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  2. Order of magnitude - Wikipedia

    en.wikipedia.org/wiki/Order_of_magnitude

    An order-of-magnitude estimate of a variable, whose precise value is unknown, is an estimate rounded to the nearest power of ten. For example, an order-of-magnitude estimate for a variable between about 3 billion and 30 billion (such as the human population of the Earth) is 10 billion. To round a number to its nearest order of magnitude, one ...

  3. Fermi problem - Wikipedia

    en.wikipedia.org/wiki/Fermi_problem

    Thus one will expect to be within 1 ⁄ 8 to 8 times the correct value – within an order of magnitude, and much less than the worst case of erring by a factor of 2 9 = 512 (about 2.71 orders of magnitude). If one has a shorter chain or estimates more accurately, the overall estimate will be correspondingly better.

  4. Scale analysis (mathematics) - Wikipedia

    en.wikipedia.org/wiki/Scale_analysis_(mathematics)

    In the above example, the left-hand side could be of equal order of magnitude as the right-hand side. Rule3-If in the sum of two terms given by = + the order of magnitude of one term is greater than order of magnitude of the other term > ()

  5. Template:Order of magnitude/doc - Wikipedia

    en.wikipedia.org/.../Template:Order_of_magnitude/doc

    The template gives 0 for 0. Although, strictly speaking, this is mathematically incorrect it has been designed this way so as to be more useful in other templates. An important example of this is that when used by {} 0 °C or 0 °F is considered to be on the same order of magnitude as ±1 °C or ±1 °F respectively.

  6. Rayleigh distribution - Wikipedia

    en.wikipedia.org/wiki/Rayleigh_distribution

    One example where the Rayleigh distribution naturally arises is when wind velocity is analyzed in two dimensions. Assuming that each component is uncorrelated , normally distributed with equal variance , and zero mean , which is infrequent, then the overall wind speed ( vector magnitude) will be characterized by a Rayleigh distribution.

  7. Template:Order of magnitude - Wikipedia

    en.wikipedia.org/wiki/Template:Order_of_magnitude

    This template calculates the order of magnitude of numbers within the ranges 10^300 to 10^−300 and −10^−300 to −10^300. Template parameters [Edit template data] Parameter Description Type Status Number 1 The number to find the order of magnitude of Number required See also {{ Orders of magnitude }} {{ Fractions }} {{ Fractions and ratios }} The above documentation is transcluded from ...

  8. Orders of magnitude (length) - Wikipedia

    en.wikipedia.org/wiki/Orders_of_magnitude_(length)

    1.6 × 10 −5 quectometers (1.6 × 10 −35 meters) – the Planck length (Measures of distance shorter than this do not make physical sense, according to current theories of physics.) 1 qm – 1 quectometer, the smallest named subdivision of the meter in the SI base unit of length, one nonillionth of a meter.

  9. Alignments of random points - Wikipedia

    en.wikipedia.org/wiki/Alignments_of_random_points

    The following is a very approximate order-of-magnitude estimate of the likelihood of alignments, assuming a plane covered with uniformly distributed "significant" points. Consider a set of n points in a compact area with approximate diameter L and area approximately L 2 .