Evidence-governed quantum simulation of coupled-oscillator synchronisation — Kuramoto–XY workloads up to 16 qubits on IBM Heron r2, raw counts + hash-bound result packs, preregistered protocols.
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Updated
Jul 18, 2026 - Python
Evidence-governed quantum simulation of coupled-oscillator synchronisation — Kuramoto–XY workloads up to 16 qubits on IBM Heron r2, raw counts + hash-bound result packs, preregistered protocols.
Custom 18-DoF hexapod robot — Kuramoto-CPG locomotion controller, real-time gait visualiser, IMU heading-hold autonomous firmware, full mechanical CAD, and a 34-test verification suite.
"Tensor Decomposition to Capture Spatiotemporal Patterns of Coupled Oscillator and Opinion Dynamics" by Agam Goyal and Hanbaek Lyu
This repository contains a comprehensive notebook exploring coupled oscillator systems through rigorous theory, numerical integration, and multi-domain diagnostics.
Axiomatic physics model describing fundamental processes as coupling and resonance phenomena in oscillation fields. Core equation: E = π·ε(Δφ)·ℏ·f. Empirically validated across particle physics, cosmology, nuclear technology, and financial markets. Simulations, LaTeX papers, and falsifiable predictions.
A comprehensive computational physics project that simulates wave dynamics through coupled oscillator systems, exploring normal modes, symmetry effects, and wave propagation phenomena.
Physics simulation visualizing normal modes of coupled oscillators with comprehensive testing and CI/CD
DAMOCO: Data Analysis with Models Of Coupled Oscillators. Python port of the MATLAB toolbox for coupled-oscillator analysis.
A framework for constructing digital twins of brain dynamics. Reconstruct functional networks from signals and run simulations using coupled oscillator models.
A Unity-Based Artificial Life Course
Unscented Kalman Filter (UKF), to enhance modeling and understanding of neural dynamics from fMRI data using Coupled Oscillator Model.
This a python simulation of coupled oscillators to obtain the normal frequencies and the position-time graphs of the oscillators and additionally also obtain lissajous figures.
RGCS is an open-source computational framework for modelling, visualizing, and experimentally evaluating coupled resonant systems. It combines reproducible mathematics, provenance-controlled scientific software, uncertainty analysis, and experiment planning.
Simulación numérica de un sistema de dos bloques acoplados por muelles mediante el método de Runge-Kutta (RK4) implementado en C++ y visualizado en MATLAB.
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