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Self-diffusion and the MR signal
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Related lectures (33)
Diffusion: Fundamental Concepts
Covers the fundamental concepts of diffusion, including Fick's laws and temperature dependence, demonstrated with examples.
Monte Carlo Methods: Multi-Particle Diffusion
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Explores multi-particle diffusion using Monte Carlo methods in cementitious materials.
Diffusion Coefficients: Understanding Molecular Movement
Covers diffusion coefficients, self-diffusion, and the Stokes-Einstein relation in fluids.
Monte Carlo methods: single particle diffusion
MOOC: Sorption and transport in cementitious materials
Covers Monte Carlo methods for simulating single particle diffusion in cementitious materials, including random functions and number generators.
Diffusion Coefficients: Self-Diffusion and Suspended Particles
Explores diffusion coefficients for self-diffusion and suspended particles in fluids.
Magnetic Properties: Materials and Magnetization
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Viscoelasticity: Mechanical Models and Polymer Behavior
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Materials Science of Magnetic Materials
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Mass Transport: Fick's Law of Molecular Diffusion
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Covers mass transport through molecular diffusion, explaining Fick's first law and diffusion coefficient values for various materials.
Magnetic Properties of Materials
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Explores magnetic and electrical properties, atomic diffusion, and thermal characteristics of materials.
Heterogeneous Reactions: Transport Effects
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Explores transport effects in heterogeneous catalysis, including molecular diffusion and Knudsen diffusion in different types of pores.
Diffusion Coefficient: Gas, Liquids, Solids
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Explores the diffusion coefficient in gases, liquids, and solids, including Fick equations and atomic theory.
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.
Diffusion Coefficient
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Explores the determination of diffusion coefficient in different states of matter and the factors influencing the diffusion process.
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.
Autodiffusion in Metals
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Explores autodiffusion in metals, covering temperature and pressure influence, empirical correlations, and different metal structures.
Untitled
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Diffusion in Solids: Heterodiffusion
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Explores heterodiffusion in solids, discussing electrolyte diffusion, solute diffusion in crystals, crystal structures, and diffusion coefficients.
Diffusion in Alloys: Diluted and Binary Alloys
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Explores diffusion in diluted and binary alloys, phase separation, and the impact of concentration on intermolecular forces.
Fluid Dynamics: Microfluidics
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Explores microfluidics, covering continuum and Knudsen flow, damping effects, diffusion in liquids, liquid chromatography, and shear-driven chromatography.
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