- Force to convert
- 1
- From unit
- Kilogram-force (kgf)
- To unit
- Newton (N)
9.806650
Open with these values9.806650
Result: 9.806650Kilogram-force and pound-force are definitions, not measurements: both use the fixed standard gravity of 9.80665 m/s². So 1 kgf is exactly 9.80665 N, and 1 lbf is 0.45359237 kg × 9.80665, exactly 4.4482216152605 N.
| Unit | Symbol | In N | Typical use |
|---|---|---|---|
| Newton | N | 1 | The SI unit of force |
| Kilonewton | kN | 1,000 | Structural loads, crane capacity |
| Dyne | dyn | 0.00001 | CGS unit, surface tension |
| Kilogram-force | kgf | 9.80665 | Weight of a 1 kg mass |
| Gram-force | gf | 0.00980665 | Small springs and contacts |
| Pound-force | lbf | 4.448221615 | US engineering loads |
| Ounce-force | ozf | 0.278013851 | Switch and keyboard actuation |
9.806650
Open with these values22.480894
Open with these values4.448222
Open with these valuesresult = value × (newtons per from-unit) ÷ (newtons per to-unit)
| One unit | Expressed in | Exact factor |
|---|---|---|
| 1 kgf | N | 9.80665 |
| 1 lbf | N | 4.4482216152605 |
| 1 ozf | N | 0.278014 |
| 1 dyn | N | 0.00001 |
| 1 kN | N | 1000 |
Enter your value, choose the unit you have under From unit and the unit you want under To unit. The value is turned into newtons first and then into the target unit, so any pair converts in one step.
Multiply the kgf value by exactly 9.80665, so 1 kgf is 9.80665 N. A kilogram-force is the weight of a 1 kg mass under standard gravity, and that gravity is a fixed convention rather than a local measurement.
Divide the newton value by 4.4482216, so 1 N is about 0.224809 lbf and 1 lbf is about 4.4482 N. Pound-force is the unit most US engineering uses for weight and applied loads.
The newton is the SI unit of force — the force needed to accelerate a 1 kg mass at 1 m/s². For a feel of scale, holding a small apple takes about 1 N, and a 1 kg bag of sugar weighs about 9.81 N, which is 1 kgf.
The dyne is the unit of force in the older CGS system, equal to exactly 0.00001 newtons. It still turns up in physics and surface-tension work, where 1 N is 100000 dyn.
Information, not professional advice.
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