Computability In Analysis And Physics


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Computability in Analysis and Physics


Computability in Analysis and Physics

Author: Marian B. Pour-El

language: en

Publisher: Cambridge University Press

Release Date: 2017-03-02


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The first graduate-level treatment of computable analysis within the tradition of classical mathematical reasoning.

Computability in Analysis and Physics


Computability in Analysis and Physics

Author: Marian B. Pour-El

language: en

Publisher: Cambridge University Press

Release Date: 2017-03-02


DOWNLOAD





Since their inception, the Perspectives in Logic and Lecture Notes in Logic series have published seminal works by leading logicians. Many of the original books in the series have been unavailable for years, but they are now in print once again. In this volume, the first publication in the Perspectives in Logic series, Pour-El and Richards present the first graduate-level treatment of computable analysis within the tradition of classical mathematical reasoning. The book focuses on the computability or noncomputability of standard processes in analysis and physics. Topics include classical analysis, Hilbert and Banach spaces, bounded and unbounded linear operators, eigenvalues, eigenvectors, and equations of mathematical physics. The work is self-contained, and although it is intended primarily for logicians and analysts, it should also be of interest to researchers and graduate students in physics and computer science.

Computability in Analysis and Physics


Computability in Analysis and Physics

Author: Marian Boykan Pour-El

language: en

Publisher:

Release Date: 2016


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Since their inception, the Perspectives in Logic and Lecture Notes in Logic series have published seminal works by leading logicians. Many of the original books in the series have been unavailable for years, but they are now in print once again. In this volume, the first publication in the Perspectives in Logic series, Pour-El and Richards present the first graduate-level treatment of computable analysis within the tradition of classical mathematical reasoning. The book focuses on the computability or noncomputability of standard processes in analysis and physics. Topics include classical analysis, Hilbert and Banach spaces, bounded and unbounded linear operators, eigenvalues, eigenvectors, and equations of mathematical physics. The work is self-contained, and although it is intended primarily for logicians and analysts, it should also be of interest to researchers and graduate students in physics and computer science.