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The pumping performance of the serial-connected two micropumps is heavily dependent on the phase shift.
From rheological analysis, the plastic viscosity of the lubrication layer plays a governing role in determining the pumping performance.
The degree of transversal asymmetry of a buzzer in space and time positively correlates with longitudinal asymmetry for pumping performance.
Because the pumping performance is directional, the micropump characteristics were evaluated at different actuation points along the membrane.
For this application, pumping performance and essential hydrodynamic features of air-lift pump with high submergence ratio are investigated experimentally.
For this reason the pumping performance is critical, but also the nozzle design has a significant impact.
The effects of pump depth, fluid temperature, applied voltage and bulk ionic concentration on the pumping performance were studied.
The factors affecting the frequency and force of heart muscle contraction are critical in determining the normal pumping performance of the heart and its response to changes in demand.
The piston/cylinder system is the core of the swash plate pump, and its lubrication characteristics greatly affect the overall pumping performance.
The divertors were designed to optimize pumping performance and to withstand the electromagnetic loads from both halo and toroidal, induced currents.
The phase shift has a significant influence on the pumping performance which is increased 186% at the pumping frequency of 1.1 kHz.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com