Kilowatt-hours to Electronvolts (kWh to eV)
1 kilowatt-hour equals 2.246943267×10²⁵ electronvolts (rounded).
How to convert kilowatt-hours to electronvolts
To convert kilowatt-hours to electronvolts, multiply the number of kilowatt-hours by 2.246943267×10²⁵. The factor is rounded to 10 significant digits. To go the other way, multiply electronvolts by 4.45049065×10⁻²⁶.
electronvolts = kilowatt-hours × 2.246943267×10²⁵
Example: 10 kilowatt-hours = 2.246943267×10²⁶ electronvolts.
The 'calorie' on food labels is really a kilocalorie. The thermochemical calorie (4.184 J) is used here unless marked IT.
About these units
Kilowatt-hour (kWh)
3.6 million joules, the energy used by a 1,000-watt appliance in an hour. The billing unit for household electricity.
Before it was a line on every power bill, the kilowatt-hour had a British nickname: the Board of Trade unit, abbreviated B.T.U. after the government body that regulated the electricity industry until 1942, when the Ministry of Power took over. In India it is still often called simply a unit, and a million of them, written MU, is a gigawatt-hour.
A kilowatt-hour is the energy of a 1 kW device running for an hour, which is 3.6 MJ, or about 3,412 British thermal units. A 100 W television watched for 10 hours uses one, and boiling a liter of water in an electric kettle takes about 0.1. In 2020 the average US household used 893 kWh a month, an average continuous draw of about 1.22 kW.
Utilities multiply the kilowatt-hours consumed by a price per kWh, and larger customers may also pay for peak demand. One common error is writing kW/h, which would mean kilowatts per hour, a rate of change of power, not energy.
1 kilowatt-hour = 3,600,000 joules (exactly).
Sources: Wikipedia: Kilowatt-hour; Wikipedia: British thermal unit; Wikipedia: Watt-hour
Electronvolt (eV)
Exactly 1.602176634×10⁻¹⁹ joules, the energy gained by an electron moving through one volt. Used in atomic and particle physics.
Particle physicists adopted this unit because a charged particle crossing a voltage V gains energy qV, so an electron accelerated through one volt in a vacuum gains exactly one electronvolt. Since the 2019 revision of the SI, the elementary charge is fixed, which makes 1 eV exactly 1.602176634 x 10^-19 J. The NIST appendix page still shows a rounded, non-exact value, reflecting the time before this redefinition. The unit is not part of the SI itself.
It suits the atomic world. Visible photons carry roughly 1.65 to 3.26 eV, green light at 532 nm is about 2.33 eV, and ionising hydrogen needs 13.6 eV. Molecular bonds are on the order of 1 to 10 eV each, and thermal motion at 20 degrees Celsius corresponds to about 0.025 eV. Particle masses are also quoted in eV/c squared, so the proton is about 938 million of them. Larger multiples such as keV, MeV and GeV extend the scale upward.
1 electronvolt = 1.602176634×10⁻¹⁹ joules (exactly).
Sources: Wikipedia: Electronvolt; NIST SP 811, Appendix B.8 (energy conversion factors)
Related conversions
- Electronvolts to kilowatt-hours (reverse)
- Kilowatt-hours to joules
- Kilowatt-hours to kilojoules
- Kilowatt-hours to watt-hours
- Kilowatt-hours to British thermal units
- Kilowatt-hours to calories
- Kilowatt-hours to kilocalories
- Kilowatt-hours to megajoules
- Kilowatt-hours to gigajoules
- Kilowatt-hours to megawatt-hours
- Kilowatt-hours to foot-pounds
- Kilowatt-hours to millijoules
- Kilowatt-hours to kiloelectronvolts
- Joules to electronvolts
- Kilojoules to electronvolts
- Watt-hours to electronvolts
- British thermal units to electronvolts
- Calories to electronvolts
- Kilocalories to electronvolts
See all energy units.