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In den Warenkorb2002. IV, 367 S. IV, 367 p. 195 illus., 39 illus. in color. Softcover. Versand aus Deutschland / We dispatch from Germany via Air Mail. Einband bestoßen, daher Mängelexemplar gestempelt, sonst sehr guter Zustand. Imperfect copy due to slightly bumped cover, apart from this in very good condition. Stamped. (Pageoph Topical Volumes). Sprache: Englisch.
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In den WarenkorbSoftcover reprint of the original 1st ed. 2002. 17 x 24 cm. VI, 264 S. VI, 264 p. 102 illus., 12 illus. in color. Softcover. Versand aus Deutschland / We dispatch from Germany via Air Mail. Einband bestoßen, daher Mängelexemplar gestempelt, sonst sehr guter Zustand. Imperfect copy due to slightly bumped cover, apart from this in very good condition. Stamped. (Pageoph Topical Volumes). Sprache: Englisch.
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Verlag: Birkhauser Verlag AG, Basel, 2002
ISBN 10: 3764369159 ISBN 13: 9783764369156
Sprache: Englisch
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In den WarenkorbPaperback. Zustand: new. Paperback. The last decade of the 20th century saw great progress in the physics of earthquake generation; that is, the introduction of laboratory-based fault constitutive laws as a basic equation governing earthquake rupture, quantitative description of tectonic loading driven by plate motion, and a microscopic approach to study fault zone processes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. An ambitious challenge is to develop realistic computer simulation models for the complete earthquake process on the basis of microphysics in fault zones and macro-dynamics in the crust-mantle system. Advances in high performance computer technology and numerical simulation methodology are bringing this vision within reach. This book is the first of two which present a cross-section of cutting-edge research in the field of computational earthquake physics. It includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion.The second volume covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation. Topics covered in this volume range from the microscopic simulation and laboratory studies of rock fracture and the underlying mechanism for nucleation and catastrophic failure to the development of theoretical models of frictional behaviours of faults; as well as the simulation studies of dynamic rupture processes and seismic wave propagation in a 3-D heterogeneous medium, to the case studies of strong ground motions from the 1999 Chi-Chi earthquake and seismic hazard estimation for Cascadian subduction zone earthquakes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Verlag: Birkhauser Verlag AG, Basel, 2002
ISBN 10: 3764369167 ISBN 13: 9783764369163
Sprache: Englisch
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In den WarenkorbPaperback. Zustand: new. Paperback. The last decade of the 20th century saw great progress in the physics of earthquake generation; that is, the introduction of laboratory-based fault constitutive laws as a basic equation governing earthquake rupture, quantitative description of tectonic loading driven by plate motion, and a microscopic approach to study fault zone processes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. An ambitious challenge is to develop realistic computer simulation models for the complete earthquake process on the basis of microphysics in fault zones and macro-dynamics in the crust-mantle system. Advances in high performance computer technology and numerical simulation methodology are bringing this vision within reach. This book is the second of two which present a cross-section of cutting-edge research in the field of computational earthquake physics. It covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation.The first volume includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. Topics in this volume range from the 3-D simulations of earthquake generation cycles and interseismic crustal deformation associated with plate subduction to the development of new methods for analysing geophysical and geodetical data and new simulation algorithms for large amplitude folding and mantle convection with viscoelastic/brittle lithosphere, as well as a theoretical study of accelerated seismic release on heterogeneous faults, simulation of long-range automaton models of earthquakes, and various approaches to earthquake prediction based on underlying physical and/or statistical models for seismicity change. Presents a cross-section of research in the field of computational earthquake physics. This book includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. It covers earthquake cycles, crustal deformation, and seismicity change and its physical interpretation. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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In den WarenkorbZustand: New.
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In den WarenkorbZustand: New. Presents a cross-section of research in the field of computational earthquake physics. This book includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and ground motion. It covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation. Editor(s): Matsu'ura, Mitsuhiro; Mora, P.; Donnellan, Andrea; Yin, X. Series: Pageoph Topical Volumes. Num Pages: 270 pages, 90 black & white illustrations, 12 colour illustrations, biography. BIC Classification: PHVG; RBC. Category: (P) Professional & Vocational. Dimension: 244 x 170 x 15. Weight in Grams: 652. . 2002. Softcover reprint of the original 1st ed. 2002. Paperback. . . . .
