Artículos relacionados a Biologically Inspired Design: Computational Methods...

Biologically Inspired Design: Computational Methods and Tools - Tapa blanda

 
9781447160410: Biologically Inspired Design: Computational Methods and Tools

Sinopsis

From simple cases such as hook and latch attachments found in Velcro to articulated-wing flying vehicles, biology often has been used to inspire many creative design ideas. The scientific challenge now is to transform the paradigm into a repeatable and scalable methodology. Biologically Inspired Design explores computational techniques and tools that can help integrate the method into design practice.

With an inspiring foreword from Janine Benyus, Biologically Inspired Design contains a dozen chapters written by some of the leading scholars in the transdisciplinary field of bioinspired design, such as Frank Fish, Julian Vincent and Jeannette Yen from biology, and Amaresk Chakrabarti, Satyandra Gupta and Li Shu from engineering. Based in part on discussions at two workshops sponsored by the United States National Science Foundation, this volume introduces and develops several methods and tools for bioinspired design including:

Information-processing theories,
Natural language techniques,
Knowledge-based tools, and
Functional approaches and Pedagogical techniques.

By exploring these fundamental theories, techniques and tools for supporting biologically inspired design, this volume provides a comprehensive resource for design practitioners wishing to explore the paradigm, an invaluable guide to design educators interested in teaching the method, and a preliminary reading for design researchers wanting to investigate bioinspired design.

"Sinopsis" puede pertenecer a otra edición de este libro.

Acerca del autor

Dr. Ashok K. Goel is a Professor of Computer and Cognitive Science in the School of Interactive Computing at Georgia Institute of Technology in Atlanta, USA. He is the Director of the School's Design & Intelligence Laboratory, and a Co-Director of the Institute’s Center for Biologically Inspired Design. He serves on the Boards of the Biomimicry 3.8 Institute and the BioInspired! digital magazine. Ashok conducts research into artificial intelligence, cognitive science and human-centered computing, with a focus on computational design, modeling and creativity. His research explores analogical thinking, systems thinking, visual thinking, and meta-thinking as fundamental processes of design and creativity. Ashok’s current research investigates analogical and systems thinking in biologically inspired engineering design, analogical and visual thinking on intelligence tests, and systems and meta-thinking in game-playing agents. In related research, he uses theories of analogical and systems thinking for supporting learning about ecological systems in middle school science and biological systems in college-level education in biologically inspired design. Ashok’s 2013 TEDx summarizes some of his research on biologically inspired design. An interactive tool for supporting some aspects of biologically inspired design developed by his laboratory is available at .

 

Dr. Daniel A. McAdams is currently an associate professor Department of Mechanical Engineering at Texas A&M University. His research interests are in the area of design theory and methodology with specific focus on functional modeling; innovation in concept synthesis; biologically inspired design methods; inclusive design; and technology evolution as applied to product design. Dr. McAdams leads the Product SynthesisEngineering Lab (http://www.prosedesign.org/). He has served in various scholarly leadership roles including Technical Committee Chair for ASME Design Theory and Methodology Committee and serving on the editorial board of the Journal of Engineering Design.  Dr. McAdams served as an associate and assistant professor at the Missouri University of Science and Technology. He received his PhD from the University of Texas at Austin.

 Dr. Robert B. Stone is a Professor and the Interim Head of the School of Mechanical, Industrial and Manufacturing Engineering at Oregon State University.  Dr. Stone’s research interests include design theories and methodologies, specifically automated conceptual design techniques and concept generation techniques such as biologically inspired design.  He has authored chapters on product architecture and reverse engineering techniques in product design texts.  He leads the Design Engineering Lab (designengineeringlab.org).  Previously, Stone utilized his design background to assist in creating the design-focused Interdisciplinary Engineering degree program at the University of Missouri-Rolla.  At Rolla he served as Director of the interdisciplinary Student Design and Experiential Learning Center from January 2004 throughJune 2008 where he oversaw the design competition activities of ten teams and guided the Center’s new engineering design and experiential learning initiative.  He was a Distinguished Visiting Professor at the US Air Force Academy during the 2006-07 academic year.  Prior to initiating his graduate work, Dr. Stone worked in the Missions Operation Directorate of NASA-Johnson Space Center as a Space Shuttle Flight Controller for the Guidance, Navigation and Control Section.  Stone completed his PhD in Mechanical Engineering from The University of Texas atAustin.

De la contraportada

From simple cases such as hook and latch attachments found in Velcro to articulated-wing flying vehicles, biology often has been used to inspire many creative design ideas. The scientific challenge now is to transform the paradigm into a repeatable and scalable methodology. Biologically Inspired Design explores computational techniques and tools that can help integrate the method into design practice.

