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Two versions of the one-equation model were tested.
The predictive capabilities of this model were tested on laboratory-scale experimental data from the literature.
The hypothesized relationships in the model were tested using structural equation modeling.
The predictive capabilities of the model were tested on batch systems comprising TAP media containing 2.625 g/L acetic acid.
Two numerical simulation methods for representing low-permeability barriers in a finite-difference groundwater-flow and transport model were tested.
Theoretical predictions of the conceptual model were tested using hierarchical regression analyses of data obtained from 225 senior logistics/supply chain managers in the global auto sector.
Hypotheses from this model were tested at three study locations by measuring abundances of animals and plants in quadrats in replicate sites on each structure.
Animal model, sire model and sire maternal grandsire model were tested for their suitability to evaluate young sires in progeny test.
The results of the implementation of this model were tested for the idealised case where droplet evaporation and burning are ignored, and the gas temperature is kept constant.
Using standard electrolytes, the device and the theoretical model were tested over a wide range of frequencies for several electrolyte concentrations.
In 3-D steady calculations of the flow around a cube placed in developed-channel flow, various versions of the k-ϵ model were tested.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com