Complete IIT JEE Physics Class 11&12 by Kota Coaching

  • 277 video lectures
  • JEE Main & Advanced
  • 11th+12th ...
Subject : Physics
Syllabus : Full syllabus
Medium : Hindi + English mix
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Stream : JEE Main & Advanced
Class : 11th+12th
Subject : Physics
Syllabus : Full syllabus
Faculty : Top Most faculties in Kota
Medium : Hindi + English mix
Composition : 277 video lectures

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What will we learn?

○ In this online coaching You will learn everything for IIT JEE, perfect preparation for IIT JEE Mains Advanced, How to prepare for IIT JEE

You will easily understandable and any mark scheme for IIT JEE physics, chemistry and IIT JEE math's so much that you'll feel, How quickly does the time passes by when you are studying this course

By the end of this online course you'll be able to clear off theory, IIT JEE formulas, IIT JEE questions , IIT JEE syllabus and IIT JEE pattern for engineering entrance exam

You will be able to answer all JEE Main question, JEE Advanced question and CBSE question with top Kota faculty of this course

Make an effective plan to study of video lectures

○ Nothing but to pay attention, a pencil to take notes theory and to answer the related classified questions

○ Take it repeatedly your weak points and important topics

○ It is preferred to have an related books and study by yourself before watching the video lectures

○ Prior knowledge of IIT JEE foundation


Who is the target student?

This course is perfect for IIT JEE Main aspirant, JEE Advanced aspirant, Engineering entrance exam and CBSE class 12 for IIT JEE preparation

Students who want to get high score with top Kota faculty from IIT JEE Main Advanced

Willingness to Learn JEE Main pattern, JEE Advanced pattern and varied difficulty level

Students who want to study with Kota coaching of top most Kota faculty for IIT JEE coaching


IIT JEE online coaching by top Kota faculty

IIT JEE video lectures of Physics for class 11, 12 and after 12th

JEE Online test series

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Best IIT JEE coaching

This course is perfect for IIT JEE Main, JEE Advanced  preparation, Engineering Entrance Exam and CBSE class 12. The course develops sound understanding of fundamentals & their applications, enhances mental ability & logical thinking, improve skills to solve challenging questions accurately with confidence. The teaching methodology is scientific which raises the academic levels of the student multifold.


Best teaching by top most faculties in Kota

Our team of top most faculties are selected with good teaching skill, highly qualified and experienced faculty in Kota, Rajasthan. Most of our faculty are IITians, NITians and doctors having decade of experience. They are all expert in their subject and committed to the success of our students. Quality faculty and their best teaching skills is what made Kota what it is today, the proven hub of coaching in India.


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Students have been showing remarkable performance in JEE Main result and JEE Advanced result in Career Point Kota. Our results produced 10,300+ IITians since inception produced 93 Ranks IITians in top 100 so far 100% selection of Lakshya Batch attained average 87.5% selections from Career Point Kota's Special Batches.

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Our books focuses on boosting confidence of student for facing National level competition by providing qualitative questions and solutions, Subject-wise and chapter-wise question bank based on latest pattern, in addition to previous year question papers, deeply researched, developed and designed by experienced top faculties in Kota to keep pace with the changing syllabus and the resulting needs of the students.

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Course Syllabus

Online Test for Free Trial
JEE Main 2017 Physics Sample paperStart Test
JEE Main Physics of Important Previous Year Question PaperStart Test

