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  • ...al form]]s; the introduction of algebraic invariants gives the opening for computing with the equivalence relation as something intrinsic.<ref>{{cite book|title [[Category:Mathematics timelines|Bordism]] ...
    10 KB (1,425 words) - 22:39, 28 September 2023
  • * 600 - Liu Zhuo is the first person to use second-order interpolation for computing the positions of the sun and the moon.<ref>{{Cite web |title=On Squares, Re [[Category:Mathematics timelines|Calculus and mathematical analysis]] ...
    14 KB (1,903 words) - 00:39, 2 March 2025
  • ...rlds views]] of quantum mechanics, it does not necessarily imply branching timelines after interacting with a CTC.<ref>{{Cite journal |last=Wallace |first=David | title = Closed Timelike Curves Make Quantum and Classical Computing Equivalent ...
    22 KB (2,632 words) - 08:31, 6 January 2025
  • ...ial form]]s; the introduction of algebraic invariants gave the opening for computing with the equivalence relation as something intrinsic.<ref>{{cite book|title [[Category:Historical timelines]] ...
    43 KB (5,826 words) - 13:16, 4 January 2025
  • ...rules for manipulating both [[negative and positive numbers]], methods for computing square roots, methods of solving [[linear equation|linear]] and [[quadratic * 1966&nbsp;– [[E. J. Putzer]] presents two methods for computing the [[Matrix exponential|exponential of a matrix]] in terms of a polynomial ...
    65 KB (8,524 words) - 17:13, 26 February 2025
  • ...r leap years (i.e. 1700, 1800, 1900, 2100, etc.) In fact, a new method for computing the date of Easter was introduced. The method proposed by Lilius was revise [[Category:Articles which contain graphical timelines]] ...
    73 KB (10,495 words) - 06:49, 14 February 2025