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Related lectures (29)
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Capillarity and Wetting
Explores capillarity, wetting, and surface tension, discussing contact angles, hysteresis, and wetting states.
Solid-Liquid Interfaces: Equations and Considerations
Discusses equations and considerations for solid-liquid interfaces and adhesion energy.
Surface Tension and Wetting: Solid/Liquid/Gas Interfaces
Explores surface tension, wetting, and the law of Laplace at interfaces.
Surface tension: Basics and Applications
Explores the origin and characteristics of surface tension, contact angle equilibrium, wetting properties, and the Young-Laplace equation.
Two-Phase Flows: Final Review
Provides a comprehensive review of Two-Phase Flows and Heat Transfer topics, including pool boiling, capillarity, wetting, and flow regimes.
Capillarity and Wetting: Fundamentals and Applications
Explores capillarity, wetting, nucleation, boiling, and condensation in liquid-vapor phase change applications.
Proteins: Central Dogma and Translation
Explains protein synthesis, translation, and the central dogma of molecular biology.
Wettability and Capillary Length
Explores wettability, force balance, wetting behavior, and capillary length in liquids.
Surface Tension: Fundamentals and Applications
Covers the fundamentals of surface tension, adhesion forces, and laser manufacturing technologies.
Surfaces and Interfaces: Thermodynamics and Kinetics
Explores surface and interface energy, wetting kinetics, and the impact of geometric and chemical inhomogeneities on wetting behavior.
Ceramic Processing: Dispersion and Wetting
Explores the production of ceramic pastes, dispersion, wetting, surface tension, and the lotus leaf effect.
Capillarity and Surface Tension
Covers capillarity, capillary rise, wetting, non-wetting, and surface forces.
Ceramic Processing: Wetting and Dispersion
Explores wetting and dispersion of ceramic powders, surface tension, additives, and microstructure control.
Gas-Liquid Interface: Forces, Pressure, and Curvature
Covers forces, pressure, and curvature at the gas-liquid interface, including vapor pressure, wetting, and surface tension measurements.
Evaporation Physics: Part I
Explores evaporation physics, covering contact angles, wetting states, diffusion, Fick's Law, and heat-mass transfer analogy.
Surface Tension: Young-Laplace Equation
Explores surface tension, the Young-Laplace equation, liquid drop shapes, and soap bubble pressures.
Polymer Characterization: Advanced Methods & Techniques
Explores advanced techniques for polymer characterization, focusing on thin films, surface analysis, and interface studies.
Evaporation Physics: Kinetic Theory of Gases
Covers the kinetic theory of gases and its application in evaporation physics, including Fick's Law of Diffusion and the Maxwell-Boltzmann distribution.
Gas/Liquid Interface: Fundamentals
Covers the fundamentals of gas-liquid interfaces, including surface tension and capillary action.
Drop Evaporation on Wetting Surface
Explores drop evaporation on wetting surfaces, Nukiyama's experiment, film boiling, and Tanner's law.
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