Isbn: 9780691116242 - self-organization in biological systems: 7 (princeton studies in complexity) (22 resultados)

Self-Organization in Biological Systems (Princeton Studies in Complexity, 38)
Bonabeau, Eric,Theraula, Guy,Sneyd, James,Franks, Nigel R.,Deneubourg, Jean-Louis,Camazine, Scott
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Self-Organization in Biological Systems
Camazine, Scott; Deneubourg, Jean-Louis; Franks, Nigel R.; Sneyd, James; Theraulaz, Guy; Bonabeau, Eric
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Self-Organization in Biological Systems
Camazine, Scott; Deneubourg, Jean-Louis; Franks, Nigel R.; Sneyd, James; Theraulaz, Guy; Bonabeau, Eric
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Condición: New. 2015. Paperback. A primer on self-organization in biological systems for students and other enthusiasts, this book introduces readers to the basic concepts and tools for studying self-organization and then examines numerous examples of self-organization in the natural world. Series: Princeton Studies in Complexity. Num Pages: 560 pages, 8 color plates. 32 halftones. 180 line illus. 3 tables. BIC Classification: PSAF. Category: (P) Professional & Vocational; (U) Tertiary Education (US: College). Dimension: 234 x 157 x 35. Weight in Grams: 724. . . . . . …

Self-Organization in Biological Systems
Jean-Louis Deneubourg, Nigel R. Franks, James Sneyd, Eric Bonabeau, Scott Camazine, Guy Theraulaz
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Librería: Rarewaves USA, HEBRON, KY, Estados Unidos de AmericaRarewaves USA
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Paperback. Condición: New. The synchronized flashing of fireflies at night. The spiraling patterns of an aggregating slime mold. The anastomosing network of army-ant trails. The coordinated movements of a school of fish. Researchers are finding in such patterns--phenomena that have fascinated naturalists for centuries--a fertile new approach to understanding biological systems: the study of self-organization. This book, a primer on self-organization in biological systems for students and other enthusiasts, introduces readers to the basic concepts and tools for studying self-organization and then examines numerous examples of self-organization in the natural world. Self-organization refers to diverse pattern formation processes in the physical and biological world, from sand grains assembling into rippled dunes to cells combining to create highly structured tissues to individual insects working to create sophisticated societies. What these diverse systems hold in common is the proximate means by which they acquire order and structure. In self-organizing systems, pattern at the global level emerges solely from interactions among lower-level components.Remarkably, even very complex structures result from the iteration of surprisingly simple behaviors performed by individuals relying on only local information. This striking conclusion suggests important lines of inquiry: To what degree is environmental rather than individual complexity responsible for group complexity? To what extent have widely differing organisms adopted similar, convergent strategies of pattern formation? How, specifically, has natural selection determined the rules governing interactions within biological systems? Broad in scope, thorough yet accessible, this book is a self-contained introduction to self-organization and complexity in biology--a field of study at the forefront of life sciences research.…

