Applications Of Electrodynamics In Theoretical Physics And Astrophysics
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Author | : David Ginsburg |
Publisher | : CRC Press |
Total Pages | : 492 |
Release | : 1989-11-20 |
Genre | : Science |
ISBN | : 9782881247194 |
Based on a lecture course in physics and astrophysics. Ginzburg treats certain problems and methods that are not rigorously treated in most texts. These are associated with microscopic and macroscopic electrodynamics and material concerning the theory of transition radiation and transition scattering. He discusses recent ideas and results, such as the problem of toroidal dipole moments. Book club price, $42. Annotation copyrighted by Book News, Inc., Portland, OR
Author | : David Ginsburg |
Publisher | : Routledge |
Total Pages | : 492 |
Release | : 2017-10-19 |
Genre | : Science |
ISBN | : 1351466186 |
Treats certain problems and methods of theoretical physics and astrophysics which are associated with microscopic and macroscopic electrodynamics and material concerning the theory of transition radiation and transition scattering.
Author | : V.L. Ginzburg |
Publisher | : Elsevier |
Total Pages | : 471 |
Release | : 2013-10-22 |
Genre | : Science |
ISBN | : 1483293181 |
The aim of this book is to present, on the one hand various topics in theoretical physics in depth - especially topics related to electrodynamics - and on the other hand to show how these topics find applications in various aspects of astrophysics. The first text on theoretical physics and astrophysical applications, it covers many recent advances including those in X-ray, &ggr;-ray and radio-astronomy, with comprehensive coverage of the literature
Author | : Grigory Vekstein |
Publisher | : CRC Press |
Total Pages | : 208 |
Release | : 1992-01-01 |
Genre | : Science |
ISBN | : 9780750301411 |
Physics of Continuous Media: A Collection of Problems with Solutions for Physics Students contains a set of problems with detailed and rigorous solutions. Aimed at undergraduate and postgraduate students in physics and applied mathematics, the book is a complementary text for standard courses on the physics of continuous media. With its assortment of standard problems for beginners, variations on a theme, and original problems based on new trends and theories in the physics under investigation, this book aids in the understanding of practical aspects of the subject. Topics discussed include vectors, tensors, and Fourier transformations; dielectric waves in media; natural optical activity; Cherenkov radiation; nonlinear interaction of waves; dynamics of ideal fluids and the motion of viscous fluids; convection; turbulence and acoustic and shock waves; the theory of elasticity; and the mechanics of liquid crystals.
Author | : Yury M. Belousov |
Publisher | : John Wiley & Sons |
Total Pages | : 528 |
Release | : 2020-07-06 |
Genre | : Science |
ISBN | : 3527828915 |
"Problem Solving in Theoretical Physics" helps students mastering their theoretical physics courses by posing advanced problems and providing their solutions - along with discussions of their physical significance and possibilities for generalization and transfer to other fields.
Author | : Joseph I. Kapusta |
Publisher | : Cambridge University Press |
Total Pages | : 443 |
Release | : 2023-07-31 |
Genre | : Science |
ISBN | : 1009401955 |
Author | : Robert Joseph Gould |
Publisher | : Princeton University Press |
Total Pages | : 292 |
Release | : 2006 |
Genre | : Science |
ISBN | : 9780691124445 |
This book provides an understanding of the theoretical foundations for the calculation of electromagnetic processes. Photon production processes are particularly important in astrophysics, since almost all of our knowledge of distant astronomical objects comes from the detection of radiation from these sources. Further, the conditions therein are extremely varied and a wide variety of naturally occurring electromagnetic phenomena can be described by limiting forms of the basic theory. The first chapter reviews some basic principles that are the underpinnings for a general description of electromagnetic phenomena, such as special relativity and, especially, relativistic covariance. Classical and quantum electrodynamics (QED) are then formulated in the next two chapters, followed by applications to three basic processes (Coulomb scattering, Compton scattering, and bremsstrahlung). These processes are related to other phenomena, such as pair production, and the comparisons are discussed. A unique feature of the book is its thorough discussion of the nonrelativistic limit of QED, which is simpler than the relativistic theory in its formulation and applications. The methods of the relativistic theory are introduced and applied through the use of notions of covariance, to provide a shorter path to the more general theory. The book will be useful for graduate students working in astrophysics and in certain areas of particle physics.
Author | : J.T. Schmelz |
Publisher | : Springer Science & Business Media |
Total Pages | : 618 |
Release | : 2012-12-06 |
Genre | : Science |
ISBN | : 9401127654 |
As in the days following Skylab, solar physics came to the end of an era when the So lar Maximum Mission re-entered the earth's atmosphere in December 1989. The 1980s had been a pioneering decade not only in space- and ground-based studies of the solar atmosphere (Solar Maximum Mission, Hinotori, VLA, Big Bear, Nanc;ay, etc.) but also in solar-terrestrial relations (ISEE, AMPTE), and solar interior neutrino and helioseismol ogy studies. The pace of development in related areas of theory (nuclear, atomic, MHD, beam-plasma) has been equally impressive. All of these raised tantalizing further questions about the structure and dynamics of the Sun as the prototypical and best observed star. This Advanced Study Institute was timed at a pivotal point between that decade and the realisation of Yohkoh, Ulysses, SOHO, GRANAT, Coronas, and new ground-based optical facilities such as LEST and GONG, so as to teach and inspire the up and coming young solar researchers of the 1990s. The topics, lecturers, and students were all chosen with this goal in mind, and the result seems to have been highly successful by all reports.
Author | : P. Rullhusen |
Publisher | : World Scientific |
Total Pages | : 222 |
Release | : 1998 |
Genre | : Science |
ISBN | : 9789810230500 |
The purpose of this book is to give a description of the state of the art in theoretical and experimental work achieved in radiation source development. It summarizes clearly and comprehensibly, the basic physical aspects needed to understand the phenomena, and also provides the interested reader with sufficient literature to be able to follow the development in more detail. In addition, it contains a unified view of most theoretical effects and their common properties. The most recent developments as well as references to further work can be found in this volume. In many cases, review articles and textbooks published in specialized areas are also incorporated into the text.
Author | : Hermann Kolanoski |
Publisher | : Oxford University Press |
Total Pages | : 949 |
Release | : 2020-06-30 |
Genre | : Science |
ISBN | : 0191899232 |
This book describes the fundamentals of particle detectors as well as their applications. Detector development is an important part of nuclear, particle and astroparticle physics, and through its applications in radiation imaging, it paves the way for advancements in the biomedical and materials sciences. Knowledge in detector physics is one of the required skills of an experimental physicist in these fields. The breadth of knowledge required for detector development comprises many areas of physics and technology, starting from interactions of particles with matter, gas- and solid-state physics, over charge transport and signal development, to elements of microelectronics. The book's aim is to describe the fundamentals of detectors and their different variants and implementations as clearly as possible and as deeply as needed for a thorough understanding. While this comprehensive opus contains all the materials taught in experimental particle physics lectures or modules addressing detector physics at the Master's level, it also goes well beyond these basic requirements. This is an essential text for students who want to deepen their knowledge in this field. It is also a highly useful guide for lecturers and scientists looking for a starting point for detector development work.