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532.6 --- Capillarity --- Molecular theory --- Chemistry, Physical and theoretical --- Matter --- Physics --- Permeability --- Surface chemistry --- Surface tension --- 532.6 Surface phenomena. Surface tension. Capillarity --- Surface phenomena. Surface tension. Capillarity --- Constitution --- Properties --- Capillarité --- Théorie moléculaire --- Capillarité --- Théorie moléculaire --- fysicochemie
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Water waves --- Capillarity. --- Surface tension. --- Tension superficielle. --- Capillarité. --- Vagues --- Mathematical models. --- Modèles mathématiques. --- Waves --- Capillarity --- Surface tension --- Surface phenomena --- Liquids --- Surface chemistry --- Surface energy --- Wetting --- Matter --- Physics --- Permeability --- Cycles --- Hydrodynamics --- Benjamin-Feir instability --- Mathematical models --- Properties --- Ondes --- Capillarité --- Tension superficielle --- Modèles mathématiques
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Offers a treatment of applied surface dynamics in relation to contact angles and surface tensions, providing a foundation for the subject and detailed presentations of recent techniques. The work supplies a theoretical framework for the study and measurement of surface tensions and contact angles, and acts as a day-to-day guide for laboratory practice.
Surfaces (Physics) --- Thermodynamics. --- Surface tension. --- Contact angle. --- Contact angle --- Surface chemistry --- Surface tension --- Thermodynamics --- Chemistry, Physical and theoretical --- Dynamics --- Mechanics --- Physics --- Heat --- Heat-engines --- Quantum theory --- Surfaces (Technology) --- Surface phenomena --- Capillarity --- Liquids --- Surface energy --- Wetting --- Chemistry, Surface --- Interfaces, Chemistry of --- Surfaces (Chemistry) --- Fluid mechanics --- Surface chemistry. --- Capillarity. --- Chimie des surfaces. --- Surfaces (physique) --- Thermodynamique. --- Tension superficielle. --- Capillarité. --- Angle de contact. --- Thermodynamique
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The revealing of the phenomenon of superhydrophobicity (the "lotus-effect") has stimulated an interest in wetting of real (rough and chemically heterogeneous) surfaces. In spite of the fact that wetting has been exposed to intensive research for more than 200 years, there still is a broad field open for theoretical and experimental research, including recently revealed superhydrophobic, superoleophobic and superhydrophilic surfaces, so-called liquid marbles, wetting transitions, etc. This book integrates all these aspects within a general framework of wetting of real surfaces, where physical and chemical heterogeneity is essential. Wetting of rough/heterogeneous surfaces is discussed through the use of the variational approach developed recently by the author. It allows natural and elegant grounding of main equations describing wetting of solid surfaces, i.e. Young, Wenzel and Cassie-Baxter equations. The problems of superhydrophobicity, wetting transitions and contact angle hysteresis are discussed in much detail, in view of novel models and new experimental data.
Wetting. --- Surface tension. --- Capillarity. --- Surfaces (Technology) --- Materials --- Surface phenomena --- Friction --- Surfaces (Physics) --- Tribology --- Matter --- Physics --- Permeability --- Surface chemistry --- Surface tension --- Capillarity --- Liquids --- Surface energy --- Wetting --- Surfaces --- Properties --- Mouillage (chimie des surfaces) --- Tension superficielle. --- Capillarité. --- Surfaces (technologie) --- Hysteresis --- Solid-liquid interfaces --- Liquid-solid interfaces --- Interfaces (Physical sciences) --- Elasticity --- Magnetic induction --- Solid-liquid interfaces. --- Hysteresis. --- Cassie Wetting. --- Contact Angle Hysteresis. --- Electrowetting. --- Non Stick Droplets. --- Superhydrophobicity. --- Surface Tension. --- Surface Wetting. --- Wenzel Wetting. --- Wetting Dynamics. --- Wetting Transitions.
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