Curriculum
- 28 Sections
- 223 Lessons
- 52 Weeks
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- 1.Basic Maths (1) : Vectors7
- 1.1Vector and Scalar, Representation of Vectors, Need for Co-ordinate System, Distance & Displacement39 Minutes
- 1.2Mathematics of Vectors, Triangle Law and Parallelogram Law1 Hour
- 1.3Addition More than Two Vectors, Subtraction of Vectors- Displacement vector28 Minutes
- 1.4Elementary Maths14 Minutes
- 1.5Unit Vectors, Special Unit Vectors, Resolution of Vectors49 Minutes
- 1.6Addition & Subtract using Unit Vectors, 3 D Vectors, Product of Vectors54 Minutes
- 1.7Chapter Notes – Basic Maths (1) : Vectors
- 2.Basic Maths (2) : Calculus4
- 2.1Delta, Concept of Infinity, Time Instant Interval, Rate of Change, Position and Velocity40 Minutes
- 2.2Fundamental Idea of Differentiation- Constant Multiplication Rule, Sum/Difference Rule29 Minutes
- 2.3Trigonometric functions, Log function, Product Rule, Quotient Rule, Chain Rule25 Minutes
- 2.4Integration- Formulas of Integration, Use of Integration45 Minutes
- 3.Unit and Measurement13
- 3.1Unit, History of Unit of Length-Metre, Properties of a Good Unit21 Minutes
- 3.2Concept of Derived Units, Fundamental Physics Quantities and Prefix of Units38 Minutes
- 3.3Unit-less Derived Quantities, Supplementary Quantities, Systems of Unit, Unit Conversion39 Minutes
- 3.4Dimensional Analysis, Dimension and Unit, Dimensionless Quantities32 Minutes
- 3.5Principle of Homogeneity34 Minutes
- 3.6Dimensionally Correct/Incorrect Equations, Use of Dimensional Analysis41 Minutes
- 3.7More Units of Length and Measurement of Length47 Minutes
- 3.8Errors and Their Reasons36 Minutes
- 3.9Combination of Errors42 Minutes
- 3.10Round Off, Significant Figures, Exponent Form of Numbers/Scientific Notation27 Minutes
- 3.11Chapter Notes – Unit and Measurement
- 3.12NCERT Solutions – Unit and Measurement
- 3.13Revision Notes – Unit and Measurement
- 4.Motion (1) : Straight Line Motion10
- 4.1Meaning of Dimension; Position; Distance & Displacement25 Minutes
- 4.2Average Speed & Velocity; Instantaneous Speed & Velocity31 Minutes
- 4.3Photo Diagram; Acceleration- Direction of acceleration, Conceptual Examples22 Minutes
- 4.4Constant Acceleration; Equations of constant acceleration43 Minutes
- 4.5Average Velocity Examples and Concepts; Reaction Time19 Minutes
- 4.6Free Fall under Gravity30 Minutes
- 4.7Variable Acceleration; Derivation of Constant Acceleration Equations48 Minutes
- 4.8Chapter Notes – Motion (1) : Straight Line Motion
- 4.9NCERT Solutions – Straight Line Motion
- 4.10Revision Notes Straight Line Motion
- 5.Motion (2) : Graphs3
- 6.Motion (3) : Two Dimensional Motion6
- 6.1Projectile on Level Ground32 Minutes
- 6.2Terms Related to Projectile on Level Ground31 Minutes
- 6.3Not Level to Level Projectile, Problem Solving, Dot Product34 Minutes
- 6.4Equation of Trajectory and Some Miscellaneous Questions35 Minutes
- 6.5Projectile on Inclined Plane39 Minutes
- 6.6Collision of Projectile and Avg. Acceleration in 2D Motion16 Minutes
- 7.Motion (4) : Relative Motion7
- 7.1Reference Frame and Distance of Closest Approach45 Minutes
- 7.2Relative Motion in 2D26 Minutes
- 7.3Free Fall & Relative Motion26 Minutes
- 7.4Throwing Object from Moving Body32 Minutes
- 7.5Rain Problem (theory)- and Wind in Rain Problem32 Minutes
- 7.6River Based Problem26 Minutes
- 7.7Crossing River by Shortest Distance- Least Time to Cross River; Wind Problems; Relative Approach27 Minutes
- 8.Newton's Laws of Motion8
- 8.1Force and Newton’s Laws33 Minutes
- 8.2Normal Reaction, Free Body Diagram(F.B.D), Normal on circular bodies, Mass and Weight57 Minutes
- 8.3Tension Force(Ideal Pulley, Clamp Force), Internal & External Force, Heavy Rope1 Hour
