A simple simulation and visualisation of radioactive decay.
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Updated
Jul 14, 2026 - JavaScript
A simple simulation and visualisation of radioactive decay.
Radioactive decay based random number generator using Geiger counter, STM32 and HAL.
This is a tool that showcases the probability and Chain reactions of Radioactive Decay.
Visualizes the decay of chemicals using ncurses in real-time.
Simulation of Poisson processes for radioactive decay, featuring models for simple decay, decay chains, and branched decay.
3D Eulerian dispersion model for Daya Bay nuclear incident. Built with C/OpenMP & Python/Numba. Features Ekman spiral, orographic lifting & real-world terrain.
This repository contains MATLAB code for radioactive decay model. It follows the exponential decay equation. as demonstrated
An analytic ( system of coupled ODEs), numeric (Runge-Kutta 4, Newton-Raphson) and stochastic (Monte Carlo) treatment of the chained radioactive decay of Bi[210, 83] into Po[210,84], as well as the emission of alpha-particles. Associated comments and paper are in Croatian.
Python CLI for exploring isotope properties and calculating radioactive decay.
Simulation of radioactive decay (analytical + Monte Carlo) with plots, configs, and tests.
CLI Calculator in c
Signals and Systems portfolio covering MATLAB modelling, FFT analysis, probability distributions, radioactive decay, LTI responses, reports, and reflections.
In nuclear physics, the Bateman equation is a mathematical model describing abundances and activities in a decay chain as a function of time, based on the decay rates and initial abundances.
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