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Titlebook: Henri Poincaré, 1912–2012; Poincaré Seminar 201 Bertrand Duplantier,Vincent Rivasseau Book 2015 Springer Basel 2015 electrodynamics.light.p

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發(fā)表于 2025-3-21 19:41:24 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Henri Poincaré, 1912–2012
副標(biāo)題Poincaré Seminar 201
編輯Bertrand Duplantier,Vincent Rivasseau
視頻videohttp://file.papertrans.cn/426/425636/425636.mp4
概述Renowned scientists present their view on Poincaré′s manifold contributions to mathematical physics.Addresses students and researchers in physics, mathematics and history of science.Based on education
叢書名稱Progress in Mathematical Physics
圖書封面Titlebook: Henri Poincaré, 1912–2012; Poincaré Seminar 201 Bertrand Duplantier,Vincent Rivasseau Book 2015 Springer Basel 2015 electrodynamics.light.p
描述.This thirteenth volume of the Poincaré Seminar Series, .Henri Poincaré, 1912-2012., is published on the occasion of the centennial of the death of Henri Poincaré in 1912. It presents a scholarly approach to Poincaré’s genius and creativity in mathematical physics and mathematics. Its five articles are also highly pedagogical, as befits their origin in lectures to a broad scientific audience. Highlights include “Poincaré’s Light” by Olivier Darrigol, a leading historian of science, who uses light as a guiding thread through much of Poincaré ’s physics and philosophy, from the application of his superior mathematical skills and the theory of diffraction to his subsequent reflections on the foundations of electromagnetism and the electrodynamics of moving bodies; the authoritative “Poincaré and the Three-Body Problem” by Alain Chenciner, who offers an exquisitely detailed, hundred-page perspective, peppered with vivid excerpts from citations, on the monumental work of Poincaré onthis subject, from the famous (King Oscar’s) 1889 memoir to the foundations of the modern theory of chaos in “Les méthodes nouvelles de la mécanique céleste.” A profoundly original and scholarly presentation
出版日期Book 2015
關(guān)鍵詞electrodynamics; light; probability theory; three-body problem; uniformization theorems?
版次1
doihttps://doi.org/10.1007/978-3-0348-0834-7
isbn_ebook978-3-0348-0834-7Series ISSN 1544-9998 Series E-ISSN 2197-1846
issn_series 1544-9998
copyrightSpringer Basel 2015
The information of publication is updating

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,Poincaré’s Odds,ovides significant insight into the evolution of Poincaré’s thought on several important matters such as the changes in physics implied by statistical mechanics and molecular theories. After having drawn the general historical context of this evolution, I focus on several important steps in Poincaré
地板
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,Henri Poincaré and the Uniformization of Riemann Surfaces,e six “uniformization theorems” discovered by Poincaré. He proved the first of these six theorems when he was a twenty-six years old assistant professor in Caen, and the last one twenty-six years later, when he was one of the most celebrated scientists in the world..The present text is in large part
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Olivier Darrigols are pervasive (link layer, routers, etc.), but queueing models are uncommon. Many of the concepts we have introduced via queueing systems (open/closed models, Little’s Law, Markov chains, PASTA, bottlenecks, etc.) in fact apply to non-queueing systems. This chapter and the next introduce technique
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Philippe Wormssures with MVA if it is closed. Although the separability requirement has been progressively relaxed, it remains restrictive. For example, although one can view the Internet as a massive queueing network, there are few queueing-theoretic models of the Internet; the finite buffers in routers, the bou
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