British Thermal Unit to Therm Converter
1 BTU = 0.0000100000 thm
FORMULA
1 BTU = 0.0000100000 thm
CONVERSION TABLE
| British Thermal Unit (BTU) | Therm (thm) |
|---|---|
| 1 BTU | 0.00001 thm |
| 5 BTU | 0.00005 thm |
| 10 BTU | 0.0001 thm |
| 25 BTU | 0.00025 thm |
| 50 BTU | 0.0005 thm |
| 100 BTU | 0.001 thm |
| 250 BTU | 0.0025 thm |
| 500 BTU | 0.005 thm |
| 1,000 BTU | 0.01 thm |
COMMON VALUES
RELATED CONVERSIONS
About British Thermal Unit (BTU)
The British Thermal Unit is the energy needed to raise one pound of water by one degree Fahrenheit. Despite being an imperial unit, the BTU remains standard in the US for rating HVAC systems (a typical home furnace produces 80,000-100,000 BTU/h) and for natural gas pricing.
About Therm (thm)
Equal to 100,000 BTU or approximately 105.5 MJ, the therm is the standard billing unit for natural gas in the United States and United Kingdom. Monthly gas bills list consumption in therms, and one therm is roughly the energy in 100 cubic feet of natural gas at standard conditions.
How to Convert British Thermal Unit to Therm
The conversion formula is: 1 BTU = 0.0000100000 thm. To convert from British Thermal Unit (BTU) to Therm (thm), use the formula above or the interactive converter at the top of this page.
FAQ
How many Therm in 1 British Thermal Unit?
1 British Thermal Unit (BTU) equals 0.0000100000 Therm (thm).
How to convert British Thermal Unit to Therm?
Multiply the British Thermal Unit value by 0.0000100000 to get the equivalent in Therm. Formula: 1 BTU = 0.0000100000 thm
What is the formula for British Thermal Unit to Therm conversion?
1 BTU = 0.0000100000 thm
Glossary
-
Calorie
A unit of energy. The small calorie (cal) heats 1g of water by 1°C; the food Calorie (kcal) is 1000 small calories.
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BTU (British Thermal Unit)
The amount of heat needed to raise the temperature of one pound of water by one degree Fahrenheit.
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Electronvolt
A unit of energy equal to the kinetic energy gained by an electron accelerated through 1 volt.
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Joule
The SI unit of energy, equal to the work done by a force of one newton acting over a distance of one meter (1 J = 1 N·m = 1 kg·m²/s²).