Electromagnetic Field Theory: A Problem Solving Approach Part 75

Electromagnetic Field Theory: A Problem Solving Approach Part 75. Electromagnetic field theory is often the least popular course in the electrical engineering curriculum. Heavy reliance on vector and integral calculus can obscure physical phenomena so that the student becomes bogged down in the mathematics and loses sight of the applications. This book instills problem solving confidence by teaching through the use of a large number of worked problems. To keep the subject exciting, many of these problems are based on physical processes, devices, and models. This text is an introductory treatment on the junior level for a two-semester electrical engineering. | Index 715 Electronic polarization 136 Electron volts 206 Electroscope 53-54 Electrostatic generators and Faraday s ice pail experiment 53-54 induction machines 224-230 Van de Graaff 223-224 Electrostatic induction 51-53 Faraday s ice pail experiment 53-54 machines 224-230 Electrostatic precipitation 293 307 Electrostatic radiating field 671 Electrostriction 151 Elliptical polarization 515 Element factor 683 Endfire array 685 Energy binding of atom 211-212 of crystal 205-206 and capacitance 212-213 220 and charge distributions 204-208 conservation theorem 199 and current distributions 454 density electric field 208-209 magnetic field 441-455 and inductance 454 stored in charged spheres 210 Equipotential 84-85 Euerle W. C. 227 Exponential transmission line 649 External inductance 456-457 Fair weather electric field 195 Farad 175 Faraday M. 394 cage 78 disk 420-422 ice pail experiment 53-54 Faraday s law of induction 394-397 489 and betatron 403 for moving media 417 and paradoxes 430-435 and resistive loop 412 and Stokes theorem 404 Far field radiation 671 Fermat s principle 562 Ferroelectrics 149-151 Ferromagnetism 357 Fiber optics 550-552 Field emission 109 Field lines see Electric field lines Magnetic field lines Flux 22 and divergence 21-26 and divergence theorem 26-28 and Gauss s law 74-75 and magnetic field 338 magnetic through square loop 342-343 and sources 21-22 and vector potential 338 Force on capacitor 219-223 Coulomb s law 54-56 on current carrying slab 441 444 between current sheets 329 due to pressure gradient 155 on electric dipole 216 gravitational 56 on inductor 461 interfacial 264 on linear induction machine 449-450 between line charge and cylinder 99 between line charge and plane 97 between line current and perfect conductor or infinitely permeable medium 363 between line currents 314-315 on magnetically permeable medium 363 on magnetic block 465 on magnetic dipole 352 368-370 on magnetizable current loop 370-375 on MHD machine 430 on moving charge

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