# Phenomena Studies Phenomena Studies is a personal visual research series exploring physical phenomena through model-driven simulation and curated parameter studies. ## Canonical Identity - Creator: Satoshi Nakamaru - Display name used by the visual series: Satoshi N. - Canonical creator entity: https://snakamaru.info/#person - Creator profile: https://snakamaru.info/profile/ - Series identifier: https://phenomenastudies.com/#series - Series URL: https://phenomenastudies.com/ ## Studies - Study #01: Belousov–Zhabotinsky Reaction — A model-driven visual study of oscillating chemical patterns. https://phenomenastudies.com/studies/01-bz-reaction/ - Study #02: Gray-Scott Reaction-Diffusion — A model-driven visual study of morphogenesis and self-replication. https://phenomenastudies.com/studies/02-gray-scott/ - Study #03: Chladni Figures — A visual study of standing waves drawn by sand. https://phenomenastudies.com/studies/03-chladni/ - Study #04: BZ II — Thermal Fields — A model-driven visual study of one chemistry split into many regimes by heat. https://phenomenastudies.com/studies/04-bz-thermal/ - Study #05: Lorenz Attractor — A model-driven visual study of deterministic chaos. https://phenomenastudies.com/studies/05-lorenz/ - Study #06: Wave Interference — A model-driven visual study of superposed coherent waves. https://phenomenastudies.com/studies/06-wave-interference/ - Study #07: Kuramoto Model — A model-driven visual study of spontaneous synchronization. https://phenomenastudies.com/studies/07-kuramoto/ - Study #08: Phase Separation — A model-driven visual study of spinodal decomposition and coarsening. https://phenomenastudies.com/studies/08-phase-separation/ - Study #09: Diffusion-Limited Aggregation — A model-driven visual study of dendritic growth by diffusion. https://phenomenastudies.com/studies/09-dla-aggregation/ - Study #10: Ising Model — A model-driven visual study of a magnet's order-disorder phase transition. https://phenomenastudies.com/studies/10-ising/ - Study #11: BZ III — Scroll Waves — A model-driven visual study of the invisible threads that organise three-dimensional chemical waves. https://phenomenastudies.com/studies/11-bz-scroll/ - Study #12: Kármán Vortex Street — A model-driven visual study of the alternating vortices shed in a wake. https://phenomenastudies.com/studies/12-vortex-street/ - Study #13: Vicsek Model — A model-driven visual study of flocking and collective motion. https://phenomenastudies.com/studies/13-vicsek/ - Study #14: Caustics — A model-driven visual study of light focused by a waving water surface. https://phenomenastudies.com/studies/14-caustics/ - Study #15: Magnetic Pendulum Basins — A model-driven visual study of fractal basins of attraction. https://phenomenastudies.com/studies/15-magnetic-pendulum/ - Study #16: Snowflake — A model-driven visual study of snow crystal growth. https://phenomenastudies.com/studies/16-snowflake/ - Study #17: XY Model — Vortex Unbinding — A model-driven visual study of topological defects in a two-dimensional field of directions. https://phenomenastudies.com/studies/17-xy-model/ - Study #18: Rayleigh–Bénard Convection — A model-driven visual study of heat becoming motion. https://phenomenastudies.com/studies/18-rayleigh-benard/ - Study #19: Meinhardt Seashells — A model-driven visual study of pigment patterns as a growing edge's record in time. https://phenomenastudies.com/studies/19-meinhardt-seashells/ - Study #20: Lenia — Emergent Individuality — A model-driven visual study of individuality emerging from a single continuous field. https://phenomenastudies.com/studies/20-lenia/ - Study #21: de Jong / Clifford Maps — A model-driven visual study of strange-attractor measures. https://phenomenastudies.com/studies/21-dejong/ - Study #22: Viscous Fingering — A model-driven visual study of an interface that must pay for its corners. https://phenomenastudies.com/studies/22-viscous-fingering/ - Study #23: Quantum Billiards — A model-driven visual study of quantum chaos in a stadium billiard. https://phenomenastudies.com/studies/23-quantum-billiards/ - Study #24: Physarum — A model-driven visual study of slime-mould transport networks. https://phenomenastudies.com/studies/24-physarum/ - Study #25: Kelvin–Helmholtz Instability — A model-driven visual study of how a velocity difference chooses a single wavelength and rolls a shear layer into cat's-eye vortices. https://phenomenastudies.com/studies/25-kelvin-helmholtz/ - Study #26: Percolation — The Threshold — A model-driven visual study of the moment somewhere becomes everywhere. https://phenomenastudies.com/studies/26-percolation/ - Study #27: Cellular Froth — Grain Growth — A model-driven visual study of curvature-driven coarsening in a two-dimensional cellular network. https://phenomenastudies.com/studies/27-cellular-froth/ - Study #28: Talbot Carpet — A model-driven visual study of grating self-imaging. https://phenomenastudies.com/studies/28-talbot-carpet/ - Study #29: Faraday Waves — A model-driven visual study of parametric surface waves — the pattern a shaken liquid chooses for itself. https://phenomenastudies.com/studies/29-faraday-waves/ - Study #30: Abelian Sandpile — Self-Organized Criticality — A model-driven visual study of a pile that finds its own breaking point. https://phenomenastudies.com/studies/30-abelian-sandpile/ - Study #31: Chemotaxis — The 8π Gate — A model-driven visual study of self-attracting crowds. https://phenomenastudies.com/studies/31-chemotaxis/ - Study #32: Standard Map — A model-driven visual study of the last invariant curve of a kicked rotor. https://phenomenastudies.com/studies/32-standard-map/ - Study #33: Ferrofluid — Rosensweig Instability — A model-driven visual study of a liquid surface sculpted by a magnetic field. https://phenomenastudies.com/studies/33-ferrofluid/ - Study #34: Kelvin Wake — Ship Waves — A model-driven visual study of ship waves and the angle that will not move. https://phenomenastudies.com/studies/34-kelvin-wake/ ## Claim Boundary - The studies are personal visual research and model-driven visual interpretations. - They are not presented as peer-reviewed scientific simulation results. - Scientific references and model notes are provided on individual study pages where available.