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Published by Cambridge University Press, 2025
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Published by Cambridge University Pr., 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Published by Cambridge University Pr., 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Published by Cambridge University Press, 2025
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Published by Cambridge University Press, 2025
ISBN 10: 1009437348 ISBN 13: 9781009437349
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ISBN 10: 1009437348 ISBN 13: 9781009437349
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Paperback. Condition: New. Focusing on the physics of the catastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include a CAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial. Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice.
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Published by Cambridge University Press -, 2025
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Published by Cambridge University Press, 2024
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Published by Cambridge University Press, 2025
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Published by Cambridge University Press, GB, 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Paperback. Condition: New. Focusing on the physics of the catastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include a CAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial. Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice.
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Published by Cambridge University Pr. Nov 2024, 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Taschenbuch. Condition: Neu. Neuware -Focusing on the physics of thecatastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include aCAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial.Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice. 368 pp. Englisch.
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Published by Cambridge University Pr. Nov 2024, 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Taschenbuch. Condition: Neu. Neuware -Focusing on the physics of thecatastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include aCAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial.Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice. 368 pp. Englisch.
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Published by Cambridge University Pr. Nov 2024, 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Taschenbuch. Condition: Neu. Neuware -Focusing on the physics of thecatastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include aCAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial.Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice.
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Published by Cambridge University Press, 2025
ISBN 10: 1009437380 ISBN 13: 9781009437387
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Published by Cambridge University Press, 2025
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Add to basketPaperback. Condition: Brand New. 368 pages. 10.00x0.85x10.00 inches. In Stock.
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Published by Cambridge University Pr. Nov 2024, 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
Seller: buchversandmimpf2000, Emtmannsberg, BAYE, Germany
Taschenbuch. Condition: Neu. Neuware -Focusing on the physics of thecatastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include aCAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial.Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice.Libri GmbH, Europaallee 1, 36244 Bad Hersfeld 368 pp. Englisch.
Language: English
Published by Cambridge University Pr., 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Taschenbuch. Condition: Neu. Introduction to Catastrophe Risk Modelling | A Physics-based Approach | Arnaud Mignan | Taschenbuch | Englisch | 2024 | Cambridge University Pr. | EAN 9781009437349 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu.
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Published by Cambridge University Press, GB, 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
Seller: Rarewaves USA United, OSWEGO, IL, U.S.A.
Paperback. Condition: New. Focusing on the physics of the catastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include a CAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial. Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice.
Language: English
Published by Cambridge University Press, Cambridge, 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
Seller: AussieBookSeller, Truganina, VIC, Australia
Paperback. Condition: new. Paperback. Focusing on the physics of the catastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include a CAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial. Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice. A comprehensive overview of catastrophe risk modelling, focusing on the physics of the catastrophe process. Quantifying dozens of natural and man-made perils, this is a go-to text for advanced undergraduates and graduates in Earth science, engineering and actuarial science, as well as researchers and practitioners interested in risk modelling. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Language: English
Published by Cambridge University Pr. Nov 2024, 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Taschenbuch. Condition: Neu. Neuware - Focusing on the physics of thecatastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include aCAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial.Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice.
Language: English
Published by Cambridge University Press, 2025
ISBN 10: 1009437380 ISBN 13: 9781009437387
Seller: GreatBookPrices, Columbia, MD, U.S.A.
Condition: As New. Unread book in perfect condition.
Language: English
Published by Cambridge University Press, GB, 2024
ISBN 10: 1009437348 ISBN 13: 9781009437349
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Add to basketPaperback. Condition: New. Focusing on the physics of the catastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include a CAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial. Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice.
Language: English
Published by Cambridge University Press, 2025
ISBN 10: 1009437380 ISBN 13: 9781009437387
Seller: GreatBookPrices, Columbia, MD, U.S.A.
Condition: New.
Language: English
Published by Cambridge University Press, 2025
ISBN 10: 1009437380 ISBN 13: 9781009437387
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Add to basketCondition: New.
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Published by Cambridge University Press, 2025
ISBN 10: 1009437380 ISBN 13: 9781009437387
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Published by Cambridge University Press, GB, 2024
ISBN 10: 1009437380 ISBN 13: 9781009437387
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Hardback. Condition: New. Focusing on the physics of the catastrophe process and addressed directly to advanced students, this innovative textbook quantifies dozens of perils, both natural and man-made, and covers the latest developments in catastrophe modelling. Combining basic statistics, applied physics, natural and environmental sciences, civil engineering, and psychology, the text remains at an introductory level, focusing on fundamental concepts for a comprehensive understanding of catastrophe phenomenology and risk quantification. A broad spectrum of perils are covered, including geophysical, hydrological, meteorological, climatological, biological, extraterrestrial, technological and socio-economic, as well as events caused by domino effects and global warming. Following industry standards, the text provides the necessary tools to develop a CAT model from hazard to loss assessment. Online resources include a CAT risk model starter-kit and a CAT risk modelling 'sandbox' with Python Jupyter tutorial. Every process, described by equations, (pseudo)codes and illustrations, is fully reproducible, allowing students to solidify knowledge through practice.