User talk:Jgmoxness
Welcome
[edit][1]jgmoxness or Special:Emailuser/Jgmoxness
See also:
Images of fractals, 3D chaotic attractors, and 3D parametric surfaces
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A collection of named 3D chaotic attractors
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A collection of fractals named by their generating function
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A collection of 3D fractals named by their generating function
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A collection of fractals named by their generating expression
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A collection of named 3D parametric surfaces
Images of maximal subgroup embeddings of Lie Algebras
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E8 Maximal Embeddings
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E8 Maximal Embeddings with Weyl Orbits and Coxeter-Dynkin Diagrams
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E7 Maximal Embeddings with Weyl Orbits and Coxeter-Dynkin
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E6 Maximal Embeddings with Weyl Orbits and Coxeter-Dynkin
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D8 Maximal Embeddings with Weyl Orbits and Coxeter-Dynkin Diagrams
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C8 Maximal Embeddings with Weyl Orbits and Coxeter-Dynkin Diagrams
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B6 Maximal Embeddings with Weyl Orbits and Coxeter-Dynkin Diagrams
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A7 Maximal Embeddings with Weyl Orbits and Coxeter-Dynkin Diagrams
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F4 Maximal Embeddings with Weyl Orbits and Coxeter-Dynkin
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G2 Maximal Embeddings with Weyl Orbits and Coxeter-Dynkin
Images of Klein Quartic and Octonions as they relate to Electron Spherical Harmonic Legendre Functions and their Dual Quark-Gluon Nucleons
[edit]Images of Hasse Diagrams
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F4 Hasse
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E6 Hasse
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E7 Hasse
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E8 Hasse
Images of Stowe-Janet-Scerri Periodic Table
[edit]Images of E8 (and its subgroups)
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2D Polygons
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3D Platonic Solids
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4D Polychora
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5D Polytopes
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6D Polytopes
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7D Polytopes
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8D Polytopes
Images related to w:Quasicrystals
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w:6-cube (w:Hexeract) using 6D w:orthographic_projection to a 3D w:Perspective_(visual) object (the w:Rhombic_triacontahedron) using the w:Golden ratio in the w:basis_vectors (inner edges removed leaving their vertices).
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w:6-cube (w:Hexeract) orthographically projected to 3D using the w:Golden ratio. This is used to understand the aperiodic icosahedral structure of w:Quasicrystals.
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240 w:E₈ polytope vertices with 1440 w:6-cube (6D) unit edges and w:Golden ratio basis vectors orthographically projected to 3D.
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240 w:E₈ polytope vertices projected to 2D using w:5-cube Petrie basis vectors overlaid on electron diffraction pattern of an icosahedral Zn-Mg-Ho w:Quasicrystal.
Images Dynkin Diagrams
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Rank 3 Compact Hyperbolic Dynkin Diagrams (1-5 of 238)
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Rank 3 Compact Hyperbolic Dynkin Diagrams (6-10 of 238)
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Finite Dynkin Diagrams
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Affine Loop Dynkin Diagrams
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Hyperbolic and very extended affine Dynkin Diagrams
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Folding Dynkin Diagrams
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Folding Dynkin Diagrams
Cell8+Cell16=Cell24
Tesseract (Left frame orthogonal, Right frame perspective) |
Anaglyph for depth cueing(Red left eye, Cyan right eye) |
Penteract
Hexeract |
Hepteract |
16 Cell | 24 Cell |
120 Cell | 600 Cell |
Images of Fano Planes
[edit]Jgmoxness (talk) 02:52, 6 April 2010 (UTC)
120-cell projection animation
[edit]I like your animation of 120-cell rotation, but the dithering around the edges is distracting and makes it hard to see interior edges. If you still have the source code, maybe you could re-render with antialiasing? Alternately, rendering at higher resolution and then scaling down might achieve the same effect. It could also rotate a bit slower, IMHO, to be more similar to File:120-cell.gif.
Thanks for the awesome math images! --Quantum7 06:55, 16 April 2014 (UTC)
E8Petrie.svg
[edit]This is nice. Did you draw it with LaTeX/TiKz?