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Titlebook: Dynamical Systems: Modelling; Łódź, Poland, Decemb Jan Awrejcewicz Conference proceedings 2016 Springer International Publishing Switzerlan

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书目名称Dynamical Systems: Modelling
副标题Łódź, Poland, Decemb
编辑Jan Awrejcewicz
视频video
概述Provides an overview of recent developments and trends in dynamical systems governed by non-linear ordinary differential equations.Applies dynamical systems theory to the fields of applied mathematics
丛书名称Springer Proceedings in Mathematics & Statistics
图书封面Titlebook: Dynamical Systems: Modelling; Łódź, Poland, Decemb Jan Awrejcewicz Conference proceedings 2016 Springer International Publishing Switzerlan
描述.The book is a collection of contributions devoted to analytical, numerical and experimental techniques of dynamical systems, presented at the international conference "Dynamical Systems: Theory and Applications," held in Łódź, Poland on December 7-10, 2015. ..The studies give deep insight into new perspectives in analysis, simulation, and optimization of dynamical systems, emphasizing directions for future research. Broadly outlined topics covered include: bifurcation and chaos in dynamical systems, asymptotic methods in nonlinear dynamics, dynamics in life sciences and bioengineering, original numerical methods of vibration analysis, control in dynamical systems, stability of dynamical systems, vibrations of lumped and continuous systems, non-smooth systems, engineering systems and differential equations, mathematical approaches to dynamical systems, and mechatronics..
出版日期Conference proceedings 2016
关键词DSTA 2015; optimization dynamical systems; simulation dynamical systems; asymptotic methods; nonlinear d
版次1
doihttps://doi.org/10.1007/978-3-319-42402-6
isbn_softcover978-3-319-82572-4
isbn_ebook978-3-319-42402-6Series ISSN 2194-1009 Series E-ISSN 2194-1017
issn_series 2194-1009
copyrightSpringer International Publishing Switzerland 2016
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Structural Probabilistic Modeling of Fatigue Fracture for Piezoceramic Materials Under Cyclic Loadicertain critical value of microcracks density. The model consists of derivation of constitutive equations for a damaged material, choosing the fracture criterion and the law of microdamage distribution; and determining effective electroelastic properties of the damaged medium and the model of accumu
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Three-Chamber Model of Human Vascular System for Explanation the Quasi-Regular and Chaotic Dynamics) attractor are proper to variations of the material parameters within the physiological limits, while the chaotic dynamics appear when wall compliance and/or resistivity of the chambers (2) or (3) are too high. Those variations are proper to deep vein thrombosis, microcirculatory disorders, and age
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