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Classical electricity and magnetism / Wolfgang Panofsky, Melba Phillips

Panofsky, Wolfgang.
Contributor(s): Phillips, Melba.
Material type: materialTypeLabelBook; Format: print Publisher: Mineola : Dover, 2005Edition: 2nd ed.Description: XVI, 494 p. ; 22 cm.ISBN: 978-0-486-43924-2.Subject(s): Electromagnetismo | Magnetismo | Electricidad
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Manuales (7 días) 02. BIBLIOTECA CAMPUS PUERTO REAL
537/PAN/cla (Browse shelf)   Shelving location | Bibliomaps® BIBLIOG. RECOM. 3741241375

FÍSICA II GRADO EN MATEMÁTICAS Asignatura actualizada 2017-2018

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Enhanced descriptions from Syndetics:

Compact and precise, this text offers advanced undergraduates and graduate students a diverse selection of topics: the electrostatic field in vacuum; general methods for the solution of potential problems; radiation reaction and covariant formulation of the conservation laws of electrodynamics; and numerous other subjects. 119 figures. 10 tables. 1962 edition.

Índice

Bibliografía: p. 479-482

Compact and precise, this text offers advanced undergraduates and graduate students a diverse selection of topics: the electrostatic field in vacuum; general methods for the solution of potential problems; radiation reaction and covariant formulation of the conservation laws of electrodynamics; and numerous other subjects. 119 figures. 10 tables. 1962 edition.

Table of contents provided by Syndetics

  • Prefaces
  • 1 The Electrostatic Field in Vacuum
  • 2 Boundary Conditions and Relation of Microscopic to Macroscopic Fields
  • 3 General Methods for the Solution of Potential Problems
  • 4 Two-Dimensional Potential Problems
  • 5 Three-Dimensional Potential Problems
  • 6 Energy Relations and Forces in the Electrostatic Field
  • 7 Steady Currents and Their Interaction
  • 8 Magnetical Materials and Boundary Value Problems
  • 9 Maxwell's Equations
  • 10 Energy, Force, and Momentum Relations in the Electromagnetic Field
  • 11 The Wave Equation and Plane Waves
  • 12 Conducting Fluids in a Magnetic Field (Magnetohydrodynamics)
  • 13 Waves in the Presence of Metallic Boundaries
  • 14 The Inhomogeneous Wave Equation
  • 15 The Experimental Basis for the Theory of Special Relativity
  • 16 Relativistic Kinematics and the Lorentz Transformation
  • 17 Covariance and Relativistic Mechanics
  • 18 Covariant Formulation of Electrodynamics
  • 19 The Liénard-Wiechert Potentials and the Field of a Uniformly Moving Electron
  • 20 Radiation from an Accelerated Charge
  • 21 Radiation Reaction and Covariant Formulation of the Conservation Laws of Electrodynamics
  • 22 Radiation, Scattering, and Dispersion
  • 23 The Motion of Charged Particles in Electromagnetic Fields
  • 24 Hamiltonian Formulation of Maxwell's Equations
  • Appendixes
  • Bibliography
  • Index

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