For Educators · Moment of Inertia
Moment of Inertia for a bungee jump
Built for educators teaching it to a class. Drop a live demo into a lecture or assign it as a shareable link — no lab installs. Simulate a bungee jump live below — adjust the inputs and watch it respond, right in your browser.
Moment of InertiaLive
rotational mass & the parallel-axis theorem
Controls
Presets
Moment of inertia is rotational mass: how hard it is to spin an object. Mass farther from the axis counts more (∝ r²). The parallel-axis theorem adds md² when the axis moves off the center of mass.
Data Inspector
I about center0.0900 kg·m²
Parallel-axis term0.0000 kg·m²
Total I0.0900 kg·m²
Governing equation
Reading this result: The axis runs through the center of mass, so there is no parallel-axis penalty — this is the smallest moment of inertia this body can have.
Runs locally in your browser — free forever. Scale to the cloud when reality gets heavy.
Also for:StudentsResearchersEngineersHobbyists & MakersK-12 StudentsFirst RespondersGeneral version →
More with Moment of Inertia
Moment of Inertia for a projectile from a cannonMoment of Inertia for a bouncing ballMoment of Inertia for a pendulum clockMoment of Inertia for a car brakingMoment of Inertia for a roller-coaster loopMoment of Inertia for a satellite orbitMoment of Inertia for a mass on a springMoment of Inertia for a skydiver's free fall
Frequently asked questions
- Is this good for educators?
- Yes — this version of "Moment of Inertia for a bungee jump" is framed for educators teaching it to a class. Drop a live demo into a lecture or assign it as a shareable link — no lab installs.
- Do I need to install anything?
- No. It runs in any modern browser, free, with no account required.