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This beginning graduate textbook describes both recent achievements
and classical results of computational complexity theory. Requiring
essentially no background apart from mathematical maturity, the
book can be used as a reference for self-study for anyone
interested in complexity, including physicists, mathematicians, and
other scientists, as well as a textbook for a variety of courses
and seminars. More than 300 exercises are included with a selected
hint set. The book starts with a broad introduction to the field
and progresses to advanced results. Contents include: definition of
Turing machines and basic time and space complexity classes,
probabilistic algorithms, interactive proofs, cryptography, quantum
computation, lower bounds for concrete computational models
(decision trees, communication complexity, constant depth,
algebraic and monotone circuits, proof complexity), average-case
complexity and hardness amplification, derandomization and
pseudorandom constructions, and the PCP theorem.
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