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Rashtrasant Tukadoji Maharaj Nagpur University, Maharashtra
Electrical Engineering
Electromagnetic Fields
Rashtrasant Tukadoji Maharaj Nagpur University, Maharashtra, Electrical Engineering Semester 4, Electromagnetic Fields Syllabus
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Unit - 1 Review Of Vector Analysis
Unit 1
Review of Vector Analysis
1.1 Review of Scalars and vectors
1.2 Vector Algebra
1.3 Rectangular Coordinate System
1.4 Cylindrical Coordinate System
1.5 Spherical Coordinate System
1.6 Transformation of Cartesian to Cylindrical
1.7 Cartesian to Spherical and vice versa
Unit - 2 Coulomb’s law, Electrical field intensity and electric flux density, Gauss’s law, Divergence
Unit 2
Coulomb’s law Electrical field intensity and electric flux density Gauss’s law Divergence
2.1 Coulombs Law
2.2 Electric field intensity
2.3 Field due to continuous volume charge distribution
2.4 Field of point charge field of line charge field of sheet charge
2.5 Electric Flux density
2.6 Gauss’s law and Applications of Gauss’s law
2.7 The divergence theorem.
Unit - 3 Potential Of Charge System , Conductors, Dielectric, Capacitance And Poison’s And Laplace Equations
Unit 3
Potential of charge system Conductors Dielectric Capacitance and Poison’s and Laplace Equations
3.1 Definition of potential difference and potential
3.2 The potential field of a point charge
3.3 The potential field of a system of charges potential gradient.
3.4 Metallic conductors conductor properties
3.5 The nature of dielectric materials
3.6 Boundary conditions for perfect dielectric materials
3.7 Capacitance of parallel plate capacitor
3.8 Capacitance of two wire line
3.9 Poisons and Laplace Equation
Unit - 4 The Steady Magnetic Field And Magnetic Forces
Unit 4
The steady Magnetic Field and Magnetic forces
4.1 Biot Savart’s law
4.2 Ampere’s Circuital law
4.3 Stoke’s theorem
4.4 Magnetic flux density
4.5 Scalar and vector magnetic potentials
4.6 Force on moving charge
4.7 Force between differential current elements
4.8 Nature of magnetic material
4.9 Magnetization and permeability
4.10 Inductance and mutual inductance
Unit - 5 Boundary Conditions, Maxwell’s Equation And Wave Propagation
Unit 5
Boundary conditions Maxwell’s equation and wave propagation
5.1 Magnetic boundary conditions
5.2 Faraday’s law
5.3 Displacement current
5.4 Point form of Maxwell’s equation
5.5 Integral form of Maxwell’s equations
5.6 Wave propagation
5.7 Poynting vector
5.8 Skin effect
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Other Subjects of Semester-2
Power system
Signal & systems
Digital electronics
Electrical machines-i
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