Plate Tectonics and Great Earthquakes: 50 Years of Earth-Shaking Events

The theory of plate tectonics transformed earth science. The hypothesis that the earth’s outermost layers consist of mostly rigid plates that move over an inner surface helped describe the growth of new seafloor, confirm continental drift, and explain why earthquakes and volcanoes occur in some places and not others. Lynn R. Sykes played a key role in the birth of plate tectonics, conducting revelatory research on earthquakes. In this book, he gives an invaluable insider’s perspective on the theory’s development and its implications.

Sykes combines lucid explanation of how plate tectonics revolutionized geology with unparalleled personal reflections. He entered the field when it was on the cusp of radical discoveries. Studying the distribution and mechanisms of earthquakes, Sykes pioneered the identification of seismic gaps—regions that have not ruptured in great earthquakes for a long time—and methods to estimate the possibility of quake recurrence. He recounts the various phases of his career, including his antinuclear activism, and the stories of colleagues around the world who took part in changing the paradigm. Sykes delves into the controversies over earthquake prediction and their importance, especially in the wake of the giant 2011 Japanese earthquake and the accompanying Fukushima disaster. He highlights geology’s lessons for nuclear safety, explaining why historic earthquake patterns are crucial to understanding the risks to power plants. Plate Tectonics and Great Earthquakes is the story of a scientist witnessing a revolution and playing an essential role in making it.

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Plate Tectonics and Great Earthquakes: 50 Years of Earth-Shaking Events

The theory of plate tectonics transformed earth science. The hypothesis that the earth’s outermost layers consist of mostly rigid plates that move over an inner surface helped describe the growth of new seafloor, confirm continental drift, and explain why earthquakes and volcanoes occur in some places and not others. Lynn R. Sykes played a key role in the birth of plate tectonics, conducting revelatory research on earthquakes. In this book, he gives an invaluable insider’s perspective on the theory’s development and its implications.

Sykes combines lucid explanation of how plate tectonics revolutionized geology with unparalleled personal reflections. He entered the field when it was on the cusp of radical discoveries. Studying the distribution and mechanisms of earthquakes, Sykes pioneered the identification of seismic gaps—regions that have not ruptured in great earthquakes for a long time—and methods to estimate the possibility of quake recurrence. He recounts the various phases of his career, including his antinuclear activism, and the stories of colleagues around the world who took part in changing the paradigm. Sykes delves into the controversies over earthquake prediction and their importance, especially in the wake of the giant 2011 Japanese earthquake and the accompanying Fukushima disaster. He highlights geology’s lessons for nuclear safety, explaining why historic earthquake patterns are crucial to understanding the risks to power plants. Plate Tectonics and Great Earthquakes is the story of a scientist witnessing a revolution and playing an essential role in making it.

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Plate Tectonics and Great Earthquakes: 50 Years of Earth-Shaking Events

Plate Tectonics and Great Earthquakes: 50 Years of Earth-Shaking Events

by Lynn R. Sykes
Plate Tectonics and Great Earthquakes: 50 Years of Earth-Shaking Events

Plate Tectonics and Great Earthquakes: 50 Years of Earth-Shaking Events

by Lynn R. Sykes

eBook

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Overview

The theory of plate tectonics transformed earth science. The hypothesis that the earth’s outermost layers consist of mostly rigid plates that move over an inner surface helped describe the growth of new seafloor, confirm continental drift, and explain why earthquakes and volcanoes occur in some places and not others. Lynn R. Sykes played a key role in the birth of plate tectonics, conducting revelatory research on earthquakes. In this book, he gives an invaluable insider’s perspective on the theory’s development and its implications.

Sykes combines lucid explanation of how plate tectonics revolutionized geology with unparalleled personal reflections. He entered the field when it was on the cusp of radical discoveries. Studying the distribution and mechanisms of earthquakes, Sykes pioneered the identification of seismic gaps—regions that have not ruptured in great earthquakes for a long time—and methods to estimate the possibility of quake recurrence. He recounts the various phases of his career, including his antinuclear activism, and the stories of colleagues around the world who took part in changing the paradigm. Sykes delves into the controversies over earthquake prediction and their importance, especially in the wake of the giant 2011 Japanese earthquake and the accompanying Fukushima disaster. He highlights geology’s lessons for nuclear safety, explaining why historic earthquake patterns are crucial to understanding the risks to power plants. Plate Tectonics and Great Earthquakes is the story of a scientist witnessing a revolution and playing an essential role in making it.


Product Details

ISBN-13: 9780231546874
Publisher: Columbia University Press
Publication date: 06/04/2019
Sold by: Barnes & Noble
Format: eBook
File size: 65 MB
Note: This product may take a few minutes to download.

About the Author

Lynn R. Sykes is Higgins Professor Emeritus of Earth and Environmental Sciences at Columbia University’s Lamont-Doherty Earth Observatory. His application of earthquake science to monitoring underground explosions was crucial to treaties limiting nuclear testing. He is the author of Silencing the Bomb: One Scientist’s Quest to Halt Nuclear Testing (Columbia, 2017).

Table of Contents

Preface
1. Transform Faults: My Road to Seafloor Spreading, Continental Drift, and Plate Tectonics
2. Childhood, High School, MIT, and Columbia University
3. Earthquakes Along Fracture Zones and Mid-Oceanic Ridges, 1963–1965
4. Earthquakes at Subduction Zones, 1965–1967
5. Subduction, Plate Tectonics, and the New Global Tectonics, 1967–1969
6. Earthquakes in the Caribbean and Alaska
7. Long-Term Earthquake Prediction, Seismic Gaps: Alaska, Mexico, and South America
8. The San Francisco Earthquake of 1906 and Long-Term Prediction for California
9. My Work with the U.S. National Earthquake Prediction Evaluation Council
10. Japanese Earthquakes and the Fukushima Nuclear Disaster
11. Earthquakes in the Eastern and Central United States
12. Earthquake Risks to Nuclear-Power Reactors
13. Nuclear-Power Reactors in the United States: Lessons Learned from the Fukushima Disaster
14. Travels to Earthquake Countries and a Trip to the Earth’s Mantle in Newfoundland
15. Advances in Long-Term Earthquake Prediction: Future Prospects
Acknowledgments
Glossary
References
Index
About the Author

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