Convert cubic centimeter/second to cubic inch/hour [in^3/h] Online | Free flow Converter
Centimeter/Second [cm³/s]
Cubic centimeter per second (cm³/s) is a unit of volumetric flow rate that measures the volume of a fluid—liquid or gas—passing through a system every second. One cubic centimeter represents a cube with sides of one centimeter, so cm³/s indicates how many such tiny volumes flow each second. This unit is widely used in laboratory experiments, microfluidics, medical devices, and precision engineering where rapid yet small-scale fluid flows need to be monitored and controlled. For example, in medical applications, devices such as infusion pumps or respiratory equipment often rely on cm³/s measurements to ensure exact fluid or gas delivery. In microfluidics and chemical laboratories, reagents or solvents are dispensed at rates specified in cm³/s to maintain reaction accuracy and consistency. Compared to cm³/min, this unit allows for finer temporal resolution, enabling real-time monitoring and precise adjustment of flow rates. Using cubic centimeters per second, scientists, engineers, and technicians can track, regulate, and optimize fluid movement with high accuracy, ensuring efficiency, safety, and reliable performance in both experimental and industrial applications where even small variations in flow can significantly affect outcomes.
Cubic Inch/Hour [in³/h]
Cubic inch per hour [in³/h] is a unit of volumetric flow rate that measures the volume of fluid or material passing through a system every hour, based on the cubic inch. One cubic inch equals approximately 16.387 milliliters. When expressed per hour, in³/h is commonly used in laboratory experiments, small-scale industrial processes, and precision fluid handling where very low flow rates need to be monitored accurately. For example, in microfluidic devices or chemical dosing systems, a flow of 100 in³/h allows precise control of reagents or liquids over time. It is also used in specialized lubrication systems, medical fluid delivery, and other applications where small, consistent volumes must be maintained. Compared to in³/day, cubic inch per hour provides finer temporal resolution, enabling operators to monitor and adjust flow in near real time. Using cubic inches per hour allows engineers, scientists, and technicians to measure, regulate, and optimize small-volume flows, ensuring accuracy, safety, and efficiency in laboratory, medical, and industrial applications requiring precise fluid control.
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