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This superb exposition of a complex subject examines new
developments in the theory and practice of computation from a
mathematical perspective, with topics ranging from classical
computability to complexity, from biocomputing to quantum
computing. This book is suitable for researchers and graduate
students in mathematics, philosophy, and computer science with a
special interest in logic and foundational issues. Most useful to
graduate students are the survey papers on computable analysis and
biological computing. Logicians and theoretical physicists will
also benefit from this book.
The fundamental ideas concerning computation and recursion
naturally find their place at the interface between logic and
theoretical computer science. The contributions in this book, by
leaders in the field, provide a picture of current ideas and
methods in the ongoing investigations into the pure mathematical
foundations of computability theory. The topics range over
computable functions, enumerable sets, degree structures,
complexity, subrecursiveness, domains and inductive inference. A
number of the articles contain introductory and background material
which it is hoped will make this volume an invaluable resource.
This superb exposition of a complex subject examines new
developments in the theory and practice of computation from a
mathematical perspective, with topics ranging from classical
computability to complexity, from biocomputing to quantum
computing. This book is suitable for researchers and graduate
students in mathematics, philosophy, and computer science with a
special interest in logic and foundational issues. Most useful to
graduate students are the survey papers on computable analysis and
biological computing. Logicians and theoretical physicists will
also benefit from this book.
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