Honeycombs (geometry)

Order-5 octahedral honeycomb

In the geometry of hyperbolic 3-space, the order-5 octahedral honeycomb is a regular space-filling tessellation (or honeycomb) with Schläfli symbol {3,4,5}. It has five octahedra {3,4} around each edge. All vertices are ultra-ideal (existing beyond the ideal boundary) with infinitely many octahedra existing around each vertex in an order-5 square tiling vertex arrangement. (Wikipedia).

Order-5 octahedral honeycomb
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How to construct an Octahedron

How the greeks constructed the 2nd platonic solid: the regular octahedron Source: Euclids Elements Book 13, Proposition 14. In geometry, an octahedron is a polyhedron with eight faces, twelve edges, and six vertices. The term is most commonly used to refer to the regular octahedron, a Plat

From playlist Platonic Solids

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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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Canonical structures inside Platonic solids II | Universal Hyperbolic Geometry 50 | NJ Wildberger

The cube and the octahedron are dual solids. Each has contained within it both 2-fold, 3-fold and 4-fold symmetry. In this video we look at how these symmetries are generated in the cube via canonical structures. Along the way we discuss bipartite graphs. This gives us more insight into t

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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Role of Magnetoelastic Coupling in Kitaev Materials by Roser Valenti

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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SU(4) Dirac Fermions on Honeycomb Lattice by Basudeb Mondal

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From playlist APS Satellite Meeting at ICTS-2022

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Emergent SU(4) Symmetry in alpha-ZrCl3 by Masaki Oshikawa

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From playlist The 2nd Asia Pacific Workshop on Quantum Magnetism

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Tailoring Topological Phases: A Materials Perspective by Tanusri Saha-Dasgupta

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Microscopic Modeling and Applications of Frustrated Magnetism by SungBin Lee

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From playlist The 2nd Asia Pacific Workshop on Quantum Magnetism

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Chemistry - Molecular Structure (10.5 of 45) Basic Shapes-Octahedral with Free Electron Pairs

Visit http://ilectureonline.com for more math and science lectures! In this video I will explain the octahedral with free electron pair(s).

From playlist CHEMISTRY 14 MOLECULAR STRUCTURE

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Unified Theory of the Spiral Spin-liquids on Layered Honeycomb, Diamond... by Karlo Penc

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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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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The classification of Platonic solids I | Universal Hyperbolic Geometry 53 | NJ Wildberger

Euclid showed in the last Book XIII of the Elements that there were exactly 5 Platonic solids. Here we go through the argument, but using some modern innovations of notation: in particular instead of talking about angles that sum to 360 degrees around the circle, or perhaps 2 pi radians, w

From playlist Universal Hyperbolic Geometry

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Mod-15 Lec-36 Magnetic Ceramics (Contd. )

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From playlist IIT Kharagpur: Advanced Ceramics for Strategic Applications | CosmoLearning.org Materials Science

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Octahedron Fractal Graph

This shows a 3d print of a mathematical sculpture I produced using shapeways.com. This model is available at http://shpws.me/19O1

From playlist 3D printing

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Group theory 27: The icosahedral group

This lecture is part of an online math course on group theory. The lecture is about a few examples of groups, in particular the icosahedral group. In it we see that the icosahedral group is the only simple group of order 60, and show that all larger alternating groups are simple.

From playlist Group theory

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Group Theory Package (GTPack) and Symmetry Principles in Condensed Matter: Live with the R&D team

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From playlist Live with the R&D Team

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Chemistry - Molecular Structure (10 of 45) Basic Shapes-Octahedral with Free Electron Pairs

This video has an uploading audio error...the audio error-free video lives at: https://www.youtube.com/watch?v=IAULFewncc8 In this video I will explain the octahedral with free electron pair(s).

From playlist CHEMISTRY 14 MOLECULAR STRUCTURE

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Lec 30 | MIT 5.111 Principles of Chemical Science, Fall 2005

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From playlist MIT 5.111 Principles of Chemical Science, Fall 2005

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

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From playlist Quadrilaterals on a Coordinate Plane

Related pages

Hexagon | Poincaré disk model | Vertex arrangement | Pentagon | Schläfli symbol | Tessellation | Honeycomb (geometry) | Hyperbolic space | Order-6 square tiling | Order-4-3 hexagonal honeycomb | Heptagon | Infinite-order square tiling | Order-7 square tiling | Octagon | Regular Polytopes (book) | Order-8 square tiling | Coxeter notation | Octahedron | Geometry | Order-4-3 pentagonal honeycomb | Apeirogon | Order-5 square tiling | Triangle