01 Essential Mathematics
  • 01  Trignomentry 50 mins
  • 02  Differentiation 57 mins
  • 03  Integration, Examples on Integration and Differentiation 40 mins
02 Vectors
  • 01  Classufication of Vector,Types of Vector, Representation of Vector: (A) Graphical Method (B) 2D Method 59 mins
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  • 02  3D Method to represent a Vector,Unit Vector Method to represent a Vector, Coordinate mathod to represent a Vector 57 mins
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  • 03  Vector addition, vector subtraction 55 mins
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  • 04  Scalar & vector product 52 mins
  • 05  Examples on vector, Alzebra 33 mins
03 Error
  • 01  Error in Addition, Error in Subs traction , Error in multiplication , Error in division, Error in Power, Error in general Relation 42 mins
04 Unit and Dimension
  • 01  Fundamental quantity and there units, Definition of dimensions, dimensional Formula 64 mins
  • 02  Applications of dimensional analysis 70 mins
  • 03  Limitations of dimensional analysis and errors 79 mins
05 Friction
  • 01  Lecture data not available 61 mins
  • 02  Lecture data not available 57 mins
06 Work Power Energy
  • 01  Work done by a constant for completed, Work done by a variable fore continue 75 mins
  • 02  Work done by variable force, Work energy theorem, considation force 77 mins
  • 03  Nonconservative force, potential energy, principle of conservation of mechanical energy, Power 62 mins
07 Laws of Conservation
  • 01  Centre of mass 50 mins
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  • 02  Centre of Mass (sub points) 46 mins
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  • 03  Centre of mass (Last Part) 50 mins
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  • 04  Linear Momentum & Momentum Conservation Principle 48 mins
  • 05  Question Based on linear momentum, Conservation principle & Collision starts 49 mins
  • 06  Elastic-Inelastic collision, Newton's Law of Collision, Perfectly elastic head on collision 49 mins
  • 07  Perfectly elastic head- on collision, Inelastic head-on collision 47 mins
  • 08  Perfectly inelastic head on collision & question on collision 54 mins
  • 09  Oblique collision 43 mins
  • 10  Oblique collision & Question 44 mins
  • 11  Variable mass system, Rocket propulsion 46 mins
  • 12  Impulse & Question based on centre of Mass 52 mins
  • 13  Examples on conservation of liner momentum principle 51 mins
  • 14  Examples on conservation of liner momentum & collision 48 mins
08 Rotational Motion
  • 01  Rotational motion (Moment of inertia) 64 mins
  • 02  Rotational motion (Moment of inertia) 62 mins
  • 03  Rotational motion (Moment of inertia + Torgue & Equilibrium) 73 mins
  • 04  Rotational motion (Newton's 2nd law in rotational motion & application) 57 mins
  • 05  Rotational motion (Rotational kinetic energy & its application) 58 mins
  • 06  Rotational motion (Basic idea of rolling motion) 71 mins
  • 07  Rotational motion (Problem based on rolling motion on horizontal surface) 60 mins
  • 08  Rotational motion (Rolling are the inclined surface) 52 mins
  • 09  Rotational motion (Instantaneous centre of rotation & toppling 53 mins
  • 10  Rotational motion (Angular momentum & its Conservation) 43 mins
09 Simple Harmonic Motion
  • 01  Definition of periodic motion, Oscillatory Motion, Simple Harmonic Motion, Force and acceleration in SHM, Velocity and acceleration in SHM as a function of displacement- from mean position. 48 mins
  • 02  Equation of displacement from mean position, velocity and acceleration as a function of time. Phasor representation of SHM . Application of Phasor. 65 mins
  • 03  Problems related to SHM 47 mins
  • 04  Problems related to SHM (solution using Phasor method) 51 mins
  • 05  SHM when mean position is not at (x=0),Nature of force for SHM(Restoring force),Potential energy, kinetic energy and Total energy in SHM .Plot b/w potential and kinetic energy as a function of x(displacement from mean position) 53 mins
  • 06  K.E. and P.E. in SHM as function of time and their average over position and time 42 mins
  • 07  SHM in mechanical system (Spring mass system), Problems 41 mins
  • 08  Problems based on spring mass system. Simple pendulum. 45 mins
