A scientific double pendulum simulator using Lagrangian mechanics and RK4, with graphs showing dynamics and energy 🍎
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Updated
Apr 20, 2026 - Python
A scientific double pendulum simulator using Lagrangian mechanics and RK4, with graphs showing dynamics and energy 🍎
Implementation of RK4 algorithm to solve 2D Schrödinger equation
Electric field visualizer with draggable charges, zoom, and color settings
Final project for the course Simulation and Modeling for Biological Systems.
A numerical solver in C++ for the incompressible Navier Stokes, Burgers and advection-diffusion equations, currently supporting 1D and 2D formulation. Equation solved using the Finite Difference Method (FDM).
Solving equations using euler, midpoint and rk4 method
2d Simulation of the N-body problem
A 2D incompressible Navier-Stokes solver for the classic lid-driven cavity problem, implemented with finite difference method, Runge-Kutta time integrator, and projection method for pressure.
Python-based solution for complex reaction systems. Solve differential equations, visualize concentrations with RK4 method.
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