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Titlebook: Dynamics of Complex Interconnected Biological Systems; Thomas L. Vincent,Alistair I. Mees,Leslie S. Jenni Book 1990 Birkh?user Boston 1990

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書目名稱Dynamics of Complex Interconnected Biological Systems
編輯Thomas L. Vincent,Alistair I. Mees,Leslie S. Jenni
視頻videohttp://file.papertrans.cn/285/284041/284041.mp4
叢書名稱Mathematical Modeling
圖書封面Titlebook: Dynamics of Complex Interconnected Biological Systems;  Thomas L. Vincent,Alistair I. Mees,Leslie S. Jenni Book 1990 Birkh?user Boston 1990
描述This volume contains the proceedings of the U.S. Australia workshop on Complex Interconnected Biological Systems held in Albany, Western Australia January 1-5, 1989. The workshop was jointly sponsored by the Department of Industry, Trade and Commerce (Australia), and the Na- tional Science Foundation (USA) under the US-Australia agreement. Biological systems are typically hard to study mathematically. This is particularly so in the case of systems with strong interconnections, such as ecosystems or networks of neurons. In the past few years there have been substantial improvements in the mathematical tools available for study- ing complexity. Theoretical advances include substantially improved un- derstanding of the features of nonlinear systems that lead to important behaviour patterns such as chaos. Practical advances include improved modelling techniques, and deeper understanding of complexity indicators such as fractal dimension. Game theory is now playing an increasingly important role in under- standing and describing evolutionary processes in interconnected systems. The strategies of individuals which affect each other‘s fitness may be incor- porated into models as parameter
出版日期Book 1990
關(guān)鍵詞Mathematica; behavior; dynamics; ecosystem; modeling
版次1
doihttps://doi.org/10.1007/978-1-4684-6784-0
isbn_softcover978-1-4684-6786-4
isbn_ebook978-1-4684-6784-0
copyrightBirkh?user Boston 1990
The information of publication is updating

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Tom Short,Tom Stehlik,Janene Piipecological principle, made precise, has its direct analogue in resource economics. Thereby I hope to make sense of the “harvesting game.”.I shall develop this theme by presenting a series of mathematical models. These will illustrate how bioeconomic forces can bring about modes of fishing vessel coe
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A Length-Structured Model of the Western Rock Lobster Fishery of Western Australia rock lobsters, through moulting, has a major impact on catchability and hence the fishery, especially since moulting is relatively synchronous. The resulting changes in catchability and its effect on recruitment to the exploited (legal-sized) population are essential elements of the model. An addit
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Analyzing the Harvesting Game or Why are There So Many Kinds of Fishing Vessels in the Fleet?ecological principle, made precise, has its direct analogue in resource economics. Thereby I hope to make sense of the “harvesting game.”.I shall develop this theme by presenting a series of mathematical models. These will illustrate how bioeconomic forces can bring about modes of fishing vessel coe
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nding of complexity indicators such as fractal dimension. Game theory is now playing an increasingly important role in under- standing and describing evolutionary processes in interconnected systems. The strategies of individuals which affect each other‘s fitness may be incor- porated into models as parameter978-1-4684-6786-4978-1-4684-6784-0
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Dynamics of Complex Interconnected Biological Systems
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