Skip to main content
Graph
Search
fr
|
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Convection Diffusion: Equations and Finite Difference Methods
Graph Chatbot
Related lectures (27)
Previous
Page 3 of 3
Next
Computational Geomechanics: Week 4
Explores transient flow in porous media, covering governing equations, stability conditions, and numerical methods.
Numerical Methods: Euler and Crank-Nicolson
Covers Euler and Crank-Nicolson methods for solving differential equations.
System of ODEs
Explores numerical methods for solving ODE systems, stability regions, and absolute stability importance.
Steady convection: Numerical methods and schemes
Explores numerical methods for steady convection-diffusion problems, discussing accuracy, stability, and trade-offs between different schemes.
Numerical Methods: Differential Equations and Stability Analysis
Covers numerical methods for solving differential equations and their stability analysis, focusing on error calculation and practical applications in engineering and science.
Numerical Approximation of PDEs
Covers the numerical approximation of PDEs, including Poisson and heat equations, transport phenomena, and incompressible limits.
Numerical Modelling of the Atmosphere
Focuses on numerical modelling of atmospheric processes to predict weather and climate phenomena, covering key concepts and methods.