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Titlebook: Non-Archimedean Analysis: Quantum Paradoxes, Dynamical Systems and Biological Models; Andrei Khrennikov Book 1997 Kluwer Academic Publishe

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书目名称Non-Archimedean Analysis: Quantum Paradoxes, Dynamical Systems and Biological Models
编辑Andrei Khrennikov
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丛书名称Mathematics and Its Applications
图书封面Titlebook: Non-Archimedean Analysis: Quantum Paradoxes, Dynamical Systems and Biological Models;  Andrei Khrennikov Book 1997 Kluwer Academic Publishe
描述N atur non facit saltus? This book is devoted to the fundamental problem which arises contin­ uously in the process of the human investigation of reality: the role of a mathematical apparatus in a description of reality. We pay our main attention to the role of number systems which are used, or may be used, in this process. We shall show that the picture of reality based on the standard (since the works of Galileo and Newton) methods of real analysis is not the unique possible way of presenting reality in a human brain. There exist other pictures of reality where other num­ ber fields are used as basic elements of a mathematical description. In this book we try to build a p-adic picture of reality based on the fields of p-adic numbers Qp and corresponding analysis (a particular case of so called non-Archimedean analysis). However, this book must not be considered as only a book on p-adic analysis and its applications. We study a much more extended range of problems. Our philosophical and physical ideas can be realized in other mathematical frameworks which are not obliged to be based on p-adic analysis. We shall show that many problems of the description of reality with the aid of
出版日期Book 1997
关键词Hilbert space; calculus; dynamical systems; fractal; quantum mechanics; quantum physics
版次1
doihttps://doi.org/10.1007/978-94-009-1483-4
isbn_softcover978-94-010-7164-2
isbn_ebook978-94-009-1483-4
copyrightKluwer Academic Publishers 1997
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发表于 2025-3-21 20:59:18 | 显示全部楼层
Andrei Khrennikov proposed accelerator on the base of three well-known combinatorial problems that are a Boolean satisfiability (SAT), a traveling salesman problem (TSP) and a covering problem. The results have shown that the proposed architecture together with the respective methods and algorithms allow to reduce t
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Andrei Khrennikov-line on the software engine, thus freeing the accelerator for other users. Performance statistics from customer benchmarks validate the claims of high simulation throughputs offered by these unique and powerful high performance verification solutions.
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Andrei Khrennikov generic modeling of communication and synchronization in SystemC allows designers to use different models of computation appropriate for different applications and levels of abstraction. Therefore the SystemC 2.0 class libraries can be extended easily to analog and mixed-signal simulation by the im
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Non-Archimedean Analysis: Quantum Paradoxes, Dynamical Systems and Biological Models
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