Regular tessellations | 5-polytopes | Honeycombs (geometry)

Tesseractic honeycomb

In four-dimensional euclidean geometry, the tesseractic honeycomb is one of the three regular space-filling tessellations (or honeycombs), represented by Schläfli symbol {4,3,3,4}, and constructed by a 4-dimensional packing of tesseract facets. Its vertex figure is a 16-cell. Two tesseracts meet at each cubic cell, four meet at each square face, eight meet on each edge, and sixteen meet at each vertex. It is an analog of the square tiling, {4,4}, of the plane and the cubic honeycomb, {4,3,4}, of 3-space. These are all part of the hypercubic honeycomb family of tessellations of the form {4,3,...,3,4}. Tessellations in this family are Self-dual. (Wikipedia).

Tesseractic honeycomb
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The Beauty of Fractal Geometry (#SoME2)

0:00 — Sierpiński carpet 0:18 — Pythagoras tree 0:37 — Pythagoras tree 2 0:50 — Unnamed fractal circles 1:12 — Dragon Curve 1:30 — Barnsley fern 1:44 — Question for you! 2:05 — Koch snowflake 2:26 — Sierpiński triangle 2:47 — Cantor set 3:03 — Hilbert curve 3:22 — Unnamed fractal squares 3

From playlist Summer of Math Exposition 2 videos

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How to Construct a Dodecahedron

How the greeks constructed the Dodecahedron. Euclids Elements Book 13, Proposition 17. In geometry, a dodecahedron is any polyhedron with twelve flat faces. The most familiar dodecahedron is the regular dodecahedron with regular pentagons as faces, which is a Platonic solid. A regular dode

From playlist Platonic Solids

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Canonical structures inside the Platonic solids III | Universal Hyperbolic Geometry 51

The dodecahedron is surely one of the truly great mathematical objects---revered by the ancient Greeks, Kepler, and many mathematicians since. Its symmetries are particularly rich, and in this video we look at how to see the five-fold and six-fold symmetries of this object via internal str

From playlist Universal Hyperbolic Geometry

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Hyperbolic honeycombs

These sculptures are joint work with Roice Nelson. They are available from shapeways.com at http://shpws.me/oNgi, http://shpws.me/oqOx and http://shpws.me/orB8.

From playlist 3D printing

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Thermal Transport in Quantum Magnet by Hidenori Takagi

PROGRAM FRUSTRATED METALS AND INSULATORS (HYBRID) ORGANIZERS Federico Becca (University of Trieste, Italy), Subhro Bhattacharjee (ICTS-TIFR, India), Yasir Iqbal (IIT Madras, India), Bella Lake (Helmholtz-Zentrum Berlin für Materialien und Energie, Germany), Yogesh Singh (IISER Mohali, In

From playlist FRUSTRATED METALS AND INSULATORS (HYBRID, 2022)

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How Big Is The Tesseract??

Calculating The Size Of A 4-Dimensional Tesseract!! #Quantum #Physics #Fourth #Dimension #NicholasGKK #Shorts

From playlist Quantum Mechanics

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The Honeycombs of 4-Dimensional Bees ft. Joe Hanson | Infinite Series

Viewers like you help make PBS (Thank you 😃) . Support your local PBS Member Station here: https://to.pbs.org/donateinfi Be sure to check out It's OK to be Smart's video on nature's love of hexagons https://youtu.be/Pypd_yKGYpA And try CuriosityStream today: http://curiositystream.com/inf

From playlist Higher Dimensions

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How to Install the Libraries (OCR in Python Tutorials 01.02)

If you enjoy this video, please subscribe. ✅Be my Patron: https://www.patreon.com/WJBMattingly ✅PayPal: https://www.paypal.com/cgi-bin/webscr?cmd=_donations&business=AZ73QW52SUX8N¤cy_code=USD&source=url UB Mainheim: https://github.com/UB-Mannheim/tesseract/wiki (5.0) https://digi.b

From playlist OCR in Python Tutorials

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Reaching for Infinity Through Honeycombs – Roice Nelson

Pick any three integers larger than 2. We describe how to understand and draw a picture of a corresponding kaleidoscopic {p,q,r} honeycomb, up to and including {∞,∞,∞}.

