Electromagnetics Theory
Created by Hari Om Singh, Last Updated 05-Sep-2019, Language:English
Electromagnetics Theory
Simply Easy Learning
Created by Hari Om Singh, Last Updated 05-Sep-2019, Language:English
Description
Electromagnetic theory basically discusses the relationship between the electric and magnetic fields. The basic principles of electromagnetic theory include electrostatics, electromagnetic induction, magnetic fields of steady currents, etc. This training material has been developed based on the latest GATE syllabus. This video class has been developed based on the latest GATE syllabus and will be useful for Electrical Engineering students as well as for GATE exams preparation.
Audience
This training material will be useful for Electrical Engineering students as well as those who are preparing GATE exams. It will also be helpful for students in preparing them for their Engineering syllabus.
Course Content
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Electromagnetics Theory Vector Analysis
9 Lectures 00:34:27-
Electromagnetics Theory - Addition of Vectors
Preview00:02:31 -
Electromagnetics Theory - Cross Product
Preview00:02:47 -
Electromagnetics Theory - Properties of Vector
Preview00:07:29 -
Electromagnetics Theory - Scalar Triple Product
00:05:34 -
Electromagnetics Theory - Scalar Vector Quantity
00:02:01 -
Electromagnetics Theory - Vector Equality
00:05:03 -
Electromagnetics Theory - Vector Field
00:03:53 -
Electromagnetics Theory - Vector Product
00:02:22 -
Electromagnetics Theory - Continuity of Current
00:02:47
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Fundamental Of EM Theory
8 Lectures 00:37:11-
Electromagnetics Theory - Curl
00:04:06 -
Electromagnetics Theory - Curl Example
00:04:09 -
Electromagnetics Theory - Divergence
00:04:41 -
Electromagnetics Theory - Divergence Example
00:04:44 -
Electromagnetics Theory - Dot Product
00:02:41 -
Electromagnetics Theory - Dot Product Examples
00:03:54 -
Electromagnetics Theory - Gradient
00:04:38 -
Electromagnetics Theory - Right Hand Rule
00:08:18
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Electrostatics
7 Lectures 00:21:21-
Electromagnetics Theory - Gauss Law
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Electromagnetics - Application of Gauss Law
00:03:13 -
Electromagnetics Theory - Coulomb's Law
Preview00:02:50 -
Electromagnetics Theory - Electric Field
00:01:52 -
Electromagnetics Theory - Electric Flux Density
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Electromagnetics - Gauss Divergence Theorem
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Electromagnetics Theory - Potential
00:03:22
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Uniform Plane Waves
23 Lectures 02:49:36-
Electromagnetics Theory - Basics of Plane Wave
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Electromagnetics Theory - Plane Wave in Medium
00:06:50 -
Electromagnetics Theory - Skin Depth
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Electromagnetics Theory - Intrinsic Impadence
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Electromagnetics Theory - Loss Tangent
00:03:15 -
Electromagnetics Theory - Wave Equation
00:05:20 -
Electromagnetics - Poynting Theorem Part 1
00:14:43 -
Electromagnetics - Poynting Theorem Part 2
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Electromagnetics - Poynting Theorem Unit
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Poynting Theorem Example - Part 1
00:08:39 -
Poynting Theorem Example - Part 2
00:07:52 -
Electromagnetics - Poynting Theorem Example 1
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Electromagnetics - Poynting Theorem Example 2
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Numerical on Average Power Plane Waves
00:07:03 -
Electric Field Boundary Condition
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Electromagnetics - Boundary Condition
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Electromagnetics - Boundary condition Example
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Reflection of Plane Wave At Normal Incidence
00:17:05 -
Transmitted Power Plane Wave Numerical Example
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Electromagnetics - Numerical on Plane Waves
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Electromagnetics Theory - Polarization
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Electromagnetics - Numerical on Polarization
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Circular Polarization Numerical Example
00:08:58
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Transmission Line
30 Lectures 03:48:58-
Introduction to Transmission Line
Preview00:01:13 -
Transit Time in Transmission Line
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Transit Time Effect in Transmission Line
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Primary Constants of Transmission Line
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Transmission Line Equation Part 1
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Transmission Line Equation Part 2
00:10:57 -
Electromagnetics - Characteristic of Impedance
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Different Type of Transmission Line Loss Less
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Different Type of Transmission Line Low
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Different Type of Transmission Line Low Loss
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Electro Magnetics Theory - Reflection Coefficient
00:13:18 -
Input Impedance of Transmission Lines
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Input Impedance of Open Circuit
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Input Impedance of Short Circuit
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Input Impedance of Quarter Wave Length Transmission Line
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Distortion Less Transmission Line
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Electromagnetics - Power in Transmission Line
00:14:59 -
Voltage Standing Wave Ratio Transmission Line Example
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Transmission Line Numerical Example 1
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Transmission Line Numerical Example 2
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Input Impedance Transmission Line Numerical Example
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Reflection Coefficient Transmission Line Example
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Input Impedance Transmission Line Example
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Average Power Transmission Line Numerical Example
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Electromagnetics - Voltage Standing Wave Ratio
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Range of Reflection Coefficient and VSWR
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Electromagnetics - Introduction To Smith Chart
00:11:45 -
Electromagnetics - Numerical On Smith Chart
Preview00:14:26 -
Electromagnetics Theory - Impedance Matching
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Electromagnetics Theory - Single Stub Matching
00:09:18
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Magneto Statics
3 Lectures 00:12:04-
Electromagnetics Theory - Ampere's Circuital Law
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Electromagnetics Theory - Biot Savart's Law
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Electromagnetics Theory - Stroke's Theorem
00:06:18
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Maxwells Equations
5 Lectures 00:20:52-
Electromagnetics Theory - Maxwell's 1st Equation
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Electromagnetics - Maxwell's 2nd Equation
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Electromagnetics - Maxwell's 3rd Equation
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Electromagnetics - Maxwell's 4th Corrected Equation
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Electro Magnetics - Maxwell's 4th Equation
00:01:46
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Coordinate System
3 Lectures 00:12:38-
Rectangular Cartesian Coordinate System
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Electromagnetics - Cylindrical Coordinate System
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Electromagnetics - Spherical Coordinate System
00:04:08
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Wave Guide
7 Lectures 00:35:45-
Electromagnetics - Introduction to Wave Guide
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Electromagnetics - Parallel Plane Wave Guide
00:07:19 -
Transverse Magnetic Mode Rectangular Wave Guide
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Transverse Electric Mode Rectangular Wave Guide
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Cut Off Frequency of Wave Guide
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Cut Off Frequency Rectangular Wave Guide Example
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Impedance Rectangular Wave Guide Numerical Example
00:05:38
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Antenna Theory
5 Lectures 00:25:36-
Electromagnetics - Introduction to Antenna
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Radiation Characteristic of Antenna
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Electromagnetics - Hertzian Dipole Antenna
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Electromagnetics - Numerical on Hertz Dipole
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Hertzian Dipole Antenna Numerical Example
00:04:46
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