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  2. Square–cube law - Wikipedia

    en.wikipedia.org/wiki/Squarecube_law

    Its volume would be multiplied by the cube of 2 and become 8 m 3. The original cube (1 m sides) has a surface area to volume ratio of 6:1. The larger (2 m sides) cube has a surface area to volume ratio of (24/8) 3:1. As the dimensions increase, the volume will continue to grow faster than the surface area. Thus the squarecube law.

  3. Economies of scale - Wikipedia

    en.wikipedia.org/wiki/Economies_of_scale

    Some of the economies of scale recognized in engineering have a physical basis, such as the squarecube law, by which the surface of a vessel increases by the square of the dimensions while the volume increases by the cube. This law has a direct effect on the capital cost of such things as buildings, factories, pipelines, ships and airplanes ...

  4. Power law - Wikipedia

    en.wikipedia.org/wiki/Power_law

    The distributions of a wide variety of physical, biological, and human-made phenomena approximately follow a power law over a wide range of magnitudes: these include the sizes of craters on the moon and of solar flares, [2] cloud sizes, [3] the foraging pattern of various species, [4] the sizes of activity patterns of neuronal populations, [5] the frequencies of words in most languages ...

  5. Tesseract - Wikipedia

    en.wikipedia.org/wiki/Tesseract

    In geometry, a tesseract or 4-cube is a four-dimensional hypercube, analogous to a two-dimensional square and a three-dimensional cube. [1] Just as the perimeter of the square consists of four edges and the surface of the cube consists of six square faces , the hypersurface of the tesseract consists of eight cubical cells , meeting at right ...

  6. Similarity (geometry) - Wikipedia

    en.wikipedia.org/wiki/Similarity_(geometry)

    The ratio between the volumes of similar figures is equal to the cube of the ratio of corresponding lengths of those figures (for example, when the edge of a cube or the radius of a sphere is multiplied by three, its volume is multiplied by 27 — i.e. by three cubed). Galileo's squarecube law concerns similar solids.

  7. Allometry - Wikipedia

    en.wikipedia.org/wiki/Allometry

    An example is found in frogs—aside from a brief period during the few weeks after metamorphosis, frogs grow isometrically. [12] Therefore, a frog whose legs are as long as its body will retain that relationship throughout its life, even if the frog itself increases in size tremendously. Isometric scaling is governed by the squarecube law ...

  8. Expander cycle - Wikipedia

    en.wikipedia.org/wiki/Expander_cycle

    Because of the necessary phase change, the expander cycle is thrust limited by the squarecube law. When a bell-shaped nozzle is scaled, the nozzle surface area with which to heat the fuel increases as the square of the radius, but the volume of fuel to be heated increases as the cube of the radius.

  9. Talk:Square–cube law - Wikipedia

    en.wikipedia.org/wiki/Talk:Squarecube_law

    It might make the example in the "Description" section clearer if it were explicitly noted that in the first example (the cube with side length of 1 m) the ratio of Area to Volume is 6:1 and in the second example (the cube with side length 2 m) the ration of Area to Volume is 3:1.