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  2. 6-cube - Wikipedia

    en.wikipedia.org/wiki/6-cube

    In geometry, a 6-cube is a six- dimensional hypercube with 64 vertices, 192 edges, 240 square faces, 160 cubic cells, 60 tesseract 4-faces, and 12 5-cube 5-faces . It has Schläfli symbol {4,3 4 }, being composed of 3 5-cubes around each 4-face. It can be called a hexeract, a portmanteau of tesseract (the 4-cube) with hex for six (dimensions ...

  3. Necker cube - Wikipedia

    en.wikipedia.org/wiki/Necker_cube

    The Necker cube is an optical illusion that was first published as a rhomboid in 1832 by Swiss crystallographer Louis Albert Necker. It is a simple wire-frame , two dimensional drawing of a cube with no visual cues as to its orientation , so it can be interpreted to have either the lower-left or the upper-right square as its front side.

  4. ClosetMaid - Wikipedia

    en.wikipedia.org/?title=ClosetMaid&redirect=no

    Language links are at the top of the page across from the title.

  5. Stericated 6-cubes - Wikipedia

    en.wikipedia.org/wiki/Stericated_6-cubes

    Stericated 6-cubes. In six-dimensional geometry, a stericated 6-cube is a convex uniform 6-polytope, constructed as a sterication (4th order truncation) of the regular 6-cube . There are 8 unique sterications for the 6-cube with permutations of truncations, cantellations, and runcinations.

  6. 6-cubic honeycomb - Wikipedia

    en.wikipedia.org/wiki/6-cubic_honeycomb

    Dual. self-dual. Properties. vertex-transitive, edge-transitive, face-transitive, cell-transitive. The 6-cubic honeycomb or hexeractic honeycomb is the only regular space-filling tessellation (or honeycomb) in Euclidean 6-space. It is analogous to the square tiling of the plane and to the cubic honeycomb of 3-space.

  7. Hypercubic honeycomb - Wikipedia

    en.wikipedia.org/wiki/Hypercubic_honeycomb

    Hypercubic honeycomb. In geometry, a hypercubic honeycomb is a family of regular honeycombs ( tessellations) in n - dimensional spaces with the Schläfli symbols {4,3...3,4} and containing the symmetry of Coxeter group Rn (or B~n–1) for n ≥ 3 . The tessellation is constructed from 4 n - hypercubes per ridge. The vertex figure is a cross ...

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