IILT@School PHYSICS

IILT @ SCHOOL Learning App offers PLUS TWO students ample opportunities to grab excellent result in English, Maths and other Science subjects. Video classes by experts will definitely help them overcome their learning difficulties with ease.

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Created by Admin IILT Last updated Thu, 06-Jan-2022 English
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Curriculum for this course
205 Lessons 56:04:29 Hours
Chapter 1:Electric charges and fields
10 Lessons 03:26:10 Hours
  • Introduction Electric Charges 00:26:59
  • Coulombs Law 00:23:54
  • Superposition principle 00:09:41
  • Electric Field 00:07:08
  • Electric field Lines 00:09:51
  • Electric dipole 00:45:51
  • Electric flux 00:10:01
  • Continuous charge distribution 00:03:45
  • Gausse's law and its applications 00:42:13
  • Problems 00:26:47
  • Electrostatic potential and Capacitance 00:31:56
  • Electric potential due to an electric dipole 00:13:54
  • Electric potential due to a system of charges 00:04:20
  • Equipotential surface 00:13:29
  • Relation between electric potential and electric field 00:05:26
  • Electrical potential energy of a system of charges 00:08:39
  • Electrical Potential energy of an electric dipole in an external electric field 00:09:12
  • Electrostatics of conductors 00:23:16
  • Dielectric and polarization 00:15:36
  • Capacitors and capacitance 00:13:44
  • The parallel plate capacitor 00:15:54
  • Combination of capacitors 00:07:54
  • Energy stored in a capacitor 00:06:15
  • Van de graaff generator 00:08:19
  • Problems 00:21:26
  • INTRODUCTION - ELECTRIC CURRENT 00:14:24
  • OHM'S LAW 00:08:33
  • FACTORS DEPENDS ON RESISTANCE OF A CONDUCTOR 00:06:30
  • CURRENT DENSITY 00:06:56
  • RELAXATION TIME,DRIFT VELOCITY AND MOBILITY 00:16:32
  • DEDUCTION OF OHM'S LAW 00:05:35
  • LIMITATIONS OF OHM'S LAW 00:03:21
  • Resistor colour code 00:10:54
  • Temperature dependence of resistivity 00:15:31
  • Combination of resistors 00:09:13
  • EMF, internal resistance 00:11:10
  • Combination of cells 00:16:07
  • Kirchhoff's laws 00:10:58
  • Wheatstone's bridge 00:12:01
  • Meter Bridge 00:09:45
  • Potentiometer 00:30:20
  • Electrical Energy and power 00:18:02
  • Problems 00:21:57
  • Introduction And Lorentz Force 00:25:29
  • Motion Of Charged Particles In Magnetic Fields 00:22:42
  • Velocity Selector 00:12:07
  • Cyclotron 00:25:32
  • Biot- Savart's Law 00:27:42
  • Magnetic Field Due To A Current Carrying Circular Loop 00:22:00
  • Ampere's Circuital Law And Its Applications 01:03:35
  • Force Between Two Parallel Conductors Carrying Current 00:22:44
  • TORQUE ON A CURRENT CARRYING RECTANGULAR LOOP 00:36:03
  • Circular Loop As A Magnetic Dipole 00:07:34
  • Magnetic Dipole Moment Of A Revolving Electron 00:15:50
  • Moving Coil Galvanometer 00:28:15
  • Problems 00:12:22
  • Introduction-Bar Magnet And Magnetic Field Lines 00:14:32
  • Barmagnet As An Equivalent Solenoid 00:17:23
  • Dipole In A Uniform Magnetic Field 00:17:41
  • Magnetism And Gauss's Law 00:06:27
  • Earth's Magnetism 00:17:14
  • Magnetization And Magnetic Intensity 00:10:57
  • Magnetic Properties Of Materials 00:29:25
  • Magnetic Hysteresis 00:11:05
  • Permanent Magnets And Electro Magnets 00:07:13
  • Problems 00:08:34
  • Introduction_Faraday's Experiments 00:09:00
  • Magnetic Flux 00:03:54
  • Faraday's Law Of Induction 00:03:21
  • Lenz’s Law 00:11:57
  • Motional Electromotive Force 00:18:38
  • Eddy Currents 00:16:32
  • Self-Inductance 00:20:28
  • Mutual Inductance 00:20:49
  • AC Generator 00:11:50
  • Problems 00:05:28
  • Introduction 00:09:28
  • AC Voltage Applied to a Resistor 00:28:19
  • Phasors 00:06:55
  • AC Voltage Applied to an Inductor 00:20:05
  • AC Voltage Applied to a Capacitor 00:20:59
  • AC Voltage Applied To An LCR Circuit 00:49:32
  • Resonance 00:13:23
  • Sharpness Of Resonance 00:28:48
  • Power In An LCR Circuit 00:15:21
  • LC Oscillations 00:28:45
  • Transformers 00:21:32
  • Problems 00:10:45
  • Introduction 00:05:18
  • Displacement Current 00:18:15
  • Source Of EM Waves 00:08:49
  • Nature And Properties Of EM Waves 00:19:30
  • EM Spectrum 00:19:30
  • Problems 00:06:46
  • Introduction 00:06:18
  • Reflection of light 00:05:56
  • Reflection by spherical mirrors 00:15:44
  • Sign Conventions 00:03:25
  • Relation between focal length and radius of curvature 00:06:42
  • Mirror equation 00:16:47
  • Problems 00:08:48
  • Refraction 00:21:29
  • Refraction through a parallel sided glass prism 00:06:04
  • Real depth and apparent depth 00:11:14
  • Total internal reflection and it’s applications 00:25:56
  • Problem 00:04:00
  • Refraction at spherical surfaces 00:14:04
  • Refraction through a lens 00:14:50
  • Power of a lens 00:02:52
  • Combination of lenses 00:07:07
  • Problems 00:06:21
