Kurt Godel - définition. Qu'est-ce que Kurt Godel
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Qu'est-ce (qui) est Kurt Godel - définition

AUSTRIAN-AMERICAN LOGICIAN, MATHEMATICIAN, AND PHILOSOPHER OF MATHEMATICS (1906-1978)
Kurt Goedel; Gödel; Kurt Godel; Goedel; Gödel, K; Gödel, K.; Kurt gödel; K. Gödel; K. Goedel; Goedel, K; Goedel, K.; Godel, K.; Kurt godel; Godel, K; Kurt goedel; K. Godel; Kurt Friedrich Gödel; Godel; Religious views of Kurt Gödel
  • de}}, [[Vienna]], where he discovered his incompleteness theorems
  • Gravestone of Kurt and Adele Gödel in the Princeton, N.J., cemetery

Goedel         
<language> (After the mathematician Kurt Godel) A declarative, general-purpose language for {artificial intelligence} based on logic programming. It can be regarded as a successor to Prolog. The type system is based on many-sorted logic with parametric polymorphism. Modularity is supported, as well as {infinite precision arithmetic} and finite sets. Goedel has a rich collection of system modules and provides constraint solving in several domains. It also offers metalogical facilities that provide significant support for metaprograms that do analysis, transformation, compilation, verification, and debugging. A significant subset of Goedel has been implemented on top of SISCtus Prolog by Jiwei Wang <jiwei@lapu.bristol.ac.uk>. FTP Bristol, UK (ftp://ftp.cs.bris.ac.uk/goedel), {FTP K U Leuven (ftp://ftp.cs.kuleuven.ac.be/pub/logic-prgm/goedel)}. E-mail: <goedel@compsci.bristol.ac.uk>. (1995-05-02)
Kurt Gödel Society         
Kurt Godel Society; Kurt Goedel Society
The Kurt Gödel Society was founded in Vienna, Austria in 1987. It is an international organization aimed at promoting research primarily on logic, philosophy and the history of mathematics, with special attention to connections with Kurt Gödel, in whose honour it was named.
Gödel metric         
  • Hawking and Ellis picture of expansion and reconvergence of light emitted by an observer on the axis of symmetry.
  • The null geodesics spiral counterclockwise toward an observer on the axis of symmetry. This shows them from "above".
  • Two light cones (with their accompanying frame vectors) in the cylindrical chart for the Gödel lambda dust solution. As we move outwards from the nominal symmetry axis, the cones ''tip forward'' and ''widen''. Vertical coordinate lines (representing the world lines of the dust particles) are ''timelike''.
SOLUTION OF EINSTEIN FIELD EQUATIONS
Gödel universe; Godel metric; Godel universe; Gödel solution; Gödel spacetime; Goedel solution; Goedel metric; Goedel spacetime; Godel spacetime; Godel solution; Gödel dust
The Gödel metric is an exact solution of the Einstein field equations in which the stress–energy tensor contains two terms, the first representing the matter density of a homogeneous distribution of swirling dust particles (dust solution), and the second associated with a nonzero cosmological constant (see lambdavacuum solution). It is also known as the Gödel solution or Gödel universe.

Wikipédia

Kurt Gödel

Kurt Friedrich Gödel ( GUR-dəl, German: [kʊʁt ˈɡøːdl̩] (listen); April 28, 1906 – January 14, 1978) was a logician, mathematician, and philosopher. Considered along with Aristotle and Gottlob Frege to be one of the most significant logicians in history, Gödel had an immense effect upon scientific and philosophical thinking in the 20th century, a time when others such as Bertrand Russell, Alfred North Whitehead, and David Hilbert were using logic and set theory to investigate the foundations of mathematics, building on earlier work by the likes of Richard Dedekind, Georg Cantor and Frege.

Gödel's discoveries in the foundations of mathematics led to the proof of his completeness theorem in 1929 as part of his dissertation to earn a doctorate at the University of Vienna, and the publication of Gödel's incompleteness theorems two years later, in 1931. The first incompleteness theorem states that for any ω-consistent recursive axiomatic system powerful enough to describe the arithmetic of the natural numbers (for example, Peano arithmetic), there are true propositions about the natural numbers that can be neither proved nor disproved from the axioms. To prove this, Gödel developed a technique now known as Gödel numbering, which codes formal expressions as natural numbers. The second incompleteness theorem, which follows from the first, states that the system cannot prove its own consistency.

Gödel also showed that neither the axiom of choice nor the continuum hypothesis can be disproved from the accepted Zermelo–Fraenkel set theory, assuming that its axioms are consistent. The former result opened the door for mathematicians to assume the axiom of choice in their proofs. He also made important contributions to proof theory by clarifying the connections between classical logic, intuitionistic logic, and modal logic.

Exemples du corpus de texte pour Kurt Godel
1. Also found was a copy of "A Madman Dreams of Turing Machines," a novel based on the lives of Alan Turing and Kurt Godel, two towering figures of modern logic.