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Titlebook: Observation, Prediction and Simulation of Phase Transitions in Complex Fluids; Marc Baus,Luis F. Rull,Jean-Paul Ryckaert Book 1995 Springe

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書目名稱Observation, Prediction and Simulation of Phase Transitions in Complex Fluids
編輯Marc Baus,Luis F. Rull,Jean-Paul Ryckaert
視頻videohttp://file.papertrans.cn/701/700353/700353.mp4
叢書名稱Nato Science Series C:
圖書封面Titlebook: Observation, Prediction and Simulation of Phase Transitions in Complex Fluids;  Marc Baus,Luis F. Rull,Jean-Paul Ryckaert Book 1995 Springe
描述.Observation, Prediction and Simulation of Phase Transitionsin. .Complex Fluids. presents an overview of the phasetransitions that occur in a variety of soft-matter systems: colloidalsuspensions of spherical or rod-like particles and their mixtures,directed polymers and polymer blends, colloid--polymer mixtures, andliquid-forming mesogens. This modern and fascinating branch ofcondensed matter physics is presented from three complementaryviewpoints. The first section, written by experimentalists, emphasisesthe observation of basic phenomena (by light scattering, for example).The second section, written by theoreticians, focuses on the necessarytheoretical tools (density functional theory, path integrals, freeenergy expansions). The third section is devoted to the results ofmodern simulation techniques (Gibbs ensemble, free energycalculations, configurational bias Monte Carlo). The interplay betweenthe disciplines is clearly illustrated. .For all those interested in modern research in equilibrium statisticalmechanics. .
出版日期Book 1995
關鍵詞Compound; Phase Transition; Phase Transitions; colloid; complex fluid; condensed matter; polymer
版次1
doihttps://doi.org/10.1007/978-94-011-0065-6
isbn_softcover978-94-010-4034-1
isbn_ebook978-94-011-0065-6Series ISSN 1389-2185
issn_series 1389-2185
copyrightSpringer Science+Business Media Dordrecht 1995
The information of publication is updating

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Bilayer Phases to tail volume is large. This ratio is adjustable by various means (adding salt to reduce the Coulomb repulsion between heads, or synthesizing a detergent with a longer tail, for example). As the ratio is decreased, cylindrical and planar (fluid bilayer) packing arrangements are progressively favoured.
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Liquid Crystal Phase Transitions in Dispersions of Rodlike Colloidal Particlesow appreciable sedimentation in normal gravity, say smaller than 1 .. Colloidal particles are equivalent to molecules and atoms in that they undergo thermal motion. When the particles are monodisperse i.e. all particles have the same or nearly the same size, the colloidal system will exhibit a far-r
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Colloidal Suspensions: Density Functional Theory at Workn-drical) shapes occur, and may give rise to lyotropic liquid crystal phases. The diameter σ of the particles is typically in the range 10 ≤ σ ≤ 10... For large particles, the Péclet number . becomes larger than unity, signalling that convective (rheological) effects dominate Brownian motion in the
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Bilayer Phasesmolecules can self-assemble reversibly into large aggregates. The solvent can be water or hydrocarbon; for definiteness we assume water. The aggregation is driven by the preference for one or other part of the molecule to avoid the solvent. The simplest and most typical behaviour is the formation of
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