Volume 1 Fundamentals of Set and Number Theory
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Valeriy K. Zakharov
und Timofey V. Rodionov
Über dieses Buch
This comprehensive two-volume work is devoted to the most general beginnings of mathematics. It goes back to Hausdorff’s classic Set Theory (2nd ed., 1927), where set theory and the theory of functions were expounded as the fundamental parts of mathematics in such a way that there was no need for references to other sources. Along the lines of Hausdorff’s initial work (1st ed., 1914), measure and integration theory is also included here as the third fundamental part of contemporary mathematics.The material about sets and numbers is placed in Volume 1 and the material about functions and measures is placed in Volume 2.
Contents
Fundamentals of the theory of classes, sets, and numbers
Characterization of all natural models of Neumann – Bernays – Godel and Zermelo – Fraenkel set theories
Local theory of sets as a foundation for category theory and its connection with the Zermelo – Fraenkel set theory
Compactness theorem for generalized second-order language
- A comprehensive, in-depth presentation of the fundamental parts of mathematics
- This first volume covers logic, set theory and number systems in detail
- Of interest to graduate students and researchers in mathematics
Information zu Autoren / Herausgebern
Timofey V. Rodionov and Valeriy K. Zakharov, Lomonosov Moscow State University, Russia.
Rezensionen
"This set of two volumes evinces serious scholarship, and appears to do precisely what the authors set out to do, in homage to what Hausdorff did a century ago. It is a very valuable piece of work."
Michael Berg in: MAA (09.2018), https://www.maa.org/press/maa-reviews/sets-functions-measures-volume-1-fundamentals-of-set-and-number-theory
Fachgebiete
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Frontmatter
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Contents
vii -
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Historical foreword on the centenary after Felix Hausdorff’s classic Set Theory
xiii -
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Preface
xvii -
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1 Fundamentals of the theory of classes, sets, and numbers
1 -
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A Characterization of all natural models of Neumann – Bernays – Gödel and Zermelo – Fraenkel set theories
185 -
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B Local theory of sets as a foundation for category theory and its connection with the Zermelo – Fraenkel set theory
281 -
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C Compactness theorem for generalized second-order language
361 -
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Index of terms
387 -
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Index of notations
409 -
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Bibliography
417
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