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Lecture
Thermal Conductivity in Metals
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Thermal Properties in Materials Science
Explores the effects of temperature on materials, including thermal expansion and conductivity.
Thermal Properties of Materials
Explores the influence of temperature on material properties, dimensions, and behavior, including thermal fatigue and expansion.
Thermal Diffusion: Conservation and Fourier Law
Explains conservation of energy and Fourier's law in thermal diffusion.
Thermal Resistances & Bi Number
Covers thermal resistances, Bi number, and thermal circuits, including conductive heat transfer and heat diffusion equations.
Diffusion Equation
Covers the Fourier law, heat equation, Righi-Leduc effect, and related experiments.
Heat Diffusion with Heat Sources
Explores heat diffusion in 1D steady-state conduction with heat sources and discusses thermal resistance and Kirchhoff's laws.
Thermal Diffusion: Basics and Applications
Explores thermal diffusion, specific heat, conductivity, and expansion in materials, explaining how energy is transferred between atoms and molecules.
Thermophysical Properties: Expansion, Moduli, and Vacancies
Covers thermal expansion, Grüneisen parameter, and thermal vacancies in metals, exploring their interrelations and implications on material properties.
Thermal Conduction: Stationary vs. Unsteady
Explores thermal conduction, comparing stationary and unsteady regimes, the Fourier equation, and material thermal conductivity.
Anharmonic Effects in Solids
Explores anharmonic effects in solids, including thermal expansion, conductivity, and phonon scattering.