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・ Order-4 square hosohedral honeycomb
・ Order-4 square tiling honeycomb
・ Order-5 120-cell honeycomb
・ Order-5 5-cell honeycomb
・ Order-5 apeirogonal tiling
・ Order-5 cubic honeycomb
・ Order-5 dodecahedral honeycomb
・ Order-5 hexagonal tiling
・ Order-5 hexagonal tiling honeycomb
・ Order-5 icosahedral 120-cell honeycomb
・ Order-5 pentagonal tiling
・ Order-5 square tiling
・ Order-5 tesseractic honeycomb
・ Order-6 cubic honeycomb
・ Order-6 dodecahedral honeycomb
Order-6 hexagonal tiling
・ Order-6 hexagonal tiling honeycomb
・ Order-6 octagonal tiling
・ Order-6 pentagonal tiling
・ Order-6 square tiling
・ Order-6 tetrahedral honeycomb
・ Order-6 triangular hosohedral honeycomb
・ Order-7 heptagonal tiling
・ Order-7 heptagrammic tiling
・ Order-7 hexagonal tiling honeycomb
・ Order-7 square tiling
・ Order-7 tetrahedral honeycomb
・ Order-7 triangular tiling
・ Order-8 hexagonal tiling
・ Order-8 octagonal tiling


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Order-6 hexagonal tiling : ウィキペディア英語版
Order-6 hexagonal tiling

In geometry, the order-6 hexagonal tiling is a regular tiling of the hyperbolic plane. It has Schläfli symbol of and is self-dual.
== Symmetry ==
This tiling represents a hyperbolic kaleidoscope of 6 mirrors defining a regular hexagon fundamental domain. This symmetry by orbifold notation is called
*333333 with 6 order-3 mirror intersections. In Coxeter notation can be represented as (), removing two of three mirrors (passing through the hexagon center) in the () symmetry.
The even/odd fundamental domains of this kaleidoscope can be seen in the alternating colorings of the tiling:
:240px

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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