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The long standing problem of the SRD simulation via circuital analysis is addressed.
The readiness of the computing tools needed for physics analysis is addressed.
The problem of the cancellation of mass-loading effects of transducers in experimental structural dynamic analysis is addressed.
The analysis is addressed to define the proper framework toward the identification of the parameter characterizing the model.
Limit elastoplastic structural analysis is addressed herein in the context of mathematical programming aiming at determining the ultimate load capacity of frame structures at incipient collapse.
In addition, the model uncertainties associated with a surrogate model that is derived from numerical computation methods, such as finite element analysis, is addressed.
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Finally, the derivation of a weighted overall health knowledge score and its use in robust regression analysis is addressing an important methodological issue in assessing health knowledge on multiple topics.
Key questions around heterogeneity and representative material analysis are addressed.
Therefore, isogeometric analysis, using a spline basis, and natural element analysis are addressed in the present contribution.
Two main topics regarding the energy function approach for voltage stability analysis are addressed in this paper.
Some aspects of numerical simulation of Lamb wave propagation in composite laminates using the finite element models with explicit dynamic analysis are addressed in this study.
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