Talk:Unique factorization: Difference between revisions
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imported>Greg Martin (could be a good article) |
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[[Category:Mathematics Workgroup]] | [[Category:Mathematics Workgroup]] | ||
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== could be a good article == | |||
Right now this article only discusses unique factorization of integers - and that's definitely the most important sense of the words "unique factorization". However, there are other mathematical objects for which unique factorization is an important concept: polynomial rings and rings of integers in number fields (such as <math>\mathbb Z[i]</math>) come immediately to mind. The latter concept, which began to be investigated in relation to early attempts to prove Fermat's Last Theorem, eventually led to the definition of ideals in rings. Anyway, consider this an invitation to be bold and expand the current article. - [[User:Greg Martin|Greg Martin]] 22:19, 29 April 2007 (CDT) |
Revision as of 21:20, 29 April 2007
Workgroup category or categories | Mathematics Workgroup [Categories OK] |
Article status | Developing article: beyond a stub, but incomplete |
Underlinked article? | No |
Basic cleanup done? | Yes |
Checklist last edited by | Greg Martin 22:17, 29 April 2007 (CDT) |
To learn how to fill out this checklist, please see CZ:The Article Checklist.
could be a good article
Right now this article only discusses unique factorization of integers - and that's definitely the most important sense of the words "unique factorization". However, there are other mathematical objects for which unique factorization is an important concept: polynomial rings and rings of integers in number fields (such as ) come immediately to mind. The latter concept, which began to be investigated in relation to early attempts to prove Fermat's Last Theorem, eventually led to the definition of ideals in rings. Anyway, consider this an invitation to be bold and expand the current article. - Greg Martin 22:19, 29 April 2007 (CDT)
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