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Wolfgang K. H. Panofsky, Phillips Panofsky, Melba Panofsky — Classical Electricity and Magnetism
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Название: Classical Electricity and Magnetism
Авторы: Wolfgang K. H. Panofsky, Phillips Panofsky, Melba Panofsky
Аннотация: This book is designed to emphasize those aspects of classical electricity and magnetism most useful to the modern student as a background both for experimental physics and for the quantum theory of matter and radiation. We have made no attempts at novelty beyond those inherent in looking at subject matter that has become a part of the foundations of physics, and has thus gained in usefulness as it has lost in immediacy. While no rigid adherence to historical development is attempted, the emphasis is on physical theory as evolved from fundamental empirical laws rather than on mathematics and strict internal logic. Thus Maxwell's equations are derived from the experimental laws of Coulomb, Ampere, and Faraday, instead of being postulated initially. In the opinion of the authors the physical concepts emerge more clearly in this way, and the approach represents the manner in which physical theory evolves in practice. The field formulation is preferred to the action-at-a-distance viewpoint even in electrostatics, however, since for the conventional treatment it is more readily extended to the nonfetatic case. This despite the fact that it is possible, both for static and for nonstatic phenomena,-to formulate' an entirely consistent electromagnetic theory based on the delayed-action-at-a-distance principle.
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Рубрика: Физика /
Статус предметного указателя: Готов указатель с номерами страниц
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Издание: 2-е издание
Год издания: 2005
Количество страниц: 494
Добавлена в каталог: 26.10.2010
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Предметный указатель
Fluctuations, density 415
Flux 8 63 160
Flux density 147
Flux linkages 176
Force on current systems 123 175
Force, electric volume 104 107
Force, electromagnetic volume 110 182
Force, Lorentz 183 191 331 378
Force, magnetic volume 177 182
Force, Minkowski 316 392
Forced vibrations 403
Forward scattering amplitude 422
Four-dimensional space 297
Four-momentum 312
Four-potential 324
Four-vector 305 320
Four-vector, contravariant 306
Four-vector, covariant 306
Four-velocity 312
Fourier analysis 242
Fourier transform 26 56 202 242 249
Free charge 28
Free electron 413
Free energy 100
Free energy density 101
Frequency spectrum 361 366
Fresnel 193 198 203
Fresnel — Fizeau convection coefficient 280
Frozen lines 205
Functional derivative 448
Furry 442
g-factor 131 437
Galilean relativity 272 273
Galilean transformation 273
Gauge transformation 241 325
Gauss's theorem 4 8 309
Gauss's theorem in four dimensions 309
Gaussian units 25 461
General relativity 283 339
Gibb's notation 470
Gradient 10
Green's function for conducting plane 52
Green's function for conducting sphere 51
Green's function for cylinder 91
Green's function for radiation field 243
Green's function for wedge 78
Green's function, concept 44 53 92
Green's reciprocity theorem 43 46
Green's theorem 21 45
Green's theorem, two-dimensional 79
Group of Lorentz transformation 296
Group velocity 202 209 224 413
Guide impedance 226
Guide propagation constant 224
gyromagnetic ratio 131 133 437
Half-wave antenna 254
Hall effect 118
Hamiltonian 427
Hamiltonian density 449
Hamiltonian formulation 446
Hankel function 90 230
Harmonic function 7 62
harmonic oscillator 401 455
Heaviside — Lorentz units 461
Helical orbit 376
Hertz vector 254
Hughes 144
Hydrostatic pressure 112 207
Hyperbolic cylinders 71
Hysteresis 172
Images, method of 49
Imaginary part 190
Impedance, wave guide 226
Improper transformation 1 330
Inaccessible charge 31
Inaccessible source 463
Incompressible fluid 112
Index of refraction 189 194 202 411
Inductance 174
Induction field 246 258
Induction field, magnetic 125
Inelastic collision 320
Inertial frame 273 283
Inhomogeneous wave equation 240
Intensive variable 100
interaction energy 172
Interference 276
Interferometer 277
Internal energy 100
International units 462
Invariant 296 307
Inversion, method of 47 79
Isothermal process 100
Isotropic 38
Joule heat 171 173 179
Kramers 416
Lagrangian 426 444 446
Lagrangian density 447
Lande g-factor 131
Langevin formula 40
Laplace's equation 11 53
Laplace's equation in dielectrics 43
Laplacian operator 3 474
Larmor frequency 424
Least action, principle of 430 434
Legendre function 15
Legendre function, associated 82
Legendre polynomial 15 83 86
Lienard — Wiechert potentials 327 341 355
Lifetime of state 402
Light cone 301
Line charge 13 64
Line current 123 152
Line element 473
line width 402
Linear antenna 251
Linear circuit 173
