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Hexagon
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== Dissection== {| class="wikitable skin-invert-image" align=right style="text-align:center;" ! [[6-cube]] projection !colspan=2| 12 rhomb dissection |- | [[File:6-cube t0 A5.svg|120px]] | [[File:6-gon rhombic dissection-size2.svg|140px]] | [[File:6-gon rhombic dissection2-size2.svg|140px]] |} [[Coxeter]] states that every [[zonogon]] (a 2''m''-gon whose opposite sides are parallel and of equal length) can be dissected into {{nowrap|{{frac|1|2}}''m''(''m'' β 1)}} parallelograms.<ref>[[Coxeter]], Mathematical recreations and Essays, Thirteenth edition, p.141</ref> In particular this is true for [[regular polygon]]s with evenly many sides, in which case the parallelograms are all rhombi. This decomposition of a regular hexagon is based on a [[Petrie polygon]] projection of a [[cube]], with 3 of 6 square faces. Other [[parallelogon]]s and projective directions of the cube are dissected within [[rectangular cuboid]]s. {| class="wikitable skin-invert-image collapsible" style="text-align:center;" !colspan=12| Dissection of hexagons into three rhombs and parallelograms |- !rowspan=3| 2D ! Rhombs !colspan=3| Parallelograms |- valign=top |[[File:Hexagon_dissection.svg|80px]] |[[File:Cube-skew-orthogonal-skew-solid.png|95px]] |[[File:Cuboid_diagonal-orthogonal-solid.png|120px]] |[[File:Cuboid_skew-orthogonal-solid.png|120px]] |- valign=top | Regular {6} |colspan=3| Hexagonal [[parallelogon]]s |- !rowspan=3| 3D !colspan=2| Square faces !colspan=2| Rectangular faces |- valign=top | [[File:3-cube_graph.svg|95px]] | [[File:Cube-skew-orthogonal-skew-frame.png|95px]] | [[File:Cuboid_diagonal-orthogonal-frame.png|120px]] | [[File:Cuboid_skew-orthogonal-frame.png|120px]] |- valign=top |colspan=2| [[Cube]] |colspan=2| [[Rectangular cuboid]] |}
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