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A kip is a US customary unit of force. It equals 1000 pounds-force , and is used primarily by structural engineers to indicate forces where the value represented in pound-force is inefficient. Although uncommon, it is occasionally also considered a unit of mass , equal to 1000 pounds (i.e. one half of a short ton ).
kip; kip-force: kip; kipf; klbf ≡ g 0 × 1000 lb = 4.448 221 615 2605 × 10 3 N: milligrave-force, gravet-force: mgvf; gvtf ≡ g 0 × 1 g = 9.806 65 mN: long ton-force: tnf [citation needed] ≡ g 0 × 1 long ton = 9.964 016 418 183 52 × 10 3 N: newton (SI unit) N A force capable of giving a mass of one kilogram an acceleration of one metre ...
Units for other physical quantities are derived from this set as needed. In English Engineering Units, the pound-mass and the pound-force are distinct base units, and Newton's Second Law of Motion takes the form = where is the acceleration in ft/s 2 and g c = 32.174 lb·ft/(lbf·s 2).
United States customary units form a system of measurement units commonly used in the United States and most U.S. territories [1] since being standardized and adopted in 1832. [2] The United States customary system developed from English units that were in use in the British Empire before the U.S. became an independent country.
Conversion of units is the conversion of the unit of measurement in which a quantity is expressed, typically through a multiplicative conversion factor that changes the unit without changing the quantity. This is also often loosely taken to include replacement of a quantity with a corresponding quantity that describes the same physical property.
The name "kip-force" for the unit of force, and the symbol kipf for that unit, are almost never seen outside lists of conversion factors. Note that you do see phrases such as "a two-kip force is applied"—but in that situation, it is the word force used as a noun and the word kip used as an adjective, not the other way around with kip as the ...
Template: Units of force. 16 languages. ... (9.806 65 m/s 2) as used in the official definition of the kilogram-force is used here for all gravitational units.
In unit systems where force is a derived unit, like in SI units, g c is equal to 1. In unit systems where force is a primary unit, like in imperial and US customary measurement systems , g c may or may not equal 1 depending on the units used, and value other than 1 may be required to obtain correct results. [ 2 ]