
Complexity
Theory and Applications
Nam P. Suh(Author)
Oxford University Press Inc
Published on 10. March 2005
Book
Hardback
312 pages
978-0-19-517876-0 (ISBN)
Description
Nam P. Suh focussed his axiomatic design theories on methods to understand and deal with complexity. Suh is a well-respected designer and researcher in the fields of manufacturing and composite materials. He is best known for his systems that aim to speed up and simplify the process of design for manufacturing. The 'axioms' in axiomatic design refer to a process to help engineers reduce design specifications down to their simplest components, so that the engineers can produce the simplest possible solution to a problem. Complexity, besides being a key area of burgeoning research in disciplines interested in complex systems and chaos theory (like computer science and physics), is a complicating factor in engineering design that many engineers find difficult to overcome. Suh's multidisciplinary exploration of complex systems is meant to eliminate much of the confusion and allow engineers to accommodate complexity within simple, elegant design solutions.
More details
Series
Language
English
Place of publication
New York
United States
Target group
Professional and scholarly
Illustrations
numerous line figures
Dimensions
Height: 240 mm
Width: 161 mm
Thickness: 22 mm
Weight
640 gr
ISBN-13
978-0-19-517876-0 (9780195178760)
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Schweitzer Classification
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Person
Author
Ralph E. & Eloise F. Cross Professor of Mechanical EngineeringRalph E. & Eloise F. Cross Professor of Mechanical Engineering, Massachusetts Institute of Technology
Content
1: Introduction
2: Introduction to Axiomatic Design Principles
3: Complexity Theory Based on Axiomatic Design
4: Reduction of Time-Independent Complexity
5: Reduction of Time-Dependent Complexity through the Use of Functional Periodicity
6: Reduction of Complexity in Manufacturing Systems
7: Reduction of Complexity by Means of Geometric Functional Periodicity
8: Reduction of Complexity in Materials through Functional Periodicity
9: Complexity of Biological Systems
10: Complexity of Socio-Political-Economic Issues
2: Introduction to Axiomatic Design Principles
3: Complexity Theory Based on Axiomatic Design
4: Reduction of Time-Independent Complexity
5: Reduction of Time-Dependent Complexity through the Use of Functional Periodicity
6: Reduction of Complexity in Manufacturing Systems
7: Reduction of Complexity by Means of Geometric Functional Periodicity
8: Reduction of Complexity in Materials through Functional Periodicity
9: Complexity of Biological Systems
10: Complexity of Socio-Political-Economic Issues