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SYLLABUS
Unit - 1
1. Electrostatics
Electric Field: Concept of Electric Field Lines and Electric Flux, Gauss’s Law (Integral and Differential Forms), Application to Linear, Plane and Spherical Charge Distributions, Conservative Nature of Electric Field E, Irrotational Field – Electric Potential: Concept of Electric Potential, Relation Between Electric Potential and Electric field, Potential Energy of a System of Charges – Energy Density in an Electric Field– Calculation of Potential from Electric Field for a Spherical Charge Distribution.
Unit - 2
2. Magnetostatics
Concept of Magnetic Field B and Magnetic Flux, Biot-Savart’s Law, B due to a Straight Current Carrying Conductor – Force on a Point Charge in a Magnetic Field, Properties of B, Curl and Divergence of B, Solenoidal Field – Integral from of Ampere’s Law, Applications of Ampere’s Law – Field Due to Straight, Circular and Solenoidal Currents – Energy Stored in Magnetic Field – Magnetic Energy in Terms of Current and Inductance – Magnetic Force between Two Current Carrying Conductors – Magnetic Field Intensity. Ballistic Galvanometer: Torque on a Current Loop in a Uniform Magnetic Field, Working Principle of B.G., Current and Charge Sensitivity, Electromagnetic Damping, Critical Damping Resistance.
Unit - 3
3. Electromagnetic Induction
Faraday’s Laws of Induction (Differential and Integral Form), Lenz’s Law, Self and Mutual Induction –Continuity Equation, Modification of Ampere’s Law, Displacement Current, Maxwell Equations.
Unit - 4
4. Electromagnetic Waves
Maxwell’s Equations in Vacuum and Dielectric Medium, Boundary Conditions, Plane Wave Equation –Transverse Nature of EM Waves, Velocity of Light in Vacuum and in Medium, Polarization, Reflection and Transmission – Polarization of EM Waves, Brewster’s Angle, Description of Linear, Circular and Elliptical Polarization.
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CategoriesArts and Science
Format EPUB
TypeeBook