| Maxwell's Equations | p. 1 |
| Microscopic Electrodynamics | p. 1 |
| Microscopic Charges | p. 2 |
| The Field Equations | p. 4 |
| Variational Principle | p. 9 |
| Conservation Theorems | p. 12 |
| Delta Function | p. 15 |
| Radiation Fields | p. 16 |
| Multipole Radiation | p. 21 |
| Work Done by Charges | p. 29 |
| Macroscopic Fields | p. 32 |
| Problems for Chap. 1 | p. 34 |
| Spherical Harmonics | p. 43 |
| Connection to Bessel Functions | p. 43 |
| Multipole Harmonics | p. 48 |
| Spherical Harmonics | p. 51 |
| Multipole Interactions | p. 57 |
| Problems for Chap. 2 | p. 61 |
| Relativistic Transformations | p. 63 |
| Four-Dimensional Notation | p. 63 |
| Field Transformations | p. 68 |
| Problems for Chap. 3 | p. 70 |
| Variational Principles for Harmonic Time Dependence | p. 79 |
| Variational Principles | p. 80 |
| Boundary Conditions | p. 84 |
| Babinet's Principle | p. 89 |
| Reciprocity Theorems | p. 91 |
| Problems for Chap. 4 | p. 92 |
| Transmission Lines | p. 95 |
| Dissipationless Line | p. 95 |
| Resistive Losses | p. 98 |
| Example: Coaxial Line | p. 99 |
| Cutoff Frequencies | p. 100 |
| Problems for Chap. 5 | p. 101 |
| Waveguides and Equivalent Transmission Lines | p. 103 |
| Transmission Line Formulation | p. 103 |
| Hertz Vectors | p. 112 |
| Orthonormality Relations | p. 113 |
| Energy Density and Flux | p. 115 |
| Impedance Definitions | p. 118 |
| Complex Poynting and Energy Theorems | p. 121 |
| Problems for Chap. 6 | p. 127 |
| Rectangular and Triangular Waveguides | p. 133 |
| Rectangular Waveguide | p. 133 |
| Isosceles Right Triangular Waveguide | p. 141 |
| Equilateral Triangular Waveguide | p. 143 |
| Problems for Chap. 7 | p. 152 |
| Circular Cross Section | p. 153 |
| Cylinder Functions | p. 154 |
| Circular Guide | p. 158 |
| Circular Guide with Metallic Cylindrical Wedge | p. 163 |
| Coaxial Guide | p. 165 |
| Coaxial Guide with Metallic Cylindrical Wedge | p. 167 |
| Elliptic and Parabolic Cylinder Coordinates | p. 169 |
| Problems for Chap. 8 | p. 174 |
| Reflection and Refraction | p. 179 |
| Problems for Chap. 9 | p. 182 |
| Variational Methods | p. 185 |
| Variational Principles | p. 185 |
| Rayleigh's Principle | p. 188 |
| Proof of Completeness | p. 195 |
| Variation-Iteration Method | p. 200 |
| Error Estimates | p. 206 |
| Problems for Chap. 10 | p. 210 |
| Examples of Variational Calculations for Circular Guide | p. 213 |
| E Modes | p. 213 |
| Bounds on Second Eigenvalue | p. 217 |
| H Modes | p. 223 |
| Problems for Chap. 11 | p. 225 |
| Steady Currents and Dissipation | p. 227 |
| Variational Principles for Current | p. 227 |
| Green's Functions | p. 231 |
| Problems for Chap. 12 | p. 234 |
| The Impedance Concept in Waveguides | p. 235 |
| Waveguides and Equivalent Transmission Lines | p. 235 |
| Geometrical Discontinuities and Equivalent Circuits | p. 236 |
| S-Matrix | p. 236 |
| Normal Modes | p. 240 |
| Shift of Reference Point | p. 242 |
| Lumped Network Description | p. 244 |
| Energy | p. 248 |
| Variational Principle | p. 249 |
| Bifurcated Guide | p. 251 |
| Imperfect Conducting Walls | p. 256 |
| Conclusion | p. 260 |
| Problems for Chap. 13 | p. 260 |
| Accelerators: Microtrons and Synchrotrons | p. 263 |
| The Microtron | p. 263 |
| Cavity Resonators | p. 264 |
| Elementary Theory | p. 267 |
| Vertical Defocusing | p. 268 |
| Radiation Losses | p. 269 |
| Phase Focusing | p. 270 |
| Excitation of a Cavity by Electrons | p. 271 |
| Microwave Synchrotron | p. 275 |
| Accelerating Cavities | p. 275 |
| Motion of Electron | p. 275 |
| Betatron Regime: [epsilon subscript 0] = 0, [Phi subscript 0] = 2[pi]R[superscript 2]H[subscript 0](t) | p. 277 |
| Betatron Regime and Constant H[subscript 0] | p. 278 |
| Modern Developments | p. 279 |
| Problems for Chap. 14 | p. 279 |
| Synchrotron Radiation | p. 281 |
| Relativistic Larmor Formula | p. 281 |
| Energy Loss by a Synchrotron | p. 283 |
| Spectrum of Radiation Emitted by Synchrotron | p. 284 |
| Angular Distribution of Radiated Power | p. 288 |
| Historical Note | p. 292 |
| Problems for Chap. 15 | p. 293 |
| Diffraction | p. 295 |
| Variational Principle for Scattering | p. 295 |
| Scattering by a Strip | p. 298 |
| Normal Incidence | p. 298 |
| Grazing Incidence | p. 301 |
| General Incident Angle | p. 304 |
| Diffraction by a Slit | p. 307 |
| Approximate Field | p. 312 |
| Transform of Scattered Field | p. 312 |
| Differential Cross Section | p. 313 |
| First Approximation | p. 314 |
| Exact Electric Field | p. 318 |
| Approximate Surface Current | p. 320 |
| Problems for Chap. 16 | p. 324 |
| Quantum Limitations on Microwave Oscillators | p. 329 |
| Introduction | p. 329 |
| Coherent States | p. 329 |
| Harmonic Oscillator | p. 334 |
| Free Particle | p. 336 |
| Electron Interacting with an Oscillator | p. 338 |
| Extreme Quantum Limit | p. 343 |
| Correlations | p. 345 |
| Problems for Chap. 17 | p. 346 |
| Electromagnetic Units | p. 347 |
| References | p. 351 |
| Index | p. 353 |
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