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The DDES (Delayed Detached Eddy Simulation) and LES models predicted similar results in the wake region, but the DDES has a lower overall mesh requirement.
While macro-scale and micro-scale models predicted similar average oxygen levels at different depths within the scaffold, μCT models revealed small local oxygen variations within the scaffold micro-architecture.
The results show that the DGM and Fickian-based models predicted similar dense gas density profiles which matched the measured data well for horizontal transport of dense gas at low to high source densities, despite the pressure variations predicted in the soil column were opposite to the measurements.
Both models predicted similar patterns of change in other economic variables (missed work days, disability rates, and household income).
The 2-strain and 4-strain models predicted similar overall impacts of vaccines on carriage prevalence, especially with respect to the vaccine-targeted serogroups.
Based on immunogenicity data from a previous study (HPV-001), 28 or from the current study for the age groups 15 25 years, both models predicted similar anti-HPV 18 anti-HPV 18wer anti-HPV–16 GMTs 20 yeand after vaccination.
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FBAwMC modeling provides largely similar results and predicts an even more dominant selective glucose consumption at the highest proliferation rates than seen experimentally (Additional file 3: Figure S3).
The results demonstrate that both models predict similar hillslope form as well as erosion rates over a 1000-year modelled period.
The results reveal that although both linear and nonlinear models predict similar oscillation frequencies, the nonlinear model predicts lower exergetic efficiencies.
Both models predict similar path loss levels for.
All three models predict similar reductions in prevalence for decreases in transmission rate of less than 10% (Fig. 4A).
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