Chladni Figures Simulation
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Updated
Jul 13, 2026 - Python
Chladni Figures Simulation
High-precision physics engine dedicated to the study of standing waves and visualization of its normal modes.
Play or sing a note and millions of WebGPU grains settle into its standing-wave figure, like sand on a Chladni plate.
Shows how to create some gif animations in C# using svg format to gif. Released on 2021-05-23
Visualisation of phase and group velocity, standing waves, circular polarisation and reflection coefficients for parallel and perpendicular polarisation
GUI written in Java that demonstrates the various aspects of Standing Waves with animations
🌐 https://www.eidolon-mesh.net - 📱 https://eidolon-mesh.net A limit-cycle dynamical system on a 200-dimensional semantic manifold of knowledge units, repeatedly cycling through five metabolic stages (sense-gradient → align-formatting → compost-dissonance → merge-resonance → echo-care) across high- and low-coherence basins
What are waves and resonance? An interactive, open-source explainer. Glassbox No. L11.
How does a flute work? An interactive, open-source explainer. Glassbox No. 024.
Versioned public archive of the interactive spectrograph.uk including collected mathematical works of John Atwell Moody
Simulation and visualisation of transverse and longitudinal standing waves in Haskell
How does a microwave oven work? An interactive, open-source explainer. Glassbox No. 008.
Developmental base for room acoustics simulator, Standing Wave Viewer.
Physically-grounded Chladni figure simulator — real free-plate eigenmodes, real materials, and a million sand grains simulated on the GPU. WebGPU + Next.js.
Longitudinal standing waves in a pipe: displacement, velocity and pressure phase relationships, open vs. closed end reflection, and the harmonic series of open and stopped pipes.
development of a desktop version of Standing Wave Viewer using Pyvista and Qt
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