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Multiscale Modeling and Simulation of Shock Wave-Induced Failure in Materials Science / / by Martin Oliver Steinhauser



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Autore: Steinhauser Martin Oliver Visualizza persona
Titolo: Multiscale Modeling and Simulation of Shock Wave-Induced Failure in Materials Science / / by Martin Oliver Steinhauser Visualizza cluster
Pubblicazione: Wiesbaden : , : Springer Fachmedien Wiesbaden : , : Imprint : Springer Spektrum, , 2018
Edizione: 1st ed. 2018.
Descrizione fisica: 1 online resource (84 pages) : illustrations, tables
Disciplina: 620.1126
Soggetto topico: Cancer - Research
Cheminformatics
Physics
Cancer Research
Computer Applications in Chemistry
Numerical and Computational Physics, Simulation
Nota di bibliografia: Includes bibliographical references and index.
Nota di contenuto: Definition of Shock Waves -- Multiscale Modeling and Simulation in Hard Matter -- Shock Wave Failure in Granular Materials -- Coarse-Grained Modeling and Simulation of Macromolecules -- Laser-Induced Shock Wave Failure in Human Cancer Cells -- The Future of Multiscale Materials Modeling.
Sommario/riassunto: Martin Oliver Steinhauser deals with several aspects of multiscale materials modeling and simulation in applied materials research and fundamental science. He covers various multiscale modeling approaches for high-performance ceramics, biological bilayer membranes, semi-flexible polymers, and human cancer cells. He demonstrates that the physics of shock waves, i.e., the investigation of material behavior at high strain rates and of material failure, has grown to become an important interdisciplinary field of research on its own. At the same time, progress in computer hardware and software development has boosted new ideas in multiscale modeling and simulation. Hence, bridging the length and time scales in a theoretical-numerical description of materials has become a prime challenge in science and technology. Contents Definition of Shock Waves Multiscale Modeling and Simulation in Hard Matter Shock Wave Failure in Granular Materials Coarse-Grained Modeling and Simulation of Macromolecules Laser-Induced Shock Wave Failure in Human Cancer Cells The Future of Multiscale Materials Modeling Target Groups Researchers and students in the fields of (bio-)physics, computational science, materials engineering, materials science, computer science, polymer chemistry, theoretical chemistry, nanoscience Material scientists, engineers The Author Dr. Martin O. Steinhauser works as Senior Scientist and Principal Investigator at the Fraunhofer Institute for High-Speed Dynamics/Ernst-Mach-Institut (EMI) in Freiburg, Germany. .
Titolo autorizzato: Multiscale Modeling and Simulation of Shock Wave-Induced Failure in Materials Science  Visualizza cluster
ISBN: 3-658-21134-2
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910298422603321
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Serie: Research (Wiesbaden, Germany)