$ \text{F}, \text{M}=FL^{-1}T^{2}, \text{L}, \text{T},
\text{Q}, \Theta, \text{N}, \text{J}, \text{A}=\mathbb{1},
\text{R}=\mathbb{1}, \text{C}=\mathbb{1} $
Name |
IPS |
Product |
hyperfine transition |
$9.19263177 \times
10^{9}$
$\left[\text{Hz}\right]$ |
$\Delta\nu_\text{Cs}$ |
light speed |
$1.1802852677165354
\times 10^{10}$ $\left[\text{in}\cdot
\text{s}^{-1}\right]$ |
$\text{c}\cdot
\text{ft}^{-1}2^{2}3$ |
Planck |
$5.8645662493151186
\times 10^{-33}$ $\left[\text{lb}\cdot
\text{in}\cdot \text{s}\right]$ |
$\hbar\cdot
\text{g}_0^{-1}\text{ft}^{-1}\text{lb}^{-1}2^{2}3$ |
Planck reduced |
$9.333747076683978
\times 10^{-34}$ $\left[\text{lb}\cdot
\text{in}\cdot \text{s}\right]$ |
$\hbar\cdot
\text{g}_0^{-1}\text{ft}^{-1}\text{lb}^{-1}\tau^{-1}2^{2}3$ |
electron mass |
$5.2015921425(16)
\times 10^{-33}$
$\left[\text{slinch}\right]$ |
$\hbar\cdot
\text{c}^{-1}\text{R}_{\infty}\cdot
\alpha^{-2}\text{g}_0^{-1}\text{ft}\cdot
\text{lb}^{-1}2^{-1}3^{-1}$ |
molar mass |
$1.0$
$\left[\text{slinch} \cdot
\text{slinch-mol}^{-1}\right]$ |
$1$ |
Boltzmann |
$6.7887629566(21)
\times 10^{-23}$ $\left[\text{lb}\cdot
\text{in}\cdot
{^\circ}\text{R}^{-1}\right]$ |
$\text{k}_\text{B}\cdot \text{N}_\text{A}\cdot
\hbar\cdot \text{c}^{-1}\text{R}_{\infty}\cdot
\alpha^{-2}\mu_\text{eu}^{-1}\text{g}_0^{-1}\text{ft}^{-1}\text{lb}^{-1}2^{6}3^{-1}5^{4}$ |
vacuum permeability |
$2.8250324964133447
\times 10^{-7}$ $\left[\text{lb}\cdot
\text{s}^{2}\text{C}^{-2}\right]$ |
$\text{g}_0^{-1}\text{lb}^{-1}\tau\cdot
2^{-6}5^{-7}$ |
rationalization |
$1.0$
$\left[\mathbb{1}\right]$ |
$1$ |
Lorentz |
$1.0$
$\left[\mathbb{1}\right]$ |
$1$ |
luminous efficacy |
$77.17086290732456$
$\left[\text{lb}^{-1}\text{in}^{-1}\text{s}\cdot
\text{lm}\right]$ |
$\text{K}_\text{cd}\cdot \text{g}_0\cdot
\text{ft}\cdot \text{lb}\cdot 2^{-2}3^{-1}$ |
gravity |
$1.0$
$\left[\mathbb{1}\right]$ |
$1$ |
radian |
$1.0$
$\left[\mathbb{1}\right]$ |
$1$ |
turn |
$6.283185307179586$
$\left[\mathbb{1}\right]$ |
$\tau$ |
spat |
$12.566370614359172$
$\left[\mathbb{1}\right]$ |
$\tau\cdot
2$ |
Dalton |
$9.4819224265(29)
\times 10^{-30}$
$\left[\text{slinch}\right]$ |
$\hbar\cdot
\text{c}^{-1}\text{R}_{\infty}\cdot
\alpha^{-2}\mu_\text{eu}^{-1}\text{g}_0^{-1}\text{ft}\cdot
\text{lb}^{-1}2^{-1}3^{-1}$ |
proton mass |
$9.5509173185(30)
\times 10^{-30}$
$\left[\text{slinch}\right]$ |
$\hbar\cdot
\text{c}^{-1}\text{R}_{\infty}\cdot
\alpha^{-2}\mu_\text{eu}^{-1}\mu_\text{pu}\cdot
\text{g}_0^{-1}\text{ft}\cdot
\text{lb}^{-1}2^{-1}3^{-1}$ |
Planck mass |
$1.242776(14) \times
10^{-10}$
$\left[\text{slinch}\right]$ |
$\text{g}_0^{-1}\text{ft}\cdot
\text{lb}^{-1}\text{m}_\text{P}\cdot
2^{-2}3^{-1}$ |
Newton gravitation |
$0.000713276(16)$
$\left[\text{lb}^{-1}\text{in}^{4}\text{s}^{-4}\right]$ |
