Cups per second (cup/s) | Cubic Centimeters per second (cm3/s) |
---|---|
0 | 0 |
1 | 236.58823651289 |
2 | 473.17647302579 |
3 | 709.76470953868 |
4 | 946.35294605158 |
5 | 1182.9411825645 |
6 | 1419.5294190774 |
7 | 1656.1176555903 |
8 | 1892.7058921032 |
9 | 2129.2941286161 |
10 | 2365.8823651289 |
20 | 4731.7647302579 |
30 | 7097.6470953868 |
40 | 9463.5294605158 |
50 | 11829.411825645 |
60 | 14195.294190774 |
70 | 16561.176555903 |
80 | 18927.058921032 |
90 | 21292.941286161 |
100 | 23658.823651289 |
1000 | 236588.23651289 |
To convert from cups per second to cubic centimeters per second, you need to know the conversion factor between cups and cubic centimeters.
1 US cup = 236.5882365 cubic centimeters (cm³).
So, to convert 1 cup per second to cubic centimeters per second:
Therefore, 1 cup per second is equivalent to 236.5882365 cubic centimeters per second.
Example: If a coffee maker dispenses 0.5 cups of coffee per second, that would be equivalent to dispensing 118.29411825 cubic centimeters of coffee per second.
Example: A large water dispenser might fill bottles at 2 cups per second, which is identical to 473.176473 cubic centimeters per second.
Example: An industrial-grade fire hose might expel water at a rate of 10 cups per second, discharging 2365.882365 cubic centimeters per second.
These real-world examples can help you understand how different flow rates might appear in practical applications and their equivalent volume in cubic centimeters per second.
See below section for step by step unit conversion with formulas and explanations. Please refer to the table below for a list of all the Cubic Centimeters per second to other unit conversions.
Cups per second is a unit of measure for volume flow rate, indicating the amount of volume that passes through a cross-sectional area per unit of time. It's a measure of how quickly something is flowing.
Cups per second (cups/s) is a unit used to quantify the volume of a substance that passes through a specific point or area in one second. It's part of a broader family of volume flow rate units, which also includes liters per second, gallons per minute, and cubic meters per hour.
Cups per second is derived by dividing a volume measurement (in cups) by a time measurement (in seconds).
Therefore, 1 cup/s means that one cup of a substance flows past a certain point in one second.
The general formula for volume flow rate () is:
Where:
While cups per second might not be a standard industrial measurement, it can be useful for illustrating flow rates in relatable terms:
There isn't a specific law or famous figure directly associated with cups per second as a unit. However, the broader study of fluid dynamics has roots in the work of scientists and engineers like:
Understanding volume flow rate is crucial in various fields:
Cubic centimeters per second (cc/s or ) is a unit of volumetric flow rate. It describes the volume of a substance that passes through a given area per unit of time. In this case, it represents the volume in cubic centimeters that flows every second. This unit is often used when dealing with small flow rates, as cubic meters per second would be too large to be practical.
A cubic centimeter () is a unit of volume equivalent to a milliliter (mL). Imagine a cube with each side measuring one centimeter. The space contained within that cube is one cubic centimeter.
The "per second" part of the unit indicates the rate at which the cubic centimeters are flowing. So, 1 cc/s means one cubic centimeter of a substance is passing a specific point every second.
The volumetric flow rate (Q) can be calculated using the following formula:
Where:
Cubic centimeters per second can be converted to other units of flow rate. Here are a few common conversions:
While there isn't a specific "law" directly associated with cubic centimeters per second, it's a fundamental unit in fluid mechanics and is used extensively in various fields:
The concept of cubic centimeters per second ties into several important physical laws:
Continuity Equation: This equation states that for incompressible fluids, the mass flow rate is constant throughout a closed system. The continuity equation is expressed as:
where is the cross-sectional area and is the flow velocity.
Khan Academy's explanation of the Continuity Equation further details the relationship between area, velocity, and flow rate.
Bernoulli's Principle: This principle relates the pressure, velocity, and height of a fluid in a flowing system. It states that an increase in the speed of a fluid occurs simultaneously with a decrease in pressure or a decrease in the fluid's potential energy.
More information on Bernoulli's Principle can be found here.
