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The kilogram-force (kgf or kg F), or kilopond (kp, from Latin: pondus, lit. 'weight'), is a non-standard gravitational metric unit of force . It is not accepted for use with the International System of Units (SI) [ 1 ] and is deprecated for most uses.
A newton is defined as 1 kg⋅m/s 2 (it is a named derived unit defined in terms of the SI base units). [1]: 137 One newton is, therefore, the force needed to accelerate one kilogram of mass at the rate of one metre per second squared in the direction of the applied force.
newton: N N 1.0 N (0.22 lb f) N lb-f ... kgf kilopond: kp kp gram-force: g-f g f: 1.0 ...
≡ 1 kgf / 1 m/s 2 = 9.806 65 kg: kilogram ... newton (SI unit) N A force capable of giving a mass of one kilogram an acceleration of one metre per second per second.
The kilogram-force (kgf), also kilopond (kp), is a unit of force (9.806 65 N). [8] The hyl is a unit of mass equal to 1 kgf⋅m −1 ⋅s 2 (9.806 65 kg). The poncelet (p) is a unit of power equal to 1 kgf⋅m⋅s −1 (980.665 W). The technical atmosphere (at) is a (non-coherent) unit of pressure equal to 1 kgf⋅cm −2 (98 066.5 Pa).
The pound-force has a metric counterpart, less commonly used than the newton: the kilogram-force (kgf) (sometimes kilopond), is the force exerted by standard gravity on one kilogram of mass. The kilogram-force leads to an alternate, but rarely used unit of mass: the metric slug (sometimes mug or hyl) is that mass that accelerates at 1 m·s −2 ...
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When an object's weight (its gravitational force) is expressed in "kilograms", this actually refers to the kilogram-force (kgf or kg-f), also known as the kilopond (kp), which is a non-SI unit of force. All objects on the Earth's surface are subject to a gravitational acceleration of approximately 9.8 m/s 2.