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  • 1
    Online Resource
    Online Resource
    Tokyo : Springer Japan
    UID:
    b3kat_BV042414847
    Format: 1 Online-Ressource (XVIII, 265p. 273 illus)
    ISBN: 9784431682103 , 9784431682127
    Note: From a mechanical perspective, an animal's shape and the topological connection of its organs are important factors in locomotion. This book describes the physical relationships between form, habitat, way of life, and movement in living creatures. It includes in-depth mechanical and mathematical analyses of the way in which creatures move about, and it also investigates dispersal modes of plants and animals within the framework of flying and swimming. The book is written from the viewpoint of mechanics, specifically fluid dynamics and flight dynamics, rather than from that of physiology and ecology. It will prove a useful reference for aeronautical and mechanical engineers as well as for biologists who use mechanical analyses in the study of behaviour, function, and locomotion
    Language: English
    Keywords: Tiere ; Fliegen ; Biokinetik ; Tiere ; Schwimmen ; Biokinetik
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    Online Resource
    Online Resource
    Tokyo :Springer Japan :
    UID:
    almahu_9949199283302882
    Format: XVIII, 265 p. , online resource.
    Edition: 1st ed. 1992.
    ISBN: 9784431682103
    Content: From a mechanical perspective, an animal's shape and the topological connection of its organs are important factors in locomotion. This book describes the physical relationships between form, habitat, way of life, and movement in living creatures. It includes in-depth mechanical and mathematical analyses of the way in which creatures move about, and it also investigates dispersal modes of plants and animals within the framework of flying and swimming. The book is written from the viewpoint of mechanics, specifically fluid dynamics and flight dynamics, rather than from that of physiology and ecology. It will prove a useful reference for aeronautical and mechanical engineers as well as for biologists who use mechanical analyses in the study of behaviour, function, and locomotion.
    Note: 1 Introduction -- 1.1 Form and Locomotion -- 1.2 Dynamic Similarity -- 2 Dragging, Floating, and Jumping -- 2.1 Terminal Speed of Free-falling Bodies -- 2.2 Drifting in Air -- 2.3 Drifting in Water -- 2.4 Jumping and Free Falling -- 3 Flight by Gliding -- 3.1 Wing Characteristics -- 3.2 Gliding Flight in Birds -- 3.3 Wind Effects on Gliding Flight -- 3.4 Auxiliary Devices -- 3.5 Other Forms of Gliding Flight -- 3.6 Rotary Seeds -- 4 Flight by Beating -- 4.1 Powered Flight -- 4.2 Wing Motions -- 4.3 Power-Saving Flight -- 4.4 Flight in Insects -- 4.5 Flight Mechanics in Insects -- 5 Swimming by Snaking -- 5.1 Micro- and Medium-sized Elongate Organisms -- 5.2 Undulatory Motion of a Large Elongate Body -- 6 Swimming by Fanning -- 6.1 Fish -- 6.2 Slender Bodies -- 6.3 Fanning Mechanics -- 6.4 Cetacea and Sirenia -- 7 Swimming by Other Methods -- 7.1 Paddling and Whipping -- 7.2 Jetting -- 7.3 Sweeping -- 7.4 Beating -- 7.5 Sailing -- 7.6 Skating and Wave Riding -- 8 Conclusion -- 8.1 Concluding Remarks by Chapter -- 8.2 Wing Types and Body Forms -- 8.3 In Summary -- References and Further Reading.
    In: Springer Nature eBook
    Additional Edition: Printed edition: ISBN 9784431682127
    Additional Edition: Printed edition: ISBN 9784431701064
    Additional Edition: Printed edition: ISBN 9784431682110
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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