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Mathematical Analysis of Continuum Mechanics and Industrial Applications [electronic resource] : Proceedings of the International Conference CoMFoS15 /

Contributor(s): Itou, Hiromichi [editor.] | Kimura, Masato [editor.] | Chalupecký, Vladimír [editor.] | Ohtsuka, Kohji [editor.] | Tagami, Daisuke [editor.] | Takada, Akira [editor.] | SpringerLink (Online service).
Series: Mathematics for Industry: 26Publisher: Singapore : Springer Singapore : Imprint: Springer, 2017Edition: 1st ed. 2017.Description: VIII, 231 p. 69 illus., 32 illus. in color. | Binding - Card Paper |.Content type: text Media type: computer Carrier type: online resourceISBN: 9789811026331.Subject(s): Mechanical Engineering | Computer mathematics | Continuum physics | Thin films | Surfaces and Interfaces, Thin FilmsDDC classification: 531 Online resources: Click here to access eBook in Springer Nature platform. (Within Campus only.) In: Springer Nature eBookSummary: This book focuses on mathematical theory and numerical simulation related to various aspects of continuum mechanics, such as fracture mechanics, elasticity, plasticity, pattern dynamics, inverse problems, optimal shape design, material design, and disaster estimation related to earthquakes. Because these problems have become more important in engineering and industry, further development of mathematical study of them is required for future applications. Leading researchers with profound knowledge of mathematical analysis from the fields of applied mathematics, physics, seismology, engineering, and industry provide the contents of this book. They help readers to understand that mathematical theory can be applied not only to different types of industry, but also to a broad range of industrial problems including materials, processes, and products.
List(s) this item appears in: Springer Nature eBooks
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This book focuses on mathematical theory and numerical simulation related to various aspects of continuum mechanics, such as fracture mechanics, elasticity, plasticity, pattern dynamics, inverse problems, optimal shape design, material design, and disaster estimation related to earthquakes. Because these problems have become more important in engineering and industry, further development of mathematical study of them is required for future applications. Leading researchers with profound knowledge of mathematical analysis from the fields of applied mathematics, physics, seismology, engineering, and industry provide the contents of this book. They help readers to understand that mathematical theory can be applied not only to different types of industry, but also to a broad range of industrial problems including materials, processes, and products.

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