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Lecture
Finite Element Method: Global vs Local Approach
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Finite Element Method: Linear Statics
Explores the Finite Element Method applied to linear statics of deformable solids.
Local to Global Mapping in Finite Element Analysis
Discusses mapping local to global coordinates in finite element analysis and the importance of vertex numbering.
Finite Element Method: Transmission Line Analysis
Covers the finite element method for transmission line analysis, including steps to minimize power loss and boundary conditions.
Numerical Methods for Boundary Value Problems
Covers numerical methods for solving boundary value problems using finite difference, FFT, and finite element methods.
Computational Geomechanics: Week 4
Explores boundary conditions, time variation in porous media, and storage coefficients in matrices.
Computational Geomechanics: Unconfined Flow
Explores unconfined flow in computational geomechanics, emphasizing weak form derivation and relative permeability.
Finite Elements: Variational Formulation
Explains the variational form in finite elements and the use of basic functions.
Numerical Methods: Boundary Value Problems
Explores boundary value problems, finite difference method, and Joule heating examples in 1D.
Structural Mechanics Part 2: FEM & Scaling Laws
Explores Finite Element Modeling in Structural Mechanics, covering convergence, nonlinear displacement, and scaling laws in micro and nanosystems.
Numerical Groundwater Flow Resolution
Explains the numerical resolution of groundwater flows using finite differences and demonstrates the method with Excel.