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Titlebook: Combined Discrete and Continual Approachesin Biological Modelling; Alexander E. Filippov,Stanislav N. Gorb Book 2020 Springer Nature Switz

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發(fā)表于 2025-3-21 18:15:16 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Combined Discrete and Continual Approachesin Biological Modelling
編輯Alexander E. Filippov,Stanislav N. Gorb
視頻videohttp://file.papertrans.cn/231/230069/230069.mp4
概述Broadens understanding in structure-function relationship of biological systems.Shares many tips and insights into modeling of biological phenomena.Summarizes the latest studies on modeling of biologi
叢書名稱Biologically-Inspired Systems
圖書封面Titlebook: Combined Discrete and Continual Approachesin Biological Modelling;  Alexander E. Filippov,Stanislav N. Gorb Book 2020 Springer Nature Switz
描述.Basic laws of nature are rather simple, but observed biological structures and their dynamic behaviors are unbelievably complicated. This book is devoted to a study of this “strange” relationship by applying mathematical modeling to various structures and phenomena in biology, such as surface patterns, bioadhesion, locomotion, predator-prey behavior, seed dispersal, etc. and revealing a kind of?.self-organization.?in these phenomena. In spite of diversity of biological systems considered, two main questions are (1) what does self-organization in biology mean mathematically and (2) how one can apply this knowledge to generate new knowledge about behavior of particular biological system? We believe that this kind of “biomimetics” in computer will lead to better understanding of biological phenomena and possibly towards development of technical implications based on our modeling..
出版日期Book 2020
關(guān)鍵詞Biophysics and Biological Physics; Biological systems; Materials Engineering; Nanoscale Science and Tec
版次1
doihttps://doi.org/10.1007/978-3-030-41528-0
isbn_softcover978-3-030-41530-3
isbn_ebook978-3-030-41528-0Series ISSN 2211-0593 Series E-ISSN 2211-0607
issn_series 2211-0593
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

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Contact Between Biological Attachment Devices and Rough Surfaces,cially, when spatulae are misaligned prior to the contact formation. The shear force has an optimum, when maximal contact is formed, but no slip occurs. In such a state, maximal adhesion can be generated. Another factor influencing attachment is the pad secretion, which flow on rough substrates is s
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Anisotropic Friction in Biological Systems,c structures is to generate low sliding friction in the forward sliding direction, and high propulsive force along the substrate. Snakes are also able to dynamically adapt their friction interactions by redistributing their local pressures and changing their winding angles, when either friction anis
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Mechanical Interlocking of Biological Fasteners,re waterproof, breathable, lightweight constructions combining thermo-isolation, rigidity and flexibility due to the feather’s ability to hold its parts together by a specific pattern of hooklets. The feather vane can be separated into two parts by pulling neighboring barbs apart, but original state
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Biomechanics at the Microscale, its motion within the female spermathecal duct. These properties might be partially due to rubber-like protein resilin that is assumed to be an almost perfect elastomer in insects. Resilin is an ideal material for elastic joints that are subjected to repeated cyclical stress. During the lifetime of
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Ecology and Evolution, if one ant species would partially or totally disappear from the system, this could cause dramatic changes in the plant populations as well. Another example treated in this chapter deals with animal aggregations, which are especially common in insects. The aggregations may result from an uneven dis
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Combined Discrete and Continual Approachesin Biological Modelling
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https://doi.org/10.1007/978-3-319-95999-3ffect is related to the practically important states of the “frozen kinetics” which accompanies extremely wide spectrum of phenomena and allows understanding different physical and biological processes.
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Advances in Consulting Researchcially, when spatulae are misaligned prior to the contact formation. The shear force has an optimum, when maximal contact is formed, but no slip occurs. In such a state, maximal adhesion can be generated. Another factor influencing attachment is the pad secretion, which flow on rough substrates is s
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