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Foot–pound–second system of units

The foot–pound–second system (FPS system) is a system of units built on three fundamental units: the foot for length, the (avoirdupois) pound for either mass or force (see below), and the second for time.[1]

Variants edit

Collectively, the variants of the FPS system were the most common system in technical publications in English until the middle of the 20th century.[1]

Errors can be avoided and translation between the systems facilitated by labelling all physical quantities consistently with their units. Especially in the context of the FPS system this is sometimes known as the Stroud system after William Stroud, who popularized it.[2]

Three approaches to English units of mass and force or weight[3][4]
Base Force Weight Mass
2nd law of motion m = F/a F = Wa/g F = ma
System British Gravitational (BG) English Engineering (EE) Absolute English (AE)
Acceleration (a) ft/s2 ft/s2 ft/s2
Mass (m) slug pound-mass pound
Force (F),
weight (W)
pound pound-force poundal
Pressure (p) pound per square inch pound-force per square inch poundal per square foot

Pound as mass unit edit

When the pound is used as a unit of mass, the core of the coherent system is similar and functionally equivalent to the corresponding subsets of the International System of Units (SI), using metre, kilogram and second (MKS), and the earlier centimetre–gram–second system of units (CGS). This system is often called the Absolute English System.[citation needed]

In this sub-system, the unit of force is a derived unit known as the poundal.[1]

 

The international standard symbol for the pound as unit of mass rather than force is lb.[5]

Everett (1861) proposed the metric dyne and erg as the units of force and energy in the FPS system.

Latimer Clark's (1891) "Dictionary of Measures" contains celo (acceleration), vel or velo (velocity) and pulse (momentum) as proposed names for FPS absolute units.

Pound as force unit edit

The technical or gravitational FPS system[6] or British gravitational system is a coherent variant of the FPS system that is most common among engineers in the United States. It takes the pound-force as a fundamental unit of force instead of the pound as a fundamental unit of mass.

In this sub-system, the unit of mass is a derived unit known as the slug.[1]

 

In the context of the gravitational FPS system, the pound-force (lbf) is sometimes referred to as the pound (lb).

Pound-force as force unit and pound-mass as mass unit edit

Another variant of the FPS system uses both the pound-mass and the pound-force, but neither the slug nor the poundal. The resulting system is sometimes also known as the English engineering system. Despite its name, the system is based on United States customary units of measure; it is not used in England.[6]

Other units edit

Molar units edit

The unit of substance in the FPS system is the pound-mole (lb-mol) = 273.16×1024. Until the SI decided to adopt the gram-mole, the mole was directly derived from the mass unit as (mass unit)/(atomic mass unit). The unit (lbf⋅s2/ft)-mol also appears in a former definition of the atmosphere.

Electromagnetic units edit

The electrostatic and electromagnetic systems are derived from units of length and force, mainly. As such, these are ready extensions of any system of containing length, mass, time. Stephen Dresner[7] gives the derived electrostatic and electromagnetic units in both the foot–pound–second and foot–slug–second systems. In practice, these are most associated with the centimetre–gram–second system. The 1929 "International Critical Tables" gives in the symbols and systems fpse = FPS electrostatic system and fpsm = FPS electromagnetic system. Under the conversions for charge, the following are given. The CRC Handbook of Chemistry and Physics 1979 (Edition 60), also lists fpse and fpsm as standard abbreviations.

Electromagnetic FPS (EMU, stat-)
1 fpsm unit = 117.581866 cgsm unit (Biot-second) [clarification needed]
Electrostatic FPS (ESU, ab-)
1 fpse unit = 3583.8953 cgse unit (Franklin)
1 fpse unit = 1.1954588×10−7 abs coulomb

Units of light edit

The candle and the foot-candle were the first defined units of light, defined in the Metropolitan Gas Act (1860).[8] The foot-candle is the intensity of light at one foot from a standard candle. The units were internationally recognized in 1881, and adopted into the metric system.[9]

Conversions edit

Together with the fact that the term "weight" is used for the gravitational force in some technical contexts (physics, engineering) and for mass in others (commerce, law),[10] and that the distinction often does not matter in practice, the coexistence of variants of the FPS system causes confusion over the nature of the unit "pound". Its relation to international metric units is expressed in kilograms, not newtons, though, and in earlier times it was defined by means of a mass prototype to be compared with a two-pan balance which is agnostic of local gravitational differences.

