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This study used the Nernst Planck equation and impedance measurements to model the kinetics of electrochemical migration under condensed water drops between copper conductors on printed circuit boards.
We compare the measurements to model calculations to demonstrate that the reflectivity can be well described by the intended power law distribution of the bilayer thicknesses, and that the coatings are uniform at the 5% level over the mirror surface.
Inverse numerical analyses were performed to identify material parameters for each eye by matching experimental deformation measurements to model predictions using a microstructure-based constitutive formulation that incorporates the crimp response and anisotropic architecture of scleral collagen fibrils.
Our aim was to measure the contribution of CO2 efflux from soil respiration to atmospheric CO2 fluxes using an automated CO2 efflux system and to use these measurements to model urban soil CO2 efflux across an urban area.
In particular, one new approach created a dynamic regulation network from CyTOF measurements to model the drug perturbation of the epithelial-to-mesenchymal transition [96].
A few blood tissue systems require a combination of two water solvent partition coefficient measurements to model well (p < 0.01), namely: blood muscle: chloroform and dibutyl ether, blood liver: N-methyl-2-piperidone and ethanol/water (60 40) volume, and blood kidney: DMSO and ethanol/water (20 80) volume.
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The relevance of the measurements to modelling the evolution of the microstructure is discussed.
Based on our review, studies that utilized models fell into two general categories: a) those that reconstructed exposure levels from NHANES biomarker data (reverse modeling), and b) those that compared biomarker measurements to model-predicted biomarker estimates (forward modeling).
(a) The GPGP boundary (blue line) is estimated by comparing microplastic concentration measurements (circles) to model particle visit averages that accounted for seasonal and inter-annual variations.
In addition, I propose a mixture probability density function of the measurement error to model the "intermittent analytical error".
Such measurements allow teachers to model, recognize and reward behavior more effectively.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.
Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com