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Titlebook: Biological and Bio-Inspired Fluid Dynamics; Theory and Applicati David E. Rival Textbook 2022 The Editor(s) (if applicable) and The Author(

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https://doi.org/10.1007/978-3-642-66968-2n inspired by nature for millennia. On the other hand, our insight into evolution and its nuances is quite recent in comparison. In fact, fluid dynamics and turbulence, albeit relatively . fields of research, have varied far less in our basic understandings than, say, the rapidly evolving insights d
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Über den klinischen Unterricht in Ungarnthe mathematical fundamentals and underlying physical equations needed to proceed. The following sections may represent a form of review for some, whereas a first exposure for others. Regardless of the case, the following tools will be key to reducing the Navier–Stokes equation appropriately so as t
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R. Pichlmayr,H. Creutzig,K. D. Rumpfdelve into the world of internal flows, where more often than not the flow is pulsatile and walls—sometimes even flexible walls—bound our problem. When getting into these topics, we often focus on human-centric perspectives (e.g., cardiovascular and pulmonary flows), along with some exploration of n
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Über den klinischen Unterricht in Ungarnkle (and simplify) seemingly complex biological problems ranging from the very tiniest, such as for cellular motility, to the very largest, such as for the drag produced in the turbulent boundary layers developing on our mammalian cousins of the sea.
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Introduction, picture before delving into the fundamental tools needed for future analysis. With this approach, we will be best prepared to revisit these more philosophical questions in later chapters, thus providing ourselves with the necessary framework with which to establish our own journeys for exploration.
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Scaling,kle (and simplify) seemingly complex biological problems ranging from the very tiniest, such as for cellular motility, to the very largest, such as for the drag produced in the turbulent boundary layers developing on our mammalian cousins of the sea.
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