A repo for keeping various numerical Solvers
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Updated
Mar 12, 2018 - Jupyter Notebook
A repo for keeping various numerical Solvers
Euler's Method in Python to approximate solution of IVPs (differential equations)
The final project for the course "Numerical Methods for Initial Value Problem" in TAU 2019
Bimetric 3+1 evolution
Bimetric 3+1 evolution
The first task for the course "Numerical Methods for Initial Value Problem" in TAU 2019
Numerical Solution for Ordinary Differential Equations - Euler, Ralston's Second-Order RK, Fourth-Order Runge-Kutta, NSS Heun, Adams-Bashforts, Adams-Moulton
Differential equations' solutions in C developed during the Computational Mathematics course @cse.uoi.gr
The method of stationary phase and the centred-difference approximation are used to generate the finite-difference scheme for solving Klein-Gordon equation in MATLAB.
Solves initial value problem of SIQRD equations. Optimizes coefficients of this pandemic model, so that simualtions match observed. Implements three IVP schemes and two gradient optimization methods with line search using Wolfe conditions.
ODE system solver made simple. For IVPs (initial value problems).
Algorithms and theory exercises for my Numerical Methods II classes. Most codes made in python.
Repositório com implementações de métodos numéricos em Python desenvolvido ao longo da disciplina DCC008X - Cálculo Numérico
Euler's and Runge-Kutta methods comparison on solving initial value problem on Lotka-Volterra equations and other functions
A zoo of implementations of differential equation problems in NumPy and JAX. Oscillators, chemical reactions, n-body problems, epidemiological models, IVPs, BVPs, and more.
Formulas of this year's [2024] NPTEL Course titled Advanced Computational Techniques
Here, we will provide a PyTorch regime to handle the partial differential equation solution of the heat equation by executing Deep Kolmogorov Method of Beck et. al.
Sample app for visualizing profiles caused by different differential equations
Solving various PDEs by employing Siren, with JAX implementation.
Numerically computing the dynamics of mechanical systems.
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