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Titlebook: Best Practices in Physics-based Fault Rupture Models for Seismic Hazard Assessment of Nuclear Instal; Luis A. Dalguer,Yoshimitsu Fukushima

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Cyclophosphazene-Containing Polymers, study is computationally efficient and, therefore, enables us to simulate numerous rupture scenarios, including large events (M>7.0). It also gives us an opportunity to check the shape of true input correlation models in stochastic modeling after being deformed for permissibility. We expect that th
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Inorganic and Organometallic Polymersis evolution provided the motivation for the present article, the objectives of which are threefold: (1) to provide a description of the current practices in France to assess seismic hazard in terms of nuclear safety; (2) to discuss and highlight the sources of uncertainties and their treatment; and
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C. Biran,M. Bordeau,M. P. Legerch; (8) computational power and computer codes have advanced to the point that risk to structures can be calculated directly from source and site-specific ground motions. Spanning the variability of potential ground motion in a predictive situation is especially difficult for near-source areas, but
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Surface Rupture Effects on Earthquake Moment-Area Scaling Relations,g an effective rupture elongation along-dip due to a mirror effect and systematic changes of the shape factor relating slip to stress drop. Based on this physical insight, we propose a simplified formula to account for these effects in M0–A scaling relations for strike-slip earthquakes.
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