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The results show that larger particles reduce the vorticity deposition, while particle evaporation increases it.
The results show that both Cd and suspended particles reduce the activity of mandibles and thoracic limbs.
Both Al/PTFE 90/10 and 70/30 wt.% composite particles reduce the coarse product fraction and diameter.
It seems that the Ag is the phase mainly responsible of hydrogen production although the large particles reduce the CO formation.
SAP particles reduce the flow, cause a densification of the matrix due to internal curing and also reduce the strength due to macro-pore formation.
According to the infrared spectra, the addition of graphite particles reduce the intensity of the ester groups reflecting a physical interaction between the filler and the polymer.
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The introduction of dispersed HA particles reduced the rate of accumulation of defects.
In addition, hydrophobic PTFE particles reduced the O2 mass transfer overpotential induced by water and permeated methanol in the cathode.
The results showed that the incorporation of quasicrystal particles reduced the porosity and increased the microhardness of the composite coatings.
In addition, poppy husk particles reduced the formaldehyde emission and increased the fire retardant property for the manufactured particleboards.
This paper reported that the drifting snow particles reduced the mean wind velocity near the snow surface when saltation occurred.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com