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Beam filtration can be used to minimize these artifacts.
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Filtration can be done in the spatial or frequency domain.
Membrane filtration can be applied to obtain greater homogeneity.
It can be shown, that the 2-component model effects positively the simulation of filter loading, as the filtration can be divided into deep bed and cake filtration.
Gravity filtration can be considered as a constant pressure filtration by neglecting the effect of change in the hydrostatic head on the total pressure.
Filtration can be classified as pressure-driven or electrophoresis-driven [93].
Filtration can be done by gravity filtration, decantation, or removal of solvent using a pipette.
However, in accelerators which produce mono-energetic beams, such as fixed energy cyclotrons, a beam degrader can be used to change the energy of the proton beam.
Stretching of the GUV along the beam axis can be clearly observed.
Under the same filtration pressure decline or loss, the filtration efficiency can be increased from the baseline of 95.4% to 99.9%.
The beam can be "tuned" to look for particular elements.
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