Waves and Diffusion: FundamentalsCovers the fundamentals of waves, diffusion, and convection, focusing on the concepts of propagation, initial conditions, and boundary conditions.
Example: 1D steady diffusionExplores the numerical simulation of steady convection-diffusion problems, discretization, boundary conditions, and algebraic system assembly.
Internal Heat Transfer EffectsCovers internal heat transfer effects in heterogeneous reactions, emphasizing dimensionless numbers and transport effects.
Finite Difference GridsExplains finite difference grids for computing solutions of elastic membranes using Laplace's equation and numerical methods.
Heat Transfer FundamentalsCovers the fundamentals of heat transfer, including radiative properties, boundary layer theory, and Prandtl number.
Heat Transfer FundamentalsCovers the fundamentals of heat transfer, focusing on radiation, conduction, and convection, including boundary layers and Nusselt number.