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Oriented Matroids

Oriented Matroids - Hardcover

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Availability:In StockContributor:Laura AndersonSeries:Cambridge Studies in Advanced MathematicsPublish date:2025-04-10Pages:333
Languages:EnglishPublisher:Cambridge University PressISBN-13:9781009494113ISBN-10:1009494112UPC:9781009494113Book Category:MathematicsBook Subcategory:Discrete MathematicsSize:9.00 x 6.00 x 0.75 inchesWeight:1.3514Product ID:SC40PXMDXW

Oriented matroids appear throughout discrete geometry, with applications in algebra, topology, physics, and data analysis. This introduction to oriented matroids is intended for graduate students, scientists wanting to apply oriented matroids, and researchers in pure mathematics. The presentation is geometrically motivated and largely self-contained, and no knowledge of matroid theory is assumed. Beginning with geometric motivation grounded in linear algebra, the first chapters prove the major cryptomorphisms and the Topological Representation Theorem. From there the book uses basic topology to go directly from geometric intuition to rigorous discussion, avoiding the need for wider background knowledge. Topics include strong and weak maps, localizations and extensions, the Euclidean property and non-Euclidean properties, the Universality Theorem, convex polytopes, and triangulations. Themes that run throughout include the interplay between combinatorics, geometry, and topology, and the idea of oriented matroids as analogs to vector spaces over the real numbers and how this analogy plays out topologically.

Languages:EnglishPublisher:Cambridge University PressISBN-13:9781009494113ISBN-10:1009494112UPC:9781009494113Book Category:MathematicsBook Subcategory:Discrete MathematicsSize:9.00 x 6.00 x 0.75 inchesWeight:1.3514Product ID:SC40PXMDXW
Anderson, Laura: - Laura Anderson is Associate Professor in the Department of Mathematics and Statistics at Binghamton University. Her research focuses on interactions between combinatorics and topology, particularly those involving oriented matroids, convex polytopes, and other concepts from discrete geometry.
Publisher: Cambridge University Press

Contributor(s)

Laura Anderson

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