Related lectures (16)
Equivalence of Strong and Weak Formulations
Explores the equivalence between strong and weak formulations in the finite element method.
Finite Element Modeling: Systematization and Integration
Explores the systematization and integration in 2D finite element modeling.
Quantum Dynamics: Spectral Decomposition
Explores the spectral decomposition of Hilbert space and its implications in quantum dynamics.
Finite Element Method: Formulation and Approximations
Covers the strong and integral formulations, weak formulation, and approximation of temperatures.
Quadrangular Finite Elements
Covers the basic functions of quadratic and biquadratic rectangular elements and the serendipal family of regular rectangular finite elements.
Generalization of the Bar Model
Explores the insertion of discontinuities and modifications of the differential equation in the bar model.
Axial Deformation in Elasticity: Fundamentals
Explores equilibrium equations, strain linearity, Hooke's law, and boundary conditions.
Fourier Transform and Schwartz Space
Explores the Fourier transform, Schwartz space, and Riemann-Lebesgue lemma in quantum physics.
Lebesgue Integral: Comparison with Riemann
Explores the comparison between Lebesgue and Riemann integrals, demonstrating their equivalence when the Riemann integral exists.
Finite Element Method: Global vs Local Approach
Compares the global and local approaches of the Finite Element Method.

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