  • Refraction through a prism 00:24:59
  • Rainbow 00:09:17
  • Scattering of light 00:05:51
  • Simple microscope and compound microscope 00:29:22
  • Telescope 00:26:22
  • Problems 00:16:32
  • Introduction 00:14:54
  • Huygen’s Principle 00:07:03
  • Reflection and Refraction of plane waves 00:24:04
  • Doppler effect 00:18:32
  • Coherent and Incoherent addition of waves 00:50:08
  • Young’s double slit experiments 00:25:43
  • Diffraction of light (Single slit experiment) 00:48:22
  • Resolving power of optical instruments 00:17:10
  • Fresnel distance 00:06:07
  • Polarization of light 00:26:08
  • Malus law 00:05:41
  • Polarization by scattering 00:08:38
  • Polarization by reflection 00:14:02
  • Problem 00:04:36
  • Introduction-Electron emission 00:13:14
  • Hertz’s experiment 00:02:50
  • Hallwach’s and Lenard’s experiment on photoelectric effect 00:13:58
  • Experimental observations on photoelectric effect 00:20:21
  • Laws of photoelectric effect 00:04:35
  • Photoelectric effect and wave theory of light 00:03:39
  • Einstein’s photoelectric equation 00:24:34
  • Problems 00:07:44
  • Particle nature of light 00:14:38
  • Wave nature of matter 00:32:12
  • Davisson-Germer experiment- 00:12:54
  • Problems 00:03:51
  • Introduction - Thomson’s Atom Model 00:05:18
  • Alpha Particle Scattering 00:22:03
  • Rutherford’s Atom Model 00:10:14
  • Atomic Spectra 00:06:25
  • Bohr’s Atom Model 00:07:47
  • Bohr’s Model of Hydrogen Atom 00:21:16
  • Energy Level Diagram of Hydrogen Atom 00:08:14
  • Line Spectra of Hydrogen Atom 00:14:18
  • de-Broglie’s Explanation for Bohr’s Quantization 00:09:00
  • Drawbacks of Bohr’s Atom Model 00:04:34
  • Problems 00:11:14
  • Introduction-Composition of nuclei 00:15:00
  • Isobar,isotope and isotones 00:11:12
  • Size of nuclei 00:07:29
  • Mass-Energy relation 00:05:14
  • Nuclear force 00:13:46
  • Mass Defect 00:07:24
  • Binding energy 00:25:24
  • Radioactivity 00:22:11
  • Half Life 00:05:37
  • Mean life 00:06:02
  • Problem 00:06:30
  • Alpha(α )-Decay 00:08:07
  • Beta (β)- decay 00:12:53
  • Gamma(ϒ) - decay 00:08:38
  • Nuclear fission 00:11:56
  • Nuclear reactor 00:18:18
  • Nuclear fusion 00:05:40
  • Energy generation in stars 00:08:58
  • Introduction 00:07:59
  • Classification of materials based on energy bands 00:15:27
  • Intrinsic semiconductor 00:07:59
  • Extrinsic semiconductor 00:15:03
  • Formation of P-N junction 00:13:02
  • Forward biasing and reverse biasing 00:13:13
  • Half wave rectifier 00:11:41
  • Full wave rectifier 00:09:11
  • Zener diode 00:22:51
  • Photo diode 00:07:50
  • LED 00:11:08
  • Solar cell 00:09:59
  • Junction transistor 00:13:41
  • Transistor configurations 00:11:20
  • Common emitter transistor characteristics 00:20:10
  • Digital electronics-Logic Gates 00:14:46
  • Problems 00:11:11
  • Introduction-communication system 00:14:09
  • Bandwidth of signals 00:05:41
  • Modulation 00:07:27
  • Amplitude modulation 00:21:38
  • Problems 00:03:24
  • Production of AM waves 00:14:41
  • Detection of AM Waves 00:05:40
  • Ground wave propagation 00:05:32
  • Space wave propagation 00:10:00
  • Sky wave propagation and Satellite communication 00:12:50
  • MODEL MCQ QUESTIONS - PART -1(CBSE) 01:34:25
  • MODEL MCQ QUESTIONS - PART -2(CBSE) 01:17:56
  • PREVIOUS QUESTION PAPER -2021(KERALA) 00:58:06
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About the instructor
  • 34 Reviews
  • 18953 Students
  • 80 Courses
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The International Institute of Language and Training (IILT Pvt. Ltd.) is the fastest-growing language training institute that aims to offer the best English language training programs and coaching in Kerala.

Our mission is to ignite eager minds and create lifelong learners. The concept and format was envisioned by a group of English language experts and medical professionals who seek to help learners master language skills. At IILT, we’ve built on the promise of educating inquiring, inquisitive minds. We offer our students and nurses quality education programs where they can efficiently develop their proficiency in the English language. We’ve decoupled learning from the traditional classroom and reached out to accommodate students along learning paradigms, pedagogies, mapping successful outcomes with blended programs and multichannel offerings. Our goal is to not just train and develop candidates who can pass their respective English language tests but also serve as a premier English coaching academy. We are invested in innovating creative education and language programs, with a focus on student outcomes, research, scholarship, retention of expert faculty, and corporate philanthropy.


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Includes:
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