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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. Template:Calculator/doc - Wikipedia

    en.wikipedia.org/wiki/Template:Calculator/doc

    Add a calculator widget to the page. Like a spreadsheet you can refer to other widgets in the same page. Template parameters Parameter Description Type Status id id The id for this input. This is used to reference it in formula of other calculator templates String required type type What type of input box Suggested values plain number text radio checkbox passthru hidden range String required ...

  4. Margin of error - Wikipedia

    en.wikipedia.org/wiki/Margin_of_error

    Precise values of are given by the quantile function of the normal distribution (which the 689599.7 rule approximates). Note that is undefined for | ...

  5. Reference range - Wikipedia

    en.wikipedia.org/wiki/Reference_range

    The standard definition of a reference range for a particular measurement is defined as the interval between which 95% of values of a reference population fall into, in such a way that 2.5% of the time a value will be less than the lower limit of this interval, and 2.5% of the time it will be larger than the upper limit of this interval, whatever the distribution of these values.

  6. 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.

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  9. Percentile - Wikipedia

    en.wikipedia.org/wiki/Percentile

    This is related to the 689599.7 rule or the three-sigma rule. Note that in theory the 0th percentile falls at negative infinity and the 100th percentile at positive infinity, although in many practical applications, such as test results, natural lower and/or upper limits are enforced.