Electrodynamics of Continua I: Foundations and Solid MediaSpringer Science & Business Media, 6 груд. 2012 р. - 436 стор. The electrodynamics of continua is a branch ofthe physical sciences concerned with the interaction of electromagnetic fields with deformable bodies. De formable bodies are considered to be continua endowed with continuous distributions of mass and charge. The theory of electromagnetic continua is concerned with the determination of deformations, motions, stress, and elec tromagnetic fields developed in bodies upon the applications of external loads. External loads may be of mechanical origin (e.g., forces, couples, constraints placed on the surface of the body, and initial and boundary conditions arising from thermal and other changes) and/or electromagnetic origin (e.g., electric, magnetic, and current fields). Because bodies of different constitutions respond to external stimuli in a different way, it is imperative to characterize properly the response functions relevant to a given class of continua. This is done by means of the constitutive theory. For example, an elastic dielectric responds to electromagnetic fields in a totally different way than a magnetic fluid. The present book is intended to present a unified approach to the subject matter, based on the principles of contemporary continuum physics. |
Зміст
Problems | 236 |
CHAPTER 8 | 307 |
APPENDICES | 373 |
B Crystallographic Magnetic Groups | 379 |
Some Theorems on Symmetric Polynomial Functions | 399 |
F Maxwells Equations in Various Systems of Units | 405 |
| 425 | |
| 437 | |
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Electrodynamics of Continua I: Foundations and Solid Media A. Cemal Eringen,Gerard A. Maugin Перегляд фрагмента - 1990 |
Electrodynamics of Continua I: Foundations and Solid Media A. Cemal Eringen,Gerard A. Maugin Попередній перегляд недоступний - 2011 |
Electrodynamics of continua Ahmed Cemal Eringen,Gérard A. Maugin Попередній перегляд недоступний - 1989 |
Загальні терміни та фрази
antiferromagnetic atomic axiom B₁ balance laws basic quantities bias field body boundary conditions C₁ charge components constant constitutive equations continuum coordinates crystal classes cylinder D₁ deformation denote density determined dielectric displacement E₁ effect elastic electric field electromagnetic fields Eringen Etki expressed ferroelectric ferromagnetic field equations Figure function given h₁ integrity basis invariants irreducible representations isotropic jump conditions linear theory magnetic field magnetic moment magnetoelastic material Maugin Maxwell's equations moduli motion nonlinear obtain optical orthogonal phase velocity piezoelectric plane plate point group polarization polynomial potential problem propagation R₁ rotation scalar Section solids solution spin strain stress tensor surface symmetry Table theorem tractions transformations transverse transverse wave vanishes variables vector wave λε μο ΟΣ ΟΣ ΟΣ σο ω²