With an inspiring foreword from Janine Benyus, Biologically Inspired Design contains a dozen chapters written by some of the leading scholars in the transdisciplinary field of bioinspired design, such as Frank Fish, Julian Vincent and Jeannette Yen from biology, and Amaresk Chakrabarti, Satyandra Gupta and Li Shu from engineering. Based in part on discussions at two workshops sponsored by the United States National Science Foundation, this volume introduces and develops several methods and tools for bioinspired design including:

Information-processing theories,
Natural language techniques,
Knowledge-based tools, and
Functional approaches and Pedagogical techniques.

By exploring these fundamental theories, techniques and tools for supporting biologically inspired design, this volume provides a comprehensive resource for design practitioners wishing to explore the paradigm, an invaluable guide to design educators interested in teaching the method, and a preliminary reading for design researchers wanting to investigate bioinspired design.

"Sobre este título" puede pertenecer a otra edición de este libro.

Comprar nuevo

Ver este artículo

EUR 34,00 gastos de envío desde Italia a Estados Unidos de America

Destinos, gastos y plazos de envío

Otras ediciones populares con el mismo título

9781447152477: Biologically Inspired Design: Computational Methods and Tools

Edición Destacada

ISBN 10:  1447152476 ISBN 13:  9781447152477
Editorial: Springer, 2013
Tapa dura

Resultados de la búsqueda para Biologically Inspired Design: Computational Methods...

Imagen de archivo

Goel, Ashok K
Publicado por Springer, 2015
ISBN 10: 144716041X ISBN 13: 9781447160410
Nuevo Tapa blanda
Impresión bajo demanda

Librería: Brook Bookstore On Demand, Napoli, NA, Italia

Calificación del vendedor: 5 de 5 estrellas Valoración 5 estrellas, Más información sobre las valoraciones de los vendedores

Condición: new. Questo è un articolo print on demand. Nº de ref. del artículo: b07ba1fd9713746a42b249f8014ecac3

Contactar al vendedor

Comprar nuevo

EUR 126,26
Convertir moneda
Gastos de envío: EUR 34,00
De Italia a Estados Unidos de America
Destinos, gastos y plazos de envío

Cantidad disponible: Más de 20 disponibles

Añadir al carrito

Imagen de archivo

Publicado por Springer, 2015
ISBN 10: 144716041X ISBN 13: 9781447160410
Nuevo Tapa blanda

Librería: Lucky's Textbooks, Dallas, TX, Estados Unidos de America

Calificación del vendedor: 5 de 5 estrellas Valoración 5 estrellas, Más información sobre las valoraciones de los vendedores

Condición: New. Nº de ref. del artículo: ABLIING23Mar2411530317554

Contactar al vendedor

Comprar nuevo

EUR 158,17
Convertir moneda
Gastos de envío: EUR 3,43
A Estados Unidos de America
Destinos, gastos y plazos de envío

Cantidad disponible: Más de 20 disponibles

Añadir al carrito

Imagen del vendedor

Ashok K Goel
Publicado por Springer London Aug 2015, 2015
ISBN 10: 144716041X ISBN 13: 9781447160410
Nuevo Taschenbuch
Impresión bajo demanda

Librería: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Alemania

Calificación del vendedor: 5 de 5 estrellas Valoración 5 estrellas, Más información sobre las valoraciones de los vendedores

Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -From simple cases such as hook and latch attachments found in Velcro to articulated-wing flying vehicles, biology often has been used to inspire many creative design ideas. The scientific challenge now is to transform the paradigm into a repeatable and scalable methodology. Biologically Inspired Design explores computational techniques and tools that can help integrate the method into design practice. With an inspiring foreword from Janine Benyus, Biologically Inspired Design contains a dozen chapters written by some of the leading scholars in the transdisciplinary field of bioinspired design, such as Frank Fish, Julian Vincent and Jeannette Yen from biology, and Amaresk Chakrabarti, Satyandra Gupta and Li Shu from engineering. Based in part on discussions at two workshops sponsored by the United States National Science Foundation, this volume introduces and develops several methods and tools for bioinspired design including: Information-processing theories, Natural language techniques,Knowledge-based tools, andFunctional approaches and Pedagogical techniques.By exploring these fundamental theories, techniques and tools for supporting biologically inspired design, this volume provides a comprehensive resource for design practitioners wishing to explore the paradigm, an invaluable guide to design educators interested in teaching the method, and a preliminary reading for design researchers wanting to investigate bioinspired design. 344 pp. Englisch. Nº de ref. del artículo: 9781447160410

Contactar al vendedor

Comprar nuevo

EUR 139,09
Convertir moneda
Gastos de envío: EUR 23,00
De Alemania a Estados Unidos de America
Destinos, gastos y plazos de envío

Cantidad disponible: 2 disponibles

Añadir al carrito

Imagen de archivo

Publicado por Springer, 2015
ISBN 10: 144716041X ISBN 13: 9781447160410
Nuevo Tapa blanda

Librería: Ria Christie Collections, Uxbridge, Reino Unido

Calificación del vendedor: 5 de 5 estrellas Valoración 5 estrellas, Más información sobre las valoraciones de los vendedores

