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Titlebook: Synergetics of Molecular Systems; Lev N. Lupichev,Alexander V. Savin,Vasiliy N. Kada Book 2015 Springer International Publishing Switzerla

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Introduction,isciplinary science aims to reveal the general principles governing evolution and self-organization of complex systems in various scientific areas, and it is mainly based on the design and study of nonlinear dynamic models [.]. One of the key features of synergetics is the consideration of nonlinear
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Acoustic Solitons,mpossible to explain the thermal expansion and heat conductivity of a solid body. Previously, in the framework of perturbation theory, only a small nonlinearity was taken into account, one that occasionally caused a loss of key features, determined by the nonlinearity of the problem. Anharmonicity o
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Topological Solitons,er the chain interaction with its environment, an additional potential .(.) is introduced into the model, describing the interaction of a chain site with its substrate (see Fig. 3.1). If a chain in a system can have several steady states, the substrate potential must possess the same number of minim
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Ratchets, phenomenon appear, namely, the so-called saw-tooth or ratchet dynamics. A system under external perturbation exhibits ratchet dynamics if the average particle flux is nonzero, while all average values of external factors (stationary forces, gradients of temperature and concentration, chemical poten
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Solitons in Polymer Systems,) in polymer macromolecules. The characteristics of supersonic acoustic solitons in polymer macromolecules will be studied, using the examples of an isolated zigzag macromolecule of polyethylene (PE), a spiral macromolecule of polytetrafluoroethylene (PTFE), and a single-well carbon nanotube. Topolo
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978-3-319-38186-2Springer International Publishing Switzerland 2015
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