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  2. File:Venn1001.svg - Wikipedia

    en.wikipedia.org/wiki/File:Venn1001.svg

    In set theory the Venn diagrams tell, that there is an element in one of the red intersections. (The existential quantifications for the red intersections are combined by or. They can be combined by the exclusive or as well.) Relations like subset and implication, arranged in the same kind of matrix as above. In set theory the Venn diagrams tell,

  3. File:Venn4.svg - Wikipedia

    en.wikipedia.org/wiki/File:Venn4.svg

    Vennův diagram; Usage on de.wikipedia.org Mengendiagramm; Usage on fi.wikipedia.org Venn-diagrammi; Usage on fr.wikipedia.org Diagramme de Venn; Usage on hu.wikipedia.org Venn-diagram; Usage on ja.wikipedia.org ベン図; 像; Usage on pt.wikipedia.org Diagrama de Venn; Wikipédia:Escolha do artigo em destaque/Diagrama de Venn; Usage on ta ...

  4. File:Venn0001.svg - Wikipedia

    en.wikipedia.org/wiki/File:Venn0001.svg

    In set theory the Venn diagrams tell, that there is an element in one of the red intersections. (The existential quantifications for the red intersections are combined by or. They can be combined by the exclusive or as well.) Relations like subset and implication, arranged in the same kind of matrix as above. In set theory the Venn diagrams tell,

  5. Venn diagram - Wikipedia

    en.wikipedia.org/wiki/Venn_diagram

    A Venn diagram is a widely used diagram style that shows the logical relation between sets, popularized by John Venn (1834–1923) in the 1880s. The diagrams are used to teach elementary set theory, and to illustrate simple set relationships in probability, logic, statistics, linguistics and computer science.

  6. Template:Probability fundamentals - Wikipedia

    en.wikipedia.org/wiki/Template:Probability...

    Template: Probability ... Venn diagram; Tree diagram; Template documentation This page was last edited on 25 March 2024, at 18:41 (UTC). Text is available under the ...

  7. Naive set theory - Wikipedia

    en.wikipedia.org/wiki/Naive_set_theory

    The set B doesn't have to be a subset of A for A \ B to make sense; this is the difference between the relative complement and the absolute complement (A C = U \ A) from the previous section. To illustrate these ideas, let A be the set of left-handed people, and let B be the set of people with blond hair.

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