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The model with the obtained parameters simulated the experimental product size distributions with good accuracy.
We simulated the experimental conditions in the three-dimensional numerical model and results show that ventilation strategy influences particle deposition in the room.
The model simulated the experimental results well throughout the entire courses of the test.
More specifically, given the baseline deconvolution result according to our model, we simulated the experimental data separately at each position by convolution and a Poisson model.
Assuming that the first PF-EPSP of a train of 7 EPSPs does not elicit a calcium spike, we simulated the experimental scenarios of Figure 4 with 2 and 6 calcium spikes at 100 Hz.
We simulated the experimental system for r values of the subpopulations ranging from 2.0 to 4.0 in increments of 0.1 and for each value of r, we plotted the means and standard errors of 10 independent runs.
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The biomass yield of fumarate was calculated by constraining fumarate, succinate, and acetate fluxes to simulate the experimental conditions, and the yields obtained through the simulation closely matched the actual experimental results.
The model was able to simulate the experimental performance.
The process has been modeled simulating the experimental conditions.
The presented model can reasonably simulate the experimental results.
Unstructured kinetic models were used to simulate the experimental data.
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