  • 09  Simple pendulum in accelerated frame and problems, Compound pendulum & problems. Simple pendulum of length which is not negligible wrt radius of earth 50 mins
  • 10  Problems based on angular SHM and rolling SHM. 54 mins
  • 11  Problems based on angular SHM (Rolling SHM),Damped oscillation. 46 mins
  • 12  Combining SHM & problems. 51 mins
  • 13  Problems based on SHM. 37 mins
10 Gravitation
  • 01  Newton's Laws of Gravitation Motion of planets in circular orbit, formula for orbital speed & time period. 66 mins
  • 02  Energy of satellites in circular orbits, (PE, KE, TME,) and escape speed 68 mins
  • 03  Kepler's laws, Concept of gravitation field, potential field & potential of sphencal uniform bodies 69 mins
  • 04  Relationship between E & V, Variation in g due to height, depth or rotation of earth 62 mins
11 Properties of Matter
  • 01  Elasticity, Stress, Strain, Definitions 46 mins
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  • 02  Young's modulus of elasticity & examples 47 mins
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  • 03  Examples on young's modulus 44 mins
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  • 04  Stress-Strain Curve, Thermal Stress,Bulk Modulus 45 mins
  • 05  Bulk Modulus and examples on bulk Modulus 47 mins
  • 06  Modulus of rigidity, Poisson Ratio, Energy stored in wire 46 mins
  • 07  General discussion on elastic property of material & examples based on elasticity 48 mins
  • 08  Elasticity ends, Viscosity starts, Few examples on viscosity 48 mins
  • 09  Liquid flow through tube, Stokes's Law, terminal velocity 44 mins
  • 10  Stream line flow, Turbulent flow, Reynolds's No., Surface Tension Starts 47 mins
  • 11  Examples on Surface tension, Surface energy 51 mins
  • 12  Surface energy cohesive-Adhesive forces, excess pressure 49 mins
  • 13  Excess Pressure,exampels 46 mins
  • 14  Contact angle,Capillarity 47 mins
  • 15  Example on surface tansion 46 mins
  • 16  Example on surface tansion 49 mins
  • 17  Example on surface tansion and viscosity 46 mins
12 NLM
  • 01  Force & Fundamental forces weight contact force & tension instring 47 mins
  • 02  Spring force & fre body diagram 47 mins
  • 03  Free body diagram 44 mins
  • 04  Inertial & noninertial treme 38 mins
  • 05  Newton's Laws , First Law, Second Law & third Law 54 mins
  • 06  Equilibrium & problems based on Equilibrium 44 mins
  • 07  Problems based on Equilibrium of the body 44 mins
  • 08  Problems based on equilibrium of body & accelerating body 56 mins
  • 09  Contrained Motion & string constrained Problems 35 mins
  • 10  Problems based on string constrained 43 mins
  • 11  Problems based on string constrained 45 mins
  • 12  Problems based on string constrained , Pseudo Force 34 mins
  • 13  Problems discused wing pseudo force 45 mins
  • 14  Problems solved using pseudo force 44 mins
  • 15  Problems based on Constrained motion where pseudo force in used in solution 39 mins
  • 16  Problems based on wedge & string contrained 44 mins
  • 17  Spring Problems & combination of spring , Problem based on massive string 44 mins
  • 18  Problem based on string constrained & massive rope 25 mins
13 Fluid Mechanics
  • 01  Fluid Mechanics - pressure, density, varation of pressure with ht. (when container is at rest and whenmoving with const. acces) Rotatation of versel 56 mins
  • 02  U bube, abroluto pressure and gange pressure, Instrument to measure pressure, force due to water on wall 64 mins
  • 03  Pascal's law, Archimedes principle, Floatation 60 mins
  • 04  Fluid dymansics equation of continuty, Bernoulli's equation, Application of Bernoulli's equation 24 mins
14 Genral Kinamatics
  • 01  Introduction, Mechanics, Motion frame of reference, Position vector and path/trajectory 30 mins
  • 02  Distance and Displacement 41 mins
  • 03  Few problems based on distance and displacement, Defining Speed :- Average speed and Instantaneous Speed 44 mins
  • 04  Speed (Avg. and instantaneous) its graphical interpretation on s-t curve. Problems 34 mins
  • 05  Velocity :- Avg. velocity, Instantaneous Velocity 30 mins
  • 06  Problems based on Avg. & Instantaneous velocity. Problem for uniform speed & uniform velocity, Motion with non uniform velocity, Problem for calculation of distance and displacement 50 mins
