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Titlebook: Applications of Chaos and Nonlinear Dynamics in Science and Engineering - Vol. 2; Santo Banerjee,Lamberto Rondoni,Mala Mitra Book 2012 Spr

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期刊全稱(chēng)Applications of Chaos and Nonlinear Dynamics in Science and Engineering - Vol. 2
影響因子2023Santo Banerjee,Lamberto Rondoni,Mala Mitra
視頻videohttp://file.papertrans.cn/160/159325/159325.mp4
發(fā)行地址Features state-of-the-art, concrete and real-world applications in various fields of engineering/applied sciences.Contributions written by active and leading research groups.Useful as both a reference
學(xué)科分類(lèi)Understanding Complex Systems
圖書(shū)封面Titlebook: Applications of Chaos and Nonlinear Dynamics in Science and Engineering - Vol. 2;  Santo Banerjee,Lamberto Rondoni,Mala Mitra Book 2012 Spr
影響因子Chaos and nonlinear dynamics initially developed as a new emergent field with its foundation in physics and applied mathematics. The highly generic, interdisciplinary quality of the insights gained in the last few decades has spawned myriad applications in almost all branches of science and technology—and even well beyond. Wherever the quantitative modeling and analysis of complex, nonlinear phenomena are required, chaos theory and its methods can play a key role. .??.This second volume concentrates on reviewing further relevant, contemporary applications of chaotic nonlinear systems as they apply to the various cutting-edge branches of engineering. This encompasses, but is not limited to, topics such as the spread of epidemics; electronic circuits; chaos control in mechanical devices; secure communication; and digital watermarking. .Featuring contributions from active and leading research groups, this collection is ideal both as a reference work and as a ‘recipe book’ full of tried and tested, successful engineering applications.
Pindex Book 2012
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Understanding Complex Systemshttp://image.papertrans.cn/a/image/159325.jpg
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Detecting and Exploiting Chaotic Transport in Mechanical SystemsSeveral geometric and probabilistic methods for studying chaotic phase space transport have been developed and fruitfully applied to diverse areas from orbital mechanics, chemistry, biomechanics to fluid mechanics and beyond [1–31].
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