEET conceptual traps wid focused problem clusters.
Photoelectric effect and Einstein equationBohr model, spectra and energy levelsRadioactivity and nuclear reactions basicsRay optics: mirrors, lenses and sign rulesWave optics: interference and diffractionClustered modern physics and optics MCQsLesson 7Week 6: Waves, oscillations, an' sound — SHM, wave equation, Doppler effect; timed practice an' concept mapsDevelop strong understandin' of SHM, waves, an' sound. Learn standard equations, phase concepts, an' Doppler effect, then apply dem in timed tests, resonance problems, an' diagram-based NEET multiple-choice questions.
Simple harmonic motion and energy graphsAngular SHM and spring–mass systemsWave equation, speed and superpositionInterference, beats and resonance basicsSound intensity, level and Doppler effectTimed SHM and wave mixed MCQ practiceLesson 8Week 3: Work, energy, power an' momentum — concept list, typical NEET numeric patterns, mixed-chapter MCQsConnect work, energy, power, an' momentum through conservation laws. Focus pon collision types, variable forces, an' mixed-chapter numericals weh mirror NEET difficulty, wid emphasis pon choosin' di fastest solution path.
Work by constant and variable forcesKinetic and potential energy graphsConservation of mechanical energy in systemsImpulse, momentum and types of collisionsPower in translational and circular motionMixed WEP and momentum NEET-style MCQsLesson 9Week 1: Mechanics fundamentals — kinematics, vectors, motion in one an' two dimensions; essential formulas an' question typesBuild core mechanics foundations wid kinematics an' vectors in one an' two dimensions. Emphasis pon visualizin' motion, learnin' standard NEET formulas, an' practicin' typical question patterns wid guided solutions.
Scalar and vector basics with components1D motion: displacement, velocity, graphs2D projectile motion and range formulaeRelative velocity in one and two dimensionsStandard kinematics formula sheet for NEETSingle-concept and mixed kinematics MCQsLesson 10Week 8: Electricity an' magnetism II — current electricity, circuits, magnetic effects, EMF; multi-concept mixed testsExtend to current electricity an' magnetism, includin' circuits, magnetic fields, an' EMF concepts. Practice Kirchhoff, movin' charges, an' force pon conductors through multi-concept NEET-level mixed tests an' revisions.
Ohm’s law, resistors and network reductionKirchhoff’s rules and bridge circuitsHeating effect of current and power ratingsMagnetic field due to current and loopsForce on moving charges and conductorsMulti-concept circuit and magnetism tests