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Related lectures (31)
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Numerical Methods in Hydrodynamics
Covers numerical methods in hydrodynamics, ideal fluids, plasma universe, dark matter simulation, and baryon modeling.
The Finite Volume Method
Covers the Finite Volume Method for numerical flow simulation, including conservation equations, discretization methods, and boundary conditions.
Heat Equation: Modeling and Numerical Methods
Covers the heat equation, its physical interpretation, and numerical methods for solving it.
State Space Control: Discrete Systems
Explores the shift from continuous to discrete control systems, focusing on the challenges and benefits of digital implementation.
Variational Formulation: Finite Element Method
Discusses the variational formulation of the heat equation using the finite element method.
Computation, Verification and Validation
Explains verification and validation in CFD simulations, focusing on Richardson extrapolation and accuracy checking.
Multivariable Control: System Theory and Linear Systems
Introduces the basics of multivariable control, focusing on system theory and linear systems.
Information Representation: Real Numbers and Errors
Explores the representation of real numbers, errors, and precision in information.
Numerical Groundwater Flow Resolution
Explains the numerical resolution of groundwater flows using finite differences and demonstrates the method with Excel.
Modeling Hydraulic Components: Electrical Analogy and Wave Speed Adaptation
Explores modeling hydraulic components through an electrical analogy and wave speed adaptation for uniform discretization.