Chaotic attractors with python (Lorenz, Rossler, Rikitake etc.)
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Updated
Jan 13, 2024 - Python
Chaotic attractors with python (Lorenz, Rossler, Rikitake etc.)
Sample code for the NIPS paper "Scalable Variational Inference for Dynamical Systems"
Competitive Lotka–Volterra equations, solved using Runge-Kutta methods. Four dimensional system.
1-D numerical model, that simulates the vertical coralgal growth patterns observed in a drill core
some simulation examples using phoenix live view
Development version of phaseR, an R package for phase plane analysis of one- and two-dimensional autonomous ODE systems
Library to conduct experiments in population dynamics.
study of nonlinear models describing populations.
Solving a single species reaction-diffusion equation and the scaled Lotka-Volterra via travelling waves.
Predator-Prey-Grass gridworld environment using PettingZoo, with dynamic deletion and spawning of partially observant agents.
Stochastic implementation of a Lotka-Volterra competition model extended to multidimensional niche spaces (published in 10.1103/PhysRevE.91.052107)
Study of a predator-prey model with a cellular automaton (in French)
Introduction to Numerical Methods / Ordinary Differential Equations
Software to set up and solve a Lotka Volterra system for n species. The Prey-Predator case, the 2 Preys-1 Predator and many other simpler models can be easily recovered from this general framework. Allows the use from Python console.
Lotka-Volterra approximations using various numerical methods
System to simulate individual interactions and capture ecological and evolutionary dynamics
An educational tool for understanding ecological models of population dynamics
Runge-Kutta Methods Talk - full resources and self-implemented NINT demos
A simulation of the Lotka-Volterra equations on C++ and OpenGL
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