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This is a list of misnamed theorems in mathematics. It includes theorems (and lemmas , corollaries, conjectures , laws, and perhaps even the odd object) that are well known in mathematics, but which are not named for the originator.
Lebesgue differentiation theorem (real analysis) Le Cam's theorem (probability theory) Lee–Yang theorem (statistical mechanics) Lefschetz fixed-point theorem (fixed points, algebraic topology) Lefschetz–Hopf theorem ; Lefschetz hyperplane theorem (algebraic topology) Lefschetz theorem on (1,1)-classes (algebraic geometry)
List of misnamed theorems; T. Topkis's theorem This page was last edited on 30 October 2023, at 17:44 (UTC). Text is available under the Creative Commons ...
Artin reciprocity law is a general theorem in number theory that forms a central part of global class field theory. Named after Emil Artin. Ashby's law of requisite variety, that the number of states in a control mechanism must be greater than or equal to the number of states in the system it controls.
Erdős–Stone theorem: Mathematics: Paul Erdős and Arthur Harold Stone: Erdős–Szekeres theorem: Mathematics: Paul Erdős and George Szekeres: Erdős–Szemerédi theorem: Mathematics: Paul Erdős and Endre Szemerédi: Euclid's theorem: Number theory: Euclid: Euler's theorem See also: List of things named after Leonhard Euler: Number theory ...
The concepts described in articles in this category may be also expressed in terms of arguments, or rules of inference.Very often the same concept is in more than one of these categories, expressed a different way and sometimes with a different name.
This category includes theorems on the foundational aspects of mathematics, including: mathematical logic, model theory, set theory, some general topology and category theory. Subcategories This category has only the following subcategory.
The following list is meant to serve as a repository for compiling a list of such ideas. The idea of the Pythagoreans that all numbers can be expressed as a ratio of two whole numbers . This was disproved by one of Pythagoras ' own disciples, Hippasus , who showed that the square root of two is what we today call an irrational number .
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