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The flow rate through the system was governed by the BioSampler.
The flow rate through a centrifugal pump depends on the pressure against which it operates.
Higher altitudes lead to lower air-inlet temperatures and pressures and reduce the mass flow rate through the engine.
Moreover, the cut-off value varies with the flow rate through an impactor nozzle.
Measuring the flow rate through sewer networks is necessary for a number of reasons.
Linear estimates of the resonant air chamber volume and flow rate through the pump are derived.
The flow rate through each nozzle is controlled by a centrally located, carefully shaped spear or needle that slides forward or backward as controlled by a hydraulic servomotor.
Oxygen provision to the biomass in the chamber was determined as a function of pressure of inlet oxygen and media flow rate through the chamber.
Temperature profiles were obtained by measuring the probe flow rate through the choked orifice.
Cell suspensions were passed at a predetermined flow rate through biodegradable polymer layers that contained tapered microholes in a massively parallel process.
The operating conditions studied were: ratio of water to dry air mass flow rate through the system, humidifier inlet absolute humidity, dry air mass flow rate through the system and solar irradiation or humidifier inlet air temperature.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com