Uniform tilings | Hyperbolic tilings | Isogonal tilings | Isotoxal tilings | Apeirogonal tilings

Pentaapeirogonal tiling

In geometry, the pentaapeirogonal tiling is a uniform tiling of the hyperbolic plane with a Schläfli symbol of r{∞,5}. (Wikipedia).

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Regular polyhedra

This shows a 3d print of a mathematical sculpture I produced using shapeways.com. This model is available at http://shpws.me/q0PF.

From playlist 3D printing

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Alexandre Muniz - Colorings of Pentomino Tilings - G4G12 April 2016

Pentomino tiling problems can be made more interesting by seeking map colorings with special properties. Three such properties of colorings are 3-colorability, strict colorability, and color balance. Two particular pentomino tilings of the 6 by 10 rectangle with uniquely fortunate and unfo

From playlist G4G12 Videos

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MAKING AN INTERACTIVE PENROSE TILING | Math in Dreams (PS4) | ND

The Penrose Tiling has always been a mathematical tiling that I have struggled to wrap my brain around, but I realized I might be able to build the Penrose Tiling in Dreams (PS4) instead of attempting to draw it by hand. With a bit of tinkering and after realizing building it by hand was g

From playlist The New CHALKboard

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Margaret Kepner - The Zen of the Z-Pentomino - G4G12 April 2016

There are many puzzles involving tiling with the pentominoes. One problem is to find ways to tile the plane (with no overlaps or gaps) using copies of just one of the pentominoes. It turns out that 10 of the 12 pentominoes can tile the plane in an infinite number of ways. However, one, the

From playlist G4G12 Videos

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Hexagonal Tiling Explained!

There is more than one way to tile the plane. In this video we'll explore hexagonal tiling. Hexagonal tiling can be used to make many cool effects. Twitter: @The_ArtOfCode Facebook: https://www.facebook.com/groups/theartofcode/ Patreon: https://www.patreon.com/TheArtOfCode PayPal Donation

From playlist Tools

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Pentomino Puzzles (1 of 2: Animal, Vegetable, Mineral)

More resources available at www.misterwootube.com

From playlist Mathematical Exploration

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How to construct a Tetrahedron

How the greeks constructed the first platonic solid: the regular tetrahedron. Source: Euclids Elements Book 13, Proposition 13. In geometry, a tetrahedron also known as a triangular pyramid, is a polyhedron composed of four triangular faces, six straight edges, and four vertex corners. Th

From playlist Platonic Solids

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Cardboard Tetrahedron Pyramid Perfect Circle Solar How to make a pyramid out of cardboard

How to make a pyramid out of cardboard. A tetrahedron is a polyhedron composed of four triangular faces, three of which meet at each vertex.

From playlist HOME OF GREENPOWERSCIENCE SOLAR DIY PROJECTS

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Using a set of points determine if the figure is a parallelogram using the midpoint formula

👉 Learn how to determine the figure given four points. A quadrilateral is a polygon with four sides. Some of the types of quadrilaterals are: parallelogram, square, rectangle, rhombus, kite, trapezoid, etc. Each of the types of quadrilateral has its properties. Given four points that repr

From playlist Quadrilaterals on a Coordinate Plane

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Introduction to Tiling Theory

In this mini-lecture, we explore tilings found in everyday life and give the mathematical definition of a tiling. In particular, we think about: (i) traditional Islamic tilings; (ii) floor, wallpaper, pavement, and architectural tilings; (iii) the three regular tilings using either equilat

From playlist Maths

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Nathalie Priebe Frank : Introduction to hierarchical tiling dynamical systems

Abstract: These lectures introduce the dynamical systems approach to tilings of Euclidean space, especially quasicrystalline tilings that have been constructed using a 'supertile method'. Because tiling dynamics parallels one-dimensional symbolic dynamics, we discuss this case as well, hig

From playlist Dynamical Systems and Ordinary Differential Equations

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Wolfram Physics Project: Working Session Tuesday, Aug. 3, 2021 [Tilings]

This is a Wolfram Physics Project working session about tiling in the Wolfram Model. Originally livestreamed at: https://twitch.tv/stephen_wolfram Stay up-to-date on this project by visiting our website: http://wolfr.am/physics Check out the announcement post: http://wolfr.am/physics-ann

From playlist Wolfram Physics Project Livestream Archive

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The ARCTIC CIRCLE THEOREM or Why do physicists play dominoes?

I only stumbled across the amazing arctic circle theorem a couple of months ago while preparing the video on Euler's pentagonal theorem. A perfect topic for a Christmas video. Before I forget, the winner of the lucky draw announced in my last video is Zachary Kaplan. He wins a copy of m

From playlist Recent videos

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2048 FROM SCRATCH, PART 2! - CS50 Live, EP. 61

Join CS50's Colton Ogden for a second part of implementing the famous web game, 2048, from scratch in LÖVE and Lua. In this episode, we'll look at refactoring our existing code, as well as getting number merging and coloring working properly, with eventually a score and loss condition bein

From playlist CS50 on Twitch

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Coding Challenge 171: Wave Function Collapse

Straight out of quantum mechanics, Wave Function Collapse is an algorithm for procedural generation of images. https://thecodingtrain.com/challenges/171-wave-function-collapse In this video (recorded over 3 live streams) I attempt the tiled model and explore a variety of solutions to the

From playlist Coding Challenges

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Unity Tutorial | How To Create A City Builder Game In Unity | Session 09 | #unity | #gamedev

Don’t forget to subscribe! In this Unity tutorial, you will learn to create a city builder game in Unity. City Builder games are one of the most popular games in the mobile market, so it is definitely an important Unity game to have in your portfolio. In this tutorial, we’ll be creating

From playlist Create A City Builder Game In Unity

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Tiling problems [2/2] | Dynamic Programming

A generalization of how to solve tiling problems using dynamic programming Previous video: https://youtu.be/gQszF5qdZ-0 Tiling problems: https://projecteuler.net/problem=114 https://projecteuler.net/problem=115 https://projecteuler.net/problem=116 https://projecteuler.net/problem=117 Al

From playlist Dynamic Programming

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Triangle tilings

(5,3,2) triangle tiling: http://shpws.me/NW2E (7,3,2) triangle tiling (small): http://shpws.me/NW3A (6,3,2) triangle tiling: http://shpws.me/NW3H (4,3,2) triangle tiling: http://shpws.me/NW3K (3,3,2) triangle tiling: http://shpws.me/NW3J (4,4,2) triangle tiling: http://shpws.me/NW3M

From playlist 3D printing

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Lecture 13 - Basic Maneuvers

This is Lecture 13 of the CSE547 (Discrete Mathematics) taught by Professor Steven Skiena [http://www.cs.sunysb.edu/~skiena/] at Stony Brook University in 1999. The lecture slides are available at: http://www.cs.sunysb.edu/~algorith/math-video/slides/Lecture%2013.pdf More information may

From playlist CSE547 - Discrete Mathematics - 1999 SBU

Related pages

Uniform tilings in hyperbolic plane | Schläfli symbol | Hyperbolic geometry | Geometry | John Horton Conway