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Titlebook: Optical Particle Sizing; Theory and Practice Gérard Gouesbet,Gérard Gréhan Book 1988 Springer Science+Business Media New York 1988 Natur.co

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發(fā)表于 2025-3-21 17:41:48 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Optical Particle Sizing
副標(biāo)題Theory and Practice
編輯Gérard Gouesbet,Gérard Gréhan
視頻videohttp://file.papertrans.cn/703/702625/702625.mp4
圖書封面Titlebook: Optical Particle Sizing; Theory and Practice Gérard Gouesbet,Gérard Gréhan Book 1988 Springer Science+Business Media New York 1988 Natur.co
描述Optical particle s1z1ng is undoubtedly a fascinating field of research of the utmost practical importance. In the Universe fluids are nearly everywhere, and when they occur they almost invariably contain particles. Inside our bodies we can take the example of blood transporting a vi tal procession of red and white cells. Around us, we can find various particles in the air we breathe, bubbles in the champagne or the soda we drink, or natural and artificial (polluting!) particles in the lakes we swim in. Industrial processes and systems are also concerned with particles, from pulverized coal flames to fluidized beds, in a range of applications involving rocket exhausts, pneuma tic transport and more generally the infinite realm of mul tiphase situations. Such an obviously vast field would require a whole volume like this one merely to attempt to describe it superficially. To be sure, we would need a scientific Prevert to catalogue such an endless inventory. Finally, even outside our terrestrial spaceship particles can be detected in alien atmospheres or between stars. Theorists will enjoy analyzing the richness of light/particle interact. ion, a subject which is very far from being e
出版日期Book 1988
關(guān)鍵詞Natur; computer; design; development; modeling; optics; transport
版次1
doihttps://doi.org/10.1007/978-1-4757-1983-3
isbn_softcover978-1-4419-3208-2
isbn_ebook978-1-4757-1983-3
copyrightSpringer Science+Business Media New York 1988
The information of publication is updating

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Measurement of Small Polydispersities by Photon Correlation Spectroscopy,tributions (PSD). In this brief report we describe a relatively new method of analysing PCS data to provide significant information about the distribution of slightly polydisperse spherical particles; a more detailed account can be found in Reference 2.
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Lambda Depression/Overlay Histogram Analysis of Poly(Acrylate) as a Function of Added Salt,ion [C(t)] or spectral density [S(ω))] of the scattered light. If the light scattered by the supporting medium (solvent and salt) can be neglected, then the molecular (solute) correlation function for the self-beat (homodyne) correlation function can be expressed as
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Optimal Scaling of the Inverse Fraunhofer Diffraction Particle Sizing Problem: The linear System Prlity is determined using several measures of the condition (stability) of the resulting system of linear equations. The results provide design rules for specifying an optimal photodetector configuration of a Fraunhofer diffraction particle sizing instrument.
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Modeling of Multiple Scattering Effects in Fraunhofer Diffraction Particle Size Analysis,ttered light signatures which would be measured by laser diffraction instrument under multiple scattering conditions. The results were compared with experimental data and theoretical calculations based on other models.
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everywhere, and when they occur they almost invariably contain particles. Inside our bodies we can take the example of blood transporting a vi tal procession of red and white cells. Around us, we can find various particles in the air we breathe, bubbles in the champagne or the soda we drink, or nat
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Book 1988e, and when they occur they almost invariably contain particles. Inside our bodies we can take the example of blood transporting a vi tal procession of red and white cells. Around us, we can find various particles in the air we breathe, bubbles in the champagne or the soda we drink, or natural and a
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