Imperfect Bifurcation in Structures and Materials: Engineering Use of Group-Theoretic Bifurcation Theory
This book provides a modern investigation into the bifurcation phenomena

of physical and engineering problems. Systematic methods—based on

asymptotic, probabilistic, and group-theoretic standpoints—are used to

examine experimental and computational data from numerous examples (e.g.,

soil, sand, kaolin, concrete, domes, etc.).

Engineers may find this book, with its minimized mathematical formalism,

to be a useful introduction to modern bifurcation theory. For

mathematicians, static bifurcation theory for finite dimensional systems,

as well as its implications for practical problems, is illuminated by the

numerous examples.

"1133189709"
Imperfect Bifurcation in Structures and Materials: Engineering Use of Group-Theoretic Bifurcation Theory
This book provides a modern investigation into the bifurcation phenomena

of physical and engineering problems. Systematic methods—based on

asymptotic, probabilistic, and group-theoretic standpoints—are used to

examine experimental and computational data from numerous examples (e.g.,

soil, sand, kaolin, concrete, domes, etc.).

Engineers may find this book, with its minimized mathematical formalism,

to be a useful introduction to modern bifurcation theory. For

mathematicians, static bifurcation theory for finite dimensional systems,

as well as its implications for practical problems, is illuminated by the

numerous examples.

41.49 In Stock
Imperfect Bifurcation in Structures and Materials: Engineering Use of Group-Theoretic Bifurcation Theory

Imperfect Bifurcation in Structures and Materials: Engineering Use of Group-Theoretic Bifurcation Theory

Imperfect Bifurcation in Structures and Materials: Engineering Use of Group-Theoretic Bifurcation Theory

Imperfect Bifurcation in Structures and Materials: Engineering Use of Group-Theoretic Bifurcation Theory

eBook3rd ed. 2019 (3rd ed. 2019)

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Overview

This book provides a modern investigation into the bifurcation phenomena

of physical and engineering problems. Systematic methods—based on

asymptotic, probabilistic, and group-theoretic standpoints—are used to

examine experimental and computational data from numerous examples (e.g.,

soil, sand, kaolin, concrete, domes, etc.).

Engineers may find this book, with its minimized mathematical formalism,

to be a useful introduction to modern bifurcation theory. For

mathematicians, static bifurcation theory for finite dimensional systems,

as well as its implications for practical problems, is illuminated by the

numerous examples.


Product Details

ISBN-13: 9783030214739
Publisher: Springer-Verlag New York, LLC
Publication date: 09/25/2019
Series: Applied Mathematical Sciences , #149
Sold by: Barnes & Noble
Format: eBook
File size: 72 MB
Note: This product may take a few minutes to download.

About the Author

Kiyohiro Ikeda is a Professor in the Department of Civil Engineering, Graduate School of Engineering at Tohoku University. Kazuo Murota is a Professor in the Department of Mathematical Informatics, Graduate School of Information Science and Technology at University of Tokyo.

Table of Contents

1 Introduction to Bifurcation Behavior*2 Critical Point and Local Behavior*3 Imperfection Sensitivity Laws*4 Critical Initial Imperfections (I)*5 Stochasticity of Initial Imperfections (I)*6 Experimentally-observed Bifurcation Diagrams*7 Group-theoretic Bifurcation Theory*8 Bifurcation Behavior of Dn-equivariant Systems*9 Critical Initial Imperfections (II)*10 Stochasticity of Initial Imperfections (II)*11 Description of Bifurcation Behaviors*12 Bifurcation of Cylindrical Sand Specimens*13 Echelon-mode Formation*14 Bifurcation of Steel Specimens*15 Miscellaneous Aspects of Bifurcation Phenomena*References*Index


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