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Introduction -- Charge to the working group -- Assessment of the prediction -- What we have learned from the experiment -- Problems identified -- How should the experiment be modified in the future? -- What are the incremental costs associated with the experiment? -- Should the experiment be moved? -- Long-term aspects of the project -- Reasess [sic] project periodically to modify, upgrade and acquire new equipment -- Assessment of costs and productivity of the experiment -- Recommendations for future USGS response efforts -- Concluding remarks.
Earthquake engineering is the ultimate challenge for structural engineers. Even if natural phenomena involve great uncertainties, structural engineers need to design buildings, bridges, and dams capable of resisting the destructive forces produced by them. These disasters have created a new awareness about the disaster preparedness and mitigation. Before a building, utility system, or transportation structure is built, engineers spend a great deal of time analyzing those structures to make sure they will perform reliably under seismic and other loads. The purpose of this book is to provide structural engineers with tools and information to improve current building and bridge design and construction practices and enhance their sustainability during and after seismic events. In this book, Khan explains the latest theory, design applications and Code Provisions. Earthquake-Resistant Structures features seismic design and retrofitting techniques for low and high raise buildings, single and multi-span bridges, dams and nuclear facilities. The author also compares and contrasts various seismic resistant techniques in USA, Russia, Japan, Turkey, India, China, New Zealand, and Pakistan. - Written by a world renowned author and educator - Seismic design and retrofitting techniques for all structures - Tools improve current building and bridge designs - Latest methods for building earthquake-resistant structures - Combines physical and geophysical science with structural engineering
Magnitude 8 is the archetypal natural disaster defined. To understand the cataclysmic earthquake that will tear California apart one day, Philip L. Fradkin has written a dramatic history of earthquakes and an eloquent guide to the San Andreas Fault, the world's best-known tectonic landscape. The author includes vivid stories of earthquakes elsewhere: in New England, the central Mississippi River Valley, New York City, Europe, and the Far East. Always, he combines human and natural drama to place the reader at the epicenter of the most instantaneous and unpredictable of all the Earth's phenomena. Following the San Andreas Fault from Cape Mecino to Mexico--canoeing the fault line in northern California and walking underground through the Hollywood fault--noted environmental historian Philip L. Fradkin reclaims the human dimensions of earthquakes from the science-dominated accounts.