- Euler brick
In
mathematics , an Euler brick, named after the famous mathematicianLeonhard Euler , is acuboid with integer edges and also integer face diagonals. A primitive Euler brick is an Euler brick with its edgesrelatively prime .Alternatively stated, an Euler Brick is a solution to the following system of
diophantine equation s::::
The smallest Euler brick has edges
:("a", "b", "c") = (240, 117, 44)
and face
polyhedron diagonals:267, 244, and 125.
Paul Halcke discovered it in1719 .Other solutions are: Given as: length (a, b, c)
* (275, 252, 240),
* (693, 480, 140),
* (720, 132, 85), and
* (792, 231, 160).Euler found at least two
parametric solutions to the problem, but neither give all solutions.Given an Euler brick with edges ("a", "b", "c"), the triple ("bc", "ac", "ab") constitutes an Euler brick as well.
Perfect cuboid
A perfect cuboid (also called a perfect box) is an Euler brick whose body diagonal is also an integer.
In other words the following equation is added to the above
Diophantine equation s::
Some interesting facts about a perfect cuboid.
* 2 edges must be even and 1 edge must be odd (for a primitive perfect cuboid).
* 1 edge must be divisible by 4 and 1 edge must be divisible by 16
* 1 edge must be divisible by 3 and 1 edge must be divisible by 9
* 1 edge must be divisible by 5
* 1 edge must be divisible by 11As of 2005 , no example of a perfect cuboid had been found and no one had proven that it cannot exist. Exhaustive computer searches have proven that the smallest edge of the perfect box is at least 4.3 billion. Solutions have been found where the body diagonal and two of the three face diagonals are integers, such as::Solutions are also known where all four diagonals but only two of the three edges are integers, such as::and:An alleged proof of non-existence of Euler bricks was published by
Lasha Margishvili in his work "The Diophantine Rectangular Parallelepiped (A Perfect Cuboid)". As of July 2008, it has not received significant peer review by the math community. [http://www.archivum.info/sci.math/2006-11/msg03681.html] , [http://www.mualphatheta.org/Science_Fair/images/georgian.png] , [http://web.archive.org/web/20061126183733/http://www.mualphatheta.org/Science_Fair/Science_Fair_Winners.html]References
*
*External links
*mathworld|urlname=EulerBrick|title=Euler Brick
*mathworld|urlname=PerfectCuboid|title=Perfect Cuboid
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