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  2. Square root of 2 - Wikipedia

    en.wikipedia.org/wiki/Square_root_of_2

    The square root of 2 (approximately 1.4142) is the positive real number that, when multiplied by itself or squared, equals the number 2. It may be written in mathematics as 2 {\displaystyle {\sqrt {2}}} or 2 1 / 2 {\displaystyle 2^{1/2}} .

  3. Table of mathematical symbols by introduction date - Wikipedia

    en.wikipedia.org/wiki/Table_of_mathematical...

    The following table lists many specialized symbols commonly used in modern mathematics, ordered by their introduction date. The table can also be ordered alphabetically by clicking on the relevant header title.

  4. Square root - Wikipedia

    en.wikipedia.org/wiki/Square_root

    The square root of a positive integer is the product of the roots of its prime factors, because the square root of a product is the product of the square roots of the factors. Since p 2 k = p k , {\textstyle {\sqrt {p^{2k}}}=p^{k},} only roots of those primes having an odd power in the factorization are necessary.

  5. Irrational number - Wikipedia

    en.wikipedia.org/wiki/Irrational_number

    Consider √ 22; if this is rational, then take a = b = √ 2. Otherwise, take a to be the irrational number √ 22 and b = √ 2. Then a b = (√ 22) √ 2 = √ 22 · √ 2 = √ 2 2 = 2, which is rational. Although the above argument does not decide between the two cases, the Gelfond–Schneider theorem shows that √ 2 ...

  6. Square root of two - Wikipedia

    en.wikipedia.org/?title=Square_root_of_two&...

    Pages for logged out editors learn more. Contributions; ... Print/export Download as PDF; ... Redirect page. Redirect to: Square root of 2; Retrieved from "https: ...

  7. Quadratic integer - Wikipedia

    en.wikipedia.org/wiki/Quadratic_integer

    In particular √ D belongs to [], being a root of the equation x 2 − D = 0, which has 4D as its discriminant. The square root of any integer is a quadratic integer, as every integer can be written n = m 2 D, where D is a square-free integer, and its square root is a root of x 2 − m 2 D = 0.

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  9. Gelfond–Schneider constant - Wikipedia

    en.wikipedia.org/wiki/Gelfond–Schneider_constant

    The square root of the Gelfond–Schneider constant is the transcendental number = 1.632 526 919 438 152 844 77.... This same constant can be used to prove that "an irrational elevated to an irrational power may be rational", even without first proving its transcendence.