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The DC electrical resistivity was found to decrease up to x = 0.3 and increase thereafter.
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PMS777, a tetrahydrofuran derivative, designed as a dual PAF and acetylcholinesterase inhibitor, was found to decrease ROS (up to 32%) and NO production (up to 5 times), TNFα release (33%).
Final film width was found to decrease as take up velocity increase and, surprisingly, as extrusion flow rate increases.
The polymerization rate was significantly suppressed and the Tg of the cured network was found to decrease by up to 10 °C, depending on the monomer formulation.
The dielectric loss was found to decrease with frequency up to 10 KHz for all the compositions, and the loss was found to be very low (<0.4) at a frequency of 100 KHz for the composition Co0.5 Mn0.25Zn0.25Fe2O4 (Co0.5
In contrast, tacrine was found to decrease ROS production (57% up to 102%) and TNFα level (up to 30%).
Fatigue thresholds were found to decrease with increasing temperature up to 1200°C; behavior at 1300°C, however, was similar to that at 1200°C.
Tufting reinforcements were found to decrease the damage area up to 4 times (transversal tufting) when compared to non-tufted laminates.
Also noteworthy is that seizure induction in experimental epilepsy was found to decrease adenosine extracellular concentrations through an up-regulation of astrocytic enzyme ADK that controls ambient adenosine levels (Boison, 2005), while genetic reduction of ADK was observed to prevent seizures (Li et al., 2008).
The hardness of the alloy was found to decrease with increasing exposure temperature up to the L12 solvus and correlated with the evolution of the L12 precipitates, the alloy grain size and the fraction of the discontinuously formed L12 phase.
The values of percentage of non-empty stomach is found to decrease with increase in nanoparticle concentration up to 500 μg/L.
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CEO of Professional Science Editing for Scientists @ prosciediting.com