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Detailed simulation results with different Reynolds numbers, as well as the benchmark solutions, are presented.
Detailed simulation results at different flow and radiative regimes, as well as benchmark solutions, are presented and discussed.
The developed model was validated and some benchmark solutions are presented to highlight the effects of the internal wall-thinning on the vibrational behavior of composite pipes conveying fluid.
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Current approaches and a set of benchmarks used to evaluate current solutions are presented and new research questions in developing real-time Java systems using a scoped memory model are proposed.
Comparisons with other exact solutions are presented and useful benchmark frequency results for symmetric and un-symmetric cross-ply laminates are provided.
Computational experiments are presented showing the effectiveness of the approach: Seven new best-known solutions are presented for the set of benchmark instances used in the experiments.
After the facts were presented the solutions were presented.
Few new benchmark solutions are also presented for future reference.
A benchmark three-dimensional (3D) exact piezoelasticity solution is presented for free vibration and steady state forced response of simply supported smart cross-ply circular cylindrical shells of revolutions and panels integrated with surface-bonded or embedded monolithic piezoelectric or piezoelectric fiber reinforced composite (PFRC) layers.
Furthermore, a shape optimization example with an exact solution is presented which can serve as general benchmark for shape optimization methods.
First of all, in Table 6, the overall summary of benchmark results with respect to time-to-solution and cost-to-solution is presented.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com