  • 07  Graphical representation of velocity, Graphical representation of Displacement on Vx Vst, Vy Vst & Vz Vst curve. Definition of acceleration. 33 mins
  • 08  Questions based on Avg. & instantaneous acceleration and. Tangential and Normal acceleration. 50 mins
  • 09  Radius of curvature, Problame based on tangential acceleration, Normal acceleration & radious of curvature 43 mins
  • 10  Graphical interpretation of acceleration, General problem based on velocity, Acceleration equation of trajectory 43 mins
15 Motion in One Dimension
  • 01  Motion with uniform acceleration, Types of motion: (i) 1 D Motion, (ii) 2 D Motion, (iii) 3 D Motion 43 mins
  • 02  Motion in one dimension and few problem based on motion in one dimension 52 mins
  • 03  Graphical interpretation of velocity 39 mins
  • 04  Motion in one dimension problems based on graphical interpretation. (V-t curve, A-t curve and a-x curve) 45 mins
  • 05  Rectilinear motion (1 D) with uniform velocity, Graphs, and motion with uniform acceleration. 45 mins
  • 06  Displacement in nth second for 1D uniform acceleration motion, Graph in motion in one dimension. For const acceleration motion. 50 mins
  • 07  Problems based on uniform acceleration & uniform velocity, 1 D motion related to graph 44 mins
  • 08  Motion in one dimension under gravity. General Problems 49 mins
  • 09  Problems based on 1D motion under gravity 31 mins
16 Projectile Motion
  • 01  Projectile Motion (Horizontal Projectile) 51 mins
  • 02  Horizantol Projectile (Problems), Projectile from the ground surface (Time Flight),Range, Maximum height,Equation of Trajectory,Velocity and radius of curvature 51 mins
  • 03  Projectile from ground (Some remarked points and problems) 40 mins
  • 04  Problems on Projectile 34 mins
  • 05  Projectile on inclined plane and problems 44 mins
  • 06  Problem related to projectile on inclined plane 45 mins
  • 07  Problems related to projectile motion 33 mins
17 Relative Motion
  • 01  Relative motion theory 40 mins
  • 02  Problems on relative motion 44 mins
  • 03  Problems on relative motion 39 mins
  • 04  River problems 36 mins
  • 05  Problems based on river swimmer/boat 43 mins
  • 06  Rain vs man & wind problems 45 mins
  • 07  Problems on relative motion 25 mins
18 Circular Motion
  • 01  Ratatinal kineuatics, acceleration in circular motion, uniform circular motion, circular motion in henizantal flane 76 mins
  • 02  Vertical circular motion, dynamic of circular motion, Circular turning, banking of rood, rotor/death well 70 mins
19 Electrostatics
  • 01  Introduction, Charge & Coloumbs Law 89 mins
  • 02  Application of Coloum's Law, Superposition principal etc. 80 mins
  • 03  Vector, --------------- ELECTRIC FIELD MISSING -------------- 88 mins
  • 04  Potential due to point charge, Potential Difference, Potential Energy, Potential Energy of System of Charges 82 mins
  • 05  Elecreic Lines of Force, Tyes of Electric Field, Equipotential Surfaces, Relationship between Electric Field Intensity and Potential (for Uniform Electric Field) 77 mins
  • 06  Relationship between E abd V(for non uniform Field), Motion of Charged particle in Electric Field (Fundamental Overview) 81 mins
  • 07  Electric Field and Potential due to infinitly long uniformly charge wire and its variant 65 mins
  • 08  Electric Fiels & Potential due to circular arc and circular ring 79 mins
  • 09  "Electric Field & Potential due to uniformly charged disk, E & V due to uniformly charged Hollow Sphere and Solid sphere" 84 mins
  • 10  Derivation of E & V due to Solid Insulating uniformly charged sphere, Hollow sphere 79 mins
  • 11  Illustration based on spheres, E & V due to Large Charged sheets, Illustration based on sheets 87 mins
  • 12  Dipole, Dipole Moment, E & V due to Normal & Short Dipole, Derivation of E & V due to Dipole 71 mins
  • 13  Dipole in External Electric Field (Uniform & Non-Uniform), Derivation of Force & Torque, Illustration based on Dipole in external field, Behaviour of Charged conductor 89 mins
20 Gauss Law
  • 01  Gauss Theorem, Application of Gauss Theorem - Determination of Flus, Determination of Charge Distribution and determination of electric field. Electric Field due to cylinder (Solid & Hollow) 89 mins
21 Capacitance
