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Faraday's Law: Hand-Crank AC Generator (2D)

2D hand-crank AC generator: spin a rectangular coil inside a fixed magnetic field and watch real induced EMF, flux and current — computed live from Faraday's law ε = −N·dΨ/dt — light a bulb and swing a galvanometer needle.

Electromagnetism2DModerate60 FPS📱 Mobile-adapted⇄ 3D version
2d-faraday-law ↗ Open standalone

This 2D simulator models Faraday's law the way a real AC generator uses it: a coil of wire spins inside a fixed magnetic field between two poles, and the changing flux through the coil induces an electromotive force. Switch on the motor for a smooth sinusoidal EMF, or grab the hand-crank and spin the coil yourself — the induced voltage is computed every frame from the true numerical derivative of the flux linkage Ψ = N·B·A·cos θ, so an uneven hand-crank produces a genuinely uneven EMF trace, current, and bulb brightness. Raise the number of turns, the field strength, or the coil area and the peak voltage grows accordingly; change the load resistance and watch the current and bulb power respond while the EMF itself stays governed purely by dΨ/dt.

⚙ Under the hood

A 2D AC generator: spin a coil of wire inside a fixed magnetic field by motor or hand-crank and watch real induced EMF, flux linkage and current — computed each frame as -N dPsi/dt from the coil's actual changing angle — light a bulb and swing a spring-damped galvanometer needle.

faraday's lawelectromagnetic inductionac generatormagnetic fluxlenz's lawgalvanometer2d

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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