EE3301 Electromagnetic Field

                                                        


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Important questions 
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UNIT-1
1.Gauss & Apps ,Divergence***
2.Coordinate problems
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3.Electric field intensity due to uniformly charged
UNIT-2
1.Capacitance of parallel plate ***
2.Polarisation ***
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3.Poisson and Laplace's equations
4.boundary conditions
UNIT-3
1.Boundary conditions for magnetic field
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2.Magnetic field intensity due to Finite & Infinite ,circular coil,rectangular coil ,solenoid***
3.Lorentz force, magnetic field intensity (H) - Biot-Savart's Law - Ampere's Circuit Law all 2 marks and 8 marks expected 
UNIT-4
1.Maxwell equations
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2.Relation B/w Field theory /Circuit theory , Iç & I d
UNIT-5
1. Poynting theorem
2.Electromagnetic wave Equation
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Calculating potential in 2 unit problems

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**Very important questions are bolded and may be asked based on this topic

PART-C

1.Compulsory Questions {a case study where the student will have to read and analyse the subject }
mostly asked from unit 2, 5(OR) a situation given and you have to answer on your own

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SYllabuS

UNIT I
ELECTROSTATICS -I
Sources and effects of electromagnetic fields Coordinate Systems - Vector fields -Gradient, Divergence, Curl - theorems and applications - Coulomb's Law - Electric field intensity - Field due to discrete and continuous charges - Gauss's law and applications.
UNIT II
ELECTROSTATICS - II

Electric potential - Electric field and equipotential plots, Uniform and Non-Uniform field, Utilization factor - Electric field in free space, conductors, dielectrics - Dielectric polarization-Dielectric strength- Electric field in multiple dielectrics - Boundary conditions, Poisson's and Laplace's equations, Capacitance, Energy density, Applications.
UNIT III
MAGNETOSTATICS

Lorentz force, magnetic field intensity (H) - Biot-Savart's Law - Ampere's Circuit Law - H due to straight conductors, circular loop, infinite sheet of current, Magnetic flux density (B) - B in free space, conductor, magnetic materials - Magnetization, Magnetic field in multiple media -Boundary conditions, scalar and vector potential, Poisson's Equation, Magnetic force, Torque, Inductance, Energy density. Applications.
UNIT IV
ELECTRODYNAMIC FIELDS ROUGH KNOWLEDGE

Magnetic Circuits - Faraday's law - Transformer and motional EMF - Displacement current -Maxwell's equations (differential and integral form) - Relation between field theory and circuit theory - Applications.
UNIT V
ELECTROMAGNETIC WAVES

Electromagnetic wave generation and equations - Wave parameters; velocity, intrinsic impedance, propagation constant - Waves in free space, lossy and lossless dielectrics, conductors- skin depth - Poynting vector - Plane wave reflection and refraction.

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