Cymatics — Standing Wave Interference
Multiple wave sources create evolving Chladni-like interference patterns.
Cymatics is the study of visible sound and vibration, named from the Greek "kyma" (wave). In 1787 the German physicist and musician Ernst Chladni popularized the technique now called Chladni plate experiments: a flat metal plate is covered with fine sand or salt and bowed or driven with a speaker at a specific frequency. The plate vibrates in complex modes with regions that move a great deal (antinodes) and regions that barely move at all (nodal lines). Loose particles are flung away from the antinodes and settle along the still nodal lines, tracing out intricate symmetric patterns. As driving frequency increases, the wavelength shortens and the plate supports higher-order vibration modes, so the nodal patterns become progressively more complex with more subdivisions. This simulation approximates that behavior with interfering radiating wave sources plus a standing-wave mode term, colored by local displacement amplitude the way sand density would reveal nodal lines on a real plate.