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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,
File information Description Venn Diagrams Representing all Intersectional Logic Gates Between Two Inputs. Based on Image:LogicGates.jpg.. Source I (ZanderSchubert ()) created this work entirely by myself.
In probability theory, the complement of any event A is the event [not A], i.e. the event that A does not occur. [1] The event A and its complement [not A] are mutually exclusive and exhaustive. Generally, there is only one event B such that A and B are both mutually exclusive and exhaustive; that event is the complement of A.
One of 256 Venn diagrams of 3-ary Boolean functions. It's like , representing the intersection of 3 sets, or the conjunction of 3 statements respectively. It belongs to the following family: This file was created by Watchduck (a.k.a. Tilman Piesk) in 2010.
One of 256 Venn diagrams of 3-ary Boolean functions. It's like , representing the intersection of 3 sets, or the conjunction of 3 statements respectively. It belongs to the following family: This file was created by Watchduck (a.k.a. Tilman Piesk) in 2010.
If A is a set, then the absolute complement of A (or simply the complement of A) is the set of elements not in A (within a larger set that is implicitly defined). In other words, let U be a set that contains all the elements under study; if there is no need to mention U, either because it has been previously specified, or it is obvious and unique, then the absolute complement of A is the ...
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