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Lecture
A Full Water Transport Model
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Related lectures (28)
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Mass Transport: Fick's Law of Molecular Diffusion
Covers mass transport through molecular diffusion, explaining Fick's first law and diffusion coefficient values for various materials.
Mass Transfer Coefficients: Liquid vs Gas
Explores mass transfer coefficients in liquid and gas phases, with a focus on convective mass transfer around dissolving bubbles and experimental dynamics of granular systems.
Evaporation Physics: Part I
Explores evaporation physics, covering contact angles, wetting states, diffusion, Fick's Law, and heat-mass transfer analogy.
Extended Josephson Junctions: Modeling and Critical Current
Covers the magnetic thickness, short and long junctions, and critical current.
Transport Equations: Convection and Diffusion
Explores transport equations, emphasizing conservation principles and scheme stability.
Diffusion in Gases, Liquids, Solids
Covers the diffusion coefficient in gases, liquids, and solids, including the Matano method and atomic theory of diffusion.
Plasma Physics: Impact Ionisation and Random Walk
Explores impact ionisation in plasma physics and the random walk model as a key challenge in understanding plasma confinement.
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Diffusion Coefficient
Explores the determination of diffusion coefficient in different states of matter and the factors influencing the diffusion process.
Diffusion Equations: Green's Function Approach
Covers the analysis and solution of diffusion equations using Green's function approach and discusses boundary conditions and dimensional analysis.