Self-Organization in Biological Systems
Camazine, Scott; Deneubourg, Jean-Louis; Franks, Nigel R.; Sneyd, James; Theraulaz, Guy; Bonabeau, Eric
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Self-Organization in Biological Systems
Camazine, Scott; Deneubourg, Jean-Louis; Franks, Nigel R.; Sneyd, James; Theraulaz, Guy; Bonabeau, Eric
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Self-Organization in Biological Systems (Princeton Studies in Complexity)
Camazine, Scott; Deneubourg, Jean-Louis; Franks, Nigel R.; Sneyd, James; Theraulaz, Guy; Bonabeau, Eric
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Self-Organization in Biological Systems
Jean-Louis Deneubourg, Nigel R. Franks, James Sneyd, Eric Bonabeau, Scott Camazine, Guy Theraulaz
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Paperback. Condición: New. The synchronized flashing of fireflies at night. The spiraling patterns of an aggregating slime mold. The anastomosing network of army-ant trails. The coordinated movements of a school of fish. Researchers are finding in such patterns--phenomena that have fascinated naturalists for centuries--a fertile new approach to understanding biological systems: the study of self-organization. This book, a primer on self-organization in biological systems for students and other enthusiasts, introduces readers to the basic concepts and tools for studying self-organization and then examines numerous examples of self-organization in the natural world. Self-organization refers to diverse pattern formation processes in the physical and biological world, from sand grains assembling into rippled dunes to cells combining to create highly structured tissues to individual insects working to create sophisticated societies. What these diverse systems hold in common is the proximate means by which they acquire order and structure. In self-organizing systems, pattern at the global level emerges solely from interactions among lower-level components.Remarkably, even very complex structures result from the iteration of surprisingly simple behaviors performed by individuals relying on only local information. This striking conclusion suggests important lines of inquiry: To what degree is environmental rather than individual complexity responsible for group complexity? To what extent have widely differing organisms adopted similar, convergent strategies of pattern formation? How, specifically, has natural selection determined the rules governing interactions within biological systems? Broad in scope, thorough yet accessible, this book is a self-contained introduction to self-organization and complexity in biology--a field of study at the forefront of life sciences research.…

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Condición: New. 2015. Paperback. A primer on self-organization in biological systems for students and other enthusiasts, this book introduces readers to the basic concepts and tools for studying self-organization and then examines numerous examples of self-organization in the natural world. Series: Princeton Studies in Complexity. Num Pages: 560 pages, 8 color plates. 32 halftones. 180 line illus. 3 tables. BIC Classification: PSAF. Category: (P) Professional & Vocational; (U) Tertiary Education (US: College). Dimension: 234 x 157 x 35. Weight in Grams: 724. . . . . . Books ship from the US and Ireland. …

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Self-Organization in Biological Systems
Jean-Louis Deneubourg, Nigel R. Franks, James Sneyd, Eric Bonabeau, Scott Camazine, Guy Theraulaz
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Librería: Rarewaves USA United, HEBRON, KY, Estados Unidos de AmericaRarewaves USA United
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Paperback. Condición: New. The synchronized flashing of fireflies at night. The spiraling patterns of an aggregating slime mold. The anastomosing network of army-ant trails. The coordinated movements of a school of fish. Researchers are finding in such patterns--phenomena that have fascinated naturalists for centuries--a fertile new approach to understanding biological systems: the study of self-organization. This book, a primer on self-organization in biological systems for students and other enthusiasts, introduces readers to the basic concepts and tools for studying self-organization and then examines numerous examples of self-organization in the natural world. Self-organization refers to diverse pattern formation processes in the physical and biological world, from sand grains assembling into rippled dunes to cells combining to create highly structured tissues to individual insects working to create sophisticated societies. What these diverse systems hold in common is the proximate means by which they acquire order and structure. In self-organizing systems, pattern at the global level emerges solely from interactions among lower-level components.Remarkably, even very complex structures result from the iteration of surprisingly simple behaviors performed by individuals relying on only local information. This striking conclusion suggests important lines of inquiry: To what degree is environmental rather than individual complexity responsible for group complexity? To what extent have widely differing organisms adopted similar, convergent strategies of pattern formation? How, specifically, has natural selection determined the rules governing interactions within biological systems? Broad in scope, thorough yet accessible, this book is a self-contained introduction to self-organization and complexity in biology--a field of study at the forefront of life sciences research.…

Self-Organization in Biological Systems: (Princeton Studies in Complexity)
Scott Camazine/ Jean-Louis Deneubourg/ Nigel R. Franks/ James Sneyd/ Guy Theraula/ Eric Bonabeau
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Librería: Revaluation Books, Exeter, Reino UnidoRevaluation Books
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Paperback. Condición: Brand New. 560 pages. 9.00x6.00x1.25 inches. In Stock.

