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Lecture
Finite Element Analysis
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Related lectures (29)
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Numerical Groundwater Flow Resolution: Finite Elements
Covers the numerical resolution of groundwater flows using finite elements and emphasizes the importance of spatial and temporal discretization.
Finite element methods
Covers finite element methods for solving diffusion problems in porous media, including meshing, interpolation, and weighted residuals.
Interpolation by Intervals: Lagrange Interpolation
Covers Lagrange interpolation using intervals to find accurate polynomial approximations.
Spatial Phenomena: Isovalues
Covers continuous spatial phenomena and isovalues in geographic information systems, including interpolation methods and examples of isovalues curves for various environmental factors.
Newton Method: Data Interpolation
Covers the Newton method for finding zeros of functions using data interpolation.
Trigonometric Interpolation: Approximation of Periodic Functions and Signals
Explores trigonometric interpolation for approximating periodic functions and signals using equally spaced nodes.
Numerical Analysis: Introduction to Computational Methods
Covers the basics of numerical analysis and computational methods using Python, focusing on algorithms and practical applications in mathematics.
Iso-parametric Formulation of Quad4 Element
Explains the iso-parametric formulation of the quad4 planar element and the calculation of the stiffness matrix.
Interpolation de fonction
Explores interpolation of regular functions, error analysis, convergence, and Chebyshev polynomials.
Modeling and Interpolation
Explores modeling and interpolation techniques in geomatics for accurate surface generation.