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  2. Logic of graphs - Wikipedia

    en.wikipedia.org/wiki/Logic_of_graphs

    In the mathematical fields of graph theory and finite model theory, the logic of graphs deals with formal specifications of graph properties using sentences of mathematical logic. There are several variations in the types of logical operation that can be used in these sentences. The first-order logic of graphs concerns sentences in which the ...

  3. Graph theory - Wikipedia

    en.wikipedia.org/wiki/Graph_theory

    7 Notes. 8 References. ... graph theory is the study of graphs, ... Wiley 1961; Methuen & Co, New York 1962; Russian, Moscow 1961; Spanish, Mexico 1962; Roumanian ...

  4. De Bruijn–Erdős theorem (graph theory) - Wikipedia

    en.wikipedia.org/wiki/De_Bruijn–Erdős_theorem...

    In graph theory, the De Bruijn–Erdős theorem relates graph coloring of an infinite graph to the same problem on its finite subgraphs. It states that, when all finite subgraphs can be colored with colors, the same is true for the whole graph. The theorem was proved by Nicolaas Govert de Bruijn and Paul Erdős (1951), after whom it is named.

  5. Graph (discrete mathematics) - Wikipedia

    en.wikipedia.org/wiki/Graph_(discrete_mathematics)

    A graph with six vertices and seven edges. In discrete mathematics, particularly in graph theory, a graph is a structure consisting of a set of objects where some pairs of the objects are in some sense "related". The objects are represented by abstractions called vertices (also called nodes or points) and each of the related pairs of vertices ...

  6. Five color theorem - Wikipedia

    en.wikipedia.org/wiki/Five_color_theorem

    A Five-Color Map. The five color theorem is a result from graph theory that given a plane separated into regions, such as a political map of the countries of the world, the regions may be colored using no more than five colors in such a way that no two adjacent regions receive the same color. The five color theorem is implied by the stronger ...

  7. Tutte theorem - Wikipedia

    en.wikipedia.org/wiki/Tutte_theorem

    Example of a graph and one of its perfect matchings (in red). In the mathematical discipline of graph theory the Tutte theorem, named after William Thomas Tutte, is a characterization of finite undirected graphs with perfect matchings. It is a special case of the Tutte–Berge formula.

  8. Chinese postman problem - Wikipedia

    en.wikipedia.org/wiki/Chinese_postman_problem

    In graph theory, a branch of mathematics and computer science, Guan's route problem, the Chinese postman problem, postman tour or route inspection problem is to find a shortest closed path or circuit that visits every edge of an (connected) undirected graph at least once. When the graph has an Eulerian circuit (a closed walk that covers every ...

  9. Blow-up lemma - Wikipedia

    en.wikipedia.org/wiki/Blow-up_lemma

    The blow-up lemma, proved by János Komlós, Gábor N. Sárközy, and Endre Szemerédi in 1997, [1][2] is an important result in extremal graph theory, particularly within the context of the regularity method. It states that the regular pairs in the statement of Szemerédi's regularity lemma behave like complete bipartite graphs in the context ...

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