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Molecular Theory of Capillarity

Molecular Theory of Capillarity
Author: J. S. Rowlinson
Publisher: Courier Corporation
Total Pages: 354
Release: 2013-04-26
Genre: Science
ISBN: 0486317099

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History of surface phenomena offers critical and detailed examination and assessment of modern theories, focusing on statistical mechanics and application of results in mean-field approximation to model systems. 1989 edition.


Open-Channel Microfluidics

Open-Channel Microfluidics
Author: Jean Berthier
Publisher: Morgan & Claypool Publishers
Total Pages: 171
Release: 2019-09-04
Genre: Technology & Engineering
ISBN: 1643276646

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Open microfluidics, the study of microflows having a boundary with surrounding air, encompasses different aspects such as paper or thread-based microfluidics, droplet microfluidics and open-channel microfluidics. Open-channel microflow is a flow at the micro-scale, guided by solid structures, and having at least a free boundary (with air or vapor) other than the advancing meniscus. This book is devoted to the study of open-channel microfluidics which (contrary to paper or thread or droplet microfluidics) is still very sparsely documented, but bears many new applications in biology, biotechnology, medicine, material and space sciences. Capillarity being the principal force triggering an open microflow, the principles of capillarity are first recalled. The onset of open-channel microflow is next analyzed and the fundamental notion of generalized Cassie angle (the apparent contact angle which accounts for the presence of air) is presented. The theory of the dynamics of open-channel microflows is then developed, using the notion of averaged friction length which accounts for the presence of air along the boundaries of the flow domain. Different channel morphologies are studied and geometrical features such as valves and capillary pumps are examined. An introduction to two-phase open-channel microflows is also presented showing that immiscible plugs can be transported by an open-channel flow. Finally, a selection of interesting applications in the domains of space, materials, medicine and biology is presented, showing the potentialities of open-channel microfluidics.


Kinetic Theory of Nucleation

Kinetic Theory of Nucleation
Author: Eli Ruckenstein
Publisher: CRC Press
Total Pages: 541
Release: 2016-07-06
Genre: Science
ISBN: 1138032174

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Explore a Kinetic Approach to the Description of Nucleation - An Alternative to the Classical Nucleation TheoryKinetic Theory of Nucleation presents an alternative to the classical theory of nucleation in gases and liquids-the kinetic nucleation theory of Ruckenstein-Narsimhan-Nowakowski (RNNT). RNNT uses the kinetic theory of fluids to calculate t


Structure of Liquids / Struktur der Flüssigkeiten

Structure of Liquids / Struktur der Flüssigkeiten
Author: H. S. Green
Publisher: Springer Science & Business Media
Total Pages: 326
Release: 2012-12-06
Genre: Science
ISBN: 3642459471

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135 We first describe the thermodynamic theory of surface tension and adsorption, by the method of the dividing surface of GIBBS. The use of a dividing surface or its equivalent is indispensable for the treatment of a curved interface, as otherwise the concepts of the area and curvature of the interface, cannot be pre cisely defined. In the case of a plane interface, however, the concept of the dividing surface is not necessary and a valid alternative exposition has been proposed by GUGGEN HEIM [3J, [4J in treating the interface zone as a separate entity of some definite thickness bounded by two mathematical planes. We make, however, little mention of this method, since it seems to be of only minor importance in connec tion with the statistical treatment of an interface. To avoid any ambiguity, the treatment of a spherical interface given in this article is based not on the original method of GIBBS but on the method modified by HILL [8J and KONDO [9]. This method, however, is not applicable to non spherical interfaces, which will not be dealt with in this article. Although all the relations for a plane interface can be deduced from the cor responding ones for a spherical interface by putting the curvature equal to zero, the planar and the spherical cases are considered separately because of the prac tical importance and easy physical visualization of a plane interface.


Capillarity and Wetting Phenomena

Capillarity and Wetting Phenomena
Author: Pierre-Gilles de Gennes
Publisher: Springer Science & Business Media
Total Pages: 298
Release: 2013-03-20
Genre: Science
ISBN: 0387216561

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The study of capillarity is in the midst of a veritable explosion. What is offered here is not a comprehensive review of the latest research but rather a compendium of principles designed for the undergraduate student and for readers interested in the physics underlying these phenomena.


The Molecular Theory of Fluids

The Molecular Theory of Fluids
Author: Herbert S. Green
Publisher:
Total Pages: 0
Release: 1969
Genre: Fluids
ISBN:

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Liquid-Vapor Phase-Change Phenomena

Liquid-Vapor Phase-Change Phenomena
Author: Van P. Carey
Publisher: CRC Press
Total Pages: 731
Release: 2020-02-28
Genre: Science
ISBN: 1498716636

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Since the second edition of Liquid-Vapor Phase-Change Phenomena was written, research has substantially enhanced the understanding of the effects of nanostructured surfaces, effects of microchannel and nanochannel geometries, and effects of extreme wetting on liquid-vapor phase-change processes. To cover advances in these areas, the new third edition includes significant new coverage of microchannels and nanostructures, and numerous other updates. More worked examples and numerous new problems have been added, and a complete solution manual and electronic figures for classroom projection will be available for qualified adopting professors.


Nonequilibrium Statistical Mechanics of Heterogeneous Fluid Systems

Nonequilibrium Statistical Mechanics of Heterogeneous Fluid Systems
Author: Andrei G. Bashkirov
Publisher: CRC Press
Total Pages: 180
Release: 2020-10-07
Genre: Science
ISBN: 1000141152

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There is a wide variety of heterogeneous fluid systems that possess interphase surfaces. This monograph is devoted to pioneering studies in nonequilibrium statistical mechanics of such systems. Starting from the Liouville equation, the equations of surface hydrodynamics are derived with allowance for discontinuities of thermodynamic parameters of interphase boundaries. Brownian motion of a large solid particle in a fluid and nucleation are treated as results of fluctuations of flows across particle surfaces. With the use of the Gibbs method, a shock wave in a gas is considered as a sort of an interphase surface, and the surface tension of a shock front is introduced for the first time.