Self-Organization in Biological Systems
Jean-Louis Deneubourg, Nigel R. Franks, James Sneyd, Eric Bonabeau, Scott Camazine, Guy Theraulaz
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Librería: Rarewaves.com UK, London, Reino UnidoRarewaves.com UK
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EUR 111,28
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Paperback. Condición: New. The synchronized flashing of fireflies at night. The spiraling patterns of an aggregating slime mold. The anastomosing network of army-ant trails. The coordinated movements of a school of fish. Researchers are finding in such patterns--phenomena that have fascinated naturalists for centuries--a fertile new approach to understanding biological systems: the study of self-organization. This book, a primer on self-organization in biological systems for students and other enthusiasts, introduces readers to the basic concepts and tools for studying self-organization and then examines numerous examples of self-organization in the natural world. Self-organization refers to diverse pattern formation processes in the physical and biological world, from sand grains assembling into rippled dunes to cells combining to create highly structured tissues to individual insects working to create sophisticated societies. What these diverse systems hold in common is the proximate means by which they acquire order and structure. In self-organizing systems, pattern at the global level emerges solely from interactions among lower-level components.Remarkably, even very complex structures result from the iteration of surprisingly simple behaviors performed by individuals relying on only local information. This striking conclusion suggests important lines of inquiry: To what degree is environmental rather than individual complexity responsible for group complexity? To what extent have widely differing organisms adopted similar, convergent strategies of pattern formation? How, specifically, has natural selection determined the rules governing interactions within biological systems? Broad in scope, thorough yet accessible, this book is a self-contained introduction to self-organization and complexity in biology--a field of study at the forefront of life sciences research.…

Self-Organization in Biological Systems: (Princeton Studies in Complexity)
Scott Camazine/ Jean-Louis Deneubourg/ Nigel R. Franks/ James Sneyd/ Guy Theraula/ Eric Bonabeau
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Librería: Revaluation Books, Exeter, Reino UnidoRevaluation Books
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Paperback. Condición: Brand New. 560 pages. 9.00x6.00x1.25 inches. In Stock. This item is printed on demand.

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Condición: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. A primer on self-organization in biological systems for students and other enthusiasts, this book introduces readers to the basic concepts and tools for studying self-organization and then examines numerous examples of self-organization in the natural world.…

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Taschenbuch. Condición: Neu. Self-Organization in Biological Systems | Scott Camazine (u. a.) | Taschenbuch | Einband - flex.(Paperback) | Englisch | 2003 | Princeton University Press | EAN 9780691116242 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand. …

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Taschenbuch. Condición: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The synchronized flashing of fireflies at night. The spiraling patterns of an aggregating slime mold. The anastomosing network of army-ant trails. The coordinated movements of a school of fish. Researchers are finding in such patterns--phenomena that have fascinated naturalists for centuries--a fertile new approach to understanding biological systems: the study of self-organization. This book, a primer on self-organization in biological systems for students and other enthusiasts, introduces readers to the basic concepts and tools for studying self-organization and then examines numerous examples of self-organization in the natural world. Self-organization refers to diverse pattern formation processes in the physical and biological world, from sand grains assembling into rippled dunes to cells combining to create highly structured tissues to individual insects working to create sophisticated societies. What these diverse systems hold in common is the proximate means by which they acquire order and structure. In self-organizing systems, pattern at the global level emerges solely from interactions among lower-level components. Remarkably, even very complex structures result from the iteration of surprisingly simple behaviors performed by individuals relying on only local information. This striking conclusion suggests important lines of inquiry: To what degree is environmental rather than individual complexity responsible for group complexity To what extent have widely differing organisms adopted similar, convergent strategies of pattern formation How, specifically, has natural selection determined the rules governing interactions within biological systems Broad in scope, thorough yet accessible, this book is a self-contained introduction to self-organization and complexity in biology--a field of study at the forefront of life sciences research.…