Binomial Ideals

 
 
Springer (Verlag)
  • erschienen am 10. Oktober 2018
 
  • Buch
  • |
  • Hardcover
  • |
  • XIX, 321 Seiten
978-3-319-95347-2 (ISBN)
 
This textbook provides an introduction to the combinatorial and statistical aspects of commutative algebra with an emphasis on binomial ideals. In addition to thorough coverage of the basic concepts and theory, it explores current trends, results, and applications of binomial ideals to other areas of mathematics. The book begins with a brief, self-contained overview of the modern theory of Gröbner bases and the necessary algebraic and homological concepts from commutative algebra. Binomials and binomial ideals are then considered in detail, along with a short introduction to convex polytopes. Chapters in the remainder of the text can be read independently and explore specific aspects of the theory of binomial ideals, including edge rings and edge polytopes, join-meet ideals of finite lattices, binomial edge ideals, ideals generated by 2-minors, and binomial ideals arising from statistics. Each chapter concludes with a set of exercises and a list of related topics and results that will complement and offer a better understanding of the material presented. Binomial Ideals is suitable for graduate students in courses on commutative algebra, algebraic combinatorics, and statistics. Additionally, researchers interested in any of these areas but familiar with only the basic facts of commutative algebra will find it to be a valuable resource.
Book
2018
  • Englisch
  • Cham
  • |
  • Schweiz
Springer International Publishing
  • Für Beruf und Forschung
  • 4 farbige Abbildungen, 51 s/w Abbildungen
  • |
  • 44 schwarz-weiße Abbildungen, Bibliographie
  • Höhe: 241 mm
  • |
  • Breite: 161 mm
  • |
  • Dicke: 27 mm
  • 669 gr
978-3-319-95347-2 (9783319953472)
10.1007/978-3-319-95349-6
weitere Ausgaben werden ermittelt
Jürgen Herzon is a professor at the University of Duisburg-Essen and coauthor of Monomial Ideals (2011) with Takayuki Hibi. Takayuki Hibi is a professor at Osaka University. Hidefumi Ohsugi is a professor at Rikkyo University.
Part I: Basic Concepts.- Polynomial Rings and Gröbner Bases.- Review of Commutative Algebra.- Part II:Binomial Ideals and Convex Polytopes.- Introduction to Binomial Ideals.- Convex Polytopes and Unimodular Triangulations.- Part III. Applications in Combinatorics and Statistics- Edge Polytopes and Edge Rings.- Join-Meet Ideals of Finite Lattices.- Binomial Edge Ideals and Related Ideals.- Ideals Generated by 2-Minors.- Statistics.- References.- Index.
"This is a valuable resource for students and researchers entering this area of combinatorial commutative algebra." (Thomas Kahle, Mathematical Reviews, November, 2019)
This textbook provides an introduction to the combinatorial and statistical aspects of commutative algebra with an emphasis on binomial ideals. In addition to thorough coverage of the basic concepts and theory, it explores current trends, results, and applications of binomial ideals to other areas of mathematics.
The book begins with a brief, self-contained overview of the modern theory of Gröbner bases and the necessary algebraic and homological concepts from commutative algebra. Binomials and binomial ideals are then considered in detail, along with a short introduction to convex polytopes. Chapters in the remainder of the text can be read independently and explore specific aspects of the theory of binomial ideals, including edge rings and edge polytopes, join-meet ideals of finite lattices, binomial edge ideals, ideals generated by 2-minors, and binomial ideals arising from statistics. Each chapter concludes with a set of exercises and a list of related topics and results that will complement and offer a better understanding of the material presented.
Binomial Ideals is suitable for graduate students in courses on commutative algebra, algebraic combinatorics, and statistics. Additionally, researchers interested in any of these areas but familiar with only the basic facts of commutative algebra will find it to be a valuable resource.
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