Linearly polarized wave 190
Lines of force 27 257
Logarithmic potential 65 75
Longitudinal velocity addition 302
Lorentz condition 240 254 325
Lorentz contraction 291
Lorentz force 182 183 191 331 378
Lorentz transformation 286 293 305
Lorentz — FitzGerald contraction 278
Loss-less transmission line 252
Losses at a metallic surface 219
Losses, Joule heat 171 173 179
Macroscopic field description 8 28 33 332
Magnetic boundary problems 139
Magnetic circuit 145
Magnetic dipole 133
Magnetic dipole radiation 261
Magnetic field energy 171 173
Magnetic field intensity 139
Magnetic flux 146 158
Magnetic induction field 125
Magnetic interaction 123
Magnetic lens 431 434
Magnetic materials 139
magnetic moment 130 261 334 437
Magnetic pole 141 330
Magnetic pressure 207
Magnetic quadrupole 436
Magnetic Reynolds number 206
Magnetic rigidity 434 469
Magnetic scalar potential 125 146
magnetic susceptibility 144
Magnetic vector potential 127
Magnetic viscosity 207
Magnetic volume force 177 182
magnetization 134 139 140
Magnetization current 129 134
Magnetization potential 264
Magnetized media 144
Magnetohydrodynamic waves 207
Magnetohydrodynamics 205
Mapping in complex plane 48
mass density 379
Mass, electromagnetic 381 387
Mass, variation with velocity 313
Mass-energy equivalence 314
Material media 332 380
Matrix 105
Maxwell stress tensor 103 178 181 191 377
Maxwell's equations 158 160 185 329
Mechanical momentum 183 311
Mechanical work 173
Meson field, scalar 451
Metallic boundary conditions 212
Metallic reflection 200
Metric tensor 309
Michel 442
Michelson — Morley experiment 275
Microscopic field description 8 28
Minkowski diagram 299
Minkowski force 316 392
MKS system 7 460
Modes of vibration 217
Molar Refraction 412
Molecular field 35
Moment tensor 335
Moment, electric 334 337
Moment, magnetic 130 261 334 437
Moment, multipole 15
Momentum balance 181
Momentum density 184 316 377 449
Momentum, electromagnetic 183 378 390
Momentum, mechanical 183 311
Monochromatic sources 245
Motion of charged particles 425
Motion of conductor in magnetic field 165 336
Motional field 163
Moving dielectric 165
Moving magnet 167
Moving media 160 163 165 193 194 280 302
Multipole 15
Multipole expansion 17 131 255
Multipole moment 15
Multipole potential 14 131 233 260
Multipole radiation 233 260 267
Mutual inductance 175
Natural units 462
Net point method 59
Neumann's formula 175
Newton's third law applied to magnetic interaction 124
Nisbet 230 264
Nonconservative potential 23
Nonisotropic dielectric 30 99
Normal derivative 12 32 43
Normal modes 410
Normalizing factor 86
Octupole 16
Ohm's law 118
Open circuit voltage 120
Optical theorem 422
Orbital angular momentum 270
Orthogonal coordinates 53
Orthogonality 54 58 86
Orthogonalization 217
Oscillating dipole 257
parallel plate capacitor 36 122
Paraxial motion 432
Periodic solutions 454
Permanent magnet 140 142 337
Permeability, absolute 145
Permeability, relative 145
Permeable media 144
phase velocity 197 202 224 412 413
Phase, invariance of 380
Photon 270
Planck 363
Plane of incidence 196
Plane polar coordinates 73
Plane polarized wave 190
Plane wave 185
Plane wave expansion in spherical wave functions 234
Plane wave in moving medium 193
Poincare 385 392
Point charge 13 398
Poisson bracket 450
Poisson's equation 11 149
Polar vector 327
Polarizability 38 412
Polarization 24 28 38 411
Polarization charge 28 114 129
Polarization current 129 140 163 195
Polarization potential 255
Polarized medium in motion 336
Polarizing angle 199
Pole, magnetic 141 330
Polygonal boundaries 67
Postulates of special relativity 283
potential problems 42
Potential, advanced 244 394
Potential, centrifugal 433
Potential, convection 348
Potential, Debye 231 265
Potential, electrostatic 10
Potential, four-vector 325
Potential, Lienard — Wiechert 327 341 355
Potential, magnetization 264
Potential, polarization 255
Potential, retarded 244
Potential, scalar 5
Potential, scalar, magnetic 125 146
Potential, vector 5 128 152
Potential, vector, magnetic 127
Potential, Yukawa 60 451
Poynting vector 180 249 268 377
Precession 133 439
Precession, Thomas 441
Pressure in dielectric liquid 111
Pressure, magnetic 207
Pressure, radiation 191
Principal axes 18 105 263
Principal coordinates 30 105
Principal value of singular integral (Cauchy) 418
Propagation vector 189 196
Proper frame 288
Proper length 291
Proper quantity 286
Proper time 290
Proper transformation 1
Pseudoscalar field 2 8
Pseudotensor 330
Pseudovector field 2 8
Q of oscillating system 219
Quadrupole 16 18
Quadrupole moment 18 264
Quadrupole tensor 18
Quadrupole, electric 262 436
Quadrupole, magnetic 436
Quantum of radiation 363 380
Radiated energy 248 250
Radiated energy, rate of 251 359 365
Radiation field 245 246
Radiation from accelerated charge 356
Radiation from circular orbit 363
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