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real number | mathematics | physical constants | e | π | Graham's number | Skewes' number | definable numbers | computable numbers | Chaitin's constant | De Bruijn-Newman constant | continued fractions | π | e | Feigenbaum constants | mathematical models | Euclidean geometry | analysis | logistic maps | Apéry's constant | Golden ratio | The circumference of a circle with diameter 1 is π. | | Pi | definition | Euclidean geometry | circumference | circle | diameter | Gaussian integral | complex analysis | roots of unity | number theory | Cauchy distributions | probability | Heisenberg's uncertainty principle | cosmological constant | principles | laws | formulas | Coulomb's law | magnitude | electrostatic force | electric charges | SI units | Exponential growth (green) describes many physical phenomena. | | exponential growth | Swiss | Jacob Bernoulli | compound interest | probability theory | probability | French | Pierre Raymond de Montmort | derangements | Bifurcation diagram of the logistic map. | | dynamical systems | Mitchell Feigenbaum | Feigenbaum constants | logistic maps | bifurcation diagrams | polynomial | chaotic | non-linear | English | Robert May | Pierre François Verhulst | | Riemann zeta function | Apéry's constant | electron | gyromagnetic ratio | quantum electrodynamics | Golden rectangles in an icosahedron | | Fibonacci number | golden ratio | geometry | symmetry | pentagon | diagonal | icosahedron | orthogonal | golden rectangles | Fibonacci sequence | recursion | stems | veins | skeletons | crystals | structures | forms | proportions | organic | inorganic | acoustic | optical | The area between the two curves (red) tends to a limit. | | Euler–Mascheroni constant | number theory | French | Charles Jean de la Vallée-Poussin | average | infinity | Merten's third theorem | gamma function | zeta function | integrals | series | discrete | continuous | Conway | look-and-say sequence | Conway's constant | look-and-say sequence | polynomial | simple continued fraction | Russian | Aleksandr Khinchin | limit | infinity | geometric mean | measure | Khinchin's constant | This Babylonian clay tablet gives an approximation of  in four sexagesimal figures, which is about six decimal figures . | | Babylonian | sexagesimal | decimal | Liouville's constant | transcendental number | square root of 2 | Liouville's constant | Champernowne constant C_{10} = \color{black}0.\color{blue}1\color{black}2\color{blue}3\color{black}4\color{blue}5\color{black}6\color{blue}7\color{black}8\color{blue}9\color{black}10\color{blue}11\color{black}12\color{blue}13\color{black}14\color{blue}15\color{black}16\dots | irrational numbers | transcendental numbers | normal numbers | irrational numbers | Pythagorean | Hippasus of Metapontum | French | Joseph Liouville | computer science | algorithmic information theory | Chaitin's constant | probability | Turing machine | Argentine | American | computer scientist | Gregory Chaitin | Chaitin's constant | computable | transcendental | normal | integrals | differential equations | Solutions with different constants of integration of . | | Indefinite integrals | field | constant of integration | differentiating | solutions | initial values | boundary conditions | ordinary differential equation | partial differential equations | functions | PDE | variable | symbols | decimal representation | 0.999... | German | Ludolph van Ceulen | supercomputers | algorithms | Apéry's constant | Graham's number | Knuth's up-arrow notation | Graham's number | Knuth's up-arrow notation | continued fractions | analytic form | notation | convention | Leonhard Euler | lower case | Latin alphabet | Greek alphabet | Erdős–Borwein constant | Embree-Trefethen constant | Brun's constant | twin prime | Rydberg constant | cardinal number | aleph naught \aleph_0 | asterisk | lemniscate | Hebrew | Cyrillic | Gothic | American | Edward Kasner | googol | googolplex | The parabolic constant is the ratio of the arc length of the parabolic segment formed by the latus rectum (red) to its focal parameter (green). | | parabolic constant | arc length | latus rectum | focal parameter | parabolic constant | twin prime constant | Sierpiński's constant | Josephson constant | Rational number | Irrational number | Algebraic number | Transcendental number | General | Number theory | Chaos theory | Combinatorics | Information theory | Mathematical analysis | Zero | Gen | R | One | Gen | R | Imaginary unit | Gen | Ana | A | Pi | Archimedes | Ludolph | Gen | Ana | T | Napier's constant | Euler's number | Natural logarithm | Gen | Ana | T | Pythagoras | square root of two | Gen | A | Theodorus | square root of three | Gen | A | square root of five | Gen | A | Euler-Mascheroni constant | Gen | NuT | Golden ratio | Gen | A | Plastic constant | NuT | A | Embree-Trefethen constant | NuT | Feigenbaum constant | ChT | Feigenbaum constant | ChT | Twin prime constant | NuT | Meissel-Mertens constant | NuT | Brun's constant | NuT | Brun's constant | NuT | de Bruijn-Newman constant | NuT | Catalan's constant | Com | Landau-Ramanujan constant | NuT | Viswanath's constant | NuT | Legendre's constant | NuT | R | Ramanujan-Soldner constant | NuT | Erdős–Borwein constant | NuT | I | Bernstein's constant | Ana | Gauss-Kuzmin-Wirsing constant | Com | Hafner-Sarnak-McCurley constant | NuT | Golomb–Dickman constant | Com | NuT | Cahen's constant | T | Laplace limit | NuT | Com | Lévy's constant | NuT | Apéry's constant | I | Mills' constant | NuT | Backhouse's constant | NuT | Lieb's square ice constant | Com | Niven's constant | NuT | Sierpiński's constant | Khinchin's constant | NuT | Fransén-Robinson constant | Ana | Landau's constant | Ana | Parabolic constant | Gen | T | Omega constant | Ana | T | Eric W. Weisstein | MathWorld | 2007 | 12-09 | ISBN 3-7643-3026-0 | Cambridge University Press | ISBN 0-521-81805-3 | May, Robert | ISBN 0-632-00768-0 | MathWorld | Livio, Mario | ISBN 0-7679-0815-5 | doi | Cambridge University Press | ISBN 0-521-81805-3 | MathWorld | MathWorld | Fowler, David | Eleanor Robson | doi | 2007 | 12-09 | doi | Champernowne, david | doi | Eric W. Weisstein | MathWorld | ISBN 0-13-300575-5 | Rudin, Walter | ISBN 0-07-054235-X | Stewart, James | ISBN 0-534-36298-2 | Knuth, Donald | 2007 | 11-27 | MathWorld | Microsoft Press | Eric W. Weisstein | MathWorld | Eric W. Weisstein | MathWorld | Eric W. Weisstein | MathWorld | Eric W. Weisstein | MathWorld | Eric W. Weisstein | MathWorld | Eric W. Weisstein | MathWorld | Categories | Mathematical constants | Mathematical tables |
This article is licensed under the GNU Free Documentation License. It uses material from the Wikipedia article "Mathematical constant".