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Li, Fajie; Klette, Reinhard - Euclidean Shortest Paths - 9781447122555 - V9781447122555
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Euclidean Shortest Paths

€ 207.11
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Description for Euclidean Shortest Paths Hardback. This book reviews algorithms for the exact or approximate solution of shortest-path problems, with a specific focus on a class of algorithms called rubberband algorithms. The coverage includes mathematical proofs for many of the given statements. Num Pages: 378 pages, biography. BIC Classification: PBKS; UMB. Category: (P) Professional & Vocational. Dimension: 234 x 156 x 22. Weight in Grams: 754.
This unique text/reference reviews algorithms for the exact or approximate solution of shortest-path problems, with a specific focus on a class of algorithms called rubberband algorithms. Discussing each concept and algorithm in depth, the book includes mathematical proofs for many of the given statements. Topics and features: provides theoretical and programming exercises at the end of each chapter; presents a thorough introduction to shortest paths in Euclidean geometry, and the class of algorithms called rubberband algorithms; discusses algorithms for calculating exact or approximate ESPs in the plane; examines the shortest paths on 3D surfaces, in simple polyhedrons and in cube-curves; ... Read more

Product Details

Format
Hardback
Publication date
2011
Publisher
Springer London Ltd United Kingdom
Number of pages
378
Condition
New
Number of Pages
378
Place of Publication
England, United Kingdom
ISBN
9781447122555
SKU
V9781447122555
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15

Reviews for Euclidean Shortest Paths
From the book reviews: “This book presents selected algorithms for the exact or approximate solution of several variants of the Euclidean shortest path problem (ESP). … The book has been successful in addressing the Euclidean Shortest Path problems by presenting exact and approximate algorithms in the light of rubberband algorithms, and will be immensely useful to students and researchers ... Read more

Goodreads reviews for Euclidean Shortest Paths


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