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Robust Period-Independent Ground Motion Selection and Scaling for Effective Seismic Design and Assessment
Robust Period-Independent Ground Motion Selection and Scaling for Effective Seismic Design and Assessment
Robust Period-Independent Ground Motion Selection and Scaling for Effective Seismic Design and Assessment
Dehghani, Morteza (Autor:in) / Tremblay, Robert
2015
Aufsatz (Zeitschrift)
Englisch
Taylor & Francis Verlag | 2016
|A new ground motion selection and scaling procedure for nonlinear seismic response prediction
TIBKAT | 2015
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