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In den WarenkorbZustand: New. Presents a cross-section of research in the field of computational earthquake physics. This book includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. It covers earthquake cycles, crustal deformation, and seismicity change and its physical interpretation. Editor(s): Matsu'ura, Mitsuhiro; Mora, Peter; Donnellan, Andrea; Xiang-Chu, Yin. Series: Pageoph Topical Volumes. Num Pages: 371 pages, 156 black & white illustrations, 39 colour illustrations, biography. BIC Classification: PHVG; RBC. Category: (P) Professional & Vocational. Dimension: 230 x 165 x 15. Weight in Grams: 722. . 2002. Paperback. . . . .
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In den WarenkorbZustand: New. Presents a cross-section of research in the field of computational earthquake physics. This book includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and ground motion. It covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation. Editor(s): Matsu'ura, Mitsuhiro; Mora, P.; Donnellan, Andrea; Yin, X. Series: Pageoph Topical Volumes. Num Pages: 270 pages, 90 black & white illustrations, 12 colour illustrations, biography. BIC Classification: PHVG; RBC. Category: (P) Professional & Vocational. Dimension: 244 x 170 x 15. Weight in Grams: 652. . 2002. Softcover reprint of the original 1st ed. 2002. Paperback. . . . . Books ship from the US and Ireland.
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In den WarenkorbZustand: New. Presents a cross-section of research in the field of computational earthquake physics. This book includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. It covers earthquake cycles, crustal deformation, and seismicity change and its physical interpretation. Editor(s): Matsu'ura, Mitsuhiro; Mora, Peter; Donnellan, Andrea; Xiang-Chu, Yin. Series: Pageoph Topical Volumes. Num Pages: 371 pages, 156 black & white illustrations, 39 colour illustrations, biography. BIC Classification: PHVG; RBC. Category: (P) Professional & Vocational. Dimension: 230 x 165 x 15. Weight in Grams: 722. . 2002. Paperback. . . . . Books ship from the US and Ireland.
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In den WarenkorbPaperback. Zustand: Brand New. 1st edition. 372 pages. 9.00x6.50x0.75 inches. In Stock.
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In den WarenkorbPaperback. Zustand: Brand New. 1st edition. 268 pages. 9.00x6.50x0.50 inches. In Stock.
Verlag: Birkhäuser Basel, Birkhäuser Basel Sep 2002, 2002
ISBN 10: 3764369167 ISBN 13: 9783764369163
Sprache: Englisch
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In den WarenkorbTaschenbuch. Zustand: Neu. Neuware -In the last decade of the 20th century, there has been great progress in the physics of earthquake generation; that is, the introduction of laboratory-based fault constitutive laws as a basic equation governing earthquake rupture, quantitative description of tectonic loading driven by plate motion, and a microscopic approach to study fault zone processes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. An ambitious challenge for us is to develop realistic computer simulation models for the complete earthquake process on the basis of microphysics in fault zones and macro-dynamics in the crust-mantle system. Recent advances in high performance computer technology and numerical simulation methodology are bringing this vision within reach. The book consists of two parts and presents a cross-section of cutting-edge research in the field of computational earthquake physics. Part I includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. Part II covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation. Topics in Part II range from the 3-D simulations of earthquake generation cycles and interseismic crustal deformation associated with plate subduction to the development of new methods for analyzing geophysical and geodetical data and new simulation algorithms for large amplitude folding and mantle convection with viscoelastic/brittle lithosphere, as well as a theoretical study of accelerated seismic release on heterogeneous faults, simulation of long-range automaton models of earthquakes, and various approaches to earthquake predicition based on underlying physical and/or statistical models for seismicity change.Springer Basel AG in Springer Science + Business Media, Heidelberger Platz 3, 14197 Berlin 376 pp. Englisch.
