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FdeSolver.jl: A Julia package for the numerical solution of fractional differential equations (FDEs) as well as systems of equations.
A code based on the Method of Characteristics to solve the supersonic flow inside a nozzle
Evaluating the Lorenz Attractor using Runge-Kutta, Predictor-Corrector and Euler methods.
CFD solution of quasi-1D nozzle flows using finite difference approach
Python and MATLAB code to find the solution of First Order Differential Equations given a certain initial/boundary condition.
Algorithms used in classes. Numerical methods for ordinary differential equations.
A fast Navier Stokes FD solver for a Lid Cavity flow problem written in C# and .NET 7 with WinForms.
Collection of fixed-step IVP solvers. Includes support for matrix-valued IVPs, and provides functions for generating IVP solver equations.
Some basic algorithms for Procedural Geometry
I have tried to explain the multi-step-methods of solving ODEs via Adams-Bashforth and Adams-Moulton methods which are explicit and implicit methods respectively. I also have implemented them explicitly to solve for a system of ODEs, I have also done an explicit implementation of fourth order Runge-Kutta method in the process as it is needed.
A Navier Stokes cell-centered FVM method - a testbed for experimenting with solutions on irregular and regular meshes in lid cavity environments.
Implementations of various numerical integration methods, written in plain Java.