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Lecture
Finite Element Space: Conforming Mesh
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Related lectures (29)
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Orthogonality and Least Squares Method
Explores orthogonality, dot product properties, vector norms, and angle definitions in vector spaces.
Equivalence of Strong and Weak Formulations
Explores the equivalence between strong and weak formulations in the finite element method.
P vs NP: Complexity Theory
Delves into complexity theory, focusing on the P vs NP problem and the classification of computational problems based on efficiency.
Boundary Value Problems: Numerical Methods
Covers the motivation and examples of boundary value problems, the finite difference method, and the approximation of local derivatives.
Continuity and Galerkin Method
Introduces continuity in function spaces and the Galerkin method for solving boundary value problems.
Orthogonality and Gram-Schmidt Process
Explores orthogonality, Gram-Schmidt process, dot products, and solution minimization in systems.
Numerical Methods for Boundary Value Problems
Covers numerical methods for solving boundary value problems using finite difference, FFT, and finite element methods.
Linear Applications and Eigenvectors
Covers linear applications, diagonalizable matrices, eigenvectors, and orthogonal subspaces in R^n.
Finite Element Method: Equivalence of Strong and Weak Formulations
Explores the equivalence between strong and weak formulations in the Finite Element Method, along with the Galerkin method.