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.)
Balls bouncing in a ring. This simulation outlines how chaos emerges from a simple ball bouncing around in a ring. This code was inspired by a numberphile video on chaos-theory.
Visualization of the chaotic behavior of the logistic map, and other iterated maps, in Python, with GUI in Qt5
🦋 hundun is a python library for the exploration of chaos.
Image Encryption using Chaos Mapping, Genetic Algorithms & Matrix Manipulations
Meta-Model Approach for Chaos Prediction Using the Titanic Dataset.
Encryption of images via chaotic transformation (Using Henon map for 2D ) with a minimum to no loss of data.
Undergraduate Mathematics thesis repository for programming chaotic plotting and numerical analysis
Bitcoin price prediction using jerk equation.
Symbolic Gravity Simulator — A collapse-aware physics engine that models gravity as meaning-curvature. Built on Symbolic Field Theory and the Alpha Framework, it simulates collapse wells, stable orbits, and translation gates where narratives, identities, and civilizations bend, break, or export across horizons.
Feature Extraction using Chaos
Algoritmos de cifrado basados en la dinamica de sistemas caoticos
Predicting complex chaotic behaviors using Radial Basis Function Neural Networks
Double Pendulum Simulation showing chaos emerging from slightly different initial conditions.
Kuramoto - Sakaguchi Model Applet
Visualizing strange attractors
Dynamic State Network (DSN) Reservoir Computer
🚀 QIP-X Framework – Quantum-Integrated AI & Cryptography A cutting-edge framework integrating quantum-ascendant cryptography, timeline optimization, and hyper-chaotic neural networks for secure, adaptive, and multiversal intelligence systems.
This project leverages the synergy between chaos theory and deep learning to analyze and predict complex non-linear time series data, specifically focusing on chaotic systems.
Implementation of the Mirollo-Strogatz model for Pulse-Coupled Oscillators in Python. Simulates the emergent synchronization of Pteroptyx malaccae fireflies using a toroidal topology and integrate-and-fire mechanisms.
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