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Lecture
Diffusion Mechanisms
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Related lectures (31)
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Self-Diffusion in Metals
Explores self-diffusion in metals, covering temperature, pressure, crystal structures, diffusion coefficients, atomic jumps, and the Arrhenius equation.
Introduction to Materials Science: Atomic Bonds and Crystal Structures
Explores atomic bonds, crystal structures, states of matter, and the cubic crystal system.
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.
Heterodiffusion in Solids
Explores heterodiffusion, including electrolyte diffusion in liquids and solids, autodiffusion, and factors influencing diffusion rates.
Free-energy of solids: origins and consequences of the 1983 CECAM workshop
Explores the historical significance of the 1983 CECAM workshop on the free-energy of solids and its impact on developing free-energy methods for hard-core models.
Diffusion Coefficient: Gas, Liquids, Solids
Explores the diffusion coefficient in gases, liquids, and solids, including Fick equations and atomic theory.
Crystal Structures: Cubic Lattices & Miller Indices
Explores cubic crystal structures, coordination numbers, and packing factors in metals and alloys.
Crystal Structures: Arrangement and Diffraction
Explores crystal structures, unit cells, Miller indices, and X-ray diffraction principles.
Atomic Diffusion in Solids
Explores the reasons behind lower diffusion in crystalline solids and covers atomic theory, thermal hopping, and random movement.
Crystal Packing of Conjugated Molecules
Explores the crystal packing of conjugated molecules, discussing shapes, structures, and packing arrangements in the solid state.