Display title | Completion (algebra) |
Default sort key | Completion (algebra) |
Page length (in bytes) | 8,763 |
Namespace ID | 0 |
Page ID | 316707 |
Page content language | en - English |
Page content model | wikitext |
Indexing by robots | Allowed |
Number of redirects to this page | 0 |
Counted as a content page | Yes |
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Edit | Allow all users (infinite) |
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Page creator | imported>Sherlock |
Date of page creation | 20:27, 6 March 2023 |
Latest editor | imported>Sherlock |
Date of latest edit | 20:27, 6 March 2023 |
Total number of edits | 1 |
Recent number of edits (within past 90 days) | 0 |
Recent number of distinct authors | 0 |
Description | Content |
Article description: (description ) This attribute controls the content of the description and og:description elements. | In abstract algebra, a completion is any of several related functors on rings and modules that result in complete topological rings and modules. Completion is similar to localization, and together they are among the most basic tools in analysing commutative rings. Complete commutative rings have a simpler... |