Harper | Global Methods for Combinatorial Isoperimetric Problems | Buch | 978-0-521-18383-3 | www.sack.de

Buch, Englisch, Band 90, 250 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 412 g

Reihe: Cambridge Studies in Advanced Mathematics

Harper

Global Methods for Combinatorial Isoperimetric Problems


Erscheinungsjahr 2010
ISBN: 978-0-521-18383-3
Verlag: Cambridge University Press

Buch, Englisch, Band 90, 250 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 412 g

Reihe: Cambridge Studies in Advanced Mathematics

ISBN: 978-0-521-18383-3
Verlag: Cambridge University Press


• Global method leads to interesting new insights and results
• Text designed for graduate students with numerous exercises and examples
• Author gives applications to computer science to broaden market
Certain constrained combinatorial optimization problems have a natural analogue in the continuous setting of the classical isoperimetric problem. The study of so called combinatorial isoperimetric problems exploits similarities between these two, seemingly disparate, settings. This 2004 text focuses on global methods. This means that morphisms, typically arising from symmetry or direct product decomposition, are employed to transform new problems into more restricted and easily solvable settings whilst preserving essential structure. This book is based on Professor Harper's many years' experience in teaching this subject and is ideal for graduate students entering the field. The author has increased the utility of the text for teaching by including worked examples, exercises and material about applications to computer science. Applied systematically, the global point of view can lead to surprising insights and results, and established researchers will find this to be a valuable reference work on an innovative method for problem solving.

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Weitere Infos & Material


1. The edge-isoperimetric problem
2. The minimum path problem
3. Stabilization and compression
4. The vertex-isoperimetric problem
5. Stronger stabilization
6. Higher compression
7. Isoperimetric problems on infinite graphs
8. Isoperimetric problems on complexes
9. Morphisms for MWI problems
10. Passage to the limit
11. Afterword
12. The classical isoperimetric problem.



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