  • 01  Conductor & its Capacitance, Capacitance of Spherical Conductor, Energy of a Charged Conductor (Formule), Energy Density 70 mins
  • 02  Derivation of Energy of Charged Conductor, Illustration to determine Energy of Conductor, Insulator, Difference between Self Energy & Interaction Energy, Redistribution of Charge between Conductors, Energy Loss, illustration on Redistribution of charge be 69 mins
  • 03  Concept of Capacitor, Different types of capacitor, Formule for Capacitor, Determination of Capacitance, Parallel Plate Capacitor 71 mins
  • 04  Combination of Capacitors, Series and Parallel Combination 81 mins
  • 05  Examples of Series & Parallel Combination focusing to determination of Equivalent Capacitance, Wheat Stone Bridge 81 mins
  • 06  Circuit Anlysis for Series & Parallel Combination, Kirchoff's Laws 84 mins
  • 07  Circuit Anlysis using Kirchoff's Law, Calculation of Equivalent Capacitance using Kirchoff's Law 77 mins
  • 08  Circuit Analysis using Kirchoff's 1st Law, Application of symmetry in electric circuit, Distribution of charge between two capacitors 81 mins
  • 09  Derivation of redistribution of charge between two capacitor, Discussion on various possible profile of distribution of charge among capacitor without and with battery. 78 mins
  • 10  Various Aspects Related to Parallel Plate Capacitor, Solution Technique for Problem Based on comparision of various quantities, Spherecial Capacitor, Cylindrical Capacitor 66 mins
  • 11  Force on Dielectric Salab 43 mins
22 Current Electricity
  • 01  Current, Mechanism of Current Flow in Conductor, Drift Velocity, Relationship between current and Drift Velocity 74 mins
  • 02  Ohm's Law, Resistors, Factors afecting resisnace, Dependance of Resistance on length, Area and Temperature 76 mins
  • 03  Effect of Temperature on resistance, resistivity, Series & Parallel Combination of Resistors, Examples based on series & parallel combination, symmetry in circuits 82 mins
  • 04  Kirchoff's Law & Application, Cell, Characteristics of Cell-Internal Resistance, EMF, Terminal Voltage 71 mins
  • 05  Combination of Cells, Using combination of cells for Solving circuits 77 mins
  • 06  Joule Heating, Bulbs, Combination of Bulbs 76 mins
  • 07  Charging & Discharging of Capacitors - Derivation 73 mins
  • 08  Questions based on charging & Discharging, and various types of RC circuits 72 mins
  • 09  Galvanometer, Ammeter 80 mins
  • 10  Voltmeter, Questions Based on Ammeter and Voltmeter, Meter Bridge 74 mins
23 Magnetic Effects of Current
  • 01  Introduction, Magnetic Field of Earth 75 mins
  • 02  Orestead Experiment, Biot-Savart's Law, Application of BSL, Magnetic field due to finite length of the wire 61 mins
  • 03  Derivation of Magnetic Field due to finite length of wire, Various illustration explaining the application of Magnetic field due to finite length of the wire, B due to circular arc 81 mins
  • 04  Magnetic effect due to current carrying coli, Derivation, application 68 mins
  • 05  Magnetic Field due to Solenoid, Spiral, Biot-Savart's Law for Moving Charge, Magnetic field due to charge moving along circle, B due to rotating charged ring, rotating charge disk 73 mins
  • 06  Magnetic Force on moving charge, Special cases, motion of charged partilce along circular path in uniform Magnetic Field 76 mins
  • 07  Helical Motion of Charged particle in uniform Magnetic field, Related examples 80 mins
  • 08  General Techinique to solve problem based on motion of charged particle, Motion of particle in Magnetic and Electric field 79 mins
  • 09  Motion of Cherged Particle in magnetic and electric field, Cyclodial Motion 63 mins
  • 10  Magnetic Force on Current Carrying Conductor, Behaviour of current carring loop 84 mins
  • 11  Magnetic Moment of the Current Carrying Loop, Current Carrying loop in external magnetic field, Magnetic Torque on loop 84 mins
  • 12  Application of Magnetic Torque on current carrying loop, Ampere's Law, Mahnetic field due to hollow and solid current carrying cylinder, determination of current distribution is B is known using ampere's Law 87 mins
24 EMI
  • 01  Magnetic Flux 57 mins
  • 02  Farady's Laws of EMI, Lenz's Rule to determine direction of current 78 mins
  • 03  Determination of emf using lenz's Rule, Methods of generating emf, induced emf by varying area (Flux Method) 77 mins
