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ELECTROMAGNETIC THEORY ebook pdf notes
Shubham Goyal

ELECTROMAGNETIC THEORY ebook pdf notes

Shubham Goyal | 20-Jan-2016 |
ELECTROSTATICS , MAGNETOSTATICS , ELECTRODYNAMIC FIELDS , Electromagnetic Waves ,

Hi friends, here Shubham Goyal uploaded notes for ELECTROMAGNETIC THEORY with title ELECTROMAGNETIC THEORY ebook pdf notes. You can download this lecture notes, ebook by clicking on the below file name or icon.

UNIT I FUNDAMENTALS
Sources and effects of electromagnetic fields – Vector fields – Different co-ordinate systems –Vector calculus – Gradient, Divergence and Curl – Divergence theorem – Stoke‟s theorem
UNIT II ELECTROSTATICS
Coulomb‟s Law – Electric field intensity – Field due to point and continuous charges – Gauss‟slaw and application – Electric potential – Electric field and equipotential plots – Electric field in free space, conductors, dielectric – Dielectric polarization – Dielectric strength – Electric field in multiple dielectrics – Boundary conditions, Poisson‟s and Laplace‟s equations – Capacitance – Energy density.
UNIT III MAGNETOSTATICS 9
Lorentz Law of force – Magnetic field intensity – Biot-savart Law – Ampere‟s Law – Magnetic field 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 – Magnetic force – Torque – Inductance – Energy density – Magnetic circuits.
UNIT IV ELECTRODYNAMIC FIELDS 9
Faraday‟s laws – Induced EMF – Transformer and motional EMF – Forces and Energy in quasistationary Electromagnetic Fields – Maxwell‟s equations (differential and integral forms) – Displacement current – Relation between field theory and circuit theory.
UNIT V ELECTROMAGNETIC WAVES 9
Generation – Electro Magnetic Wave 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 – Transmission lines – Line equations – Input impedances – Standing wave ratio and power.

 

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