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Classical Electricity and Magnetism (Second Edition)

List Price: $29.95
SKU:
9780486439242
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  • Product Details

    Author:
    Wolfgang K. H. Panofsky, Melba Phillips
    Series:
    Dover Books on Physics
    Format:
    Paperback
    Pages:
    526
    Publisher:
    Dover Publications (January 26, 2005)
    Language:
    English
    ISBN-13:
    9780486439242
    ISBN-10:
    0486439240
    Weight:
    21.47oz
    Dimensions:
    5.5" x 8.5"
    Case Pack:
    16
    File:
    Dover-Dover_09022026_P10562608_onix30_Complete-20260901.xml
    As low as:
    $28.45
    List Price:
    $29.95
    Publisher Identifier:
    P-DOVER
    Discount Code:
    D
    Audience:
    College/higher education
    Pub Discount:
    65
    Imprint:
    Dover Publications
    Folder:
    Dover
  • Overview

    Compact, clear, and precise in its presentation, this distinguished, widely used textbook offers graduate students and advanced undergraduates a diverse and well-balanced selection of topics.
    Subjects include the electrostatic field in vacuum; boundary conditions and relation of microscopic to macroscopic fields; general methods for the solution of potential problems, including those of two and three dimensions; energy relations and forces in the electrostatic field; steady currents and their interaction; magnet materials and boundary value problems; and Maxwell’s equations. Additional topics include energy, force, and momentum relations in the electromagnetic field; the wave equation and plane waves; conducting fluids in a magnetic field; waves in the presence of metallic boundaries; the inhomogeneous wave equation; the experimental basis for the theory of special relativity; relativistic kinematics and the Lorentz transformation; covariance and relativistic mechanics; covariant formulation of electrodynamics; and the Liénard-Wiechert potentials and the field of a uniformly moving electron.
    The text concludes with examinations of radiation from an accelerated charge; radiation reaction and covariant formulation of the conservation laws of electrodynamics; radiation, scattering, and dispersion; the motion of charged particles in electromagnetic fields; and Hamiltonian formulation of Maxwell’s equations.