Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Published by Cambridge University Press CUP, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Published by Cambridge University Press 2003-11-27, 2003
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Published by Cambridge University Press, 2004
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Language: English
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Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Published by Cambridge University Press, Cambridge, 2003
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Paperback. Condition: new. Paperback. The paradigm of deterministic chaos has influenced thinking in many fields of science. Chaotic systems show rich and surprising mathematical structures. In the applied sciences, deterministic chaos provides a striking explanation for irregular behaviour and anomalies in systems which do not seem to be inherently stochastic. The most direct link between chaos theory and the real world is the analysis of time series from real systems in terms of nonlinear dynamics. Experimental technique and data analysis have seen such dramatic progress that, by now, most fundamental properties of nonlinear dynamical systems have been observed in the laboratory. Great efforts are being made to exploit ideas from chaos theory wherever the data displays more structure than can be captured by traditional methods. Problems of this kind are typical in biology and physiology but also in geophysics, economics, and many other sciences. The time variability of many natural and social phenomena is not well described by standard methods of data analysis. However, nonlinear time series analysis uses chaos theory and nonlinear dynamics to understand seemingly unpredictable behavior. The results are applied to real data from physics, biology, medicine, and engineering in this volume. Researchers from all experimental disciplines, including physics, the life sciences, and the economy, will find the work helpful in the analysis of real world systems. First Edition Hb (1997): 0-521-55144-7 First Edition Pb (1997): 0-521-65387-8 Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Published by Cambridge University Press, 2003
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Add to basketCondition: New. 2004. 2nd Edition. Paperback. New edition of a successful advanced text on nonlinear time series analysis. Num Pages: 388 pages, 118 b/w illus. 4 tables 43 exercises. BIC Classification: PBT; PBWR; PH. Category: (P) Professional & Vocational. Dimension: 243 x 171 x 21. Weight in Grams: 662. 388 pages, 118 b/w illus. 4 tables 43 exercises. New edition of a successful advanced text on nonlinear time series analysis. Cateogry: (P) Professional & Vocational. BIC Classification: PBT; PBWR; PH. Dimension: 243 x 171 x 21. Weight: 618. . . . . .
Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Published by Cambridge University Press, 2004
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Published by Cambridge University Press, GB, 2003
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Add to basketPaperback. Condition: New. The paradigm of deterministic chaos has influenced thinking in many fields of science. Chaotic systems show rich and surprising mathematical structures. In the applied sciences, deterministic chaos provides a striking explanation for irregular behaviour and anomalies in systems which do not seem to be inherently stochastic. The most direct link between chaos theory and the real world is the analysis of time series from real systems in terms of nonlinear dynamics. Experimental technique and data analysis have seen such dramatic progress that, by now, most fundamental properties of nonlinear dynamical systems have been observed in the laboratory. Great efforts are being made to exploit ideas from chaos theory wherever the data displays more structure than can be captured by traditional methods. Problems of this kind are typical in biology and physiology but also in geophysics, economics, and many other sciences.
Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Condition: New. 2004. 2nd Edition. Paperback. New edition of a successful advanced text on nonlinear time series analysis. Num Pages: 388 pages, 118 b/w illus. 4 tables 43 exercises. BIC Classification: PBT; PBWR; PH. Category: (P) Professional & Vocational. Dimension: 243 x 171 x 21. Weight in Grams: 662. 388 pages, 118 b/w illus. 4 tables 43 exercises. New edition of a successful advanced text on nonlinear time series analysis. Cateogry: (P) Professional & Vocational. BIC Classification: PBT; PBWR; PH. Dimension: 243 x 171 x 21. Weight: 618. . . . . . Books ship from the US and Ireland.
