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  2. Truncated icosahedron - Wikipedia

    en.wikipedia.org/wiki/Truncated_icosahedron

    The surface area and the volume of the truncated icosahedron of edge length are: [2] = (+ +) = +. The sphericity of a polyhedron describes how closely a polyhedron resembles a sphere. It can be defined as the ratio of the surface area of a sphere with the same volume to the polyhedron's surface area, from which the value is between 0 and 1.

  3. Truncated cube - Wikipedia

    en.wikipedia.org/wiki/Truncated_cube

    Cartesian coordinates for the vertices of a truncated hexahedron centered at the origin with edge length 2 ⁠ 1 / δ S ⁠ are all the permutations of (± ⁠ 1 / δ S ⁠, ±1, ±1), where δ S = √ 2 +1. If we let a parameter ξ= ⁠ 1 / δ S ⁠, in the case of a Regular Truncated Cube, then the parameter ξ can be varied between ±1.

  4. Rhombicuboctahedron - Wikipedia

    en.wikipedia.org/wiki/Rhombicuboctahedron

    The volume of a rhombicuboctahedron can be determined by slicing it into two square cupolas and one octagonal prism. Given that the edge length a {\displaystyle a} , its surface area and volume is: [ 7 ] A = ( 18 + 2 3 ) a 2 ≈ 21.464 a 2 , V = 12 + 10 2 3 a 3 ≈ 8.714 a 3 . {\displaystyle {\begin{aligned}A&=\left(18+2{\sqrt {3}}\right)a^{2 ...

  5. Snub disphenoid - Wikipedia

    en.wikipedia.org/wiki/Snub_disphenoid

    A snub disphenoid with edge length has a surface area: [8] =, the area of 12 equilateral triangles. Its volume can be calculated as the formula: [ 8 ] V ≈ 0.85949 a 3 . {\displaystyle V\approx 0.85949a^{3}.}

  6. Straightedge and compass construction - Wikipedia

    en.wikipedia.org/wiki/Straightedge_and_compass...

    Doubling the cube is the construction, using only a straightedge and compass, of the edge of a cube that has twice the volume of a cube with a given edge. This is impossible because the cube root of 2, though algebraic, cannot be computed from integers by addition, subtraction, multiplication, division, and taking square roots.

  7. Conversion of units - Wikipedia

    en.wikipedia.org/wiki/Conversion_of_units

    Conversion of units is the conversion of the unit of measurement in which a quantity is expressed, typically through a multiplicative conversion factor that changes the unit without changing the quantity. This is also often loosely taken to include replacement of a quantity with a corresponding quantity that describes the same physical property.

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    Get AOL Mail for FREE! Manage your email like never before with travel, photo & document views. Personalize your inbox with themes & tabs. You've Got Mail!

  9. Regular icosahedron - Wikipedia

    en.wikipedia.org/wiki/Regular_icosahedron

    The 600-cell also contains unit-edge-length cubes and unit-edge-length octahedra as interior features formed by its unit-length chords. In the unit-radius 120-cell (another regular 4-polytope which is both the dual of the 600-cell and a compound of 5 600-cells) we find all three kinds of inscribed icosahedra (in a dodecahedron, in an octahedron ...