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  2. 8-cube - Wikipedia

    en.wikipedia.org/wiki/8-cube

    This 8-cube graph is an orthogonal projection. This orientation shows columns of vertices positioned a vertex-edge-vertex distance from one vertex on the left to one vertex on the right, and edges attaching adjacent columns of vertices. The number of vertices in each column represents rows in Pascal's triangle, being 1:8:28:56:70:56:28:8:1.

  3. Cantic 8-cube - Wikipedia

    en.wikipedia.org/wiki/Cantic_8-cube

    Coxeter-Dynkin diagram: 6-faces ... Properties: convex: In eight-dimensional geometry, a cantic 8-cube or truncated 8 ... Regular and Semi Regular Polytopes I, [Math ...

  4. Truncated 8-cubes - Wikipedia

    en.wikipedia.org/wiki/Truncated_8-cubes

    In eight-dimensional geometry, a truncated 8-cube is a convex uniform 8-polytope, being a truncation of the regular 8-cube. There are unique 7 degrees of truncation for the 8-cube. Vertices of the truncation 8-cube are located as pairs on the edge of the 8-cube. Vertices of the bitruncated 8-cube are located on the square faces of the 8-cube.

  5. Eight-dimensional space - Wikipedia

    en.wikipedia.org/wiki/Eight-dimensional_space

    A broader family are the uniform 8-polytopes, constructed from fundamental symmetry domains of reflection, each domain defined by a Coxeter group. Each uniform polytope is defined by a ringed Coxeter-Dynkin diagram. The 8-demicube is a unique polytope from the D 8 family, and 4 21, 2 41, and 1 42 polytopes from the E 8 family.

  6. Rectified 8-cubes - Wikipedia

    en.wikipedia.org/wiki/Rectified_8-cubes

    In eight-dimensional geometry, a rectified 8-cube is a convex uniform 8-polytope, being a rectification of the regular 8-cube. There are unique 8 degrees of rectifications, the zeroth being the 8-cube, and the 7th and last being the 8-orthoplex. Vertices of the rectified 8-cube are located at the edge-centers of the 8-cube.

  7. 8-cubic honeycomb - Wikipedia

    en.wikipedia.org/wiki/8-cubic_honeycomb

    In geometry, the 8-cubic honeycomb or octeractic honeycomb is the only regular space-filling tessellation (or honeycomb) in Euclidean 8-space. It is analogous to the square tiling of the plane and to the cubic honeycomb of 3-space, and the tesseractic honeycomb of 4-space.

  8. Schlegel diagram - Wikipedia

    en.wikipedia.org/wiki/Schlegel_diagram

    In geometry, a Schlegel diagram is a projection of a polytope from into through a point just outside one of its facets. The resulting entity is a polytopal subdivision of the facet in R d − 1 {\textstyle \mathbb {R} ^{d-1}} that, together with the original facet, is combinatorially equivalent to the original polytope.

  9. Truncated cube - Wikipedia

    en.wikipedia.org/wiki/Truncated_cube

    3D model of a truncated cube. In geometry, the truncated cube, or truncated hexahedron, is an Archimedean solid. It has 14 regular faces (6 octagonal and 8 triangular), 36 edges, and 24 vertices. If the truncated cube has unit edge length, its dual triakis octahedron has edges of lengths 2 and δ S +1, where δ S is the silver ratio, √ 2 +1.

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