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In the defining picture, the bodies of the decapods are red and yellow, and all the legs connecting the neighbors are green. Most balls have valence 6 ('flattish'), but on the outer rim there are 12 valence-5 balls ('curved'), and on the inner rim there are 12 valence-7 balls ('saddle-like').
 
In the defining picture, the bodies of the decapods are red and yellow, and all the legs connecting the neighbors are green. Most balls have valence 6 ('flattish'), but on the outer rim there are 12 valence-5 balls ('curved'), and on the inner rim there are 12 valence-7 balls ('saddle-like').
   
These tori can be connected as regular hexagons, making a whole network possible. The principle is demonstrated well enough by connecting two or three, see pictures below.
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These tori can be connected as regular hexagons, making a whole network possible. The principle is demonstrated well enough by connecting two, see ''second picture''.
   
The hexagonal nature of these kinds of tori is displayed more clearly by adding extra segments, as in ''the final picture''.
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The hexagonal nature of these kinds of tori is displayed more clearly by adding extra segments, as in ''the third picture''.
 
<gallery>
 
<gallery>
 
Image:TwoTori.jpg|Double Torus
 
Image:TwoTori.jpg|Double Torus
Image:ThreeTori.jpg|Triple Torus
 
 
Image:Big6torus.jpg|Big Hexagon
 
Image:Big6torus.jpg|Big Hexagon
 
Image:Space_thingie.jpg|in space
 
Image:Space_thingie.jpg|in space
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|Type=Polyhedron:Torus
 
|Type=Polyhedron:Torus
 
|Triangles=|Squares=|Pentagons=|Rhombic=|Rods=300|Spheres=180|Author=[[User:Leo Dorst|Leo Dorst]] 06:58, 24 May 2008 (UTC)}}
 
|Triangles=|Squares=|Pentagons=|Rhombic=|Rods=300|Spheres=180|Author=[[User:Leo Dorst|Leo Dorst]] 06:58, 24 May 2008 (UTC)}}
 
 
== A Bigger Torus with 5m-fold Symmetry ==
 
== A Bigger Torus with 5m-fold Symmetry ==
   
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