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Classical electrodynamics / John David Jackson

By: Material type: TextPublication details: Wiley India, New Dehli : 2007Edition: 3rd edDescription: xxi, 808 pISBN:
  • 9788126510948
Subject(s): DDC classification:
  • 537.6 J1321
Contents:
1. Introduction to Electrostatics.; 2. Boundary-Value Problems in Electrostatics: I.; 3. Boundary-Value Problems in Electrostatics: II.; 4. Multipoles, Electrostatics of Macroscopic Media, Dielectrics;. 5. Magnetostatics, Faraday's Law, Quasi-Static Fields.; 6. Maxwell Equations, Macroscopic Electromagnetism, ;Conservation Laws.; 7. Plane Electromagnetic Waves and Wave Propagation.; 8. Waveguides, Resonant Cavities, and Optical Fibers.; 9. Radiating Systems, Multipole Fields and Radiation.; 10. Scattering and Diffraction.; 11. Special Theory of Relativity.; 12. Dynamics of Relativistic Particles and Electromagnetic Fields.; 13. Collisions, Energy Loss, and Scattering of Charged Particles Cherenkov and Transition Radiation.; 14. Radiation by Moving Charges.; 15. Bremsstrahlung, Method of Virtual Quanta, Radiative Beta ;Processes. 16. Radiation Damping, Classical Models of Charged Particles.;
List(s) this item appears in: Physics
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Holdings
Cover image Item type Current library Home library Collection Shelving location Call number Materials specified Vol info URL Copy number Status Notes Date due Barcode Item holds Item hold queue priority Course reserves
Books UE-Central Library 537.6 J1321 (Browse shelf(Opens below)) Available T4508
Books UE-Central Library 537.6 J1321 (Browse shelf(Opens below)) Available T338

Includes appendices on units dimensions

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

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