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Removing energy, in the form of heat, decreases the rate at which chemical reactions — in this case, metabolism — take place.
Thus, the MWCNT loss under the effect of laser operation's heat decreases with increase of feed rate.
In the crystalline PLA4, the endothermic heat decreases with increasing crystallinity.
In the experimental pressure range, the isosteric heat decreases with the increase in adsorption content, and because of the enhanced adsorption potential of micropores, methane is preferentially adsorbed in smaller micropores.
When the concentration of Ru2+ is greater than 5 mol%, detection of a diffuse Tg above 200°C is difficult via calorimetry because the discontinuity in specific heat decreases considerably.
As the protein concentration increases, the molar heat decreases with a midpoint of ∼1.3 stoichiometry.
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The density and specific heat decreased as temperature increased.
In both adsorbents, the isosteric heat decreased with increased loading.
In general, the startup heat decreased with the GNP concentration except for the 0.5 wt%.
It is seen that the methane isosteric heat decreased gradually with an increase in pore size.
Moreover, as the SOFA ratio increases, both the total heat flux from furnace walls and the fuel combustion heat decrease.
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CEO of Professional Science Editing for Scientists @ prosciediting.com