From playlist G4G12 Videos

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Introduction to PyTesseract (OCR in Python Tutorials 02.03)

If you enjoy this video, please subscribe. ✅Be my Patron: https://www.patreon.com/WJBMattingly ✅PayPal: https://www.paypal.com/cgi-bin/webscr?cmd=_donations&business=AZ73QW52SUX8N¤cy_code=USD&source=url If there's a specific video you would like to see or a tutorial series, let me

From playlist OCR in Python Tutorials

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mandelbrot julia rotation 3

some julia dynamics combined with a rotation in the direction of mandelbrot.

From playlist Fractal

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How To Measure In 4D (Theory)

How To Measure A 4 Dimensional Tesseract!! #Quantum #Physics #Mechanics #Theory #NicholasGKK #STEM #Shorts

From playlist Waves And Theories

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Dennis Kuntz -- Mining Sensitive Information From Images Using Command-Line OCR

All videos at: http://www.irongeek.com/i.php?page=videos/derbycon1/mainlist

From playlist DerbyCon 2011

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Introduction to OCR (OCR in Python Tutorials 01.01)

Repo: https://github.com/wjbmattingly/ocr_python_textbook If you enjoy this video, please subscribe. ✅Be my Patron: https://www.patreon.com/WJBMattingly ✅PayPal: https://www.paypal.com/cgi-bin/webscr?cmd=_donations&business=AZ73QW52SUX8N¤cy_code=USD&source=url If there's a specific

From playlist OCR in Python Tutorials

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Do tetrahedrons tessellate space? #Shorts

Tessellate is when you fit together closely shapes without gaps or overlapping. Squares can tessellate a plane. Cubes can tessellate a space. Regular Triangles can tessellate a plane. Do regular tetrahedrons tessellate space?

From playlist #shorts mathematicsonline

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4th dimension 'n stuff -- Day 2

alright, we are getting there. One more day and our tesseract will be done! -- Watch live at https://www.twitch.tv/simuleios

From playlist 4d visualization

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4th dimension 'n stuff -- Day 1

alright, trying to visualize 4d. We'll see how this goes! -- Watch live at https://www.twitch.tv/simuleios

From playlist 4d visualization

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Why do Bees build Hexagons? Honeycomb Conjecture explained by Thomas Hales

Mathematician Thomas Hales explains the Honeycomb Conjecture in the context of bees. Hales proved that the hexagon tiling (hexagonal honeycomb) is the most efficient way to maximise area whilst minimising perimeter. Interview with Oxford Mathematician Dr Tom Crawford. Produced by Tom Roc

From playlist Mathstars

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Understanding 4D -- The Tesseract

So this has boggled my mind for a while: How, exactly, do you rotate in 4 dimensions? Well, this video *should* answer that. Hopefully. As always, if you have any questions, comments, or concerns, let me know in the comment section below! The music came from Josh Woodward (sped up 1.5 ti

From playlist ML Day 6 - Spiky Dimensions

Related pages

Kissing number | Euclidean geometry | Sphere packing | Face (geometry) | Vertex figure | Wythoff construction | 16-cell honeycomb | 24-cell | 16-cell | 5-cell honeycomb | Order-5 tesseractic honeycomb | Schläfli symbol | Vertex (geometry) | 24-cell honeycomb | Tessellation | Truncated 5-cell honeycomb | Honeycomb (geometry) | Regular polytope | Hyperbolic space | Tesseract | Voronoi tessellation | Coxeter group | Cube | Hypercubic honeycomb | N-sphere | Square tiling | Regular Polytopes (book) | Edge (geometry) | Cubic crystal system | Octahedron | Cubic honeycomb | Four-dimensional space