eBook INGLÉS EPUB

Computational Intractability

A Guide to Algorithmic Lower Bounds

Por ERIK D. DEMAINE, WILLIAM GASARCH y MOHAMMADTAGHI HAJIAGHAYI
Preventa

Léelo en cualquier dispositivo Descárgalo y empieza a leer ya







Sinopsis

A practical guide to understanding the theory and practice of computational lower bounds.

A fundamental question in computer science is: “Given a problem, how hard is it to solve?” Usually, the answer to this question lies in determining how long it will take to solve a problem as a function of the length of the input. Yet this question has two different parts, with two different answers: (1) upper bounds, which show that a problem can be solved in time T(n), and (2) lower bounds, which show that a problem cannot be solved in time T(n). In Computational Intractability, Erik Demaine, William Gasarch, and Mohammad Hajiaghayi focus on the latter, providing a guidebook to navigating lower bounds via the study of P, NP, NP-completeness, and other related notions.

Computational Intractability covers virtually all aspects of lower bounds, from parallelism to undecidability, and explores this material from the point of view of actual problems rather than classes of problems. The authors show how to prove lower bounds on problems in a wide variety of settings: polynomial time, classes likely above polynomial time (e.g., polynomial space), and classes within polynomial time (e.g., quadratic time).
Chica leyendo en eReader

-15€ en eReader Vivlio Light Zen*

Este verano lee sin parar. Del 13 de julio al 2 de agosto llévate nuestro eReader Vivlio Light Zen por solo 94,99€ (-15 € de descuento).

Ver eReader

Léelo en cualquier dispositivo


Ficha Técnica

Editorial: The Mit Press

ISBN: 9780262381147

Idioma: Inglés

Fecha de lanzamiento: 13/10/2026

Especificaciones del producto

Los eBooks más vendidos de la semana

Ver más

*Descuento de 15 euros en el eReader Vivlio Light Zen, válido para pedidos realizados en casadellibro.com del 13 de julio al 2 de agosto y solo para los 300 primeros compradores, hasta fin de existencias.