Algorithms From P To Np Design Efficiency


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Algorithms from P to NP: Design & efficiency


Algorithms from P to NP: Design & efficiency

Author: Bernard M. E. Moret

language: en

Publisher: Addison-Wesley Professional

Release Date: 1991


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Efficient Approximation and Online Algorithms


Efficient Approximation and Online Algorithms

Author: Evripidis Bampis

language: en

Publisher: Springer Science & Business Media

Release Date: 2006-02-06


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This book provides a good opportunity for computer science practitioners and researchers to get in sync with current state-of-the-art and future trends in the field of combinatorial optimization and online algorithms. Recent advances in this area are presented focusing on the design of efficient approximation and on-line algorithms. One central idea in the book is to use a linear program relaxation of the problem, randomization and rounding techniques.

Parameterized Algorithms


Parameterized Algorithms

Author: Marek Cygan

language: en

Publisher: Springer

Release Date: 2015-07-20


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This comprehensive textbook presents a clean and coherent account of most fundamental tools and techniques in Parameterized Algorithms and is a self-contained guide to the area. The book covers many of the recent developments of the field, including application of important separators, branching based on linear programming, Cut & Count to obtain faster algorithms on tree decompositions, algorithms based on representative families of matroids, and use of the Strong Exponential Time Hypothesis. A number of older results are revisited and explained in a modern and didactic way. The book provides a toolbox of algorithmic techniques. Part I is an overview of basic techniques, each chapter discussing a certain algorithmic paradigm. The material covered in this part can be used for an introductory course on fixed-parameter tractability. Part II discusses more advanced and specialized algorithmic ideas, bringing the reader to the cutting edge of current research. Part III presents complexity results and lower bounds, giving negative evidence by way of W[1]-hardness, the Exponential Time Hypothesis, and kernelization lower bounds. All the results and concepts are introduced at a level accessible to graduate students and advanced undergraduate students. Every chapter is accompanied by exercises, many with hints, while the bibliographic notes point to original publications and related work.