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Titlebook: Nekton; Yu. G. Aleyev Book 1977 Dr. W. Junk b.v., Publishers, The Hague 1977 adaptation.fish.ocean.plankton

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發(fā)表于 2025-3-21 18:58:04 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Nekton
編輯Yu. G. Aleyev
視頻videohttp://file.papertrans.cn/663/662490/662490.mp4
圖書封面Titlebook: Nekton;  Yu. G. Aleyev Book 1977 Dr. W. Junk b.v., Publishers, The Hague 1977 adaptation.fish.ocean.plankton
描述1. Nekton as an ecomorphological type of biont The term nekton was suggested and used for the first time in 1890 by E. Haeckel in his book Plankton-Studien. Etymologically the word nekton derives from the Greek VTJKTTJP, i.e. swimming. As Haeckel defined it, nekton describes collectively all swimming animals that are ‘free to choose their path‘, i.e. can resist a strong current of water and, distinct from planktonic animals, go where they wish. While giving a general idea of the dividing line between plankton and nekton, Haeckel‘s definition, which has played an important role in shaping our ideas about nekton, today no longer provides a sufficient basis for ecological and functional morphological investigations, since it affords no possibility of quantitatively assessing either the boundary between plankton and nekton or that between nekton and other ecomorphological types of biont. Thus Parin (1968), proceeding from Haeckel‘s principle, believes that in the epipelagic zone of the ocean the minimum size of nektonic fishes with a well-developed capacity for active swimming may be between 15 and 30 cm, as fishes shorter than 15 cm are unable to counter oceanic currents. Meanwhile yo
出版日期Book 1977
關鍵詞adaptation; fish; ocean; plankton
版次1
doihttps://doi.org/10.1007/978-94-010-1324-6
isbn_softcover978-94-010-1326-0
isbn_ebook978-94-010-1324-6
copyrightDr. W. Junk b.v., Publishers, The Hague 1977
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書目名稱Nekton影響因子(影響力)




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https://doi.org/10.1007/978-94-010-1324-6adaptation; fish; ocean; plankton
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Creation of Propulsive Force (Locomotion) of a propulsive force of its own. The first method is very rare among nektonic animals and is never found without the second (Echeneidae, etc.). Of greater interest is the second method, being more characteristic of nektonic animals and ensured by the most subtle complex of adaptations.
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lication of shape memory alloys in general as all effects related to the martensitic phase transformation are very sensitive to changes of environmental temperature (Fig. 1). Therefore, most pro-perties of NiTiNOL depend strongly on the temperature . These facts show clearly the importance of an
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Yu. G. Aleyevoduced for actuator design, allowing an optimum use of the shape memory effect. It is shown that some of the prototypes presented, e.g. SMA microgrippers, already outperform conventional components..978-3-642-05837-0978-3-662-09875-2Series ISSN 1615-8326 Series E-ISSN 2365-0680
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