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Template:GravEngAbs

From Wikipedia, the free encyclopedia
Three approaches to units of mass and force or weight[1][2]
Base Force Weight Mass
2nd law of motion m = F/a F = W a/g F = m a
System BG !!width="14%"| GM EE !!width="14%"| M AECGSMTSSI
Acceleration (a) ft/s2m/s2 ft/s2m/s2 ft/s2title="gal, centimeter per second squared"| Galm/s2m/s2
Mass (m) slugtitle="hyl, also called “metric slug” or “TME”"| hyl pound-masstitle="kilogram, sometimes kilogram-mass (kgm)"| kilogram poundtitle="gram"| gramtonnekilogram
Force (F),
weight (W)
poundtitle="kilopond, also called “kilogram-force” (kgf) in English"| kilopond pound-forcetitle="kilopond (kp), sometimes kilogram-force (kgf)"| kilopond poundaltitle="dyne"| dynesthènenewton
Pressure (p) pound per square inchtitle="technical atmosphere"| technical atmosphere pound-force per square inchtitle="standard atmosphere"| standard atmosphere poundal per square foottitle="barye"| baryepiezepascal
  1. Comings, E. W. (1940). "English Engineering Units and Their Dimensions". Industrial & Engineering Chemistry. 32 (7): 984–987. doi:10.1021/ie50367a028.
  2. 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.
  1. Comings, E. W. (1940). "English Engineering Units and Their Dimensions". Industrial & Engineering Chemistry. 32 (7): 984–987. doi:10.1021/ie50367a028.
  2. 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.
  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.