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Methods of Fracture Mechanics: Solid Matter Physics (Hardcover, 1997 ed.): G.P. Cherepanov Methods of Fracture Mechanics: Solid Matter Physics (Hardcover, 1997 ed.)
G.P. Cherepanov
R4,541 Discovery Miles 45 410 Ships in 12 - 17 working days

Modern fracture mechanics considers phenomena at many levels, macro and micro; it is therefore inextricably linked to methods of theoretical and mathematical physics. This book introduces these sophisticated methods in a straightforward manner. The methods are applied to several important phenomena of solid state physics which impinge on fracture mechanics: adhesion, defect nucleation and growth, dislocation emission, sintering, the electron beam effect and fractal cracks. The book shows how the mathematical models for such processes may be set up, and how the equations so formulated may be solved and interpreted. The many open problems which are encountered will provide topics for MSc and PhD theses in fracture mechanics, and in theoretical and experimental physics. As a supplementary text, the book can be used in graduate level courses on fracture mechanics, solid matter physics, and mechanics of solids, or in a special course on the application of fracture mechanics methods in solid matter physics.

Methods of Fracture Mechanics: Solid Matter Physics (Paperback, Softcover reprint of hardcover 1st ed. 1997): G.P. Cherepanov Methods of Fracture Mechanics: Solid Matter Physics (Paperback, Softcover reprint of hardcover 1st ed. 1997)
G.P. Cherepanov
R4,454 Discovery Miles 44 540 Ships in 10 - 15 working days

Modern fracture mechanics considers phenomena at many levels, macro and micro; it is therefore inextricably linked to methods of theoretical and mathematical physics. This book introduces these sophisticated methods in a straightforward manner. The methods are applied to several important phenomena of solid state physics which impinge on fracture mechanics: adhesion, defect nucleation and growth, dislocation emission, sintering, the electron beam effect and fractal cracks. The book shows how the mathematical models for such processes may be set up, and how the equations so formulated may be solved and interpreted. The many open problems which are encountered will provide topics for MSc and PhD theses in fracture mechanics, and in theoretical and experimental physics. As a supplementary text, the book can be used in graduate level courses on fracture mechanics, solid matter physics, and mechanics of solids, or in a special course on the application of fracture mechanics methods in solid matter physics.

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