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  2. Lower limit topology - Wikipedia

    en.wikipedia.org/wiki/Lower_limit_topology

    The Sorgenfrey line can thus be used to study right-sided limits: if : is a function, then the ordinary right-sided limit of at (when the codomain carries the standard topology) is the same as the usual limit of at when the domain is equipped with the lower limit topology and the codomain carries the standard topology.

  3. Locally compact space - Wikipedia

    en.wikipedia.org/wiki/Locally_compact_space

    the lower limit topology or upper limit topology on the set R of real numbers (useful in the study of one-sided limits); any T 0, hence Hausdorff, topological vector space that is infinite-dimensional, such as an infinite-dimensional Hilbert space.

  4. List of topologies - Wikipedia

    en.wikipedia.org/wiki/List_of_topologies

    The following is a list of named topologies or topological spaces, many of which are counterexamples in topology and related branches of mathematics. This is not a list of properties that a topology or topological space might possess; for that, see List of general topology topics and Topological property.

  5. Category:Topological spaces - Wikipedia

    en.wikipedia.org/wiki/Category:Topological_spaces

    Equivariant topology; Erdős space; List of examples in general topology; ... Long line (topology) Loop space; Lower limit topology; M. Menger sponge; Metric space;

  6. Locally connected space - Wikipedia

    en.wikipedia.org/wiki/Locally_connected_space

    Throughout the history of topology, connectedness and compactness have been two of the most widely studied topological properties. Indeed, the study of these properties even among subsets of Euclidean space, and the recognition of their independence from the particular form of the Euclidean metric, played a large role in clarifying the notion of a topological property and thus a topological space.

  7. Glossary of general topology - Wikipedia

    en.wikipedia.org/wiki/Glossary_of_general_topology

    Absolutely closed See H-closed Accessible See . Accumulation point See limit point. Alexandrov topology The topology of a space X is an Alexandrov topology (or is finitely generated) if arbitrary intersections of open sets in X are open, or equivalently, if arbitrary unions of closed sets are closed, or, again equivalently, if the open sets are the upper sets of a poset.

  8. List of general topology topics - Wikipedia

    en.wikipedia.org/wiki/List_of_general_topology...

    Continuum (topology) Extended real number line; Long line (topology) Sierpinski space; Cantor set, Cantor space, Cantor cube; Space-filling curve; Topologist's sine curve; Uniform norm; Weak topology; Strong topology; Hilbert cube; Lower limit topology; Sorgenfrey plane; Real tree; Compact-open topology; Zariski topology; Kuratowski closure ...

  9. Separable space - Wikipedia

    en.wikipedia.org/wiki/Separable_space

    A simple example of a space that is not separable is a discrete space of uncountable cardinality. ... the set of real numbers equipped with the lower limit topology. ...