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  2. 68–95–99.7 rule - Wikipedia

    en.wikipedia.org/wiki/68–95–99.7_rule

    In statistics, the 689599.7 rule, also known as the empirical rule, and sometimes abbreviated 3sr, is a shorthand used to remember the percentage of values that lie within an interval estimate in a normal distribution: approximately 68%, 95%, and 99.7% of the values lie within one, two, and three standard deviations of the mean, respectively.

  3. Normal distribution - Wikipedia

    en.wikipedia.org/wiki/Normal_distribution

    About 68% of values drawn from a normal distribution are within one standard deviation σ from the mean; about 95% of the values lie within two standard deviations; and about 99.7% are within three standard deviations. [8] This fact is known as the 689599.7 (empirical) rule, or the 3-sigma rule.

  4. File:Empirical rule histogram.svg - Wikipedia

    en.wikipedia.org/wiki/File:Empirical_rule...

    English: This histogram demonstrates the empirical rule, also known as the 689599.7 rule. Note that the areas of histogram bars are not proportional to the stated probabilities, unless by an incredible coincidence.

  5. Circular error probable - Wikipedia

    en.wikipedia.org/wiki/Circular_error_probable

    The relation between and are given by the following table, where the values for DRMS and 2DRMS (twice the distance root mean square) are specific to the Rayleigh distribution and are found numerically, while the CEP, R95 (95% radius) and R99.7 (99.7% radius) values are defined based on the 689599.7 rule

  6. Margin of error - Wikipedia

    en.wikipedia.org/wiki/Margin_of_error

    Print/export Download as PDF; Printable version; In other projects Wikidata item; Appearance. move to sidebar hide ... (which the 689599.7 rule approximates).

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  8. 97.5th percentile point - Wikipedia

    en.wikipedia.org/wiki/97.5th_percentile_point

    The approximate value of this number is 1.96, meaning that 95% of the area under a normal curve lies within approximately 1.96 standard deviations of the mean. Because of the central limit theorem, this number is used in the construction of approximate 95% confidence intervals. Its ubiquity is due to the arbitrary but common convention of using ...

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