PPolySim OS
Use case · powered by Fission Chain Reaction

Fission Chain Reaction for a nuclear battery

Simulate a nuclear battery live in your browser. This runs the real Fission Chain Reaction solver — adjust the inputs, watch it respond instantly, and export the result. No install, no account.

Fission Chain ReactionLive

Controls

Presets

Each fission releases neutrons that can trigger more fissions. The multiplication factor k is how many of those neutrons cause a new fission on average. Below 1 the chain dies out; exactly 1 sustains steady power — a running reactor; above 1 it grows exponentially. Control rods nudge k around 1 to hold a reactor critical.

▶ Run in Python

Data Inspector

k factor1.000
Generation0
Statecritical (steady)

Governing equation

Reading this result: k is essentially 1: on average one neutron per fission triggers the next, a self-sustaining steady chain — a running reactor.

Runs locally in your browser — free forever. Scale to the cloud when reality gets heavy.

or unlock everything with Pro →

About this simulation

The full Fission Chain Reaction tool models a nuclear battery with the same numerics engineers and scientists use — running entirely client-side. Change any parameter and the result updates in real time, so you can build intuition, check a design, or teach the concept without spreadsheets or installs.

More you can do with Fission Chain Reaction

Other ways to simulate a nuclear battery

Frequently asked questions

How do I simulate a nuclear battery?
Open this page and use the live Fission Chain Reaction tool below — set your inputs and the simulation runs instantly in your browser using real numerics. No install, no account needed.
Is it free?
Yes. The simulation runs free in your browser. A one-time unlock or a Pro plan adds advanced parameters, saved presets, data import, and clean exports.
Can I use my own numbers?
Absolutely — every input is adjustable, and with data import you can drive a nuclear battery from your own measurements.