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  2. Significant figures - Wikipedia

    en.wikipedia.org/wiki/Significant_figures

    The digits in the base and exponent (10 3 or 10 −2) are considered exact numbers so for these digits, significant figures are irrelevant. Explicitly state the number of significant figures (the abbreviation s.f. is sometimes used): For example "20 000 to 2 s.f." or "20 000 (2 sf)".

  3. Decimal separator - Wikipedia

    en.wikipedia.org/wiki/Decimal_separator

    In Estonia, currency numbers often use a dot "." as the decimal separator, and a space as a thousands separator. This is most visible on shopping receipts and in documents that also use other numbers with decimals, such as measurements. This practice is used to better distinguish between prices and other values with decimals.

  4. Square root of 5 - Wikipedia

    en.wikipedia.org/wiki/Square_root_of_5

    The first sixty significant digits of its decimal expansion are: 2.23606 79774 99789 69640 91736 68731 27623 54406 18359 61152 57242 7089... (sequence A002163 in the OEIS), which can be rounded down to 2.236 to within 99.99% accuracy. The approximation ⁠ 161 / 72 ⁠ (≈ 2.23611) for the square root of five can be used.

  5. Fiscal Quarters (Q1, Q2, Q3, Q4) Explained and What ... - AOL

    www.aol.com/fiscal-quarters-q1-q2-q3-192741265.html

    Q2, or the second quarter, refers to the accounting period of April, May and June. Any financial statements you receive from April 1 to June 30 are for Q2 of the fiscal quarter system.

  6. Significant Figures (book) - Wikipedia

    en.wikipedia.org/wiki/Significant_Figures_(book)

    Significant Figures: The Lives and Work of Great Mathematicians is a 2017 nonfiction book by British mathematician Ian Stewart FRS CMath FIMA, published by Basic Books. [1] In the work, Stewart discusses the lives and contributions of 25 figures who are prominent in the history of mathematics. [ 2 ]

  7. Approximations of π - Wikipedia

    en.wikipedia.org/wiki/Approximations_of_π

    [74] [75] A former calculation record (December 2002) by Yasumasa Kanada of Tokyo University stood at 1.24 trillion digits, which were computed in September 2002 on a 64-node Hitachi supercomputer with 1 terabyte of main memory, which carries out 2 trillion operations per second, nearly twice as many as the computer used for the previous record ...

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