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The cell performance was found to increase significantly at a certain, optimal deflection.
Assay performance was found to be satisfactory over a wide range of physiologically relevant pH values.
Under well mixed conditions, the reactor performance was found to increase with increase in catalyst loading.
Performance was found to be at least equivalent to the previously published RETROICOR method.
The catalytic performance was found to be closely related to the palladium surface area.
Tribological performance was found to be strongly related to both the dopant element and dopant concentration.
The residual performance was found to be higher in POFA concrete than in the normal concrete.
Predictive performance was found to depend on the combination of temperature and sodium concentration, with performance for lower temperatures peaking at lower sodium concentrations, and vice versa.
Such techno-economic performance was found to be superior to the CO2 capture system using chemical solvents.
At low current the segments performance was found to slightly decrease for a 10-channel serpentine flow field.
Infiltration performance was found to be related more to site design and environmental factors than material choice.
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