$\hbar\cdot
\text{c}\cdot \text{g}_0\cdot
\text{ft}^{-4}\text{lb}\cdot
\text{m}_\text{P}^{-2}\tau^{-1}2^{8}3^{4}$ |
Gauss gravitation |
$1.990983676471466
\times 10^{-7}$
$\left[\text{Hz}\right]$ |
$\text{k}_\text{G}\cdot \tau\cdot
2^{-14}3^{-7}5^{-5}$ |
Einstein gravitation |
$9.23739(20) \times
10^{-43}$
$\left[\text{lb}^{-1}\right]$ |
$\hbar\cdot
\text{c}^{-3}\text{g}_0\cdot \text{lb}\cdot
\text{m}_\text{P}^{-2}2^{2}$ |
Hartree |
$3.8586992251336(74)
\times 10^{-17}$ $\left[\text{lb}\cdot
\text{in}\right]$ |
$\hbar\cdot
\text{c}\cdot \text{R}_{\infty}\cdot
\text{g}_0^{-1}\text{ft}^{-1}\text{lb}^{-1}2^{3}3$ |
Rydberg |
$278732.78183127(53)$
$\left[\text{in}^{-1}\right]$ |
$\text{R}_{\infty}\cdot \text{ft}\cdot
2^{-2}3^{-1}$ |
Bohr radius |
$2.08337484607(32)
\times 10^{-9}$
$\left[\text{in}\right]$ |
$\text{R}_{\infty}^{-1}\alpha\cdot
\text{ft}^{-1}\tau^{-1}2\cdot 3$ |
electron radius |
$1.10942532527(51)
\times 10^{-13}$
$\left[\text{in}\right]$ |
$\text{R}_{\infty}^{-1}\alpha^{3}\text{ft}^{-1}\tau^{-1}2\cdot
3$ |
Avogadro |
$1.05463845307(32)
\times 10^{29}$
$\left[\text{slinch-mol}^{-1}\right]$ |
$\hbar^{-1}\text{c}\cdot
\text{R}_{\infty}^{-1}\alpha^{2}\mu_\text{eu}\cdot
\text{g}_0\cdot \text{ft}^{-1}\text{lb}\cdot 2\cdot
3$ |
Molar gas |
$7.159690462790658
\times 10^{6}$ $\left[\text{lb}\cdot
\text{in}\cdot
{^\circ}\text{R}^{-1}\text{slinch-mol}^{-1}\right]$ |
$\text{k}_\text{B}\cdot \text{N}_\text{A}\cdot
\text{ft}^{-2}2^{7}5^{4}$ |
Stefan-Boltzmann |
$3.0843880803(38)
\times 10^{-11}$ $\left[\text{lb}\cdot
\text{in}^{-1}\text{s}^{-1}{^\circ}\text{R}^{-4}\right]$ |
$\text{k}_\text{B}^{4}\text{N}_\text{A}^{4}\hbar\cdot
\text{c}^{-6}\text{R}_{\infty}^{4}\alpha^{-8}\mu_\text{eu}^{-4}\text{g}_0^{-1}\text{ft}\cdot
\text{lb}^{-1}\tau^{5}2^{10}3^{-10}5^{15}$ |
radiation density |
$1.0453025771(13)
\times 10^{-20}$ $\left[\text{lb}\cdot
\text{in}^{-2}{^\circ}\text{R}^{-4}\right]$ |
$\text{k}_\text{B}^{4}\text{N}_\text{A}^{4}\hbar\cdot
\text{c}^{-7}\text{R}_{\infty}^{4}\alpha^{-8}\mu_\text{eu}^{-4}\text{g}_0^{-1}\text{ft}^{2}\text{lb}^{-1}\tau^{5}2^{10}3^{-11}5^{15}$ |
vacuum permittivity |
$2.5409877977507057
\times 10^{-14}$
$\left[\text{lb}^{-1}\text{in}^{-2}\text{C}^{2}\right]$ |
$\text{c}^{-2}\text{g}_0\cdot
\text{ft}^{2}\text{lb}\cdot
\tau^{-1}2^{2}3^{-2}5^{7}$ |
electrostatic |
$3.131753391983621
\times 10^{12}$ $\left[\text{lb}\cdot
\text{in}^{2}\text{C}^{-2}\right]$ |
$\text{c}^{2}\text{g}_0^{-1}\text{ft}^{-2}\text{lb}^{-1}2^{-3}3^{2}5^{-7}$ |
magnetostatic |
$2.2480894309971046
\times 10^{-8}$ $\left[\text{lb}\cdot
\text{s}^{2}\text{C}^{-2}\right]$ |
$\text{g}_0^{-1}\text{lb}^{-1}2^{-7}5^{-7}$ |
Biot-Savart |
$2.2480894309971046
\times 10^{-8}$ $\left[\text{lb}\cdot
\text{s}^{2}\text{C}^{-2}\right]$ |
