Kilogram-force Meters to Joules (kgf⋅m to J)
1 kilogram-force meter equals 9.80665 joules exactly.
How to convert kilogram-force meters to joules
To convert kilogram-force meters to joules, multiply the number of kilogram-force meters by 9.80665. This factor is exact. To go the other way, multiply joules by 0.1019716213 (rounded).
joules = kilogram-force meters × 9.80665
Example: 10 kilogram-force meters = 98.0665 joules.
The 'calorie' on food labels is really a kilocalorie. The thermochemical calorie (4.184 J) is used here unless marked IT.
About these units
Kilogram-force Meter (kgf⋅m)
Exactly 9.80665 joules, the work of lifting one kilogram by one meter on Earth. Common in older engineering and for torque in Asia.
Kilogram-force meter is the work done when a force of one kilogram-force acts through one meter, a unit of the old gravitational metric system of engineers. Since a kilogram-force is 9.80665 newtons, it equals 9.80665 joules, using the conventional standard gravity adopted in 1901.
Engineers favored it because weights in kilograms could be multiplied directly by heights in meters to give lifting work. The same combination is also used for torque, where NIST lists it against the newton meter with the same factor of 9.80665, and it is sometimes written as kilopond meter.
The kilogram-force was never part of the International System of Units, and the newton replaced it after 1948. Even so, older motor and tool specifications, especially from Asian and European sources, still quote torque in kgf m, and dividing by about ten gives a rough figure in newton meters.
1 kilogram-force meter = 9.80665 joules (exactly).
Sources: Wikipedia: Kilogram-force; NIST SP 811, Appendix B.8 conversion factors; Wikipedia: Centimetre-gram-second system of units
Joule (J)
The SI unit of energy: the work done by a force of one newton over one meter, or one watt for one second.
James Prescott Joule was born in Salford on 24 December 1818, the son of a wealthy brewer, and later ran the family brewery while treating science as a serious hobby. In June 1845 he told a British Association meeting in Cambridge about his best-known experiment: a falling weight turned a paddle wheel inside an insulated barrel of water, and the water warmed up. Mechanical work turned into heat at a fixed rate, which supported energy conservation and undermined the caloric theory of heat.
The unit came later. On 23 August 1882 Carl Wilhelm Siemens proposed at a British Association meeting that a unit of heat equal to 10 million ergs be named the joule, and in 1889 the second International Electrical Congress adopted it alongside the watt. Joule died that same year. In 1948 the CGPM added that the joule should be preferred to the calorie as the unit of heat, and it entered the SI in 1960.
For scale, one joule is about the energy needed to lift an apple of roughly 102 g by one meter. A 56 g tennis ball moving at 6 m/s carries about one joule of kinetic energy.
The joule is the reference unit for energy on this site.
Sources: Wikipedia: Joule; Wikipedia: James Prescott Joule
Related conversions
- Joules to kilogram-force meters (reverse)
- Kilogram-force meters to kilojoules
- Kilogram-force meters to watt-hours
- Kilogram-force meters to kilowatt-hours
- Kilogram-force meters to British thermal units
- Kilogram-force meters to calories
- Kilogram-force meters to kilocalories
- Kilojoules to joules
- Watt-hours to joules
- Kilowatt-hours to joules
- British thermal units to joules
- Calories to joules
- Kilocalories to joules
- Megajoules to joules
- Gigajoules to joules
- Megawatt-hours to joules
- Foot-pounds to joules
- Millijoules to joules
- Electronvolts to joules
See all energy units.