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Titlebook: Advances in Performance-Based Earthquake Engineering; Michael N. Fardis Book 2010 Springer Science+Business Media B.V. 2010 Earthquake mot

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Microbial Interactions in Lake Food Websr high acceleration far exceeding the conventional design code level. At the same time, most of reinforced concrete (RC) building structures in Japan survived these severe motions, probably because of higher capacity than design requirements or of input loss at the base. The authors have conducted s
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Complex Interactions in Lake Communitiese levels of earthquake action, using a partially inelastic model; the design of structural members is carried out for different performance levels related to their inelastic behaviour. A new procedure for the design of members that are expected to develop inelastic behaviour for the serviceability e
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Donald Scavia,Gary L. Fahnenstielgn methods in a hybrid force/displacement design scheme is proposed. The method controls structural performance by first transforming user-specified values of the interstorey drift ratio (non-structural damage) and local ductility (structural damage) to a target roof displacement and then calculatin
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Carboxysomes and Carboxysome-like Inclusionsesented. The enhanced methodology permits the estimation of expected losses in the building at specific level of ground motion intensity, expected annual losses as well as estimating the mean annual frequency of occurrence of specific levels of economic losses. Unlike previous work, the proposed met
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Advances in Performance-Based Earthquake Engineering978-90-481-8746-1Series ISSN 1573-6059 Series E-ISSN 1872-4671
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Michael N. FardisContributing authors are among the world’s leaders in their field.The subject is of prime importance and at the top of international interest.The state-of-the-art on the subject will be presented
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