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In den WarenkorbTaschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - In the last decade of the 20th century, there has been great progress in the physics of earthquake generation; that is, the introduction of laboratory-based fault constitutive laws as a basic equation governing earthquake rupture, quantitative description of tectonic loading driven by plate motion, and a microscopic approach to study fault zone processes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. An ambitious challenge for us is to develop realistic computer simulation models for the complete earthquake process on the basis of microphysics in fault zones and macro-dynamics in the crust-mantle system. Recent advances in high performance computer technology and numerical simulation methodology are bringing this vision within reach. The book consists of two parts and presents a cross-section of cutting-edge research in the field of computational earthquake physics. Part I includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. Part II covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation. Topics covered in Part I range from the microscopic simulation and laboratory studies of rock fracture and the underlying mechanism for nucleation and catastrophic failure to the development of theoretical models of frictional behaviors of faults; as well as the simulation studies of dynamic rupture processes and seismic wave propagation in a 3-D heterogeneous medium, to the case studies of strong ground motions from the 1999 Chi-Chi earthquake and seismic hazard estimation for Cascadian subduction zone earthquakes.
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In den WarenkorbPF. Zustand: New.
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In den WarenkorbTaschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - In the last decade of the 20th century, there has been great progress in the physics of earthquake generation; that is, the introduction of laboratory-based fault constitutive laws as a basic equation governing earthquake rupture, quantitative description of tectonic loading driven by plate motion, and a microscopic approach to study fault zone processes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. An ambitious challenge for us is to develop realistic computer simulation models for the complete earthquake process on the basis of microphysics in fault zones and macro-dynamics in the crust-mantle system. Recent advances in high performance computer technology and numerical simulation methodology are bringing this vision within reach. The book consists of two parts and presents a cross-section of cutting-edge research in the field of computational earthquake physics. Part I includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. Part II covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation. Topics in Part II range from the 3-D simulations of earthquake generation cycles and interseismic crustal deformation associated with plate subduction to the development of new methods for analyzing geophysical and geodetical data and new simulation algorithms for large amplitude folding and mantle convection with viscoelastic/brittle lithosphere, as well as a theoretical study of accelerated seismic release on heterogeneous faults, simulation of long-range automaton models of earthquakes, and various approaches to earthquake predicition based on underlying physical and/or statistical models for seismicity change.
Verlag: Birkhauser Verlag AG, Basel, 2002
ISBN 10: 3764369159 ISBN 13: 9783764369156
Sprache: Englisch
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In den WarenkorbPaperback. Zustand: new. Paperback. The last decade of the 20th century saw great progress in the physics of earthquake generation; that is, the introduction of laboratory-based fault constitutive laws as a basic equation governing earthquake rupture, quantitative description of tectonic loading driven by plate motion, and a microscopic approach to study fault zone processes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. An ambitious challenge is to develop realistic computer simulation models for the complete earthquake process on the basis of microphysics in fault zones and macro-dynamics in the crust-mantle system. Advances in high performance computer technology and numerical simulation methodology are bringing this vision within reach. This book is the first of two which present a cross-section of cutting-edge research in the field of computational earthquake physics. It includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion.The second volume covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation. Topics covered in this volume range from the microscopic simulation and laboratory studies of rock fracture and the underlying mechanism for nucleation and catastrophic failure to the development of theoretical models of frictional behaviours of faults; as well as the simulation studies of dynamic rupture processes and seismic wave propagation in a 3-D heterogeneous medium, to the case studies of strong ground motions from the 1999 Chi-Chi earthquake and seismic hazard estimation for Cascadian subduction zone earthquakes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Verlag: Birkhauser Verlag AG, Basel, 2002
ISBN 10: 3764369167 ISBN 13: 9783764369163
Sprache: Englisch