In July 1959, the various national foot and avoirdupois pound standards were replaced by the international foot of precisely 0.3048 m and the international pound of precisely 0.45359237 kg, making conversion between the systems a matter of simple arithmetic. The conversion for the poundal is given by 1 pdl = 1 lb·ft/s2 = 0.138254954376 N (precisely).[1]

To convert between the absolute and gravitational FPS systems one needs to fix the standard acceleration g which relates the pound to the pound-force.[citation needed]

 

While g strictly depends on one's location on the Earth surface, since 1901 in most contexts it is fixed conventionally at precisely g09.80665 m/s2 ≈ 32.17405 ft/s2.[1]

See also edit

References edit

  1. ^ a b c d e f Cardarelli, François (2003), "The Foot–Pound–Second (FPS) System", Encyclopaedia of Scientific Units, Weights and Measures: Their SI Equivalences and Origins, Springer, pp. 51–55, ISBN 978-1-85233-682-0.
  2. ^ Henderson, James B.; Godfrey, C. (1924), "The Stroud system of teaching dynamics", The Mathematical Gazette, 12 (170): 99–105, doi:10.2307/3604647, JSTOR 3604647, S2CID 125929042.
  3. ^ Comings, E. W. (1940). "English Engineering Units and Their Dimensions". Industrial & Engineering Chemistry. 32 (7): 984–987. doi:10.1021/ie50367a028.
  4. ^ Klinkenberg, Adrian (1969). "The American Engineering System of Units and Its Dimensional Constant gc". Industrial & Engineering Chemistry. 61 (4): 53–59. doi:10.1021/ie50712a010.
  5. ^ IEEE Std 260.1-2004, IEEE Standard Letter Symbols for Units of Measurement (SI Units, Customary Inch-Pound Units, and Certain Other Units)
  6. ^ a b Coulson, J. M.; Richardson, J. F.; Backhurst, J. R.; Harker, J. H. (1999-11-08). Chemical Engineering Volume 1: Fluid Flow, Heat Transfer and Mass Transfer. Elsevier Science. ISBN 978-0-7506-4444-0.
  7. ^ Dresner, Stephen (1971). Units of Measurement. New York: Hastings House. pp. 193–205.
  8. ^ Jerrard, H G (1985). A Dictionary of Scientific Units. London: Chapman and Hall. p. 24. ISBN 0412281007.
  9. ^ Fenna, Donald (2003), Dictionary of weights and measures, ISBN 978-0-19-860522-5
  10. ^ NIST Federal Standard 376B , p. 13. August 16, 2010, at the Wayback Machine