Convert 1 cup/s to other units | Result |
---|---|
Cups per second to Cubic Millimeters per second (cup/s to mm3/s) | 236588.2365129 |
Cups per second to Cubic Centimeters per second (cup/s to cm3/s) | 236.58823651289 |
Cups per second to Cubic Decimeters per second (cup/s to dm3/s) | 0.2365882365129 |
Cups per second to Cubic Decimeters per minute (cup/s to dm3/min) | 14.195294190774 |
Cups per second to Cubic Decimeters per hour (cup/s to dm3/h) | 851.71765144642 |
Cups per second to Cubic Decimeters per day (cup/s to dm3/d) | 20441.223634714 |
Cups per second to Cubic Decimeters per year (cup/s to dm3/a) | 7466156.9325793 |
Cups per second to Millilitres per second (cup/s to ml/s) | 236.58823651289 |
Cups per second to Centilitres per second (cup/s to cl/s) | 23.658823651289 |
Cups per second to Decilitres per second (cup/s to dl/s) | 2.3658823651289 |
Cups per second to Litres per second (cup/s to l/s) | 0.2365882365129 |
Cups per second to Litres per minute (cup/s to l/min) | 14.195294190774 |
Cups per second to Litres per hour (cup/s to l/h) | 851.71765144642 |
Cups per second to Litres per day (cup/s to l/d) | 20441.223634714 |
Cups per second to Litres per year (cup/s to l/a) | 7466156.9325793 |
Cups per second to Kilolitres per second (cup/s to kl/s) | 0.0002365882365129 |
Cups per second to Kilolitres per minute (cup/s to kl/min) | 0.01419529419077 |
Cups per second to Kilolitres per hour (cup/s to kl/h) | 0.8517176514464 |
Cups per second to Cubic meters per second (cup/s to m3/s) | 0.0002365882365129 |
Cups per second to Cubic meters per minute (cup/s to m3/min) | 0.01419529419077 |
Cups per second to Cubic meters per hour (cup/s to m3/h) | 0.8517176514464 |
Cups per second to Cubic meters per day (cup/s to m3/d) | 20.441223634714 |
Cups per second to Cubic meters per year (cup/s to m3/a) | 7466.1569325793 |
Cups per second to Cubic kilometers per second (cup/s to km3/s) | 2.3658823651289e-13 |
Cups per second to Teaspoons per second (cup/s to tsp/s) | 48 |
Cups per second to Tablespoons per second (cup/s to Tbs/s) | 16 |
Cups per second to Cubic inches per second (cup/s to in3/s) | 14.437566548158 |
Cups per second to Cubic inches per minute (cup/s to in3/min) | 866.2539928895 |
Cups per second to Cubic inches per hour (cup/s to in3/h) | 51975.23957337 |
Cups per second to Fluid Ounces per second (cup/s to fl-oz/s) | 8 |
Cups per second to Fluid Ounces per minute (cup/s to fl-oz/min) | 480 |
Cups per second to Fluid Ounces per hour (cup/s to fl-oz/h) | 28800 |
Cups per second to Pints per second (cup/s to pnt/s) | 0.5 |
Cups per second to Pints per minute (cup/s to pnt/min) | 30 |
Cups per second to Pints per hour (cup/s to pnt/h) | 1800 |
Cups per second to Quarts per second (cup/s to qt/s) | 0.25 |
Cups per second to Gallons per second (cup/s to gal/s) | 0.0625 |
Cups per second to Gallons per minute (cup/s to gal/min) | 3.75 |
Cups per second to Gallons per hour (cup/s to gal/h) | 225 |
Cups per second to Cubic feet per second (cup/s to ft3/s) | 0.008355039028476 |
Cups per second to Cubic feet per minute (cup/s to ft3/min) | 0.5013023417086 |
Cups per second to Cubic feet per hour (cup/s to ft3/h) | 30.078140502514 |
Cups per second to Cubic yards per second (cup/s to yd3/s) | 0.0003094454350996 |
Cups per second to Cubic yards per minute (cup/s to yd3/min) | 0.01856672610598 |
Cups per second to Cubic yards per hour (cup/s to yd3/h) | 1.1140035663586 |