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Thermal cross-section effects in QUADRISO particles generally result in excess reactivity decreasing with increasing temperature.
Further, the absorption values were seen to be decreasing with increasing cementitious content.
Generally, alkali metals react with halogen gases, the degree of reactivity decreasing with increasing atomic weight of the halogen.
The DIPA sorption isotherms were curvilinear, the slope decreasing with increasing concentration.
This leads to the porosity decreasing with increasing bed-to-particle diameter ratio.
The specific surface area of the samples was a function of particle size, decreasing with increasing particle size.
The tractive efficiency was found to increase with increasing dynamic axle load while decreasing with increasing tire inflation pressure.
Stability of the antigen was dependent on formaldehyde concentration, with antigen stability decreasing with increasing formaldehyde concentration.
Furthermore, the friction coefficient can be decreasing with increasing temperature, and a high hardness even at elevated temperatures is provided.
This was true despite the fact that the initial free volume was actually decreasing with increasing elongation.
The coatings exhibited non-Amontonian friction behavior, with the friction coefficient decreasing with increasing Hertzian contact stress.
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