Electromagnetic Waves & Transmission Lines

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Technical Publications, ٠١‏/٠١‏/٢٠٠٨ - 846 من الصفحات
4 مراجعات
ElectrostaticsCoulomb's Law and Electric field Intensity - Fields due to Continuous charge distributions, Electric flux density, Gauss law and its applications, Electric potential, Relations between E and V, Maxwell's two equations for Electrostatic fields, Energy density, Illustrative problems.Convection and Conduction currents, Dielectric constant, lsotropic and homogeneous Dielectrics, Continuity equation and relaxation time, Poisson's and Laplace's equations; Capacitance - parallel plate, Coaxial, Spherical Capacitors.MagnetostaticsBiot-Savart law, Ampere's circuital law and applications, Magnetic flux density, Maxwell's two equations for magnetostatic fields, Magnetic Scalar and Vector potentials, Forces due to Magnetic fields, Inductances and Magnetic Energy.Maxwell's Equations (Time-Varying Fields)Faraday's law and transformer emf, Inconsistency of Ampere's law and Displacement current density, Maxwell's equations in different final forms and word statements, Conditions at a Boundary Surface - Dielectric-Dielectric and Dielectric-Conductor Interfaces.E.M. Wave CharacteristicsWave equations for conducting and perfect dielectric media, uniform plane wave-definition, all relations between E and H, sinusoidal variations, wave propagation in lossless and conducting media. Conductors and dielectrics-characterization, Wave propagation in good dielectrics and good conductors, polarization. Reflection and refraction of plane waves (Normal and oblique incidences, for both perfect conductors and perfect dielectrics), Brewster Angle and Total internal reflection, surface impedance.Poynting vector and Poynting Theorem, power loss in a plane conductor.Guided Waves and Transmission LinesParallel plane waveguides : Introduction, concepts and analysis, TE, TM and TEM modes,concepts of cut-off frequencies, wave impedances, velocities of propagation, Attenuation factor.Expression for attenuation for TEM case.
 

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المحتويات

Chapter1 Vector Analysis 1to59
1
the Laplaces and Poissons equations It explains their use in few practical situations The chapter
7
Chapter2 Coulombslaw and Electric Field Intensity
60
Examples with Solutions
96
Important Results
119
Chapter2 Coulombs Law and Electric Field Intensity 60 to
123
Examples with Solutions
173
Important Results
192
Chapter6 Poissons and Laplaces Equations 328 to
350
Chapter7 Steady Magnetic Field 351 to
458
Chapter8 Maxwells Equations and Time Varying Fields
459
Chapter8 Maxwells Equations and Time Varying Fields 459 to
506
Chapter9 Electromagnetic Waves 507 to
593
Chapter10 Poynting Vector and Flow of Power
594
Important Result
613
Poynting Vector and Flow of Power 594 to
614

Chapter3 Electric Flux Density and Gausss Law 124 to
196
Chapter4 Energy and Potential 197 to
266
iapter5 Conductors Dielectrics and Capacitance
267
Chapter5 Conductors Dielectrics and Capacitance 267 to
327
Chapter6 Poissons and Laplaces Equations
328
Transmission Lines 61 5 to
769
Guided Waves 770 to
790
index
837
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