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Furthermore, it can be used to calculate air mass factors or fluxes.
A very simple exact solution given in the paper permits the computation of "added virtual mass factors".
Obviously, there is a discrepancy between P(θ r ) distributions of the two reactions due to the different mass factors of the two reactions.
The effect of the depth of the fluid domain on the added virtual mass factors, natural frequencies and mode shapes is studied.
Also, the effects of structural (e.g., alkyl chain, anion, cation, C2 methylation, functionalization) and external (e.g., concentration, mass) factors of ionic liquids for uptaking iodine are investigated.
It calculates the weighting functions with respect to the absorption in all atmospheric layers and the layer air mass factors simultaneously with the intensities.
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m f is the mass factor being less than one.
It can be represented by a mass factor and an acoustic factor.
For a quantitative analysis of NO2 measurements, the air mass factor (AMF) is needed.
P(θ r ) is the distribution function reflecting the k-j ' correlation, which is sensitive to two factors: the characters of PES and the mass factor.
In the training phase, each class is weighted by a mass factor, which can be learned from the training data, to indicate data distribution of the corresponding class.
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CEO of Professional Science Editing for Scientists @ prosciediting.com