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In den WarenkorbPaperback. Zustand: new. Paperback. The last decade of the 20th century saw great progress in the physics of earthquake generation; that is, the introduction of laboratory-based fault constitutive laws as a basic equation governing earthquake rupture, quantitative description of tectonic loading driven by plate motion, and a microscopic approach to study fault zone processes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. An ambitious challenge is to develop realistic computer simulation models for the complete earthquake process on the basis of microphysics in fault zones and macro-dynamics in the crust-mantle system. Advances in high performance computer technology and numerical simulation methodology are bringing this vision within reach. This book is the second of two which present a cross-section of cutting-edge research in the field of computational earthquake physics. It covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation.The first volume includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. Topics in this volume range from the 3-D simulations of earthquake generation cycles and interseismic crustal deformation associated with plate subduction to the development of new methods for analysing geophysical and geodetical data and new simulation algorithms for large amplitude folding and mantle convection with viscoelastic/brittle lithosphere, as well as a theoretical study of accelerated seismic release on heterogeneous faults, simulation of long-range automaton models of earthquakes, and various approaches to earthquake prediction based on underlying physical and/or statistical models for seismicity change. Presents a cross-section of research in the field of computational earthquake physics. This book includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. It covers earthquake cycles, crustal deformation, and seismicity change and its physical interpretation. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Verlag: Springer, Basel, Birkhäuser Basel, Birkhäuser Sep 2002, 2002
ISBN 10: 3764369167 ISBN 13: 9783764369163
Sprache: Englisch
Anbieter: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Deutschland
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In den WarenkorbTaschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -In the last decade of the 20th century, there has been great progress in the physics of earthquake generation; that is, the introduction of laboratory-based fault constitutive laws as a basic equation governing earthquake rupture, quantitative description of tectonic loading driven by plate motion, and a microscopic approach to study fault zone processes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. An ambitious challenge for us is to develop realistic computer simulation models for the complete earthquake process on the basis of microphysics in fault zones and macro-dynamics in the crust-mantle system. Recent advances in high performance computer technology and numerical simulation methodology are bringing this vision within reach. The book consists of two parts and presents a cross-section of cutting-edge research in the field of computational earthquake physics. Part I includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. Part II covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation. Topics in Part II range from the 3-D simulations of earthquake generation cycles and interseismic crustal deformation associated with plate subduction to the development of new methods for analyzing geophysical and geodetical data and new simulation algorithms for large amplitude folding and mantle convection with viscoelastic/brittle lithosphere, as well as a theoretical study of accelerated seismic release on heterogeneous faults, simulation of long-range automaton models of earthquakes, and various approaches to earthquake predicition based on underlying physical and/or statistical models for seismicity change. 367 pp. Englisch.
Verlag: Springer, Basel, Birkhäuser Basel, Birkhäuser Sep 2002, 2002
ISBN 10: 3764369159 ISBN 13: 9783764369156
Sprache: Englisch
Anbieter: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Deutschland
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In den WarenkorbTaschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -In the last decade of the 20th century, there has been great progress in the physics of earthquake generation; that is, the introduction of laboratory-based fault constitutive laws as a basic equation governing earthquake rupture, quantitative description of tectonic loading driven by plate motion, and a microscopic approach to study fault zone processes. The fault constitutive law plays the role of an interface between microscopic processes in fault zones and macroscopic processes of a fault system, and the plate motion connects diverse crustal activities with mantle dynamics. An ambitious challenge for us is to develop realistic computer simulation models for the complete earthquake process on the basis of microphysics in fault zones and macro-dynamics in the crust-mantle system. Recent advances in high performance computer technology and numerical simulation methodology are bringing this vision within reach. The book consists of two parts and presents a cross-section of cutting-edge research in the field of computational earthquake physics. Part I includes works on microphysics of rupture and fault constitutive laws, and dynamic rupture, wave propagation and strong ground motion. Part II covers earthquake cycles, crustal deformation, plate dynamics, and seismicity change and its physical interpretation. Topics covered in Part I range from the microscopic simulation and laboratory studies of rock fracture and the underlying mechanism for nucleation and catastrophic failure to the development of theoretical models of frictional behaviors of faults; as well as the simulation studies of dynamic rupture processes and seismic wave propagation in a 3-D heterogeneous medium, to the case studies of strong ground motions from the 1999 Chi-Chi earthquake and seismic hazard estimation for Cascadian subduction zone earthquakes. 264 pp. Englisch.
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In den WarenkorbKartoniert / Broschiert. Zustand: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. In the last decade of the 20th century, there has been great progress in the physics of earthquake generation that is, the introduction of laboratory-based fault constitutive laws as a basic equation governing earthquake rupture, quantitative description o.