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Particulate components were determined by model evaluation of corresponding oxygen uptake rate profiles.
The flexural stiffness of simply supported cracked reinforced concrete beams was determined by model updating.
Parameters required by the model were derived from published information or determined by model calibrations such as curve fitting.
The crystallinity, as determined by model fit, decreases approximately linearly with increasing temperature up to 393 K.
Finally, inter-association equilibrium constants of phenolic/P2VP and phenolic/P4VP blends were determined by model compounds.
A sensitivity analysis on the uncertainties of the initial conditions of the model and the parameter values determined by model calibrations was also performed.
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Participants with lower propensity scores were least likely to use wood, as determined by modeling for determinants of wood use.
The optimal electrospinning conditions determined by model-based simulation and desirability function approach were as follows: 25 kV (applied voltage), 15 cm (tip-to-collector distance) and 0.75 mL/h (polymer solution flow-rate).
In addition, the experimental cycle rank order closely matches with that determined by modeling.
The activation energy was determined by modeling the conductivity with a Vogel–Tamman Fulcher expression.
In this approach, the equipment health status is determined by modelling the degradation of the system and then the maintenance costs and carbon footprint are calculated.
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