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Àâòîðèçàöèÿ |
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Ïîèñê ïî óêàçàòåëÿì |
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Konopinski E.J. — Electromagnetic fields and relativistic particles |
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Ïðåäìåòíûé óêàçàòåëü |
Space-time 329
Space-time source density 377—379
Spectra, bremsstrahlung 310—314
Spectra, continuous 298—299 322
Spectra, discrete 279—280 457—458 461
Spectra, discrete, versus continuous 309—310 366—367 466
Spectra, synchrotron 308—310
Spheres of charge 31 33
Spheres of charge, self-energies of 42 117 429—431
Spheres of charge, spinning 87—89 117—118
Spheres of charge, translating 116—117 119 441
Spherical Bessel functions 240—241 278
Spherical Hankel functions 238—241 278
Spherical harmonics 76—79 243
Spherical harmonics vector 252—255
Spherical waves 217
Spherical waves, scalar 237—240 245—249
Spherical waves, vector 255—257
Spin see also BMT equation Thomas
Spin of electrons 402—404 547—548
Spin of photons 275—278
Spin, detection of 402—404
Spin, eigenvectors of 251—252
Spin-orbit coupling 402—403
standing waves 199 219 240 596
Stark effects 147
Stern — Gerlach experiment 131
Stokes theorem 476
Stress tensor 161—162 389
Stress tensor as momentum flux 162 206
Stress tensor as transmitter of force 162—168 178 506 539—540
Stress tensor, Maxwell, in free space 162—164
Stress tensor, Minkowski, in dielectrics 539
Stress vector 162—164 501—503 538—539
Summation convention 355
Superposition principle 9 50 51
Surface charge 38
Surface charge on conductors 193—194 492—493 501 528 537 588
Surface charge, conservation of 205 588
Surface currents 193—194 552 554 597
Susceptibility, electric 525
Susceptibility, magnetic 546
Synchrotron radiation 303—310 439
Taylor series 34n 44 129
TE (transverse electric) modes 196—199 206—207
TEM (transverse electromagnetic) modes 196n 206—207
Tension 163—164 see Stress
Tension along field lines 164 165 167
Tensor 35
Tensor, canonical 423
Tensor, divergence 161
Tensor, dyadic notation 35 262
Tensor, four-dimensional 381 391
Tensor, scalar products with vectors 35 162 233
Tensor, spherical 78 81
Tensor, unit 35 362
Thomas precession 373 402—404
Thomson scattering 292—295 322 365
Threshold energies 360—362
Time dilatation 333—334 373—374
TM (transverse magnetic) modes 196—197 206
torque 45 139 141 390
Torque derivability from a potential 45—46 140 505
Torque of radiative reaction 460
Torque on a conducting plane 506
Torque on a magnetic dipole 140
Torque on an electric dipole 45
Torque on spin 402—404
Torque transmission 170
Torque, work, by 46 140 505
Transformation of particles 347 360—362 374—375
Transmission in conductors 586—592 605—606
Transmission in dielectrics 567 577—578
Transmission of energy to currents 156 596
Transmission of forces see Stress tensor Stress
Transmission of torque 170
Transparency 557 579
| Transparency of metals to ultraviolet frequencies 604—606
Transparency of water to visible frequencies 571
Transverse Doppler shift 386—387
Transverse electric (TE) modes 196—199 206—207
Transverse electromagnetic (TEM) modes 196n 206
Transverse gauge see Gauge solenoidal Coulomb)
Transverse magnetic (TM) modes 196—197
Transverse waves 182—183
Tube elements (of current) 97 105
Unit-spin operators 249—252
Van Allen belt 152
Variation principle 407
Variation principle for field variables 417
Vector potential 87 171 477
Vector potential as a photon wave function 276n
Vector potential from frame rotation 143
Vector potential of a current loop 90 95 118
Vector potential of a magnetic dipole 94 97
Vector potential of a moving charge 118
Vector potential of filamentary currents 90
Vector potential of nonstatic multipoles 221—222 228 232 263—264
Vector potential of plane waves 185—186
Vector potential of radiation 217
Vector potential, gauging of 87 172—174 478 485
Vector potential, interpretation 4 158—160
Vector potential, Lorentz 4-vector 379
Vector potential, measurement of 159—160
Vector potential, static 87
Vector spherical harmonics 252—255
Vector-addition coefficients 254
Velocity 4-vector 395
Velocity field 287 316 380 382
Velocity in rotating frames 144
Velocity selector 404
Velocity, relativistic addition of 337—338
Virtual radiation 226
Virtual work see D’Alembert’s principle
Visible frequencies (light) 591 599
Wave (number) vector 183—184 216
Wave (number) vector, 4-vector 365 386
Wave (number) vector, and momentum 187n 246n 364—365
Wave (number) vector, complementarity to beam width 187—189
Wave (number) vector, complex 586—587 605—606
Wave equation 173 180 317—318
Wave equation in conductors 582
Wave equation in dielectrics 558
Wave equation in waveguides 194
Wave equation, Helmholtz form 177 237
Wave guides 194—201
Wave guides, attenuation in 197
Wave guides, cut-off frequencies in 197—198
Wave guides, cylindrical 207
Wave guides, losses in 597—598 608—609
Wave guides, modes in see TE (transverse electric) modes TM
Wave guides, rectangular 197—199
Wave packets 185 187
Wave packets as beams 274—275 281—282
Wave packets, complementarity in 187—189
Wave packets, dispersive propagation 574—577
Wave packets, propagation in free space 204—205
Wave packets, spherical 260 274
Wave zone see Radiation (wave) zone
Wavelength 184
Wavelength in conductors 584
Wavelength in dielectrics 568
Wavelength in wave guides 197
Weizsacker — Williams method 323
Wigner coefficients 254
Work 471—472
Work of energy transfer 131 154
Work on space-time trajectory 444—445
Work virtual 425 503
Work-force density 387
Work-function 415—416
X-rays 310
Zeeman effects 142—147 230—231
Zeeman splitting 231
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Ðåêëàìà |
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