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Titlebook: Electromagnetic Radiation: Variational Methods, Waveguides and Accelerators; Kimball A. Milton,Julian Schwinger Textbook 2006 Springer-Ver

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书目名称Electromagnetic Radiation: Variational Methods, Waveguides and Accelerators
编辑Kimball A. Milton,Julian Schwinger
视频video
概述Provides a thorough introduction to electromagnetism with emphasis on radiation theory and its applications.Developed out of trailblazing lectures and papers by the late Julian Schwinger (Nobel Laurea
图书封面Titlebook: Electromagnetic Radiation: Variational Methods, Waveguides and Accelerators;  Kimball A. Milton,Julian Schwinger Textbook 2006 Springer-Ver
描述Julian Schwinger was already the world’s leading nuclear theorist when he joined the Radiation Laboratory at MIT in 1943, at the ripe age of 25. Just 2 years earlier he had joined the faculty at Purdue, after a postdoc with OppenheimerinBerkeley,andgraduatestudyatColumbia. Anearlysemester at Wisconsin had con?rmed his penchant to work at night, so as not to have to interact with Breit and Wigner there. He was to perfect his iconoclastic 1 habits in his more than 2 years at the Rad Lab. Despite its deliberately misleading name, the Rad Lab was not involved in nuclear physics, which was imagined then by the educated public as a esoteric science without possible military application. Rather, the subject at hand was the perfection of radar, the beaming and re?ection of microwaves which had already saved Britain from the German onslaught. Here was a technology which won the war, rather than one that prematurely ended it, at a still incalculable cost. It was partly for that reason that Schwinger joined this e?ort, rather than what might have appeared to be the more natural project for his awesome talents, the development of nuclear weapons at Los Alamos. He had got a bit of a taste of th
出版日期Textbook 2006
关键词Cross section; Electromagnetism; Julian Schwinger; Maxwell‘s equations; Transmission; electrical engineer
版次1
doihttps://doi.org/10.1007/3-540-29306-X
isbn_softcover978-3-540-29304-0
isbn_ebook978-3-540-29306-4
copyrightSpringer-Verlag Berlin Heidelberg 2006
The information of publication is updating

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Newell W. Johnson,Hemantha K. Amarasingheded to include any region within which one-dimensional propagation of electromagnetic waves can occur. It is the purpose of this chapter to establish the theory of simple waveguides, expressed in the general transmission line nomenclature sketched in Chap. 5.
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Tamara Preda,Peter Campbell,Yeow Chun Teecertain volume integral, the Lagrangian, be stationary with respect to variations of the other field variable. For a dissipationless region enclosed by perfectly conducting walls and devoid of internal currents, the variational principles (4.28) and (4.26) state that
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Variational Methods,certain volume integral, the Lagrangian, be stationary with respect to variations of the other field variable. For a dissipationless region enclosed by perfectly conducting walls and devoid of internal currents, the variational principles (4.28) and (4.26) state that
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Textbook 20062 years earlier he had joined the faculty at Purdue, after a postdoc with OppenheimerinBerkeley,andgraduatestudyatColumbia. Anearlysemester at Wisconsin had con?rmed his penchant to work at night, so as not to have to interact with Breit and Wigner there. He was to perfect his iconoclastic 1 habits
发表于 2025-3-22 20:07:12 | 显示全部楼层
ctures and papers by the late Julian Schwinger (Nobel LaureaJulian Schwinger was already the world’s leading nuclear theorist when he joined the Radiation Laboratory at MIT in 1943, at the ripe age of 25. Just 2 years earlier he had joined the faculty at Purdue, after a postdoc with OppenheimerinBer
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Gretchen E. Tietjen M.D.,Noemi Faedda Ph.D.cavitiesdriven by a traveling electromagnetic wave of wavelength λ ~ 10 cm, wherethe length of each cavity was λ/2, so that the phases of the wave, and hencethe polarities of the cavities, were reversed in successive cavities. Thus theelectron always meets an accelerating field. The total voltage developed bythe accelerator
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Electromagnetic Radiation: Variational Methods, Waveguides and Accelerators
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Electromagnetic Radiation: Variational Methods, Waveguides and Accelerators978-3-540-29306-4
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