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The accuracy of the theoretical predictions is checked against available experimental data.
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A uniform structured grid with 22,016 meshes was employed and the model predictions were checked to be independent of the mesh size.
The validities of the 2D model predictions are checked against direct FE simulations on three-dimensional (3D) truss core sandwich structures.
The theoretical predictions were checked using simple and complex torsional vibrating systems, and they agree with the previous theoretical and experimental results and with the additional results obtained using a finite element method and a lumped parameter method.
The present results indicate that, under near-normal reading speed, these predictions are checked in an interval from 50 to 90 ms after the visual input.
Both predictions are checked against published literature.
These physical predictions were checked experimentally by using potential difference-sensitive fluorescent probes [ 16, 17].
Incomplete predictions were checked by rapid amplification of cDNA ends (RACE).
All predictions are checked manually by curators to ascertain if there are any homologous sites in related proteins.
Growth phenotypes that were inconsistent with model predictions were checked by examining results from previous work [ 15], or retesting them individually.
When these predictions were checked against the actual structures, which were all known beforehand, they were found to be accurate if the number of copies of each protein being compared is greater than the average length of the two proteins.
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CEO of Professional Science Editing for Scientists @ prosciediting.com