Standing Waves Explorer

See how standing waves form from two interfering waves. Adjust the harmonic number to see overtones.

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Orthogonal Eigenfunctions 🖖

Standing waves are solutions to the wave equation under Dirichlet boundary conditions...

Two waves that trap themselves 🖖

A standing wave isn't really going anywhere. It appears when a moving wave bounces off a boundary and overlaps its own reflection: the two travel in opposite directions and lock into a pattern that stays put, with the nodes never budging. Only wavelengths that fit a whole number of half-loops between the ends survive. Takeaway: shorten the string or pipe and those surviving wavelengths shrink, so the pitch climbs.

Your microwave can measure light's speed 🖖

A microwave oven fills its cavity with a standing electromagnetic wave, so energy piles up at fixed antinodes while the nodes stay cold — which is exactly why the food needs a turntable. Remove it, melt a flat bar of chocolate, and the molten patches mark the antinodes about 6 cm apart. Multiply that half-wavelength by the 2.45 GHz printed on the back and you recover c ≈ 3 × 10⁸ m/s on your kitchen counter.

Example problems