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Square root of 3

Unique positive real number which when multiplied by itself gives 3 From Wikipedia, the free encyclopedia

Square root of 3
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The square root of 3 is the positive real number that, when multiplied by itself, gives the number 3. It is denoted mathematically as or . It is more precisely called the principal square root of 3 to distinguish it from the negative number with the same property. The square root of 3 is an irrational number. It is also known as Theodorus' constant, after Theodorus of Cyrene, who proved its irrationality.[1]

Quick facts Representations, Decimal ...

In 2013, its numerical value in decimal notation was computed to ten billion digits.[2] Its decimal expansion, written here to 65 decimal places, is given by OEIS: A002194:

1.732050807568877293527446341505872366942805253810380628055806

Archimedes reported a range for its value: .[3]

The upper limit is an accurate approximation for to (six decimal places, relative error ) and the lower limit to (four decimal places, relative error ).

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Geometry and trigonometry

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The height of an equilateral triangle with edge length 2 is 3. Also, the long leg of a 30-60-90 triangle with hypotenuse 2.
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And, the height of a regular hexagon with sides of length 1
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The space diagonal of the unit cube is 3.

The square root of 3 can be found as the leg length of an equilateral triangle that encompasses a circle with a diameter of 1.

If an equilateral triangle with sides of length 1 is cut into two equal halves, by bisecting an internal angle across to make a right angle with one side, the right angle triangle's hypotenuse is length one, and the sides are of length and . From this, , , and .

The square root of 3 also appears in algebraic expressions for various other trigonometric constants, including[4] the sines of other angles.

It is the distance between parallel sides of a regular hexagon with sides of length 1.

It is the length of the space diagonal of a unit cube.

The vesica piscis has a major axis to minor axis ratio equal to . This can be shown by constructing two equilateral triangles within it.

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References

Further reading

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