Condición: New. In. Nº de ref. del artículo: ria9781447160410_new

Contactar al vendedor

Comprar nuevo

EUR 158,17
Convertir moneda
Gastos de envío: EUR 13,72
De Reino Unido a Estados Unidos de America
Destinos, gastos y plazos de envío

Cantidad disponible: Más de 20 disponibles

Añadir al carrito

Imagen del vendedor

Goel, Ashok K|McAdams, Daniel A|Stone, Robert B.
Publicado por Springer London, 2015
ISBN 10: 144716041X ISBN 13: 9781447160410
Nuevo Tapa blanda

Librería: moluna, Greven, Alemania

Calificación del vendedor: 4 de 5 estrellas Valoración 4 estrellas, Más información sobre las valoraciones de los vendedores

Condición: New. Nº de ref. del artículo: 385694351

Contactar al vendedor

Comprar nuevo

EUR 136,16
Convertir moneda
Gastos de envío: EUR 48,99
De Alemania a Estados Unidos de America
Destinos, gastos y plazos de envío

Cantidad disponible: Más de 20 disponibles

Añadir al carrito

Imagen del vendedor

Ashok K Goel
ISBN 10: 144716041X ISBN 13: 9781447160410
Nuevo Taschenbuch
Impresión bajo demanda

Librería: buchversandmimpf2000, Emtmannsberg, BAYE, Alemania

Calificación del vendedor: 5 de 5 estrellas Valoración 5 estrellas, Más información sobre las valoraciones de los vendedores

Taschenbuch. Condición: Neu. This item is printed on demand - Print on Demand Titel. Neuware -From simple cases such as hook and latch attachments found in Velcro to articulated-wing flying vehicles, biology often has been used to inspire many creative design ideas. The scientific challenge now is to transform the paradigm into a repeatable and scalable methodology. Biologically Inspired Design explores computational techniques and tools that can help integrate the method into design practice.With an inspiring foreword from Janine Benyus, Biologically Inspired Design contains a dozen chapters written by some of the leading scholars in the transdisciplinary field of bioinspired design, such as Frank Fish, Julian Vincent and Jeannette Yen from biology, and Amaresk Chakrabarti, Satyandra Gupta and Li Shu from engineering. Based in part on discussions at two workshops sponsored by the United States National Science Foundation, this volume introduces and develops several methods and tools for bioinspired design including:Information-processing theoriesNatural language techniquesKnowledge-based tools, andFunctional approaches and Pedagogical techniques.By exploring these fundamental theories, techniques and tools for supporting biologically inspired design, this volume provides a comprehensive resource for design practitioners wishing to explore the paradigm, an invaluable guide to design educators interested in teaching the method, and a preliminary reading for design researchers wanting to investigate bioinspired design.Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 344 pp. Englisch. Nº de ref. del artículo: 9781447160410

Contactar al vendedor

Comprar nuevo

EUR 160,49
Convertir moneda
Gastos de envío: EUR 60,00
De Alemania a Estados Unidos de America
Destinos, gastos y plazos de envío

Cantidad disponible: 1 disponibles

Añadir al carrito

Imagen del vendedor

Ashok K Goel
Publicado por Springer London, Springer London, 2015
ISBN 10: 144716041X ISBN 13: 9781447160410
Nuevo Taschenbuch

Librería: AHA-BUCH GmbH, Einbeck, Alemania

Calificación del vendedor: 5 de 5 estrellas Valoración 5 estrellas, Más información sobre las valoraciones de los vendedores

Taschenbuch. Condición: Neu. Druck auf Anfrage Neuware - Printed after ordering - From simple cases such as hook and latch attachments found in Velcro to articulated-wing flying vehicles, biology often has been used to inspire many creative design ideas. The scientific challenge now is to transform the paradigm into a repeatable and scalable methodology. Biologically Inspired Design explores computational techniques and tools that can help integrate the method into design practice. With an inspiring foreword from Janine Benyus, Biologically Inspired Design contains a dozen chapters written by some of the leading scholars in the transdisciplinary field of bioinspired design, such as Frank Fish, Julian Vincent and Jeannette Yen from biology, and Amaresk Chakrabarti, Satyandra Gupta and Li Shu from engineering. Based in part on discussions at two workshops sponsored by the United States National Science Foundation, this volume introduces and develops several methods and tools for bioinspired design including: Information-processing theories, Natural language techniques,Knowledge-based tools, andFunctional approaches and Pedagogical techniques.By exploring these fundamental theories, techniques and tools for supporting biologically inspired design, this volume provides a comprehensive resource for design practitioners wishing to explore the paradigm, an invaluable guide to design educators interested in teaching the method, and a preliminary reading for design researchers wanting to investigate bioinspired design. Nº de ref. del artículo: 9781447160410

Contactar al vendedor

Comprar nuevo

EUR 166,62
Convertir moneda
Gastos de envío: EUR 62,61
De Alemania a Estados Unidos de America
Destinos, gastos y plazos de envío

Cantidad disponible: 1 disponibles

Añadir al carrito