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The comparison between calculation and experiment has often shown an insensitivity of the calculated cross flow velocity on the turbulence modeling.
A good agreement between calculation and experiment thereby validates the accuracy of our established thermodynamic database of the cemented carbides.
The comparisons between calculation and experiment are mostly focused on the flow in the near wake of the mixing grid, i.e. on the flow in the first 5 to 10 hydraulic diameters (dh) downstream of the grid.
Compared with experimental data, an ideal agreement is found between calculation results and experimental data for both single pipe water curtain and double pipe water curtain, only in the case of triplex pipe water curtain the deviation between calculation and experiment is more than 25%.
However, there is the reason giving rise to difference between calculation and experiment: it is the existence in MoS 2 bulk crystal, the CT, ( omega left({E}_{2 g}^1right pm omega left({E}_{2 g}^2right) ) = (388 ± 35) cm-1 close placed to discussed fundamental frequencies, ([17] Table 1).
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It should be emphasized also that the excellent agreement between calculations and experiment is only observed in this work where the highest level of QM theory (SCS-MP2) is used.
These new insights are demonstrated by good agreement between calculations and experiments.
Comparison between calculations and experiments shows that the damper model allows simulating the damper kinematics with good accuracy.
Density functional theory calculations were performed on these phases and excellent agreement was found between calculations and experiments on the lattice parameters and relative atomic positions.
The comparison between calculations and experiments allows the ability of the computer codes to treat the relevant physical phenomena to be assessed.
The ratios were calculated by the MCNP4B code employing ENDF/B-VI nuclear data library, the discrepancies between calculations and experiments were all within 6%, and the average calculation to experiment(C/E) ratio was 0.998.
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between calculations and experiment
between calculation and experimental
between calculation and testing
between theory and experiment
between observation and experiment
between simulation and experiment
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between tradition and experiment
between calculation and measurement
between calculation and incompetence
between model and experiment
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