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Lecture-1-Introduction to Vector
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Lecture-2-Introduction to vector(contd..........)
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Lecture-3-Coulomb's Law
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Lecture-4-Electric Field
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Lecture-5-Electro Static Potential
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Lecture-6-The Gradient
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Lecture-7-Gauss's Law
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Lecture-8-Poisson's Equation
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Lecture-9-Energy in the Field
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Lecture-10-Example Problems in Eletro Statics
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Lecture-11-Fields in Materials
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Lecture-12-Fields in Material Bodies
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Lecture-13-Displacement Vector
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Lecture-14-Capacitors
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Lecture-15-Method Of Image
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Lecture-16-Poisson's Equation 2Dimensions
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Lecture-17-Field near Sharp Edges and Points
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Lecture-18-Magnetic Field--1
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Lecture-19-Magnetic Field-2
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Lecture-20-Stokes Theorems
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Lecture-21-The Curl
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Lecture-22-Field Due to Current Loop
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Lecture-23-Ampere's Law
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Lecture-24-Examples of Ampere,s Law
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Lecture-25-Inductance
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Lecture-26-Mutual Inductance
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Lecture 27 Faraday's law
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Lecture-28-Magnetic Energy
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Lecture-29-Magnetic Energy-1
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Lecture-30-Magnetic Energy-2
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Lecture-31-Generalised Ampere's Law
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Lecture-32-The Wave Equation
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Lecture-33-Wave Equation
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Lecture-34-Poynting Theorem
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Lecture-35-Skin Effect
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Lecture-36-Skin Effect (Continued)
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Lecture-37-Radiation&Circuits
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Lecture-38-Phasor Form of Poynting Theorem
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Lecture-39-Reflection at Dielectric boundaries
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Lecture - 40 Reflection at Dielectric boundaries (Continued)
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Lecture-41-Transmission Lines
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Lecture-42-Transmission Lines(contd)&Conclusion
Description:
In this course, you will learn about Scalar and Vector fields, Coulomb’s Law and concept of Electric Field, Divergence, the Divergence Theorem and Gauss’ Law, Concept of Electrostatic Potential, Poisson’s Equation, Energy in the Field, Capacitance, the capacitance of common two-plate capacitors, including two-wire capacitors, Dielectrics, dielectric boundary conditions, Solution of Laplace’s Equation and Poisson’s Equation in 1-D. Capacitance calculations with multiple dielectrics etc.

Electro Magnetic Fields

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