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Lecture
Heat Equation: Basics and Stability Estimates
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Related lectures (29)
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Boundary Conditions - 1D Systems
Covers boundary conditions for heat diffusion in 1D systems.
Diffusion: Macroscopic View
Explores diffusion from a macroscopic perspective, emphasizing the derivation of the diffusion equation through mass conservation and fixed flux law.
Heterogeneous Reactions: Transport Effects
Explores transport effects in heterogeneous catalysis, including molecular diffusion and Knudsen diffusion in different types of pores.
Heat Equation: Core and Solutions
Explores the heat equation core, solutions, and diffusion behavior over time.
Thermal Diffusion: Conservation and Fourier Law
Explains conservation of energy and Fourier's law in thermal diffusion.
Heat Diffusion with Heat Sources
Explores heat diffusion in 1D steady-state conduction with heat sources and discusses thermal resistance and Kirchhoff's laws.
Diffusion of Neutrons
Covers the solutions of neutron diffusion, including analytical solutions, Laplacian in different geometries, and the physical significance of the diffusion area.
Computational Geomechanics: Week 4
Explores transient flow in porous media, covering governing equations, stability conditions, and numerical methods.
Heat Transfer Applications
Explores the applications of the Fourier equation in heat transfer phenomena.
Internal Heat Transfer Effects
Covers internal heat transfer effects in heterogeneous reactions, emphasizing dimensionless numbers and transport effects.