$\text{g}_0^{-1}\text{lb}^{-1}2^{-7}5^{-7}$ |
elementary charge |
$1.60217663444(12)
\times 10^{-19}$
$\left[\text{C}\right]$ |
$\hbar^{1/2}\text{c}^{-1/2}\alpha^{1/2}\tau^{-1/2}2^{7/2}5^{7/2}$ |
Faraday |
$1.68971708729(65)
\times 10^{10}$ $\left[\text{C}\cdot
\text{slinch-mol}^{-1}\right]$ |
$\hbar^{-1/2}\text{c}^{1/2}\text{R}_{\infty}^{-1}\alpha^{5/2}\mu_\text{eu}\cdot
\text{g}_0\cdot \text{ft}^{-1}\text{lb}\cdot
\tau^{-1/2}2^{9/2}3\cdot 5^{7/2}$ |
vacuum impedance |
$3334.344236337137$
$\left[\text{lb}\cdot \text{in}\cdot
\text{s}\cdot \text{C}^{-2}\right]$ |
$\text{c}\cdot
\text{g}_0^{-1}\text{ft}^{-1}\text{lb}^{-1}\tau\cdot
2^{-4}3\cdot 5^{-7}$ |
conductance quantum |
$8.7541681987(13)
\times 10^{-6}$
$\left[\text{lb}^{-1}\text{in}^{-1}\text{s}^{-1}\text{C}^{2}\right]$ |
$\text{c}^{-1}\alpha\cdot \text{g}_0\cdot
\text{ft}\cdot \text{lb}\cdot
\tau^{-1}2^{6}3^{-1}5^{7}$ |
Klitzing |
$228462.596858(35)$
$\left[\text{lb}\cdot \text{in}\cdot
\text{s}\cdot \text{C}^{-2}\right]$ |
$\text{c}\cdot
\alpha^{-1}\text{g}_0^{-1}\text{ft}^{-1}\text{lb}^{-1}\tau\cdot
2^{-5}3\cdot 5^{-7}$ |
Josephson |
$5.46392202364(42)
\times 10^{13}$
$\left[\text{lb}^{-1}\text{in}^{-1}\text{s}^{-1}\text{C}\right]$ |
$\hbar^{-1/2}\text{c}^{-1/2}\alpha^{1/2}\text{g}_0\cdot
\text{ft}\cdot \text{lb}\cdot
\tau^{-1/2}2^{5/2}3^{-1}5^{7/2}$ |
magnetic flux
quantum |
$1.83018717264(14)
\times 10^{-14}$ $\left[\text{lb}\cdot
\text{in}\cdot \text{s}\cdot
\text{C}^{-1}\right]$ |
$\hbar^{1/2}\text{c}^{1/2}\alpha^{-1/2}\text{g}_0^{-1}\text{ft}^{-1}\text{lb}^{-1}\tau^{1/2}2^{-5/2}3\cdot
5^{-7/2}$ |
magneton |
$1.43747443748(55)
\times 10^{-20}$
$\left[\text{in}^{2}\text{s}^{-1}\text{C}\right]$ |
$\hbar^{1/2}\text{c}^{1/2}\text{R}_{\infty}^{-1}\alpha^{5/2}\text{ft}^{-2}\tau^{-3/2}2^{11/2}3^{2}5^{7/2}$ |
Loschmidt |
$4.402843764596826
\times 10^{20}$
$\left[\text{in}^{-3}\right]$ |
$\text{k}_\text{B}^{-1}\text{ft}^{3}\text{T}_0^{-1}\text{atm}\cdot
2^{-6}3^{-3}$ |
mechanical heat |
$3.605253238827109
\times 10^{6}$ $\left[\text{lb}\cdot
\text{in}\right]$ |
$\text{ft}^{-2}\Omega_\text{it}^{-1}\text{V}_\text{it}^{2}2^{9}3^{2}5^{5}43^{-1}$ |
Wien wavelength |
$0.205353918155(63)$
$\left[\text{in}\cdot
{^\circ}\text{R}\right]$ |
$\text{k}_\text{B}^{-1}\text{N}_\text{A}^{-1}\text{c}^{2}\text{R}_{\infty}^{-1}\alpha^{2}\mu_\text{eu}\cdot
\text{ft}^{-1}2^{-2}3^{3}5^{-4}/4.965114231744276$ |
Wien frequency |
$3.2660698642(10)
\times 10^{10}$ $\left[\text{Hz} \cdot
^\circ\text{R}^{-1}\right]$ |
$\text{k}_\text{B}\cdot \text{N}_\text{A}\cdot
\text{c}^{-1}\text{R}_{\infty}\cdot
\alpha^{-2}\mu_\text{eu}^{-1}2^{4}3^{-2}5^{4}2.8214393721220787$ |
Sackur-Tetrode |
$-1.1648705244(12)$
$\left[\mathbb{1}\right]$ |
|
Eddington |
$1.459(11) \times
10^{50}$
$\left[\text{slinch}\right]$ |
