
『positive displacement type flow meter|gas flow meter』Related information(v cone flow meter|rotary gas meter|gallon meter|gear meter|metal tube rotameter|glass tube rotameter|nutating disk meter|transit time ultrasonic flow meter|wedge flow meter|pd meters|hydraulic flow meter|ultrasonic water flow meter|water flow meter|air flow meter|magnetic water flow meter|oxygen flow meter|gas flow meter|argon flow meter|air velocity meter|gasoline flow meter|fuel flow meter|ultrasonic water meter|digital water meter|nitrogen flow meter|solid flow meter|Oxygen tank flow meter|digital water flow meter|diesel fuel flow meter|steam flow meter|02 flow meter|compressed air flow meter|oil flow meter|liquid flow meter)

1. May I ask how to translate "vortex flowmeter" in English?
Vortex flowmeter: Vortex Flowmeter. Translation of other flowmeters for reference: Electromagnetic flowmeter: Electromagnetic flowmeter. Coriolis mass flowmeter. Open channel flowmeter: Orifice Plate flowmeter. Rotary flowmeter: Rotameter. Turbine flowmeter: Turbine flowmeter. Thermal flowmeter: Calorimetric flowmeter. Volume flowmeter: Positive Displacement (PD) flowmeter. Ultrasonic flowmeter: Ultrasonic flowmeter. Venturi flowmeter: Venturi flowmeter. Thermal mass flowmeter: Thermal Mass flowmeter. Multiphase Flowmeter: Flumes and Weirs Flowmeter
2. Practical Principles and Operating Steps of Pipette
The practical principle and operation steps of pipettes. The working principle of pipettes is mainly divided into two categories based on their working principles: gas piston pipettes and external piston pipettes. Air push: The working principle is to push the piston through the expansion and contraction of the spring, remove some air, use atmospheric pressure to suck in liquid, and then push the air to discharge the liquid by the piston. There is an air column between the liquid and the piston, which is suitable for conventional aqueous solutions. External piston type pipette (Positive separation): The working principle is to extract and dispense liquid through the continuous movement of the piston inside the pipette or suction head. The piston comes into direct contact with the liquid without an air column. This design is not only suitable for conventional aqueous solutions, but also particularly suitable for problematic liquids such as high viscosity, volatility, and foaming. The operation steps of a pipette include selecting the app


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