A simple simulation and visualisation of radioactive decay.
-
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.
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.
Visualizes the decay of chemicals using ncurses in real-time.
This repository contains MATLAB code for radioactive decay model. It follows the exponential decay equation. as demonstrated
This is a tool that showcases the probability and Chain reactions of Radioactive Decay.
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
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.
Signals and Systems portfolio covering MATLAB modelling, FFT analysis, probability distributions, radioactive decay, LTI responses, reports, and reflections.
To associate your repository with the radioactive-decay topic, visit your repo's landing page and select "manage topics."