$\hbar^{-1}\text{c}^{2}\Omega_{\Lambda}^{-1/2}\text{H}_0^{-1}\text{g}_0^{-1}\text{au}\cdot
\text{ft}\cdot
\text{lb}^{-1}\text{m}_\text{P}^{2}\tau^{-1/2}2^{7}3^{5/2}5^{6}$ |
solar mass |
$1.135411(25) \times
10^{28}$
$\left[\text{slinch}\right]$ |
$\hbar^{-1}\text{c}^{-1}\text{g}_0^{-1}\text{au}^{3}\text{ft}\cdot
\text{lb}^{-1}\text{k}_\text{G}^{2}\text{m}_\text{P}^{2}\tau^{3}2^{-30}3^{-15}5^{-10}$ |
Jupiter mass |
$1.083857(24) \times
10^{25}$
$\left[\text{slinch}\right]$ |
$\hbar^{-1}\text{c}^{-1}\text{g}_0^{-1}\text{ft}\cdot
\text{lb}^{-1}\text{m}_\text{P}^{2}\text{GM}_\text{J}\cdot
\tau\cdot 2^{-2}3^{-1}$ |
Earth mass |
$3.410195(75) \times
10^{22}$
$\left[\text{slinch}\right]$ |
$\hbar^{-1}\text{c}^{-1}\text{g}_0^{-1}\text{ft}\cdot
\text{lb}^{-1}\text{m}_\text{P}^{2}\text{GM}_\text{E}\cdot
\tau\cdot 2^{-2}3^{-1}$ |
g-force |
$386.0885826771653$
$\left[\text{in}\cdot
\text{s}^{-2}\right]$ |
$\text{g}_0\cdot
\text{ft}^{-1}2^{2}3$ |
Earth radius |
$2.5100064266(25)
\times 10^{8}$
$\left[\text{in}\right]$ |
$\text{g}_0^{-1/2}\text{ft}^{-1}\text{GM}_\text{E}^{1/2}2^{2}3$ |
great circle |
$1.5770835501(16)
\times 10^{9}$
$\left[\text{in}\right]$ |
$\text{g}_0^{-1/2}\text{ft}^{-1}\text{GM}_\text{E}^{1/2}\tau\cdot
2^{2}3$ |
nautical mile |
$73013.127319(73)$
$\left[\text{in}\right]$ |
$\text{g}_0^{-1/2}\text{ft}^{-1}\text{GM}_\text{E}^{1/2}\tau\cdot
2^{-3}3^{-2}5^{-2}$ |
Hubble |
$2.193(14) \times
10^{-18}$
$\left[\text{Hz}\right]$ |
$\text{H}_0\cdot
\text{au}^{-1}\tau\cdot
2^{-10}3^{-4}5^{-6}$ |
cosmological |
$7.13(11) \times
10^{-56}$
$\left[\text{in}^{-2}\right]$ |
$\text{c}^{-2}\Omega_{\Lambda}\cdot
\text{H}_0^{2}\text{au}^{-2}\text{ft}^{2}\tau^{2}2^{-24}3^{-9}5^{-12}$ |
Name |
IPS |
Product |
hertz |
$1.0$
$\left[\text{Hz}\right]$ |
$1$ |
actions per minute |
$0.016666666666666666$
$\left[\text{Hz}\right]$ |
$2^{-2}3^{-1}5^{-1}$ |
revolutions per
minute |
$0.10471975511965977$
$\left[\text{Hz}\right]$ |
$\tau\cdot
2^{-2}3^{-1}5^{-1}$ |
kayser |
$2.5399999999999996$
$\left[\text{in}^{-1}\right]$ |
$\text{ft}\cdot
3^{-1}5^{2}$ |
diopter |
$0.0254$
$\left[\text{in}^{-1}\right]$ |
$\text{ft}\cdot
2^{-2}3^{-1}$ |
rayleigh |
$6.451600000000001
\times 10^{6}$
$\left[\text{in}^{-2}\text{s}\right]$ |
$\text{ft}^{2}2^{6}3^{-2}5^{10}$ |
flick |
$1.4503773773020923
\times 10^{6}$ $\left[\text{lb}\cdot
\text{in}^{-2}\text{s}^{-1}\right]$ |
$\text{g}_0^{-1}\text{ft}^{2}\text{lb}^{-1}2^{6}3^{-2}5^{10}$ |
g-force |
$386.0885826771653$
$\left[\text{in}\cdot
\text{s}^{-2}\right]$ |
$\text{g}_0\cdot
\text{ft}^{-1}2^{2}3$ |
galileo |
$0.3937007874015748$
$\left[\text{in}\cdot
\text{s}^{-2}\right]$ |
$\text{ft}^{-1}3\cdot 5^{-2}$ |
eotvos |
$1.0 \times
10^{-9}$ $\left[\text{Hz} \cdot
\text{s}^{-1}\right]$ |
$2^{-9}5^{-9}$ |
darcy |
$1.5297341228780651
