Repository: ubavic/awesome-interactive-math Branch: master Commit: 6fa1bdb6931e Files: 2 Total size: 13.3 KB Directory structure: gitextract_y5tr2kl4/ ├── LICENSE └── README.md ================================================ FILE CONTENTS ================================================ ================================================ FILE: LICENSE ================================================ Creative Commons Legal Code CC0 1.0 Universal CREATIVE COMMONS CORPORATION IS NOT A LAW FIRM AND DOES NOT PROVIDE LEGAL SERVICES. DISTRIBUTION OF THIS DOCUMENT DOES NOT CREATE AN ATTORNEY-CLIENT RELATIONSHIP. CREATIVE COMMONS PROVIDES THIS INFORMATION ON AN "AS-IS" BASIS. CREATIVE COMMONS MAKES NO WARRANTIES REGARDING THE USE OF THIS DOCUMENT OR THE INFORMATION OR WORKS PROVIDED HEREUNDER, AND DISCLAIMS LIABILITY FOR DAMAGES RESULTING FROM THE USE OF THIS DOCUMENT OR THE INFORMATION OR WORKS PROVIDED HEREUNDER. 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Affirmer understands and acknowledges that Creative Commons is not a party to this document and has no duty or obligation with respect to this CC0 or use of the Work. ================================================ FILE: README.md ================================================ # Awesome interactive math A curated list of tools that can be used for creating interactive mathematical explorables on the web. See also [explorabl.es list](https://explorabl.es/). ## Tools - [CindyJS](https://cindyjs.org/) - a framework to create interactive (mathematical) content for the web. - [D3.js](https://d3js.org/) - a JavaScript library for manipulating documents based on data. - [Desmos API](https://www.desmos.com/api/) - dead-simple way to embed rich, interactive math into your web page or web app. - [Euclid JS](https://euclid.js.org/) - Euclidean geometry in javascript. - [Geogebra embeded](https://wiki.geogebra.org/en/Embedding_in_Webpages) - [Grafar](https://thoughtspile.github.io/grafar/) - a javascript library for reactive, 3D mathematical visualization (data visualization capabilities coming sometime). Built on top of WebGL (via Three.js). - [JSXGraph](http://jsxgraph.org/wp/index.html) - a cross-browser JavaScript library for interactive geometry, function plotting, charting, and data visualization in the web browser. - [Mafs](https://mafs.dev/) - a set of opinionated React components for creating math visualizations. - [MathBox](https://github.com/unconed/mathbox) - a library for rendering presentation-quality math diagrams in a browser using WebGL. Built on top of Three.js and ShaderGraph, it provides a clean API to visualize mathematical relationships and animate them declaratively. - [MathCell](https://mathcell.org/) - a simple straightforward way to include interactive mathematics in a web page. - [Mathigon](https://mathigon.io/) - open-source TypeScript libraries for creating and hosting interactive courses or virtual manipulatives. - [Observable](https://observablehq.com/) - a platform for creating interactive explorables. - [p5.js](https://p5js.org/) - a JavaScript library for creative coding, with a focus on making coding accessible and inclusive for artists, designers, educators, beginners... - [pts](https://ptsjs.org/) - a library for visualization and creative-coding - [Liqvid](https://liqvidjs.org/) - library for interactive videos in React. - [SageMath WebGL Renderer](https://doc.sagemath.org/html/en/reference/plot3d/threejs.html) - [Shiny](https://shiny.rstudio.com/) - an R package that makes it easy to build interactive web apps straight from R. - [three.js](https://threejs.org) - a cross-browser JavaScript library and application programming interface used to create and display animated 3D computer graphics in a web browser using WebGL. ## Examples ### Articles - [An interactive introduction to Fourier transforms](https://www.jezzamon.com/fourier/index.html) (Jez