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Regarding electrothermal atomic absorption spectrometry, the optimum parameters were defined by a central composite design optimization.
The model parameters were defined by fitting with experimental bandgap data retrieved from photoluminescence.
Four statistical parameters were defined as auxiliary criteria to evaluate the models and convergence of calculations.
Stress transfer in steel and bond stress distribution parameters were defined to characterise the bond behaviour.
To relate all metrics, two dimensionless parameters were defined to compare diffusive transport and energy storage to junction temperature.
The model parameters were defined, and the mathematical model was verified by combining it with site data from abandonment operations.
Two parameters were defined for describing the deviation and deformation of the drops under the electric forces.
On the basis of the analysis, four new parameters were defined to characterize the structure of the rough surface.
New reactions and rate parameters were defined and included in the software EXGAS for the automatic generation of kinetic mechanisms.
Based on comprehensive experiments, the model parameters were defined for five lignocellulosic materials largely used in the building construction.
Three structural parameters were defined based on the characteristics of wire mesh filters: wire diameter, layer spacing and mesh size.
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