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Tetradecahedron

polyhedron with 14 faces

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General referenceInterpretive dossier study · Crown Archives visual atlas
Record originEnglish Wikipedia
Text licenseCC BY-SA 4.0
Source revisionJun 24, 2025
Entity authorityQ7706309
Source-derived summary

A tetradecahedron is a polyhedron with 14 faces. There are numerous topologically distinct forms of a tetradecahedron, with many constructible entirely with regular polygon faces.

A tetradecahedron is sometimes called a tetrakaidecahedron. No difference in meaning is ascribed. The Greek word kai means 'and'. There is evidence that mammalian epidermal cells are shaped like flattened tetrakaidecahedra, an idea first suggested by Lord Kelvin. The polyhedron can also be found in soap bubbles and in sintered ceramics, due to its ability to tesselate in 3D space.

Convex

There are 1,496,225,352 topologically distinct convex tetradecahedra, excluding mirror images, having at least 9 vertices. (Two polyhedra are "topologically distinct" if they have intrinsically different arrangements of faces and vertices, such that it is impossible to distort one into the other simply by changing the lengths of edges or the angles between edges or faces.)

Examples

An incomplete list of forms includes:

Tetradecahedra having all regular polygonal faces (all exist in irregular-faced forms as well):

Archimedean solids:

Cuboctahedron (8 triangles, 6 squares)

Truncated cube (8 triangles, 6 octagons)

Truncated octahedron (6 squares, 8 hexagons)

Prisms and antiprisms:

Dodecagonal prism (12 squares, 2 dodecagons)

Hexagonal antiprism (12 triangles, 2 hexagons)

Johnson solids:

J18: Elongated triangular cupola (4 triangles, 9 squares, 1 hexagon)

J27: Triangular orthobicupola (8 triangles, 6 squares)

J51: Triaugmented triangular prism (14 triangles)

J55: Parabiaugmented hexagonal prism (8 triangles, 4 squares, 2 hexagons)

J56: Metabiaugmented hexagonal prism (8 triangles, 4 squares, 2 hexagons)

J65: Augmented truncated tetrahedron (8 triangles, 3 squares, 3 hexagons)

J86: Sphenocorona (12 triangles, 2 squares)

J91: Bilunabirotunda (8 triangles, 2 squares, 4 pentagons)

Tetradecahedra having at least one irregular face:

Heptagonal bipyramid (14 triangles) (see Dipyramid)

Heptagonal trapezohedron (14 kites) (see Trapezohedron)

Tridecagonal pyramid (13 triangles, 1 regular tridecagon) (see Pyramid (geometry))

Dissected regular icosahedron (the vertex figure of the grand antiprism) (12 equilateral triangles and 2 trapezoids)

Hexagonal truncated trapezohedron: (12 pentagons, 2 hexagons)Includes an optimal space-filling shape in foams (see Weaire–Phelan structure) and in the crystal structure of clathrate hydrate (see illustration, next to label 51262)

Hexagonal bifrustum (12 trapezoids, 2 hexagons)

The British £1 coin in circulation from 2017 – with twelve edges and two faces – is an irregular dodecagonal prism, when one disregards the edging and relief features.

See also

Császár polyhedron – A nonconvex tetradecahedron of all triangle faces

Steffen's polyhedron – A flexible tetradecahedron

Permutohedron – A polyhedron that can be defined in any dimension and equals the truncated octahedron in three dimensions

References

"What Are Polyhedra?" at the Wayback Machine (archived 12 February 2005), with Greek Numerical Prefixes

External links

Weisstein, Eric W. "Tetradecahedron".

Editorial summary

“Tetradecahedron” enters the record as polyhedron with 14 faces. Crown Archives preserves that source wording while asking what Tetradecahedron, polyhedron and faces can confirm, complicate or overturn.

Editorial reviewA dependable orientation record for establishing vocabulary, names and a first evidence trail. The current lead gives the account dated anchors—2017, 2005—that can be checked directly. The selected authority fields contribute no independent date. Its strongest next move is a source search built around Tetradecahedron, polyhedron and faces.
Editorial analysis

Why this record matters

“Tetradecahedron” is worth following because a concise public description often conceals a longer documentary argument. Here, Tetradecahedron, polyhedron and faces provides the most credible route into that argument.

Evidence profile

The citation trail is more important than the brevity of the summary: it shows where individual claims can be examined in context. The source revision retrieved here is dated Jun 24, 2025. The linked authority identifier is Q7706309. None of the 0 selected statements returned an explicit reference. The first chronological checks are 2017 and 2005.

Critical limits

The absence of detail may reflect summary conventions rather than a lack of surviving documentation. The lead is largely declarative, so disagreement and counter-evidence require a deliberate search beyond the opening account. Authority statements aid reconciliation but still require their own references, qualifiers and ranks to be checked.

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Source & attribution

This entry incorporates text from Tetradecahedron” on English Wikipedia. Contributors are listed in the page history. Text is available under the Creative Commons Attribution-ShareAlike 4.0 License. Selected authority identifiers and statements are retrieved from Wikidata under CC0; their references and qualifiers remain part of the verification path.