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Lecture
Chemical Engineering of Heterogeneous Reactions
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Related lectures (32)
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Numerical Methods for Boundary Value Problems
Covers numerical methods for solving boundary value problems using finite difference, FFT, and finite element methods.
Internal Heat Transfer Effects
Covers internal heat transfer effects in heterogeneous reactions, emphasizing dimensionless numbers and transport effects.
Numerical Solution Methods
Covers numerical solution methods for dynamics and kinetics using stochastic methods.
Chemical Engineering of Heterogeneous Reactions
Covers the basics of chemical engineering of heterogeneous reactions and introduces Laplace transforms to simplify complex problems.
Finite Differences in Advection-Diffusion
Explores the explicit 2-level scheme for advection-diffusion and the convergence of digital solutions.
Numerical Methods: Differential Equations
Covers the application of numerical methods to solve differential equations using MATLAB.
Water Quality Modeling: Kinetics in PHREEQC
Covers the modeling of kinetics in water quality using PHREEQC software, emphasizing the comparison of reaction time scales and the syntax of KINETICS and RATES keywords.
Computational Geomechanics: Unconfined Flow
Explores unconfined flow in computational geomechanics, emphasizing weak form derivation and relative permeability.
Iterative Methods: Jacobi
Covers the Jacobi iterative method for solving electrostatic problems and discusses convergence and practical examples.
Numerical Methods: Boundary Value Problems
Explores boundary value problems, finite difference method, and Joule heating examples in 1D.