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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. Test tube rack - Wikipedia

    en.wikipedia.org/wiki/Test_tube_rack

    Test tube rack. Test tube racks are laboratory equipment used to hold upright multiple test tubes at the same time. They are most commonly used when various different solutions are needed to work with simultaneously, for safety reasons, for safe storage of test tubes, and to ease the transport of multiple tubes. Test tube racks also ease the ...

  4. 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.

  5. Pentic 6-cubes - Wikipedia

    en.wikipedia.org/wiki/Pentic_6-cubes

    Pentisteriruncicantic 6-cube. =. Orthogonal projections in D 6 Coxeter plane. In six-dimensional geometry, a pentic 6-cube is a convex uniform 6-polytope . There are 8 pentic forms of the 6-cube.

  6. Runcinated 6-cubes - Wikipedia

    en.wikipedia.org/wiki/Runcinated_6-cubes

    Runcinated 6-cubes. In six-dimensional geometry, a runcinated 6-cube is a convex uniform 6-polytope with 3rd order truncations ( runcination) of the regular 6-cube . There are 12 unique runcinations of the 6-cube with permutations of truncations, and cantellations. Half are expressed relative to the dual 6-orthoplex.

  7. Cantic 6-cube - Wikipedia

    en.wikipedia.org/wiki/Cantic_6-cube

    The Cartesian coordinates for the 480 vertices of a cantic 6-cube centered at the origin and edge length 6 √ 2 are coordinate permutations: (±1,±1,±3,±3,±3,±3) with an odd number of plus signs.

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