Convert hundred cubic foot of natural gas to calorie [15 °C]


hundred cubic foot of natural gas
calories


Did you mean to convert hundred cubic foot of natural gas to calorie [15 °C]
calorie [I.T.]
calorie [nutritional]
calorie [thermochemical]

More information from the unit converter

How many hundred cubic foot of natural gas in 1 calories? The answer is 3.8500735835173E-8. We assume you are converting between hundred cubic foot of natural gas and calorie [15 °C]. You can view more details on each measurement unit: hundred cubic foot of natural gas or calories The SI derived unit for energy is the joule. 1 joule is equal to 9.1979396615158E-9 hundred cubic foot of natural gas, or 0.23890295761862 calories. Note that rounding errors may occur, so always check the results. Use this page to learn how to convert between hundred cubic foot of natural gas and calories. Type in your own numbers in the form to convert the units!



Quick conversion chart of hundred cubic foot of natural gas to calories

1 hundred cubic foot of natural gas to calories = 25973529.5523 calories

2 hundred cubic foot of natural gas to calories = 51947059.10459 calories

3 hundred cubic foot of natural gas to calories = 77920588.65689 calories

4 hundred cubic foot of natural gas to calories = 103894118.20918 calories

5 hundred cubic foot of natural gas to calories = 129867647.76148 calories

6 hundred cubic foot of natural gas to calories = 155841177.31378 calories

7 hundred cubic foot of natural gas to calories = 181814706.86607 calories

8 hundred cubic foot of natural gas to calories = 207788236.41837 calories

9 hundred cubic foot of natural gas to calories = 233761765.97066 calories

10 hundred cubic foot of natural gas to calories = 259735295.52296 calories


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Common energy conversions


Definition: Calorie

15 °C calorie: the amount of energy required to warm 1 g of air-free water from 14.5 °C to 15.5 °C at a constant pressure of 101.325 kPa (1 atm). Experimental values of this calorie ranged from 4.1852 J to 4.1858 J. The CIPM in 1950 published a mean experimental value of 4.1855 J, noting an uncertainty of 0.0005 J.


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