Therm to Electronvolt Converter
1 thm = 6.585141E+26 eV
FORMULA
1 thm = 6.585141E+26 eV
CONVERSION TABLE
| Therm (thm) | Electronvolt (eV) |
|---|---|
| 1 thm | 6.585141 × 10²⁶ eV |
| 5 thm | 3.29257 × 10²⁷ eV |
| 10 thm | 6.585141 × 10²⁷ eV |
| 25 thm | 1.646285 × 10²⁸ eV |
| 50 thm | 3.29257 × 10²⁸ eV |
| 100 thm | 6.585141 × 10²⁸ eV |
| 250 thm | 1.646285 × 10²⁹ eV |
| 500 thm | 3.29257 × 10²⁹ eV |
| 1,000 thm | 6.585141 × 10²⁹ eV |
COMMON VALUES
RELATED CONVERSIONS
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.
About Electronvolt (eV)
The energy gained by a single electron crossing a one-volt electric potential difference, equal to approximately 1.602 x 10^-19 joules. Particle physicists use electronvolts and their multiples (keV, MeV, GeV, TeV) to express particle energies and rest masses -- the proton mass is about 938.3 MeV.
How to Convert Therm to Electronvolt
The conversion formula is: 1 thm = 6.585141E+26 eV. To convert from Therm (thm) to Electronvolt (eV), use the formula above or the interactive converter at the top of this page.
FAQ
How many Electronvolt in 1 Therm?
1 Therm (thm) equals 6.585141E+26 Electronvolt (eV).
How to convert Therm to Electronvolt?
Multiply the Therm value by 6.585141E+26 to get the equivalent in Electronvolt. Formula: 1 thm = 6.585141E+26 eV
What is the formula for Therm to Electronvolt conversion?
1 thm = 6.585141E+26 eV
Glossary
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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).