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The foot pound second system FPS system is a system of units built on three fundamental units the foot for length the avoirdupois pound for either mass or force see below and the second for time 1 Contents 1 Variants 1 1 Pound as mass unit 1 2 Pound as force unit 1 3 Pound force as force unit and pound mass as mass unit 2 Other units 2 1 Molar units 2 2 Electromagnetic units 2 3 Units of light 3 Conversions 4 See also 5 ReferencesVariants editCollectively the variants of the FPS system were the most common system in technical publications in English until the middle of the 20th century 1 Errors can be avoided and translation between the systems facilitated by labelling all physical quantities consistently with their units Especially in the context of the FPS system this is sometimes known as the Stroud system after William Stroud who popularized it 2 Three approaches to English units of mass and force or weight 3 4 vte Base Force Weight Mass 2nd law of motion m F a F W a g F m a System British Gravitational BG English Engineering EE Absolute English AE Acceleration a ft s2 ft s2 ft s2 Mass m slug pound mass pound Force F weight W pound pound force poundal Pressure p pound per square inch pound force per square inch poundal per square foot Pound as mass unit edit When the pound is used as a unit of mass the core of the coherent system is similar and functionally equivalent to the corresponding subsets of the International System of Units SI using metre kilogram and second MKS and the earlier centimetre gram second system of units CGS This system is often called the Absolute English System citation needed In this sub system the unit of force is a derived unit known as the poundal 1 1 p d l 1 l b f t s 2 displaystyle mathrm 1 pdl mathrm 1 lb cdot ft s 2 nbsp The international standard symbol for the pound as unit of mass rather than force is lb 5 This section may require cleanup to meet Wikipedia s quality standards No cleanup reason has been specified Please help improve this section if you can October 2011 Learn how and when to remove this message Everett 1861 proposed the metric dyne and erg as the units of force and energy in the FPS system Latimer Clark s 1891 Dictionary of Measures contains celo acceleration vel or velo velocity and pulse momentum as proposed names for FPS absolute units Pound as force unit edit The technical or gravitational FPS system 6 or British gravitational system is a coherent variant of the FPS system that is most common among engineers in the United States It takes the pound force as a fundamental unit of force instead of the pound as a fundamental unit of mass In this sub system the unit of mass is a derived unit known as the slug 1 1 s l u g 1 l b f s 2 f t displaystyle mathrm 1 slug mathrm 1 lbf cdot s 2 ft nbsp In the context of the gravitational FPS system the pound force lbf is sometimes referred to as the pound lb Pound force as force unit and pound mass as mass unit edit Another variant of the FPS system uses both the pound mass and the pound force but neither the slug nor the poundal The resulting system is sometimes also known as the English engineering system Despite its name the system is based on United States customary units of measure it is not used in England 6 Other units editThis section may require cleanup to meet Wikipedia s quality standards No cleanup reason has been specified Please help improve this section if you can October 2011 Learn how and when to remove this message Molar units edit The unit of substance in the FPS system is the pound mole lb mol 273 16 1024 Until the SI decided to adopt the gram mole the mole was directly derived from the mass unit as mass unit atomic mass unit The unit lbf s2 ft mol also appears in a former definition of the atmosphere Electromagnetic units edit The electrostatic and electromagnetic systems are derived from units of length and force mainly As such these are ready extensions of any system of containing length mass time Stephen Dresner 7 gives the derived electrostatic and electromagnetic units in both the foot pound second and foot slug second systems In practice these are most associated with the centimetre gram second system The 1929 International Critical Tables gives in the symbols and systems fpse FPS electrostatic system and fpsm FPS electromagnetic system Under the conversions for charge the following are given The CRC Handbook of Chemistry and Physics 1979 Edition 60 also lists fpse and fpsm as standard abbreviations Electromagnetic FPS EMU stat 1 fpsm unit 117 581866 cgsm unit Biot second clarification needed Electrostatic FPS ESU ab 1 fpse unit 3583 8953 cgse unit Franklin 1 fpse unit 1 1954588 10 7 abs coulomb Units of light edit The candle and the foot candle were the first defined units of light defined in the Metropolitan Gas Act 1860 8 The foot candle is the intensity of light at one foot from a standard candle The units were internationally recognized in 1881 and adopted into the metric system 9 Conversions editTogether with the fact that the term weight is used for the gravitational force in some technical contexts physics engineering and for mass in others commerce law 10 and that the distinction often does not matter in practice the coexistence of variants of the FPS system causes confusion over the nature of the unit pound Its relation to international metric units is expressed in kilograms not newtons though and in earlier times it was defined by means of a mass prototype to be compared with a two pan balance which is agnostic of local gravitational differences In July 1959 the various national foot and avoirdupois pound standards were replaced by the international foot of precisely 0 3048 m and the international pound of precisely 0 453592 37 kg making conversion between the systems a matter of simple arithmetic The conversion for the poundal is given by 1 pdl 1 lb ft s2 0 138254 954 376 N precisely 1 To convert between the absolute and gravitational FPS systems one needs to fix the standard acceleration g which relates the pound to the pound force citation needed 1 lbf 1 lb g displaystyle 1 text lbf 1 text lb cdot g nbsp While g strictly depends on one s location on the Earth surface since 1901 in most contexts it is fixed conventionally at precisely g0 9 80665 m s2 32 17405 ft s2 1 See also editMetre tonne second system of units MTS FFF systemReferences edit a b c d e f Cardarelli Francois 2003 The Foot Pound Second FPS System Encyclopaedia of Scientific Units Weights and Measures Their SI Equivalences and Origins Springer pp 51 55 ISBN 978 1 85233 682 0 Henderson James B Godfrey C 1924 The Stroud system of teaching dynamics The Mathematical Gazette 12 170 99 105 doi 10 2307 3604647 JSTOR 3604647 S2CID 125929042 Comings E W 1940 English Engineering Units and Their Dimensions Industrial amp Engineering Chemistry 32 7 984 987 doi 10 1021 ie50367a028 Klinkenberg Adrian 1969 The American Engineering System of Units and Its Dimensional Constant gc Industrial amp Engineering Chemistry 61 4 53 59 doi 10 1021 ie50712a010 IEEE Std 260 1 2004 IEEE Standard Letter Symbols for Units of Measurement SI Units Customary Inch Pound Units and Certain Other Units a b Coulson J M Richardson J F Backhurst J R Harker J H 1999 11 08 Chemical Engineering Volume 1 Fluid Flow Heat Transfer and Mass Transfer Elsevier Science ISBN 978 0 7506 4444 0 Dresner Stephen 1971 Units of Measurement New York Hastings House pp 193 205 Jerrard H G 1985 A Dictionary of Scientific Units London Chapman and Hall p 24 ISBN 0412281007 Fenna Donald 2003 Dictionary of weights and measures ISBN 978 0 19 860522 5 NIST Federal Standard 376B p 13 Archived August 16 2010 at the Wayback Machine Retrieved from https en wikipedia org w index php title Foot pound second system of units amp oldid 1217581732 British gravitational system, wikipedia, wiki, book, books, library,

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