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The food can take a while, and most of it — goulash, schnitzel, "Vepro, Knedlo, Zelo" (roast pork with sauerkraut and dumplings) — is best ingested solely for the purposes of beer absorption.
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The results correspond to a model for fast radiative ignition where Lambert-Beer absorption is the main energy interaction mechanism between the energetic material and the laser beam.
The electrical behaviors of the bottom Si cell are calculated at two-dimensional with Beer-Lambert absorption model while a reflection loss is adopted from the FDTD simulations.
Under these single-scattering measurement conditions and the assumption that the particles have negligible absorption, Beer's law can reveal the scattering coefficient directly.
The usual assumption in multivariate resolution methods is that the experimental data follow a bilinear model similar to the Lambert-Beer law in absorption spectroscopy.
Two fundamental laws are applied: that of a French scientist, Pierre Bouguer, which is also known as Lambert's law, relates the amount of light absorbed and the distance it travels through an absorbing medium; and Beer's law relates light absorption and the concentration of the absorbing substance.
H2O and CO2 contents were calculated using the Lambert-Beer law using the measured absorption peak height or area, thickness of doubly polished thin sections, glass density, and the molar absorption coefficient.
The Lambert-Beer law is built around absorption and scattering away from the detector, whereas the Kubelka-Munk model is mainly developed for scattering materials and not highly absorbing materials.
A simple absorption model based on Beer's law is introduced and bulk absorption coefficients are applied to the solid PMMA and evolved methylmethacrylate (MMA).
This finding is internally consistent with differences in the rate of absorption of EtOH from beer, wine, or vodka/tonic.
In addition, although fluorescence detection is more sensitive than IR absorption, the application of Beer's law to IR images acquired in the transmission mode yields quantitative concentration values for the CERs in the SC glyph regions.
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