\times 10^{-9}$
$\left[\text{in}^{2}\right]$ |
$\text{ft}^{-2}\text{atm}^{-1}2^{-3}3^{2}5^{-7}$ |
poise |
$1.4503773773020924
\times 10^{-5}$ $\left[\text{lb}\cdot
\text{in}^{-2}\text{s}\right]$ |
$\text{g}_0^{-1}\text{ft}^{2}\text{lb}^{-1}2^{-5}3^{-2}5^{-1}$ |
reyn |
$1.0$
$\left[\text{lb}\cdot
\text{in}^{-2}\text{s}\right]$ |
$1$ |
stokes |
$0.15500031000061998$
$\left[\text{in}^{2}\text{s}^{-1}\right]$ |
$\text{ft}^{-2}3^{2}5^{-4}$ |
rayl |
$3.6839585383473144
\times 10^{-6}$ $\left[\text{lb}\cdot
\text{in}^{-3}\text{s}\right]$ |
$\text{g}_0^{-1}\text{ft}^{3}\text{lb}^{-1}2^{-6}3^{-3}$ |
mpg equivalent |
$5.95198051140049
\times 10^{-5}$
$\left[\text{lb}^{-1}\right]$ |
$\text{g}_0\cdot
\text{ft}\cdot \Omega_\text{it}\cdot
\text{V}_\text{it}^{-2}2^{-4}5^{-7}11\cdot
19^{-1}43$ |
langley |
$239.06886213746589$
$\left[\text{lb}\cdot
\text{in}^{-1}\right]$ |
$\text{g}_0^{-1}\text{ft}\cdot
\text{lb}^{-1}\Omega_\text{it}^{-1}\text{V}_\text{it}^{2}2^{4}3\cdot
5^{5}43^{-1}$ |
jansky |
$5.710147154732647
\times 10^{-29}$ $\left[\text{lb}\cdot
\text{in}^{-1}\right]$ |
$\text{g}_0^{-1}\text{ft}\cdot
\text{lb}^{-1}2^{-28}3^{-1}5^{-26}$ |
solar flux |
$5.7101471547326465
\times 10^{-25}$ $\left[\text{lb}\cdot
\text{in}^{-1}\right]$ |
$\text{g}_0^{-1}\text{ft}\cdot
\text{lb}^{-1}2^{-24}3^{-1}5^{-22}$ |
curie |
$3.7 \times
10^{10}$
$\left[\text{Hz}\right]$ |
$2^{9}5^{9}37$ |
gray |
$1550.0031000061997$
$\left[\text{in}^{2}\text{s}^{-2}\right]$ |
$\text{ft}^{-2}2^{4}3^{2}$ |
roentgen |
$0.04517867311980413$
$\left[\text{lb}^{-1}\text{in}\cdot
\text{s}^{-2}\text{C}\right]$ |
$\text{c}^{-1}\text{g}_0\cdot
\text{ft}^{-1}\text{lb}\cdot 2^{7}3\cdot
5^{5}/1.293$ |
IPS |
Equivalent Dimensions |
$\mathbb{1}$ |
dimensionless
$\left[\mathbb{1}\right]$, angle
$\left[A\right]$, solidangle
$\left[A^{2}\right]$, gravityforce
$\left[F^{-1}MLT^{-2}\right]$,
susceptibility $\left[R^{-1}\right]$,
demagnetizingfactor $\left[R\right]$ |
$\text{s}$ |
time
$\left[T\right]$, angulartime
$\left[TA^{-1}\right]$ |
$\text{in}$ |
length
$\left[L\right]$, angularlength
$\left[LA^{-1}\right]$ |
$\text{in}^{2}$ |
area
$\left[L^{2}\right]$, angulararea
$\left[L^{2}A^{-2}\right]$, etendue
$\left[L^{2}A^{2}\right]$ |
$\text{in}^{3}$ |
volume
$\left[L^{3}\right]$,
magneticpolarizability
$\left[L^{3}A^{-1}R^{-1}\right]$ |
$\text{in}^{-1}$ |
wavenumber
$\left[L^{-1}\right]$, angularwavenumber
$\left[L^{-1}A\right]$ |
$\text{in}^{-2}$ |
fuelefficiency
$\left[L^{-2}\right]$ |
$\text{in}^{-3}$ |
numberdensity
$\left[L^{-3}\right]$ |
$\text{Hz}$ |
frequency
$\left[T^{-1}\right]$, angularfrequency
$\left[T^{-1}A\right]$, photonintensity
$\left[T^{-1}A^{-2}\right]$ |
$\text{Hz} \cdot
\text{s}^{-1}$ |
frequencydrift
$\left[T^{-2}\right]$ |
$\text{in}^{-1}\text{s}$ |
stagnance
