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Lecture
Martingale Inequalities
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Related lectures (21)
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Numerical Methods for Boundary Value Problems
Covers numerical methods for solving boundary value problems using finite difference, FFT, and finite element methods.
Other Topics: Techniques for Fluid Interfaces
Explores numerical methods for fluid dynamics and techniques for handling fluid interfaces.
Computational Quantum Physics
Explores computational methods in quantum physics, emphasizing exact diagonalization and space discretization techniques.
Boundary Value Problems: Numerical Methods
Covers the motivation and examples of boundary value problems, the finite difference method, and the approximation of local derivatives.
Numerical Differentiation and Integration
Explores numerical differentiation and integration methods, emphasizing the accuracy of finite differences in computing derivatives and integrals.
Numerical Methods: Boundary Value Problems
Explores numerical methods for boundary value problems, including heat diffusion and fluid flow, using finite difference methods.
Error Analysis: Discrete FD Scheme
Covers the error analysis of a discrete finite difference scheme, focusing on stability and perturbation.
Truncation Error in Digital Derivation
Explores the concept of truncation error in digital derivation and the classification of different error orders.
Finite Elements: Problem with Limits
Covers the application of finite element methods to solve boundary value problems in one dimension.
Vibrating String: Mathematical Analysis
Covers the study of a vibrating string, wave equations, sinusoidal waves, and eigenvalue problems.