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- | Reciprocal of <math>a</math>: <math>1/a</math> resp. <math>a^{-1}</math> for <math>a \ne | Increment of <math>a</math>: <math>a - 1</math> (read as "dec")6 KB (923 words) - 04:59, 15 January 2024
- '''First fundamental theorem of exact differential and integral calculus for line integrals:''' The functio '''Second fundamental theorem of exact differential and integral calculus for line integrals:''' Conditions2 KB (354 words) - 16:55, 29 September 2023
- ...n>]] [[w:Change of variables|<span class="wikipedia">substitution</span>]] of variables, reduce to the case <math>1/p(0) \ne \mathcal{O}(\iota)</math>. S * [[List of mathematical symbols]]1 KB (211 words) - 15:48, 25 July 2022
- * [[List of mathematical symbols]] [[Category:Areas of mathematics]]3 KB (486 words) - 11:29, 13 February 2024
- ...class="wikipedia">path</span>]] whose start and end points are the limits of integration. If <math>{}^\curvearrowright b(x) \ne b({}^\curvearrowright x) * [[List of mathematical symbols]]3 KB (378 words) - 16:13, 29 September 2023
- ...="wikipedia">matrix product</span>]] <math>AA^T</math> roughly halves that of the original algorithm in <math>\mathcal{O}(n^{(_2 7)})</math>. ...<span class="wikipedia">geometric series</span>]] yields the claim because of the halvings above (see top right).<math>\square</math>1 KB (178 words) - 15:39, 29 September 2023
- '''Conclusion''': The preceding theorem enables an infinite descent because of gcd<math>(a, b, c) > 1</math> such that no <math>n \in {}^{\omega}\mathbb{N * [[List of mathematical symbols]]1 KB (194 words) - 16:59, 1 March 2023