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Moreover, the calculations based on above models had a great coherence with the experimental data.
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(q being the quantum yield of the QDs) and compare them with the experimental data.
A good quantitative agreement with the experimental data and the thermal model is obtained.
The simulated result (solid red curve) is compatible with the experimental data (solid blue curve).
This result fits very well with the experimental data shown in Fig. 3 c,d).
This scaling results in good agreement of the model with the experimental data over the full experimental range of HOM concentrations.
Finally, we compare the simulations with the experimental data.
The model is consistent with the experimental data and thermodynamics.
This proposition was compatible with the experimental data.
Overlain on the experimental cumulative distribution plots of Fig. 5A D are curves derived from the normal distribution of log-transformed coherence, with the mean and standard deviation derived from the experimental data.
The coherence shown between the simulations (quantification, dynamics) and the experimental data indicates that the model integrates most of the essential components to predict realistic physiological values for the parameters under study.
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CEO of Professional Science Editing for Scientists @ prosciediting.com