- 8.4Spring Force(Sudden Change, Series and Parallel Cutting of Spring)1 Hour
- 8.5Inertia and Non-Inertial Frames(Pseudo Force), Action-Reactin Pair, Monkey Problem49 Minutes
- 8.6Chapter Notes – Newton’s Laws of Motion
- 8.7NCERT Solutions – Laws of Motion
- 8.8Revision Notes Laws of Motion
- 9.Constrain Motion3
- 10.Friction6
- 10.1Kinetic friction Theory- Theory, Angle of friction32 Minutes
- 10.2Static Friction Theory- Based on Example 2, Direction of friction Theory1 Minute
- 10.3Some Advanced Examples18 Minutes
- 10.4Block Over Block Theory1 Hour
- 10.5Conveyor belt, Static and kinetic co-eff. of friction, Friction on wheels, Theoretical examples27 Minutes
- 10.6Chapter Notes – Friction
- 11.Circular Motion6
- 11.1Ex. on Average Acc. and Angular Variables Theory and Ref. Frame52 Minutes
- 11.2Uniform Circular Motion and Centripetal Force40 Minutes
- 11.3Non-Uniform Center of Mass – Theory by Ex 2; Friction1 Hour
- 11.4Centrifugal Force and Banking of Roads60 Minutes
- 11.5Radius of Curvature- Radius of Curvature; Axial Vector; Well of Death34 Minutes
- 11.6Chapter Notes – Circular Motion
- 12.Work Energy Power15
- 12.1Work & its calculation and Work-done on curved path31 Minutes
- 12.2Work-done by Different Forces1 Hour
- 12.3Work Energy Theorem and W.E. th in Non-inertial frame, W.E. th and Time23 Minutes
- 12.4Work Energy Theorem for System55 Minutes
- 12.5Energy and Different Forms of Energy-and Energy of Chain; Potential Energy & Reference Frame28 Minutes
- 12.6Potential Energy Curve and Power1 Hour
- 12.7Normal Reaction, Vertical Circular Motion, Motion in Co-Concentric Spheres27 Minutes
- 12.8Motion on Outer Surface of Sphere, Motion on Inner Surface of Fixed Sphere59 Minutes
- 12.9Motion on Rope, Motion on Rod32 Minutes
- 12.10Chapter Notes – Work Energy Power
- 12.11NCERT Solutions – Work Energy Power
- 12.12Revision Notes Work Energy Power
- 12.13VCM – 131 Minutes
- 12.14VCM – 21 Hour
- 12.15VCM – 322 Minutes
- 13.Momentum9
- 13.1Introduction and Conservation of Momentum35 Minutes
- 13.2Impulsive Force – Characteristics of Impulsive Force30 Minutes
- 13.3Momentum Conservation in Presence of External Force – Two Steps Problems41 Minutes
- 13.4Questions Involving Momentum & Work Energy Theorem27 Minutes
- 13.5Collision – Head – on Collision and Special Cases of Head – on Collision39 Minutes
- 13.6Oblique Collision24 Minutes
- 13.7Collision of Ball with Flat Surface38 Minutes
- 13.8Impulse and Average Force58 Minutes
- 13.9Advanced Questions50 Minutes
- 14.Center of Mass5
- 14.1Center of Mass (CM) Frame and Kinetic Energy in C – Frame29 Minutes
- 14.2Finding Center of Mass by Replacement Method and Finding CM of Plate with Hole36 Minutes
- 14.3Finding CM by Integration and CM of Some Standard Objects57 Minutes
- 14.4Motion of CM; Newton’s 2nd Law for CM; CM in Circular Motion41 Minutes
- 14.5Revision Notes Center of Mass
- 15.Rotational Motion14
- 15.1Rigid Body – Motion of Rigid Body; Axis of Rotation14 Minutes
- 15.2Vector Product/ Cross Product; Torque44 Minutes
- 15.3Couple and Principle of Moments48 Minutes
- 15.4Pseudo Force and Toppling – Overturning of Car1 Hour
- 15.5Moment of Inertia1 Hour
- 15.6Parallel Axis Theorem; Perpendicular Axis Theorem; Quantitative Analysis; Radius of Gyra1 Hour
- 15.7Analogy b/w Transnational & Rotational Motion; Relation b/w Linear and Angular Velocity; Dynamics of Rotation40 Minutes
- 15.8Angular Momentum30 Minutes
- 15.9Angular Momentum of a Particle32 Minutes
- 15.10Rotational Collision49 Minutes
- 15.11Kinetic Energy, Work, Power; Potential Energy; Linear & Angular Acceleration; Hinge Force; Angular Impulse2 Hours
