In geometry, a 10-orthoplex or 10-cross polytope, is a regular 10-polytope with 20 vertices, 180 edges, 960 triangle faces, 3360 tetrahedron cells, 8064 5-cell 4-faces, 13440 5-faces, 15360 6-faces, 11520 7-faces, 5120 8-faces, and 1024 9-faces.
It has two constructed forms, the first being regular with Schläfli symbol {3<sup>8</sup>,4}, and the second with alternately labeled (checker-boarded) facets, with Schläfli symbol {3<sup>7</sup>,3<sup>1,1</sup>} or Coxeter symbol 7<sub>11</sub>.
It is one of an infinite family of polytopes, called cross-polytopes or orthoplexes. The dual polytope is the 10-hypercube or 10-cube.
Alternate names
- Decacross is derived from combining the family name cross polytope with deca for ten (dimensions) in Greek. Acronym: ka
- Chilliaicositetraronnon as a 1024-facetted 10-polytope (polyronnon).
Construction
There are two Coxeter groups associated with the 10-orthoplex, one regular, dual of the 10-cube with the C<sub>10</sub> or [4,3<sup>8</sup>] symmetry group, and a lower symmetry with two copies of 9-simplex facets, alternating, with the D<sub>10</sub> or [3<sup>7,1,1</sup>] symmetry group.
Cartesian coordinates
Cartesian coordinates for the vertices of a 10-orthoplex, centred at the origin are
(ñ1,0,0,0,0,0,0,0,0,0), (0,ñ1,0,0,0,0,0,0,0,0), (0,0,ñ1,0,0,0,0,0,0,0), (0,0,0,ñ1,0,0,0,0,0,0), (0,0,0,0,ñ1,0,0,0,0,0), (0,0,0,0,0,ñ1,0,0,0,0), (0,0,0,0,0,0,ñ1,0,0,0), (0,0,0,0,0,0,0,ñ1,0,0), (0,0,0,0,0,0,0,0,ñ1,0), (0,0,0,0,0,0,0,0,0,ñ1)
Every vertex pair is connected by an edge, except opposites.
Images
Notes
References
- H.S.M. Coxeter:
- H.S.M. Coxeter, Regular Polytopes, 3rd Edition, Dover New York, 1973
- Kaleidoscopes: Selected Writings of H.S.M. Coxeter, edited by F. Arthur Sherk, Peter McMullen, Anthony C. Thompson, Asia Ivic Weiss, Wiley-Interscience Publication, 1995, wiley.com,
- (Paper 22) H.S.M. Coxeter, Regular and Semi-Regular Polytopes I, [Math. Zeit. 46 (1940) 380âÂÂ407, MR 2,10]
- (Paper 23) H.S.M. Coxeter, Regular and Semi-Regular Polytopes II, [Math. Zeit. 188 (1985) 559âÂÂ591]
- (Paper 24) H.S.M. Coxeter, Regular and Semi-Regular Polytopes III, [Math. Zeit. 200 (1988) 3âÂÂ45]
- Norman Johnson Uniform Polytopes, Manuscript (1991)
- N.W. Johnson: The Theory of Uniform Polytopes and Honeycombs, Ph.D. (1966)
- x3o3o3o3o3o3o3o3o4o - ka
External links