  • 04  Motional emf, rsults asociated with various cases related to motional emf 88 mins
  • 05  Examples based on motional emf, Energy Associated with motional emf, examples relatd to motion of conductor, Terminal Velocity 81 mins
  • 06  Motional emf due to rotational motion of conductor, Question based on rotational motional emf 90 mins
  • 07  Generating induced emf by varying angle between Area and Magnetic Field; Induced emf and induced Electric Field due to time varyin magnetic field. 90 mins
  • 08  Application of generating induced emf by varying B (a) induced emf based applications (b) induced electric field based application 90 mins
  • 09  Self Induction, Self Inductance, Determination of self inductance, Solution Technique for R-L Circuit 89 mins
  • 10  R-L Series Circuits, Grwoth & Decay of current, Question based on RL circuits, Determination of current and induced emf immediately after an event in RL Circuits 89 mins
  • 11  Combination of inductors, Mutual Induction, Mutula Inducatnace, Determination of Mutual Inductance, Transformer, Eddy Current 89 mins
25 Alternating Current
  • 01  Definition of AC, Various values of AC, various definitions related to AC 89 mins
  • 02  Resistance, Reactance, Impedance in AC circuit, Solving AC circuits 75 mins
  • 03  Various cases of circuits with AC input - When on Resistsance is in the circuit, when only Inductor coil is in circuit, when only capacitor is in the circuit, RL series, RC series and LC series circuit 87 mins
  • 04  LCR Series Circuit, Measurement of AC, Power in AC (Instantaneous Power, Average Power, Apparent Power), Power Factor, Wattless current, Resonance in LCR series circuit 93 mins
26 Calorimetric
  • 01  Introduction, Specific Heat, Heat Capacity & Water Equivalent 85 mins
  • 02  Latent Heat, Principle of Calorimetry, Mixture Problems 83 mins
  • 03  Illustration of Calorimetry 44 mins
27 Kinetic Theory of Gases
  • 01  Assumptions of KTG, Different Types of Velocities, Volume & Pressure, Pressure Derivation 89 mins
  • 02  Temperature of Gas, Gas Laws, Ideal Gas Law, Expressing pressure in various situation using concept of Hydrostatics 92 mins
  • 03  Application of Gas Laws, Degree of Freedom, Equipartition of Energy, Internal Energy of Gas 61 mins
28 Thermodynamics
  • 01  Heat, Specific Heat of Gases, Cp, Cv, Adiabatic Coefficient of Gas & Mixture, Significance of Work in Theromoyanamics, Work done By Gas- Method1: Direct calculation, Method-2:Graphical Method 64 mins
  • 02  Work Done by Gas - Method 3: Indirect Method, Method 4: Using first Law of Thermodynamics, Internal Energy, First Law of Thermodynamics 68 mins
  • 03  Processes- Iscochoric, Isobaric, Isothermal, Adiabatic 76 mins
  • 04  Polytropic Process, Cyclic Process, Solution Technique for Cyclic Process 75 mins
  • 05  Examples on cyclic process, Deternination of Molar specific hear of a process; Determination of process equation, free expansion and few points 72 mins
29 Heat Transfer
  • 01  Introduction, Conduction, Different Definition, Law od Conduction, Application of Law of conduction to Straight Homogeneous, Uniform Rod 79 mins
  • 02  Application of Law of conduction to Inhomogeneous & non uniform rod, combination of thermal conductors 71 mins
  • 03  Application of Series & Parallel combination, Various types of illustration of condcution, Growth of Ice Layer, Cylindrical and Spherical condcutor 82 mins
  • 04  Radiation, Definitions, Laws of Radition - Prevost Heat Exchange Theory, Kirchoff's Law 83 mins
  • 05  Stefan's Law, Applications of Stefan's Law, Newton's Law of colling 79 mins
  • 06  Applications of Newton's Law of cooling, Spectrum of Black Body Radiation, Wein's Displacement Law, Solar Constant, Covection  82 mins
30 Thermal Expansion
  • 01  "Introduction, Linear Expansion of Solid, Concept of Coefficient of Linear Expansion, Variation of Length of a solid with Temperature, Applications - Reading of a Scale, Radisu of Bimetallic Strip" 68 mins
  • 02  Thermal Stress, Reading of Pendulum Clock, Differential Expansion 80 mins
  • 03  Superficial Expansion of Solids, Volume xpansion of Solids, Variation of density of Solid with Temperature, Exapnasion of Liquid, Real Exapnasion of Liquid, Apparent Expansion of Liquid, Relationship between Coefficient of real expansion and apparent expa 78 mins