- 15.12Chapter Notes – Rotational Motion and Rolling Motion
- 15.13NCERT Solutions – Rotational Motion
- 15.14Revision Notes Rotational Motion
- 16.Rolling Motion11
- 16.1Introduction to Rolling Motion40 Minutes
- 16.2Rolling Motion on Spool24 Minutes
- 16.3Friction59 Minutes
- 16.4Direction of Friction1 Hour
- 16.5Rolling on Moving Platform and Motion of Touching Spheres44 Minutes
- 16.6Rope Based Questions55 Minutes
- 16.7Work-done by Friction in Rolling Motion, Kinetic Energy in Transnational + Rotational Motion29 Minutes
- 16.8Angular Momentum in Rotation + Translation1 Hour
- 16.9Angular Collision1 Hour
- 16.10Instantaneous Axis of Rotation50 Minutes
- 16.11De-Lambart’s Theorem50 Minutes
- 17.Gravitation8
- 17.1Gravitation force, Universal Law of Gravitation, Gravitational Force due to Hollow Sphere and Solid Sphere35 Minutes
- 17.2Acceleration due to Gravity and Rotation of Earth42 Minutes
- 17.3Potential Energy, Questions and Solutions56 Minutes
- 17.4Satellites, Circular Motion, Geostationary Satellites and Polar Satellites42 Minutes
- 17.5Polar Satellites, Weightlessness in Satellites, Trajectories and Kepler’s Laws29 Minutes
- 17.6Chapter Notes – Gravitation
- 17.7NCERT Solutions – Gravitation
- 17.8Revision Notes Gravitation
- 18.Simple Harmonic Motion13
- 18.1Oscillatory Motion – Horizontal Spring Block System, Qualitative Analysis of Horizontal Spring System33 Minutes
- 18.2Quantitative Analysis of Horizontal Spring System; Frequency and Angular Frequency; Velocity and Acceleration; Mechanical Energy47 Minutes
- 18.3Relating Uniform Circular Motion and SHM and Phasor Diagram30 Minutes
- 18.4Equation of SHM and Problem Solving using Phasor Diagram39 Minutes
- 18.5Questions40 Minutes
- 18.6More Oscillating Systems – Vertical Spring Block System41 Minutes
- 18.7Angular Oscillations – Simple Pendulum34 Minutes
- 18.8Compound / Physical Pendulum, Torsional Pendulum, Equilibrium of Angular SHM; Differentiation by Chain Rule38 Minutes
- 18.9Energy Method to find Time Period30 Minutes
- 18.10Finding Amplitude of SHM30 Minutes
- 18.11Block Over Block and Elastic Rope33 Minutes
- 18.12Superposition of Horizontal SHMs and Perpendicular30 Minutes
- 18.13Damped Oscillations28 Minutes
- 19.Waves (Part-1)11
- 19.1Wave, Plotting and Shifting of Curves, Meaning of y/t and y/x Graph, Wave is an Illusion!, 1D Wave on String55 Minutes
- 19.2Wave Equation, Analysis of Wave Equation and Wave Velocity55 Minutes
- 19.3Sinusoidal Wave (Harmonic Wave), Wave Equation for Sinusoidal Wave, Particle Velocity, Slope of Rope, Wave Velocity1 Hour
- 19.4Superposition of Waves44 Minutes
- 19.5Reflection of Waves37 Minutes
- 19.6Standing Waves1 Hour
- 19.7Tuning Fork, Sonometer and Equation of Standing Waves54 Minutes
- 19.8Energy in Waves54 Minutes
- 19.9Chapter Notes – Waves
- 19.10NCERT Solutions – Waves
- 19.11Revision Notes Waves
- 20.Waves (Part-2)10
- 20.1Waves, Propagation of Sound Wave and Wave Equation27 Minutes
- 20.2Sound as a Pressure Wave38 Minutes
- 20.3Speed of Sound, Laplace Correction and Intensity of Sound Waves59 Minutes
- 20.4Spherical and Cylindrical Sound Waves31 Minutes
- 20.5Addition of Sin Functions, Interference of Sound Waves of Same Frequency, Interference of Coherent Sources1 Hour
- 20.6Quinke’s Apparatus32 Minutes
- 20.7Interference of Sound Waves of Slightly Different Frequencies (Beats)39 Minutes
- 20.8Reflection of Sound Waves, Standing Waves, End Correction39 Minutes
- 20.9Standing Waves in Terms of Pressure, Standing Waves on Rods, Kund’s Tube, Resonance Tube Experiment49 Minutes
- 20.10Doppler Effect, Reflection from Wall, Doppler Effect in 2 Dimension1 Hour
- 21.Mechanical Properties of Solids6
- 21.1Rigid body,Strain, Stress,Hook’s Law25 Minutes
