Classical Electrodynamics

  • GOULD R
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Abstract

3rd ed. Ch. 1. Introduction to Electrostatics -- Ch. 2. Boundary-Value Problems in Electrostatics: I -- Ch. 3. Boundary-Value Problems in Electrostatics: II -- Ch. 4. Multipoles, Electrostatics of Macroscopic Media, Dielectrics -- Ch. 5. Magnetostatics, Faraday's Law, Quasi-Static Fields -- Ch. 6. Maxwell Equations, Macroscopic Electromagnetism, Conservation Laws -- Ch. 7. Plane Electromagnetic Waves and Wave Propagation -- Ch. 8. Waveguides, Resonant Cavities, and Optical Fibers -- Ch. 9. Radiating Systems, Multipole Fields and Radiation -- Ch. 10. Scattering and Diffraction -- Ch. 11. Special Theory of Relativity -- Ch. 12. Dynamics of Relativistic Particles and Electromagnetic Fields -- Ch. 13. Collisions, Energy Loss, and Scattering of Charged Particles, Cherenkov and Transition Radiation -- Ch. 14. Radiation by Moving Charges -- Ch. 15. Bremsstrahlung, Method of Virtual Quanta, Radiative Beta Processes -- Ch. 16. Radiation Damping, Classical Models of Charged Particles -- Appendix on Units and Dimensions.

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GOULD, R. J. (2020). Classical Electrodynamics. In Electromagnetic Processes (pp. 37–74). Princeton University Press. https://doi.org/10.2307/j.ctv131bv37.5

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