Description: Monomial Ideals, Computations and Applications Please note: this item is printed on demand and will take extra time before it can be dispatched to you (up to 20 working days). Author(s): Anna M. Bigatti, Philippe Gimenez, Eduardo Saenz-de-Cabezon Format: Paperback Publisher: Springer-Verlag Berlin and Heidelberg GmbH & Co. KG, Germany Imprint: Springer-Verlag Berlin and Heidelberg GmbH & Co. K ISBN-13: 9783642387418, 978-3642387418 Synopsis This work covers three important aspects of monomials ideals in the three chapters "Stanley decompositions" by Jurgen Herzog, "Edge ideals" by Adam Van Tuyl and "Local cohomology" by Josep Alvarez Montaner. The chapters, written by top experts, include computer tutorials that emphasize the computational aspects of the respective areas. Monomial ideals and algebras are, in a sense, among the simplest structures in commutative algebra and the main objects of combinatorial commutative algebra. Also, they are of major importance for at least three reasons. Firstly, Groebner basis theory allows us to treat certain problems on general polynomial ideals by means of monomial ideals. Secondly, the combinatorial structure of monomial ideals connects them to other combinatorial structures and allows us to solve problems on both sides of this correspondence using the techniques of each of the respective areas. And thirdly, the combinatorial nature of monomial ideals also makes them particularly well suited to the development of algorithms to work with them and then generate algorithms for more general structures.
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End Time: 2025-01-28T09:00:53.000Z
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Book Title: Monomial Ideals, Computations and Applications
Number of Pages: 194 Pages
Publication Name: Monomial Ideals, Computations and Applications
Language: English
Publisher: Springer-Verlag Berlin AND Heidelberg Gmbh & Co. KG
Item Height: 235 mm
Subject: Mathematics
Publication Year: 2013
Type: Textbook
Item Weight: 3226 g
Author: Eduardo Saenz-De-Cabezon, Anna M. Bigatti, Philippe Gimenez
Item Width: 155 mm
Series: Lecture Notes in Mathematics
Format: Paperback