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The crack growth evaluation based on the numerical models agrees well with the experimental results.
Additionally, the intercomparison revealed that the median of the simulations from non-assimilative models agrees well with assimilative models, suggesting that using a combination of different methodologies may be an appropriate approach for estimating runoff into the Great Lakes.
Based on the internal force equilibrium, the theoretical equation for determining the moment of inertia of fully cracked section of RUHTCC beam is proposed, and the predicted maximum deflection at service load according to proposed equation based on bilinear tensile and compressive constitutive models agrees well with the tested value.
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Simulation results of both models agree well.
Results obtained from the wear models agree well with the experimental measurements.
The crack propagation paths predicted by the numerical models agree well with the experimental results.
The output voltages measured in experiments and calculated using the above models agree well.
The predictions of the present empirical models agree well with the experimental data.
The mechanism-based models agree well with the experimental results, further validating the proposed transition mechanism.
The correlation results showed that calculated values by the four models agree well with the experimental data.
Simulations of N2O and NO emissions by the three models agreed well with annual observations, but not with daily observations.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com