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Titlebook: Wave Propagation in Dissipative Materials; A Reprint of Five Me B. D. Coleman,M. E. Gurtin,C. Truesdell Conference proceedings 1965 Springe

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發(fā)表于 2025-3-21 16:28:32 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Wave Propagation in Dissipative Materials
副標(biāo)題A Reprint of Five Me
編輯B. D. Coleman,M. E. Gurtin,C. Truesdell
視頻videohttp://file.papertrans.cn/1022/1021218/1021218.mp4
圖書封面Titlebook: Wave Propagation in Dissipative Materials; A Reprint of Five Me B. D. Coleman,M. E. Gurtin,C. Truesdell Conference proceedings 1965 Springe
描述Common experience reveals two basic aspects of wave propagation. First, while preserving their identity and travelling at definite speeds, sounds finally die out. Second, weak sounds may combine to form strong noises. Theories of acoustic propagation have succeeded in representing these aspects of experience separately, but never combined as in nature. The classical theories of sound in perfect fluids and elastic solids easily yield common speeds of propagation for plane infinitesimal disturbances, but no damping. Moreover, within EULER‘S theory of the perfect fluid, or its generalization, the GREEN-KIRCHHOFF-KELVIN theory of finite elasticity, weak waves may grow stronger and become shock waves, which propagate according to more complicated but equally definite principles. Effects of internal damping are easily added for theories of infinitesimal deformation, but for finite motions a dead end was reached about sixty years ago. Indeed, in 1901 DUHEM proved that according to the NAVIER-STOKES theory of fluids acceleration waves and waves of higher order cannot exist, and for shock waves he claimed a similar result, which has since been shown to be valid subject to certain qualificat
出版日期Conference proceedings 1965
關(guān)鍵詞Damping; deformation; dynamics; elasticity; material; mechanics; noise; shock wave; thermodynamics; wave; wave
版次1
doihttps://doi.org/10.1007/978-3-642-88691-1
isbn_softcover978-3-642-88693-5
isbn_ebook978-3-642-88691-1
copyrightSpringer-Verlag Berlin Heidelberg 1965
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uced by intermolecular interactions. The for- mer produce absorption from the microwave to the optical regions of the spectrum and the latter produce Rayleigh and Raman scattering; such absorption and scattering would be absent without collisions. Static properties, such as dielectric constant, refr
地板
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Bernard D. Coleman,Morton E. Gurtinention is directed to immediate experience. Seemingly, Wittgenstein is concerned with empirical knowledge and its foundations for which his mentor Russell cared much. But Wittgenstein’s problem is much more complicated and interesting than just epistemological grounding, for at the heart of the matt
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Bernard D. Coleman,Morton E. Gurtin,Ismael Herrera R.iginal primary substrates that expressions refer to, and at exhibiting the subjective acts that make signs expressive. The explanation of predicative expressions was then extended to the antecedent layer of prepredicative, perceptual experiences, explaining these by locating, with peculiar kinds of
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but if there’s no wall, there’s no need for fitting the window, or the latch” (Barks & Bly, 1981). Such beautiful words. Much of Rumi’s work directly illustrates the loving relationship that he shared with his spiritual teacher, Shams of Tabriz. Indeed, spiritual traditions from all around the world
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Bernard D. Coleman,Morton E. Gurtinly to phenomenologically describe sonic environments, but also to develop an audition-centered phenomenological methodology to enable this task. "Sonic environment" is this book‘s term for the acoustic shape of human life-environment, which is multisensory and does not exclude visual, tactile, olfac
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Bernard D. Coleman,Morton E. Gurtinion of space will serve, in what follows, as the central point of reference to the historical setting of the problem of space. That setting is important not just because its conflicting specifying assumptions motivate exercise of the phenomenological epoché. It is equally important because the setti
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