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The Macro Element Method approach is applied to model large deformations and to calculate crushing parameters of thin-walled sections.
A mixed method approach is used with both physiological measurements of blood pressure (BP) and heart rate variability (HRV) and psychological measurements of mood change and perceived restorativeness.
The momentum integral method approach is used to predict the flow development in the hydrodynamic entrance region, and two different assumptions are employed for the streamwise velocity profile.
In the second part of this study, a Displacement Coefficient method approach is employed for obtaining estimates of maximum inelastic roof displacement demands.
Although considerable preparatory man-power is required and the accuracy of the results is still open for further improvement, finite element method approach is the most powerful way at present.
The utility of the compact scheme projection decomposition method approach is further illustrated by two other benchmark problems, viz., the flow over a backward-facing step and the laminar flow past a square prism.
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A mixed method approach was considered appropriate, as the present study constitutes an explorative study.
The ASCE/SEI 41-06 coefficient method approach was utilized for calculating spectral displacement under certain acceleration rates.
A mixed method approach was used.
Methodology A mixed method approach was employed in order to answer the evaluation questions.
A mixed method approach was used; both qualitative and quantitative data were collected.
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