Published by Cambridge University Press, Cambridge, 2003
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Add to basketPaperback. Condition: new. Paperback. The paradigm of deterministic chaos has influenced thinking in many fields of science. Chaotic systems show rich and surprising mathematical structures. In the applied sciences, deterministic chaos provides a striking explanation for irregular behaviour and anomalies in systems which do not seem to be inherently stochastic. The most direct link between chaos theory and the real world is the analysis of time series from real systems in terms of nonlinear dynamics. Experimental technique and data analysis have seen such dramatic progress that, by now, most fundamental properties of nonlinear dynamical systems have been observed in the laboratory. Great efforts are being made to exploit ideas from chaos theory wherever the data displays more structure than can be captured by traditional methods. Problems of this kind are typical in biology and physiology but also in geophysics, economics, and many other sciences. The time variability of many natural and social phenomena is not well described by standard methods of data analysis. However, nonlinear time series analysis uses chaos theory and nonlinear dynamics to understand seemingly unpredictable behavior. The results are applied to real data from physics, biology, medicine, and engineering in this volume. Researchers from all experimental disciplines, including physics, the life sciences, and the economy, will find the work helpful in the analysis of real world systems. First Edition Hb (1997): 0-521-55144-7 First Edition Pb (1997): 0-521-65387-8 Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Published by Cambridge University Press, 2006
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Add to basketCondition: New. The time variability of many natural and social phenomena is not well described by standard methods of data analysis. Nonlinear time series analysis uses chaos theory and nonlinear dynamics to understand such seemingly unpredictable behaviour. Results are a.
Published by Cambridge University Press, Cambridge, 2003
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Add to basketPaperback. Condition: new. Paperback. The paradigm of deterministic chaos has influenced thinking in many fields of science. Chaotic systems show rich and surprising mathematical structures. In the applied sciences, deterministic chaos provides a striking explanation for irregular behaviour and anomalies in systems which do not seem to be inherently stochastic. The most direct link between chaos theory and the real world is the analysis of time series from real systems in terms of nonlinear dynamics. Experimental technique and data analysis have seen such dramatic progress that, by now, most fundamental properties of nonlinear dynamical systems have been observed in the laboratory. Great efforts are being made to exploit ideas from chaos theory wherever the data displays more structure than can be captured by traditional methods. Problems of this kind are typical in biology and physiology but also in geophysics, economics, and many other sciences. The time variability of many natural and social phenomena is not well described by standard methods of data analysis. However, nonlinear time series analysis uses chaos theory and nonlinear dynamics to understand seemingly unpredictable behavior. The results are applied to real data from physics, biology, medicine, and engineering in this volume. Researchers from all experimental disciplines, including physics, the life sciences, and the economy, will find the work helpful in the analysis of real world systems. First Edition Hb (1997): 0-521-55144-7 First Edition Pb (1997): 0-521-65387-8 Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
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Add to basketPaperback. Condition: Brand New. 2nd edition. 369 pages. 9.50x6.50x0.75 inches. In Stock.
Published by Cambridge University Press, 2004
ISBN 10: 0521529026 ISBN 13: 9780521529020
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Add to basketTaschenbuch. Condition: Neu. Druck auf Anfrage Neuware - Printed after ordering - The paradigm of deterministic chaos has influenced thinking in many fields of science. Chaotic systems show rich and surprising mathematical structures. In the applied sciences, deterministic chaos provides a striking explanation for irregular behaviour and anomalies in systems which do not seem to be inherently stochastic. The most direct link between chaos theory and the real world is the analysis of time series from real systems in terms of nonlinear dynamics. Experimental technique and data analysis have seen such dramatic progress that, by now, most fundamental properties of nonlinear dynamical systems have been observed in the laboratory. Great efforts are being made to exploit ideas from chaos theory wherever the data displays more structure than can be captured by traditional methods. Problems of this kind are typical in biology and physiology but also in geophysics, economics, and many other sciences.
Published by Cambridge University Press, GB, 2003
ISBN 10: 0521529026 ISBN 13: 9780521529020
Language: English
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Add to basketPaperback. Condition: New. The paradigm of deterministic chaos has influenced thinking in many fields of science. Chaotic systems show rich and surprising mathematical structures. In the applied sciences, deterministic chaos provides a striking explanation for irregular behaviour and anomalies in systems which do not seem to be inherently stochastic. The most direct link between chaos theory and the real world is the analysis of time series from real systems in terms of nonlinear dynamics. Experimental technique and data analysis have seen such dramatic progress that, by now, most fundamental properties of nonlinear dynamical systems have been observed in the laboratory. Great efforts are being made to exploit ideas from chaos theory wherever the data displays more structure than can be captured by traditional methods. Problems of this kind are typical in biology and physiology but also in geophysics, economics, and many other sciences.
Published by Cambridge University Press, 2004
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Language: English
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Add to basketPaperback. Condition: Brand New. 2nd edition. 369 pages. 9.50x6.50x0.75 inches. In Stock. This item is printed on demand.