$\left[L^{-1}T\right]$ |
$\text{in}\cdot
\text{s}^{-1}$ |
speed
$\left[LT^{-1}\right]$ |
$\text{in}\cdot
\text{s}^{-2}$ |
acceleration
$\left[LT^{-2}\right]$, specificforce
$\left[FM^{-1}\right]$ |
$\text{in}\cdot
\text{s}^{-3}$ |
jerk
$\left[LT^{-3}\right]$ |
$\text{in}\cdot
\text{s}^{-4}$ |
snap
$\left[LT^{-4}\right]$ |
$\text{in}\cdot
\text{s}^{-5}$ |
crackle
$\left[LT^{-5}\right]$ |
$\text{in}\cdot
\text{s}^{-6}$ |
pop
$\left[LT^{-6}\right]$ |
$\text{in}^{3}\text{s}^{-1}$ |
volumeflow
$\left[L^{3}T^{-1}\right]$ |
$\text{in}^{-2}\text{s}$ |
photonirradiance
$\left[L^{-2}T\right]$, photonradiance
$\left[L^{-2}TA^{-2}\right]$ |
$\text{slinch}$ |
inertia
$\left[FL^{-1}T^{2}\right]$, mass
$\left[M\right]$ |
$\text{lb}\cdot
\text{in}^{-1}\text{s}$ |
massflow
$\left[MT^{-1}\right]$, spectralexposure
$\left[FL^{-1}T\right]$ |
$\text{lb}\cdot
\text{in}^{-2}\text{s}^{2}$ |
lineardensity
$\left[ML^{-1}\right]$ |
$\text{lb}\cdot
\text{in}^{-3}\text{s}^{2}$ |
areadensity
$\left[ML^{-2}\right]$ |
$\text{slinch}
\cdot \text{in}^{-3}$ |
density
$\left[ML^{-3}\right]$ |
$\text{lb}\cdot
\text{in}^{-3}$ |
specificweight
$\left[FL^{-3}\right]$ |
$\text{lb}^{-1}\text{in}^{4}\text{s}^{-2}$ |
specificvolume
$\left[M^{-1}L^{3}\right]$,
specificsusceptibility
$\left[M^{-1}L^{3}A^{-1}R^{-1}\right]$ |
$\text{lb}$ |
force
$\left[F\right]$ |
$\text{lb}\cdot
\text{in}^{-2}$ |
pressure
$\left[FL^{-2}\right]$ |
$\text{lb}^{-1}\text{in}^{2}$ |
compressibility
$\left[F^{-1}L^{2}\right]$ |
$\text{lb}\cdot
\text{in}^{-2}\text{s}$ |
viscosity
$\left[FL^{-2}T\right]$ |
$\text{in}^{2}\text{s}^{-1}$ |
diffusivity
$\left[L^{2}T^{-1}\right]$ |
$\text{lb}\cdot
\text{in}\cdot \text{s}^{2}$ |
rotationalinertia
$\left[ML^{2}\right]$ |
$\text{lb}\cdot
\text{s}$ |
impulse
$\left[FT\right]$, momentum
$\left[MLT^{-1}\right]$ |
$\text{lb}\cdot
\text{in}\cdot \text{s}$ |
angularmomentum
$\left[FLTA^{-1}\right]$, action
$\left[FLT\right]$ |
$\text{lb}\cdot
\text{s}^{-1}$ |
yank
$\left[MLT^{-3}\right]$, spectralflux
$\left[FT^{-1}\right]$ |
$\text{lb}\cdot
\text{in}$ |
energy
$\left[FL\right]$ |
$\text{in}^{2}\text{s}^{-2}$ |
specificenergy
$\left[FM^{-1}L\right]$ |
$\text{lb}\cdot
\text{in}^{-1}$ |
fluence
$\left[FL^{-1}\right]$ |
$\text{lb}\cdot
\text{in}\cdot \text{s}^{-1}$ |
power
$\left[FLT^{-1}\right]$, radiantintensity
$\left[FLT^{-1}A^{-2}\right]$ |
$\text{lb}\cdot
\text{in}^{-2}\text{s}^{-1}$ |
powerdensity
$\left[FL^{-2}T^{-1}\right]$ |
$\text{lb}\cdot
\text{in}^{-1}\text{s}^{-1}$ |
irradiance
$\left[FL^{-1}T^{-1}\right]$, radiance
$\left[FL^{-1}T^{-1}A^{-2}\right]$ |
$\text{lb}^{2}\text{in}^{-4}\text{s}$ |
soundexposure
$\left[F^{2}L^{-4}T\right]$ |
$\text{lb}\cdot
\text{in}^{-5}\text{s}$ |
impedance
$\left[FL^{-5}T\right]$ |
$\text{lb}\cdot
\text{in}^{-3}\text{s}$ |
