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Diffusion in Crystals: Atomic Theory and Random Motion
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Related lectures (42)
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Explores electrolyte diffusion in liquids and solids, emphasizing heterodiffusion mechanisms and solute interactions in crystal structures.
Diffusion Coefficient: Gas, Liquids, Solids
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Explores the diffusion coefficient in gases, liquids, and solids, including Fick equations and atomic theory.
Mass Transfer: Diffusion and Transport
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Explores mass transfer through diffusion mechanisms and transport forces.
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Diffusion and Transport in Tokamak Plasmas
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Explores diffusive transport, classical and neo-classical diffusion, and turbulent transport in tokamak plasmas.
Diffusion: Fick's Law and Einstein's Demonstration
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Explores Fick's law, diffusion equations, and real-life applications.
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Diffusion Coefficient
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Explores the determination of diffusion coefficient in different states of matter and the factors influencing the diffusion process.
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Explores mass transfer, diffusion, and transport forces, covering Fick's equations and Nernst-Einstein equation in various materials.
Mass Transfer Chapter 9
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Covers the principles of mass transfer, including diffusion and Fick's equations, and their applications in various processes.
Self-Diffusion in Metals
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Explores self-diffusion in metals, covering temperature, pressure, crystal structures, diffusion coefficients, atomic jumps, and the Arrhenius equation.
Transport Phenomena: Introduction
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Introduces transport phenomena, covering diffusion and thermal conduction in daily life.
Mixing in Microchannels
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Explores flow regimes, diffusion mixing, and energetic efficiency in microchannels, emphasizing the need for fast mixing with minimal energy.
Heterodiffusion in Solids
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Explores heterodiffusion, including electrolyte diffusion in liquids and solids, autodiffusion, and factors influencing diffusion rates.
Diffusion Mechanisms
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Explores diffusion mechanisms in crystalline solids, covering cubic and non-cubic structures, temperature effects, and self-diffusion in metals.
2D Conduction: Method of Separation of Variables
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Water Quality Modeling: Kinetics in PHREEQC
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Covers the modeling of kinetics in water quality using PHREEQC software, emphasizing the comparison of reaction time scales and the syntax of KINETICS and RATES keywords.
Heat and Mass Transfer: Fundamentals and Applications
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Explores heat and mass transfer fundamentals, applications, and examination details.
Diffusion in Solids: Atomic Theory and Examples
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Explores diffusion in gases, liquids, and solids, including atomic theory and examples in cubic crystals.
Mathematical Methods for Materials Science: Integrals, Exact Differentials
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Explores limits, derivation rules, integrals, and exact differentials for practical applications.
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