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Electrical Engineering
NOC:Electromagnetic theory (Video)
Syllabus
Co-ordinated by :
IIT Kanpur
Available from :
2016-01-19
Lec :
1
Modules / Lectures
Module1
Introduction to EMT
Coulombs law
Vector analysis-I and Introduction to coordinate system
Rectangular coordinate system
Vector analysis-II
Introduction to Electric field
Electric field-I
Cylindrical coordinate system
Transformation & Electric field-II
Module2
Electric Potential-I
Spherical co-ordinate system & Electric potential-II
Vector Analysis-III & Electric potential-III
Gauss’s law & its application-I
Gauss’s law & its application-II
Divergence & Poisson’s & Laplace’s equation
Gauss’s law & its application -III
Vector analysis –III (curl and its significance)
Module3
Conductor & dielectric-I
Polarization -I
Polarization -II
Polarization – II (contd.)
Boundary condition
Continuity equation & Conductors - III
Conductors – IV
Conductor – IV (contd.) & Capacitor - I
Capacitor - II
Capacitor - II (contd.) & Equipotential Surfaces
Module4
Solution of Laplace’s equation-I
Solution of Laplace’s equation-I I & method of images-I
Method of images-II
Solution of Laplace’s equation-III
Solution of Laplace’s equation-IV
Introduction of magnetic field
Biot savart law & its application
Module5
Biot savart law&its application-II
Magnetic vector potential
Magnetic force ,torque & dipole
Magnetic force ,torque & dipole(continued)
Magnetic materials-I
Magnetic materials-I(contd.)& Magnetic moment
Magnetic materials-I(contd) and Boundary condition for Magnetic fields
Inductor and calculation of inductance for different shapes
Inductor and calculation of inductance for different shapes(contd)
Module6
Faradays law and its application-I
Faradays law and its application-II
Displacement current
Maxwell’s equation
Wave propagation
Solution of Helmholtz equation
Module7
Uniform plane waves
Polarization & Poynting Vector
Wave reflections (Normal incidence)
Waves in imperfect dielectrics & Good conductors
Skin depth/effect
Oblique incidence of waves
Oblique incidence of waves (contd.)
Module8
Transmission line
Transmission line model
Steady state sinusoidal response of T-line-I
Steady state sinusoidal response of T-line-II
Steady state sinusoidal response of T-line-II& Smith chart
Module9
Application of smith chart-I
Application of smith chart-II
Impedance matching
Transients on Transmission line-I
Transients on Transmission line-II
Module10
Pulse on Transmission line
Capacitive termination in Transmission line
Waveguide
Waveguide Analysis
TM modes in Waveguide
Module11
Rectangular waveguide: TM modes
Rectangular waveguide: TE modes
Waveguide: Wavelength, Impedance and power calculation
Waveguide losses
Dielectric Waveguide
Dielectric Waveguide (contd.)
Module12
Radiation and Antenna
Hertzian Dipole Antenna
Hertzian Dipole Antenna (contd.)
Quasi-statistics-I
Quasi-statistics-II
Long wire Antenna
Group velocity & Phase velocity
Numerical solution of Laplace\'s equation
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noc18-ee04_Week_01_Assignment_01
noc18-ee04_Week_01_Assignment_01
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Chapter Name
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1
Introduction to EMT
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2
Coulombs law
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3
Vector analysis-I and Introduction to coordinate system
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4
Rectangular coordinate system
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5
Vector analysis-II
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6
Introduction to Electric field
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7
Electric field-I
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8
Cylindrical coordinate system
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9
Transformation & Electric field-II
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10
Electric Potential-I
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