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[.ca] Principles of Electrodynamics (ISBN 0486654931)



Nothing like reading Physics from a Unified Point of View!:
Since I've first heard about electricity and magnetism, people always said me that the electric and the magnetic field are nothing less than two sides of the same coin. I really wasn't convinced of that. I've entered at college. Nothing. And I took a (pitiful) undergraduate course on Electromagnetism. Nothing. Not even the Maxwell Equations and the explanation about how they demonstrate the existence of EM waves convinced me. It always appeared that The electric and the magnetic field were two separated things, no matter how much relations between them. I tried even graduate books (say, Jackson), and nothing. Then, Here comes the light... Schwartz' chapter about electric field and relativity, where he concludes merely from Coulomb law and Lorentz invariance that MUST BE A MAGNETIC FIELD, then comes with the EM Field Strength tensor and derives (also from Lorentz invariance)... the very Maxwell's equations! Unbelievable! Why didn't they tell me this before? Or, why don't they teach EM like this? All this not to mention the section about an insight over determining nuclear shape from electric quadrupole moments, the tensorial form of EM laws, Multipole expansion, all that with a remarkable physical insight that is so rare in EM texts (maybe other exception is Landau's Classical Theory of Fields). I only regret the absence of a Lagrangian-Hamiltonian formulation for EM, Green's functions, and gauge invariance with his properties and how this reflect in the formulation of EM laws. But I believe that these topics can be well covered in Landau's text (I really hope so, so I don't need to rely on the insight-less text from Jackson). After all, the physical unity, simplicity and beauty of Schwartz's book is nearly unbeatable. 5 stars "cum lauda"!


Le meilleur livre sur les couscous boulettes:
Bref, c'est tres bien sauf que beaucoup d'erreur se sont glisses dans le livre. C'est le probleme principal de ce livre est que l'audience est tres restreinte aux eleves de secondes. J'en appelle donc au serieux de l'auteur pour se relire quand meme. Il est ecrit que Integrale infinie de la derivee est egale a la fonction identite, non c'est faux. la constante a disparu. Beaucoup d'autres erreurs similaires sont surprenantes.


Ce livre est un petit chef d'oeuvre:
C'est de loin l'exposé le plus clair sur le sujet à ma connaissance. Quant au rapport qualité/prix, on voisine l'infini


A perfect introduction:
This book is the best introduction to advanced electromagnetic theory I have ever encountered. The author does a masterly job at simplifying the mathematics without over-simplifying the physics. If you're looking to gain a deep understanding of electromagnetics and its relation to the theory of relativity, this book is for you!


A great physicist and entrepreneur writes on his passion:
Melvin Schwartz won the Nobel Prize of physics in 1988 by his experiments (with Leon Lederman and Jack Steinberger) on this most elusive of all physical objects, the neutrino. We must be grateful for the fact that he found time to write this precious little book on electrodynamics. It is a gem . I compare it to the very best expositions: Landau-Lifshitz's "Classical Theory of Fields" and the first chapter of the first edition of Heitler's "Quantum Theory of Radiation" .


Author:Melvin Schwartz
Binding:Paperback
Dewey Decimal Number:537.6
EAN:9780486654935
ISBN:0486654931
Number Of Pages:352
Publication Date:1987-10-01



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