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  2. 5-polytope - Wikipedia

    en.wikipedia.org/wiki/5-polytope

    A prismatic 5-polytope is uniform if its factors are uniform. The hypercube is prismatic (product of a square and a cube), but is considered separately because it has symmetries other than those inherited from its factors. A 4-space tessellation is the division of four-dimensional Euclidean space into a regular grid of polychoral facets ...

  3. 5-cube - Wikipedia

    en.wikipedia.org/wiki/5-cube

    In five-dimensional geometry, a 5-cube is a name for a five-dimensional hypercube with 32 vertices, 80 edges, 80 square faces, 40 cubic cells, and 10 tesseract 4-faces. It is represented by Schläfli symbol {4,3,3,3} or {4,3 3 }, constructed as 3 tesseracts, {4,3,3}, around each cubic ridge .

  4. Uniform 5-polytope - Wikipedia

    en.wikipedia.org/wiki/Uniform_5-polytope

    In geometry, a uniform 5-polytope is a five-dimensional uniform polytope. By definition, a uniform 5-polytope is vertex-transitive and constructed from uniform 4-polytope facets . The complete set of convex uniform 5-polytopes has not been determined, but many can be made as Wythoff constructions from a small set of symmetry groups .

  5. Five-dimensional space - Wikipedia

    en.wikipedia.org/wiki/Five-dimensional_space

    A 2D orthogonal projection of a 5-cube. A five-dimensional space is a space with five dimensions. In mathematics, a sequence of N numbers can represent a location in an N-dimensional space. If interpreted physically, that is one more than the usual three spatial dimensions and the fourth dimension of time used in relativistic physics. [1]

  6. 5-demicube - Wikipedia

    en.wikipedia.org/wiki/5-demicube

    It is a part of a dimensional family of uniform polytopes called demihypercubes for being alternation of the hypercube family.. There are 23 Uniform 5-polytopes (uniform 5-polytopes) that can be constructed from the D 5 symmetry of the demipenteract, 8 of which are unique to this family, and 15 are shared within the penteractic family.

  7. Uniform polytope - Wikipedia

    en.wikipedia.org/wiki/Uniform_polytope

    Regular n-polytopes have n orders of rectification.The zeroth rectification is the original form. The (n−1)-th rectification is the dual.A rectification reduces edges to vertices, a birectification reduces faces to vertices, a trirectification reduces cells to vertices, a quadirectification reduces 4-faces to vertices, a quintirectification reduced 5-faces to vertices, and so on.

  8. Runcinated 5-simplexes - Wikipedia

    en.wikipedia.org/wiki/Runcinated_5-simplexes

    In six-dimensional geometry, a runcinated 5-simplex is a convex uniform 5-polytope with 3rd order truncations (Runcination) of the regular 5-simplex. There are 4 unique runcinations of the 5-simplex with permutations of truncations, and cantellations .

  9. 5-simplex - Wikipedia

    en.wikipedia.org/wiki/5-simplex

    In five-dimensional geometry, a 5-simplex is a self-dual regular 5-polytope.It has six vertices, 15 edges, 20 triangle faces, 15 tetrahedral cells, and 6 5-cell facets.It has a dihedral angle of cos −1 (⁠ 1 / 5 ⁠), or approximately 78.46°.