specificimpedance
$\left[FL^{-3}T\right]$ |
$\text{lb}^{-1}\text{in}^{5}\text{s}^{-1}$ |
admittance
$\left[F^{-1}L^{5}T^{-1}\right]$ |
$\text{lb}^{-1}\text{in}$ |
compliance
$\left[M^{-1}T^{2}\right]$ |
$\text{lb}\cdot
\text{in}^{-5}\text{s}^{2}$ |
inertance
$\left[ML^{-4}\right]$ |
$\text{C}$ |
charge
$\left[Q\right]$ |
$\text{in}^{-3}\text{C}$ |
chargedensity
$\left[L^{-3}Q\right]$ |
$\text{in}^{-1}\text{C}$ |
linearchargedensity
$\left[L^{-1}Q\right]$ |
$\text{lb}^{-1}\text{in}\cdot
\text{s}^{-2}\text{C}$ |
exposure
$\left[M^{-1}Q\right]$ |
$\text{lb}\cdot
\text{in}^{3}\text{s}^{-1}\text{C}^{-1}$ |
mobility
$\left[FL^{3}T^{-1}Q^{-1}\right]$ |
$\text{s}^{-1}\text{C}$ |
current
$\left[T^{-1}Q\right]$, magneticpotential
$\left[T^{-1}QRC^{-1}\right]$ |
$\text{in}^{-2}\text{s}^{-1}\text{C}$ |
currentdensity
$\left[L^{-2}T^{-1}Q\right]$ |
$\text{lb}\cdot
\text{in}\cdot \text{s}\cdot \text{C}^{-2}$ |
resistance
$\left[FLTQ^{-2}\right]$ |
$\text{lb}^{-1}\text{in}^{-1}\text{s}^{-1}\text{C}^{2}$ |
conductance
$\left[F^{-1}L^{-1}T^{-1}Q^{2}\right]$ |
$\text{lb}\cdot
\text{in}^{2}\text{s}\cdot \text{C}^{-2}$ |
resistivity
$\left[FL^{2}TQ^{-2}\right]$ |
$\text{lb}^{-1}\text{in}^{-2}\text{s}^{-1}\text{C}^{2}$ |
conductivity
$\left[F^{-1}L^{-2}T^{-1}Q^{2}\right]$ |
$\text{lb}^{-1}\text{in}^{-1}\text{C}^{2}$ |
capacitance
$\left[F^{-1}L^{-1}Q^{2}\right]$ |
$\text{lb}\cdot
\text{in}\cdot \text{s}^{2}\text{C}^{-2}$ |
inductance
$\left[FLT^{2}Q^{-2}\right]$, permeance
$\left[FLT^{2}Q^{-2}R^{-1}C^{2}\right]$ |
$\text{lb}^{-1}\text{in}^{-1}\text{s}^{-2}\text{C}^{2}$ |
reluctance
$\left[F^{-1}L^{-1}T^{-2}Q^{2}RC^{-2}\right]$ |
$\text{lb}^{-1}\text{in}^{-2}\text{C}^{2}$ |
permittivity
$\left[F^{-1}L^{-2}Q^{2}R\right]$ |
$\text{lb}\cdot
\text{s}^{2}\text{C}^{-2}$ |
permeability
$\left[FT^{2}Q^{-2}R^{-1}C^{2}\right]$ |
$\text{lb}\cdot
\text{s}\cdot \text{C}^{-1}$ |
vectorpotential
$\left[FTQ^{-1}C\right]$ |
$\text{lb}\cdot
\text{in}\cdot \text{C}^{-1}$ |
electricpotential
$\left[FLQ^{-1}\right]$ |
$\text{lb}\cdot
\text{C}^{-1}$ |
electricfield
$\left[FQ^{-1}\right]$ |
$\text{in}^{-1}\text{s}^{-1}\text{C}$ |
magneticfield
$\left[L^{-1}T^{-1}QRC^{-1}\right]$ |
$\text{lb}\cdot
\text{in}^{2}\text{C}^{-1}$ |
electricflux
$\left[FL^{2}Q^{-1}\right]$ |
$\text{lb}\cdot
\text{in}\cdot \text{s}\cdot \text{C}^{-1}$ |
magneticflux
$\left[FLTQ^{-1}C\right]$ |
$\text{in}^{-2}\text{C}$ |
electricdisplacement
$\left[L^{-2}QR\right]$ |
$\text{lb}\cdot
\text{in}^{-1}\text{s}\cdot \text{C}^{-1}$ |
magneticfluxdensity
$\left[FL^{-1}TQ^{-1}C\right]$ |
$\text{in}\cdot
\text{C}$ |
electricdipolemoment
$\left[LQ\right]$ |
$\text{in}^{2}\text{s}^{-1}\text{C}$ |
magneticdipolemoment
$\left[L^{2}T^{-1}QA^{-1}C^{-1}\right]$ |
$\text{lb}^{-1}\text{in}\cdot
\text{C}^{2}$ |