- 21.2Breaking Stress26 Minutes
- 21.3Shear Stress and Strain, Bulk Modulus, Elasticity and Plasticity, Stress-Strain Curve, Young’s Modulus34 Minutes
- 21.4Chapter Notes – Mechanical Properties of Solids
- 21.5NCERT Solutions – Mechanical Properties of Solids
- 21.6Revision Notes Mechanical Properties of Solids
- 22.Thermal Expansion5
- 22.1Linear Expansion; Second’s Pendulum; Bimetallic Strip; Expansion of Hole; Thermal Stress1 Hour
- 22.2Areal/Superficial Expansion; Volume Expansion; Thermal Expansion of Liquid; Measurement of Temperature; Anomal1 Hour
- 22.3Arial/Superficial Expansion; Volume Expansion; Thermal Expansion of Liquid; Measurement of Temperature38 Minutes
- 22.4Chapter Notes – Thermal Expansion
- 22.5NCERT Solutions – Thermal Expansion
- 23.Heat and Calorimetry2
- 24.Heat Transfer6
- 24.1Conduction; Comparison between Charge Flow & Heat Flow42 Minutes
- 24.2Equivalent Thermal Conductivity; Heat Transfer and Calorimetry; Use of Integration; Length Variation44 Minutes
- 24.3Convection; Radiation, Black Body, Prevost Theory, Emissive Power & Emissivity, Kirchoff’s Law, Stefan – Boltzman Law1 Hour
- 24.4Newton’s Law of Cooling, Cooling Curve; Wien’s Displacement Law; Thermo Flask48 Minutes
- 24.5Chapter Notes – Heat Transfer
- 24.6Revision Notes Heat Transfer
- 25.Kinetic Theory of Gases6
- 25.1Model of Gas,Postulates of Kinetic Theory of Gases, Ideal Gas, Mean free Path, Maxwell’s speed Distribution37 Minutes
- 25.2Volume, Pressure of Gases, Kinetic Energy, Temperature, Ideal Gas Equation45 Minutes
- 25.3Gas Laws, Internal energy of Gas, Degree of Freedom, Degree of Freedom of Mono-atomic and Diatomic Gas56 Minutes
- 25.4Chapter Notes – Kinetic Theory of Gases
- 25.5NCERT Solutions – Kinetic Theory of Gases
- 25.6Revision Notes Kinetic Theory of Gases
- 26.Thermodynamics9
- 26.1State Equation; Thermodynamic Process; Process Equation & Graph; Work done by Gas1 Hour
- 26.2Heat – Work Equivalence; 1st Law of Thermodynamics; Adiabatic Process57 Minutes
- 26.3Workdone in Adiabatic Process; Specific Molar Heat Capacity39 Minutes
- 26.4Poly-tropic Process, Bulk Modulus; Free Expansion; Mixture of Gases54 Minutes
- 26.5Heat Engine, Refrigerator or Heat Pump, Energy Conservation, Kelvin-Plank Statement, Clausius Statement1 Hour
- 26.6Carnot Cycle, Reversible and Irreversible Process, Specific Heat Capacity of Solids and Water1 Hour
- 26.7Chapter Notes – Thermodynamics
- 26.8NCERT Solutions – Thermodynamics
- 26.9Revision Notes Thermodynamics
- 27.Fluids14
- 27.1Introduction, Pressure of Liquid47 Minutes
- 27.2Manometer, Barometer41 Minutes
- 27.3Pascal Law, Hydraulic Lift35 Minutes
- 27.4Accelerated Liquid, Vertical and Horizontal Acceleration, Pressure Variation in Horizontally Accelerated Liquid57 Minutes
- 27.5Rotating Liquid, Rotating Liquid in U-Tube28 Minutes
- 27.6Archimedes’ Principle, Hollow Objects59 Minutes
- 27.7Apparent Weight, Variation of Liquid Force with Height1 Hour
- 27.8Multiple Liquids34 Minutes
- 27.9Center of Bouyancy28 Minutes
- 27.10Fluid Dynamics, Equation of Continuity48 Minutes
- 27.11Magnus Effect37 Minutes
- 27.12Venturimeter, Pitot Tube27 Minutes
- 27.13Questions and Solutions31 Minutes
- 27.14Chapter Notes – Fluids
- 28.Surface Tension and Viscosity6
- 28.1Surface Tension, Surface Energy52 Minutes
- 28.2Force of Cohesion, Force of Adhesion, Angle of Contact, Radius of Meniscus, Capillary Rise54 Minutes
- 28.3Pressure Difference Across Meniscus, Variation of Surface tension with Temperature27 Minutes
- 28.4Viscous Force35 Minutes
- 28.5Terminal Velocity, Velocity Gradient, Renolds Number, Turbulent Flow, Streamline Flow41 Minutes
- 28.6Chapter Notes – Surface Tension and Viscosity