  • 04  Determination of Coefficient of Real Expansion of Liquid, Various Methods - Sinker Method, Specific Gravity Bottle Method, Balancing Column Method 51 mins
  • 05  Stefan's Law, Applications of Stefan's Law, Newton's Law of colling 0 mins
31 Transverse Wave
  • 01  Definition, types of waves, equation of wave-fundamental concept 75 mins
  • 02  Equation o wave - detailed explanation, definition related to waves 82 mins
  • 03  Transeverse Wave, Equation, velocity of Transverse Wave in Stretched String, Power Transmitted by Transeverse Wave 82 mins
  • 04  Results related to power transmitted by transeverse wave, Energy transmitted through KE & PE, Principal of Superposition, Stationary wave in string, Properties of Stationary wave. 83 mins
  • 05  Reflection & refration of waves, shap of reflected wave, Writing equation of reflected and refracted ray, Amplitude of reflected and refracted wave, superposition of incident & reflected wave 79 mins
  • 06  Questions based on equation of stationary waves, Stationary wave in stretched string, Sonometer, Laws of string 85 mins
  • 07  Meldee's Experiment, Energy of stationay wave 64 mins
32 Sound Wave
  • 01  "Concept of sound waves, Sound waves as Pressure Wave, Displacement wave, equation of sound waves, relationship between pressure wave and displacement wave equation, Velocity of sound wave, derivation" 84 mins
  • 02  Intensity of Sound wave, Derivation of intensity, Concept of superposition, Beats and detailed analysis of beats 85 mins
  • 03  Stationary Waves in sound, Vibration of organ pipes, Resonane Tube, Energy of longitudinal statioanary waves 84 mins
  • 04  Reflection of sound waves, Questions based on equation of sound waves, Interference, Types of interference, Questions based on interference of sound waves 85 mins
33 Dopplers Effect
  • 01  Definition of Doppler's effect of Sound, Formula for observed frequency and wavelength, explanation of doppler's effect, Various profiles of questions in doppler's effect, Doppler's effect with reflected sound, Delay in doppplers effects etc. 86 mins
34 Atomic Structure
  • 01  Introduction of Atomic Structure, Dalton's Model, Thomson's Model, Rutherford's Model, Distance of closest approach-all cases, Bhor's Model introcution and explaination 86 mins
  • 02  Explanation of radius, velocity, Time period and energy of electron in oribit, definitions related to various states, H-atom spectrum (both emission and absorption) 89 mins
  • 03  Emission and Absorption spectrum of H-atom, All series of spectrum, Collision of atoms and related concepts 88 mins
  • 04  Bhor's Theory when nucleus is not at rest, Effect of recoil of atom on emitted wavelength 50 mins
35 Matter Waves
  • 01  Introduction, D'Broglie Theory, Application of D'Broglie theiry to particles and photons, Various definition related to light source power, intensity, energy flus, photon flux etc. 82 mins
  • 02  Force and pressure due to light/photons in various situations 88 mins
36 Nuclear Physics
  • 01  Introduction of Nucleus, Properties of Nucleus, Mass, Density of Nucleus, Nuclear Stability, Binding Energy, Variotion of BE with mass Number 79 mins
  • 02  Nuclear Fission, Nuclear Reactor, Nuclear Fusion, Nuclear Collision, Types of Collition, Exoergic reaction and illustration. 86 mins
  • 03  Endothermic Reaction, Threshold Energy 24 mins
37 Radioactivity
  • 01  Introduction of Radioactivity, Different tyes of decays and their properties, Law of radioactivity, Different Definitions 89 mins
  • 02  Application of Law of radioactivity in different situations, Carbon Dating, Radioactivity equilibrium. 86 mins
38 Photo Electric Effect
  • 01  Introduction of Photo Electric Effect, Various definitions, Einstein Explanation of Photo Electric Effect, Photo-Cell, Photo-Electric curent, Stopping Potential 74 mins
  • 02  Dependance of Photo-Electric Current on various factros like Intensity, Potential difference between emitter & collector, frequecy of incidenting light, examples based on determination of photoelectric current 80 mins
39 X Rays
  • 01  Introduction of X-Rays, Production of X-rays, Mechnism of production of X-rays (a) Continious X-rays (b) Characteristics X-rays 85 mins
