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Based on the CCD, a quadratic model and a two-factor interaction (2FI) model were respectively developed for RBBR percentage removal and carbon yield.
Based on the Central Composite Rotary Design, a five factor interaction model and a quadratic model were respectively developed to correlate the adsorption variables to the adsorption capacity.
The thermal resistance, Nusselt number, and Richardson number of the MFPA model were, respectively, 4.13 K/W, 81.25, and 0.018 under 8-W heater power.
In the convection chamber, the standard k ε model and discrete ordinates (DO) radiation model were respectively used in the descriptions of turbulence characteristics and radiative heat transfer.
Based on the central composite design (CCD), a two factor interaction (2FI) model and a quadratic model were respectively developed to correlate the preparation variables to the adsorption capacity and yield.
Based on the central composite design (CCD), a quadratic model and a two factor interaction (2FI) model were respectively developed to correlate the preparation variables to the MB uptake and carbon yield.
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Indeed, the (R^{2}_{0 test}) and RMSEtest values calculated for the observed pIC50 values with respect to those predicted by the PCM model are, respectively, 0.59 and 0.76 pIC50 unit.
All components in this element model are respectively explained, and the mapping relationship between element model and predicate logic is described in detail.
The piecewise linear spring model and linear bridging model are, respectively, employed to simulate the contact and friction behavior of the delaminated sub-layers.
MAPE, RMSE and R2 for the GR model are respectively equal to 4.57%, 160.3 Wh/m2 and 0.9918, while for the DNI they are equal to 5.57%, 17.7 W/m2 and 0.994.
The time-dependent Navier Stokes equation and the Darcy Brinkmann Forchheimer model are respectively adopted for the homogenous fluid region and the porous rock region, while the energy and species equations are used for both the porous and fluid regions.
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Justyna Jupowicz-Kozak
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