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Using updated and improved measurements of pickup ions and state-of-the-art modeling, we find that in the LIC the proton and neutral hydrogen densities are respectively (0.061 ± 0.018) and (0.176 ± 0.019) cm−3.
With the help of microkinetic modeling, we find that the competitive reactions for the hydrogenation of trans-/cis-C4H7 to 1-butene and trans/cis-2-butenes play an important role in determining the selectivity of butenes.
By detailed modeling, we find that the crosstalk is most likely caused by the capacitance variation at the output stage of the actuation circuit due to the applied actuation signal.
By combining our experimental data with finite element modeling, we find that stiffer polymers can increase the strength of the composite by reducing stress concentrations in the inorganic scaffold.
For each event, by forward modeling, we find a pair of the model parameters that best fits the observed SYM-H temporal profile.
Using mathematical modeling, we find that all these properties favor formation and propagation of cytokine waves.
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By adjusting electrogram timing through computational modeling, we found rotational activation, which was undetectable with conventional methods.
Using predictive modeling, we found that H3K27ac, Brd4, Cdk8, Cdk9, Med12, p300, and Smad3 with higher predictive importance and significantly correlated with Med1.
Using structural equation modeling, we found that scientific reasoning ability does not correlate with religiosity among religious individuals (Fig. 2).
Using statistical modeling, we found relatively distinct environmental associations between the prevalence of AGAs and PGAs throughout the Indo-Pacific.
Furthermore, after additional modeling, we found a smoking and dental furcation interaction (p = 0.034).
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