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Titlebook: Bio-Mimetic Swimmers in Incompressible Fluids; Modeling, Well-Posed Alexander Khapalov Book 2021 The Editor(s) (if applicable) and The Auth

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Schriften zur Mittelstandsforschungces for centuries. The bibliography of formal publications in this area is very diverse in terms of approaches and methodology and can be traced as far back as to the works of G. Borelli in the seventeenth century.
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https://doi.org/10.1007/978-3-8350-5483-7in the force transformation phenomenon in the case of swimmers whose bodies consist of parallelepipeds and balls. To this end, we will follow the schemes of proofs in Chap. ., extending them to the 3D case along the ideas of A.Y. Khapalov, G. Trinh (Disc. Cont. Dyn. Sys. A .(4), 1513–1544 (2012)).
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2297-0320 examples are provided in the last portion that serve as potential research topics...Bio-Mimetic Swimmers in Incompressible Fluids. will appeal to graduate students and researchers studying fluid dynamics and co978-3-030-85284-9978-3-030-85285-6Series ISSN 2297-0320 Series E-ISSN 2297-0339
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Book 2021 motion of fish, eels, frogs, and other aquatic creatures in nature. Several illustrative examples are provided in the last portion that serve as potential research topics...Bio-Mimetic Swimmers in Incompressible Fluids. will appeal to graduate students and researchers studying fluid dynamics and co
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Introduction,ces for centuries. The bibliography of formal publications in this area is very diverse in terms of approaches and methodology and can be traced as far back as to the works of G. Borelli in the seventeenth century.
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Bio-Mimetic Fish-Like Swimmers in a 2D Incompressible Fluid: Empiric Modeling plane (see Figs. ., . and .). We will view this situation as the case of .. (Of course, a swimming motion in a horizontal plane in a 3D fluid is a much more complicated process, which we will also consider in Chap. ..)
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