  • 02  Moseley Law, Properties of X-Rays 39 mins
40 Semiconducter device & Transistors
  • 01  Semiconductor, energy band in solids, conduction band & valence band 53 mins
  • 02  Forbidden energy gap.Conductors, Insulators & semiconductors. Concept of Holes in a semiconductor 50 mins
  • 03  Types of semiconductor, Intrinsic and Extrinsic semiconductor 41 mins
  • 04  Current through semiconductor 39 mins
  • 05  Problem based on current through semiconductor. PN junction 67 mins
  • 06  PN junction biasing. Breakdown of diode 59 mins
  • 07  Diode and Diode circuit problems 48 mins
  • 08  Application of Diode-LED, Photo Diode and solar Cell 45 mins
  • 09  Zener diode & diode as a rectifier, 45 mins
  • 10  Transistor and its working 45 mins
  • 11  Configuration of transistor. Common base configuration (CB) and its characterstics curve 41 mins
  • 12  Common emitter configuration of transistor and charcterstics curve. Output voltage v/s Input voltage curve 41 mins
  • 13  Logic Gates 57 mins
41 Reflection at Plane Surface
  • 01  Definition of Object & Image, Laws of Reflection, Mathematical Representation of Laws of Reflection, Image Formation by Plane Mirror, Few Basic Characteristics of Palne mirror 80 mins
  • 02  Different Characteristics of Plane Mirror - Rotation of reflected ray on ratating mirror, Minimum Height & width of the mirror to see height and width, Number of images due to multiple refection between two inclined mirrors 90 mins
  • 03  Deviation at Plane Mirror, Velocity of Image 59 mins
42 Reflection at Curved Surface
  • 01  Spherical Mirror, Various definitions, image formation, mirror formule (introduction) 63 mins
  • 02  Application of Mirror Formula in Various Situation 82 mins
  • 03  Solution Technique to solve Problem Based on Multiple Reflection, Results related to various position of object and corresponding position of image 73 mins
  • 04  Conjugate Positions, Velocity of Object & Image in spherical mirror, General Results 60 mins
43 Refraction at Plane Surface
  • 01  Refration, Laws of Refraction, Refractive Index, Refraction at Plane Surafce, Deviation, Critical Angle, Total Interanl Reflection 76 mins
  • 02  Image formation due to refraction at plane surface, relationship between o-distance and image distance in refraction at plane surface 80 mins
  • 03  Refraction at Slab, Few illustration 50 mins
44 Prism
  • 01  Prism, Prism Anagle, Refration on prism, Deviation, Minimum Diviation by prism, maximum deviation by prism, Range of angle of incidence for which light ray will emerge from prism 61 mins
  • 02  Explanation of Range of angle of incidence for light ray to emerge from 2nd surface, Small angled prism, image formation by small angled prism, 39 mins
  • 03  Dispersion, Application of dispersion concepts, dispersion due to prism, combination of prism 66 mins
45 Lens (Refraction at Curved Surface)
  • 01  Refraction at spherical surface, Derivation, Concept of Thin lens, Different types of lens 73 mins
  • 02  Focus & Focal length of the lens, Lens formula, concepts related to lens, Derivation of lens formula 75 mins
  • 03  Application of Lens Formula, Position of image for various positions of object,solving problem based on lens 75 mins
  • 04  Combinarion of Lens, Effective Focal Length, Silvering the lens 82 mins
  • 05  Power of Lens, Conjugate positions, Cutting a lens 42 mins
46 Interference
  • 01  Wave nature of light, Definition of interference, Constructive and Destructive interference, Coherent sources, Interference pattern and nomenclature for fringe pattern 83 mins
  • 02  Different Types of Path difference, YDSE basic experiment & results 86 mins
  • 03  Modified YDSE, effect of insertion of transparent film in front of slits, Loyod's mirror, Fresnel's Biprism experiment, Interference of white light 90 mins


This courses designed by experienced faculties of Career point in Kota, Rajasthan. Subject, Class, Chapter wise Teaching by experted faculties ...This courses designed by experienced faculties of Career point in Kota, Rajasthan.

PHYSICS Akash Kumar Sir PHYSICS Martand Gaur Sir PHYSICS Pankaj Gupta Sir PHYSICS Parvez Ahmed Sir PHYSICS Pramod Maheshwari Sir PHYSICS Sandeep Kumar Sir PHYSICS Satya Narayan Sir PHYSICS Suresh Singh Rana Sir
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