Swanson) - [How to Fold a Julia Fractal](http://acko.net/blog/how-to-fold-a-julia-fractal/) (Steven Wittens) - [Let's remove quaternions from every 3D engine](https://marctenbosch.com/quaternions) (Marc ten Bosch) - [Interactive tutorial of the sequent calculus](http://logitext.mit.edu/tutorial) (Edward Z. Yang) - [Pythagorean theorem](https://setosa.io/pythagorean/) (Victor Powell) and other aricles on [setosa.io](https://setosa.io/) - [A primer on Bézier curves](https://pomax.github.io/bezierinfo) (Pomax) - [Sphere eversion](https://rreusser.github.io/explorations/sphere-eversion) (Ricky Reusser) - [Tesseract](https://ciechanow.ski/tesseract) (Bartosz Ciechanowski) - [Visualizing Geodesics on Surfaces](https://analyticphysics.com/General%20Relativity/Visualizing%20Geodesics%20on%20Surfaces.htm) (Paul Masson) and other articles on [analyticphysics.com](https://analyticphysics.com/) - [Why Momentum Really Works](https://distill.pub/2017/momentum/), (Gabriel Goh) and other articles on [distill.pub](https://distill.pub/) ### Books - [Complex analysis](https://complex-analysis.com/), Juan Carlos Ponce Campuzano - [Immersive linear algebra](http://immersivemath.com/ila/index.html), J. Ström, K. Åström, and T. Akenine-Möller - [Seeing circles, sines and signals](https://jackschaedler.github.io/circles-sines-signals), Jack Schaedler ### Plotters - [2D Inverse Fourier Transform Playground](https://monman53.github.io/demos/2dfft/), Tetsuro Sakamoto - [Complex function plotter](https://www.dynamicmath.xyz/complex/function-plotter/hsv.htm), Juan Carlos Ponce Campuzano - [Elliptic curve explorer](https://samuelj.li/elliptic-curve-explorer), Samuel Li - [Fourier Cuboid](https://static.laszlokorte.de/fourier/), Laszlo Korte - [Interactive projective plane](https://ubavic.rs/work/interactive_projective_plane), Nikola Ubavić - [IsoVis](https://rawgit.com/csp256/IsoVis/master/IsoVis.html), Christopher Parker ### Other awesomeness - [Complexity Explorables](https://www.complexity-explorables.org/), Dirk Brockmann - [Polyhedra Viewer](https://polyhedra.tessera.li), Nat Alison - [MLDemos](https://basilio.dev/), Basilio Noris - [Float exposed](https://float.exposed/0x000fffffffffffff), Bartosz Ciechanowski. Also other articles by the author. - [7 sets Venn Diagram](https://moebio.com/research/sevensets/), Santiago Ortiz ### Math games Games marked with a *WEB* can be played in a browser. - [4D Toys](https://4dtoys.com/) - a box of toys from the fourth dimension. - [A Slower Speed of Light](http://gamelab.mit.edu/games/a-slower-speed-of-light/) - a first-person game prototype in which players navigate a 3D space while picking up orbs that reduce the speed of light in increments. - [Euclidea](https://www.euclidea.xyz/) - *WEB* - geometric Constructions Game with Straightedge and Compass. - [Fragments of Euclid](https://nusan.itch.io/fragments-of-euclid) - a game about exploring and solving puzzle in a mind-bending environment inspired by M.C. Escher. - [Hyperbolica](https://store.steampowered.com/app/1256230/Hyperbolica/) - a whimsical Non-Euclidean adventure with mind-bending worlds full of games, puzzles, mazes, and secrets! - [HyperRogue](http://www.roguetemple.com/z/hyper/) - tactical puzzle/roguelike on a hyperbolic plane. - [Sokyokuban](https://sokyokuban.com/) - *WEB* - Sokoban on a hyperbolic plane. - [Snake in the projective plane](https://ubavic.rs/snake/snake.html) - *WEB* - snake played in a fundamental polygon of a real projective plane. - [Turing Complete](https://store.steampowered.com/app/1444480/Turing_Complete/) - Learn CPU architecture with puzzles #### In development - [Miegakure](https://miegakure.com/) - a game where you navigate a four-dimensional world to perform miraculous feats and solve puzzles. ## Contribution Feel free to recommend any awesome tool not listed here.