flow rate units conversion
Amount: 1 kilogram (water mass) per second (kg/sec) of flow rate
Equals: 31,536,000,000.00 cubic centimeters per year (cm3/yr , cc/yr) in flow rate
Converting kilogram (water mass) per second to cubic centimeters per year value in the flow rate units scale.
TOGGLE : from cubic centimeters per year into kilograms (water mass) per second in the other way around.
CONVERT : between other flow rate measuring units - complete list.
How many cubic centimeters per year are in 1 kilogram (water mass) per second? The answer is: 1 kg/sec equals 31,536,000,000.00 cm3/yr , cc/yr
31,536,000,000.00 cm3/yr , cc/yr is converted to 1 of what?
The cubic centimeters per year unit number 31,536,000,000.00 cm3/yr , cc/yr converts to 1 kg/sec, one kilogram (water mass) per second. It is the EQUAL flow rate value of 1 kilogram (water mass) per second but in the cubic centimeters per year flow rate unit alternative.
kg/sec/cm3/yr , cc/yr flow rate conversion result | ||||
From | Symbol | Equals | Result | Symbol |
1 | kg/sec | = | 31,536,000,000.00 | cm3/yr , cc/yr |
Conversion chart - kilograms (water mass) per second to cubic centimeters per year
1 kilogram (water mass) per second to cubic centimeters per year = 31,536,000,000.00 cm3/yr , cc/yr
2 kilograms (water mass) per second to cubic centimeters per year = 63,072,000,000.00 cm3/yr , cc/yr
3 kilograms (water mass) per second to cubic centimeters per year = 94,608,000,000.00 cm3/yr , cc/yr
4 kilograms (water mass) per second to cubic centimeters per year = 126,144,000,000.00 cm3/yr , cc/yr
5 kilograms (water mass) per second to cubic centimeters per year = 157,680,000,000.00 cm3/yr , cc/yr
6 kilograms (water mass) per second to cubic centimeters per year = 189,216,000,000.00 cm3/yr , cc/yr
7 kilograms (water mass) per second to cubic centimeters per year = 220,752,000,000.00 cm3/yr , cc/yr
8 kilograms (water mass) per second to cubic centimeters per year = 252,288,000,000.00 cm3/yr , cc/yr
9 kilograms (water mass) per second to cubic centimeters per year = 283,824,000,000.00 cm3/yr , cc/yr
10 kilograms (water mass) per second to cubic centimeters per year = 315,360,000,000.00 cm3/yr , cc/yr
11 kilograms (water mass) per second to cubic centimeters per year = 346,896,000,000.00 cm3/yr , cc/yr
12 kilograms (water mass) per second to cubic centimeters per year = 378,432,000,000.00 cm3/yr , cc/yr
13 kilograms (water mass) per second to cubic centimeters per year = 409,968,000,000.00 cm3/yr , cc/yr
14 kilograms (water mass) per second to cubic centimeters per year = 441,504,000,000.00 cm3/yr , cc/yr
15 kilograms (water mass) per second to cubic centimeters per year = 473,040,000,000.00 cm3/yr , cc/yr
Category: main menu • flow rate menu • Kilograms (water mass) per second
Convert flow rate of kilogram (water mass) per second (kg/sec) and cubic centimeters per year (cm3/yr , cc/yr) units in reverse from cubic centimeters per year into kilograms (water mass) per second.
Flow rate. Gas & Liquids.
This unit-to-unit calculator is based on conversion for one pair of two flow rate units. For a whole set of multiple units for volume and mass flow on one page, try the Multi-Unit converter tool which has built in all flowing rate unit-variations. Page with flow rate by mass unit pairs exchange.
Converter type: flow rate units
First unit: kilogram (water mass) per second (kg/sec) is used for measuring flow rate.
Second: cubic centimeter per year (cm3/yr , cc/yr) is unit of flow rate.
QUESTION:
15 kg/sec = ? cm3/yr , cc/yr
ANSWER:
15 kg/sec = 473,040,000,000.00 cm3/yr , cc/yr
Abbreviation, or prefix, for kilogram (water mass) per second is:
kg/sec
Abbreviation for cubic centimeter per year is:
cm3/yr , cc/yr
Other applications for this flow rate calculator ...
With the above mentioned two-units calculating service it provides, this flow rate converter proved to be useful also as a teaching tool:
1. in practicing kilograms (water mass) per second and cubic centimeters per year ( kg/sec vs. cm3/yr , cc/yr ) measures exchange.
2. for conversion factors between unit pairs.
3. work with flow rate's values and properties.