Convert liter/minute [L/min] to cubic centimeter/hour Online | Free flow Converter

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/Minute [L/min]


Liter per minute (L/min) is a unit of volumetric flow rate that measures the volume of liquid passing through a system every minute. One liter equals 1,000 cubic centimeters, so L/min quantifies how many liters flow per sixty seconds. This unit is widely used in industrial processes, water distribution, chemical dosing, HVAC systems, and medical applications where higher or more immediate fluid flow rates are important. For example, in water supply systems, L/min is used to specify the capacity of pumps, pipes, and faucets to ensure adequate water delivery. In chemical industries, it helps regulate the precise addition of liquid reagents in processes that require real-time monitoring. In medical applications, L/min is used to control intravenous fluid delivery or respiratory gas flow in ventilators, ensuring patient safety and accurate treatment. Compared to L/h, liter per minute allows for finer, real-time control of fluid movement, making it suitable for both industrial and healthcare settings. Using L/min enables engineers, technicians, and medical professionals to measure, manage, and optimize fluid flow efficiently, ensuring precision, safety, and reliability in operations that depend on controlled liquid movement.


Centimeter/Hour [cm³/h]


Cubic centimeter per hour (cm³/h) is a unit of volumetric flow rate that measures the volume of a fluid—liquid or gas—moving through a system over one hour. One cubic centimeter is the volume of a cube with sides of one centimeter, so cm³/h quantifies how many such small volumes flow every hour. This unit is widely used in laboratory experiments, medical infusions, chemical dosing, and precision fluid systems where very low flow rates must be accurately controlled. For example, in medical applications, intravenous medication or nutrient delivery is often regulated in cm³/h to ensure patients receive the exact required dose over time. In chemical or analytical laboratories, pumps dispensing reagents rely on cm³/h measurements for accurate reactions and experiments. Compared to cm³/d, this unit provides finer resolution for processes that require monitoring on an hourly basis, making it ideal for controlled, slow, and continuous flows. Using cubic centimeters per hour allows scientists, engineers, and technicians to measure, manage, and optimize fluid delivery with high precision, ensuring accuracy, safety, and consistency in applications where small variations can significantly affect results.



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