electricpolarizability
$\left[F^{-1}LQ^{2}\right]$ |
$\text{lb}\cdot
\text{in}^{2}\text{s}\cdot \text{C}^{-1}$ |
magneticmoment
$\left[FL^{2}TQ^{-1}C\right]$ |
$\text{in}^{-3}\text{s}\cdot
\text{C}$ |
specificmagnetization
$\left[F^{-1}ML^{-2}T^{-1}QC^{-1}\right]$ |
$\text{in}\cdot
\text{s}^{-1}\text{C}$ |
polestrength
$\left[LT^{-1}QA^{-1}C^{-1}\right]$ |
${^\circ}\text{R}$ |
temperature
$\left[Θ\right]$ |
$\text{lb}\cdot
\text{in}\cdot {^\circ}\text{R}^{-1}$ |
entropy
$\left[FLΘ^{-1}\right]$ |
$\text{in}^{2}\text{s}^{-2}{^\circ}\text{R}^{-1}$ |
specificentropy
$\left[FM^{-1}LΘ^{-1}\right]$ |
$\text{lb}\cdot
\text{in}^{-2}{^\circ}\text{R}^{-1}$ |
volumeheatcapacity
$\left[FL^{-2}Θ^{-1}\right]$ |
$\text{lb}\cdot
\text{s}^{-1}{^\circ}\text{R}^{-1}$ |
thermalconductivity
$\left[FT^{-1}Θ^{-1}\right]$ |
$\text{lb}\cdot
\text{in}\cdot
\text{s}^{-1}{^\circ}\text{R}^{-1}$ |
thermalconductance
$\left[FLT^{-1}Θ^{-1}\right]$ |
$\text{lb}^{-1}\text{s}\cdot
{^\circ}\text{R}$ |
thermalresistivity
$\left[F^{-1}TΘ\right]$ |
$\text{lb}^{-1}\text{in}^{-1}\text{s}\cdot
{^\circ}\text{R}$ |
thermalresistance
$\left[F^{-1}L^{-1}TΘ\right]$ |
${^\circ}\text{R}^{-1}$ |
thermalexpansion
$\left[Θ^{-1}\right]$ |
$\text{in}^{-1}{^\circ}\text{R}$ |
lapserate
$\left[L^{-1}Θ\right]$ |
$\text{slinch}
\cdot \text{slinch-mol}^{-1}$ |
molarmass
$\left[MN^{-1}\right]$ |
$\text{lb}^{-1}\text{in}\cdot
\text{s}^{-2}\text{slinch-mol}$ |
molality
$\left[M^{-1}N\right]$ |
$\text{slinch-mol}$ |
molaramount
$\left[N\right]$ |
$\text{in}^{-3}\text{slinch-mol}$ |
molarity
$\left[L^{-3}N\right]$ |
$\text{in}^{3}\text{slinch-mol}^{-1}$ |
molarvolume
$\left[L^{3}N^{-1}\right]$,
molarsusceptibility
$\left[L^{3}N^{-1}A^{-1}R^{-1}\right]$ |
$\text{lb}\cdot
\text{in}\cdot
{^\circ}\text{R}^{-1}\text{slinch-mol}^{-1}$ |
molarentropy
$\left[FLΘ^{-1}N^{-1}\right]$ |
$\text{lb}\cdot
\text{in}\cdot \text{slinch-mol}^{-1}$ |
molarenergy
$\left[FLN^{-1}\right]$ |
$\text{lb}^{-1}\text{s}^{-1}\text{C}^{2}\text{slinch-mol}^{-1}$ |
molarconductivity
$\left[F^{-1}T^{-1}Q^{2}N^{-1}\right]$ |
$\text{s}^{-1}\text{slinch-mol}$ |
catalysis
$\left[T^{-1}N\right]$ |
$\text{in}^{3}\text{s}^{-1}\text{slinch-mol}^{-1}$ |
specificity
$\left[L^{3}T^{-1}N^{-1}\right]$ |
$\text{in}^{-2}\text{s}\cdot
\text{slinch-mol}$ |
diffusionflux
$\left[L^{-2}TN\right]$ |
$\text{lm}$ |
luminousflux
$\left[J\right]$, luminousintensity
$\left[JA^{-2}\right]$ |
$\text{in}^{-2}\text{lm}$ |
luminance
$\left[L^{-2}JA^{-2}\right]$, illuminance
$\left[L^{-2}J\right]$ |
$\text{s}\cdot
\text{lm}$ |
luminousenergy
$\left[TJ\right]$ |
$\text{in}^{-2}\text{s}\cdot
\text{lm}$ |
luminousexposure
$\left[L^{-2}TJ\right]$ |
$\text{lb}^{-1}\text{in}^{-1}\text{s}\cdot
\text{lm}$ |
luminousefficacy
$\left[F^{-1}L^{-1}TJ\right]$ |