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Written by renowned authorities in the field, Qualitative Theory of Dynamical Systems is an incomparable reference for pure and applied mathematicians; electrical and electronics, mechanical, civil, aerospace, and industrial engineers; control theorists; physicists; computer scientists; chemists; biologists; econometricians; and operations researchers; and the text of choice for all upper-level undergraduate and graduate students with a background in linear algebra, real analysis, and differential equations taking courses in stability theory, nonlinear systems, dynamical systems, or control systems.
Employing a general definition of dynamical systems applicable to finite and infinite dimensional systems, including systems that cannot be characterized by equations, inequalities, and inclusions, this important reference/text - the only book of its kind available - introduces the concept of stability preserving mappings to establish a qualitative equivalence between two dynamical systems - the comparison system and the system to be studied.
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Edition | Availability |
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1
Qualitative theory of dynamical systems: the role of stability preserving mappings
2001, M. Dekker, CRC Press
in English
- 2nd ed., rev. and expanded.
0824705262 9780824705268
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2
Qualitative Theory of Dynamical Systems: The Role of Stability Preserving Mappings
2001, CRC Press LLC
in English
0585419132 9780585419138
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3
Qualitative Theory of Dynamical Systems: The Role of Stability Preserving Mappings
2001, Taylor & Francis Group
in English
1280208430 9781280208430
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4
Qualitative theory of dynamical systems: the role of stability preserving mappings
1995, M. Dekker
in English
0824794206 9780824794200
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5
Qualitative Theory of Dynamical Systems: The Role of Stability Preserving Mappings (Monographs and Textbooks in Pure and Applied Mathematics, Vol 18)
December 1, 1994, Marcel Dekker
Hardcover
in English
0824794206 9780824794200
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Book Details
First Sentence
"In this book we present a unified qualitative theory for dynamical systems which is applicable to finite dimensional and infinite dimensional systems determined by various types of classical equations and inequalities (e.g., ordinary differential equations, ordinary difference equations, ordinary differential inequalities, ordinary difference inequalities, functional differential equations, partial differential equations, Volterra integrodifferential equations, and so forth) as well as contemporary technological systems which defy simple and tidy descriptions by such equations and inequalities (e.g., flexible manufacturing systems, temporal logic systems, computer networks, and other types of discrete event and hybrid systems)."
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- Created April 29, 2008
- 4 revisions
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July 31, 2019 | Edited by MARC Bot | associate edition with work OL3509461W |
April 24, 2010 | Edited by Open Library Bot | Fixed duplicate goodreads IDs. |
April 16, 2010 | Edited by bgimpertBot | Added goodreads ID. |
April 29, 2008 | Created by an anonymous user | Imported from amazon.com record |