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Compact topological spaces

Abbreviation: KTop

Definition

A \emph{compact topological space} is a topological space X=X,Ω that is

\emph{compact}: every open cover has a finite subcover, i.e., CΩ(C=Xn,C0,,Cn1C(C0Cn1=X))

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It is not unusual to give several (equivalent) definitions. Ideally, one of the definitions would give an irredundant axiomatization that does not refer to other classes.

Morphisms

Let X and Y be compact topological spaces. A morphism from X to Y is a function h:XY that is a continuous: VΩY(h1[Y]ΩX)

Definition

A \emph{…} is a structure A=A, of type such that

is …: axiom

is …: axiom

Examples

Example 1:

Basic results

Properties

Feel free to add or delete properties from this list. The list below may contain properties that are not relevant to the class that is being described.

Subclasses

[[Compact Hausdorff topological spaces]]

Superclasses

[[Topological spaces]]

References


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