PPolySim OS
Use case · powered by Magnetic Pendulum

Magnetic Pendulum for a skydiver's free fall

Simulate a skydiver's free fall live in your browser. This runs the real Magnetic Pendulum solver — adjust the inputs, watch it respond instantly, and export the result. No install, no account.

Magnetic PendulumLive

Controls

A pendulum bob is pulled toward three magnets. Which one it lands on depends so sensitively on the start that the basins of attraction form a fractal. Drag a magnet to move it, or click empty space to drop the bob there.

Presets

▶ Run in Python

Data Inspector

Magnets3
Damping0.5% / step
Magnet strength0.60
Basinsfractal

Governing equation

Reading this result: Which magnet the bob settles on depends with extreme sensitivity on where it starts: neighboring drop points can end at different magnets, carving fractal basins of attraction. At friction 0.995 it settles at a moderate pace. Magnet strength 0.6 balances against the central spring.

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 Magnetic Pendulum tool models a skydiver's free fall 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 Magnetic Pendulum

Other ways to simulate a skydiver's free fall

Frequently asked questions

How do I simulate a skydiver's free fall?
Open this page and use the live Magnetic Pendulum 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 skydiver's free fall from your own measurements.