pound-mole unit
data derived with UnitSystems.jl
\[\text{N}\]
\[\left[\text{m}_\text{e}\cdot \text{M}_\text{u}^{-1}\right]\]
Quantity | Product | UnitSystem |
---|---|---|
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | Metric |
$453.59237016(14)$ $\left[\text{mol}\right]$ | $\text{N}_\text{A}^{-1}\hbar^{-1}\text{c}\cdot \text{R}_{\infty}^{-1}\alpha^{2}\mu_\text{eu}\cdot \text{lb}\cdot 2^{-1}$ | SI2019 |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | SI1976 |
$453.5923624(56)$ $\left[\text{mol}\right]$ | $\hbar^{-1}\text{lb}\cdot \text{R}_\text{K}^{-1}\text{K}_\text{J}^{-2}2^{5}5^{3}$ | CODATA |
$453.5922813061279$ $\left[\text{mol}\right]$ | $\hbar^{-1}\text{lb}\cdot {\text{R}_\text{K}^{90}}^{-1}{\text{K}_\text{J}^{90}}^{-2}2^{5}5^{3}$ | Conventional |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | International |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | InternationalMean |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | MetricTurn |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | MetricSpatian |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | MetricGradian |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | MetricDegree |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | MetricArcminute |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | MetricArcsecond |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | Engineering |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | Gravitational |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | MTS |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | EMU |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | ESU |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | Gauss |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | LorentzHeaviside |
$1.0$ $\left[\text{lb-mol}\right]$ | $1$ | FPS |
$0.0025900791809639378$ $\left[\text{slinch-mol}\right]$ | $\text{g}_0^{-1}\text{ft}\cdot 2^{-2}3^{-1}$ | IPS |
$0.031080950171567256$ $\left[\text{slug-mol}\right]$ | $\text{g}_0^{-1}\text{ft}$ | British |
$1.0$ $\left[\text{lb-mol}\right]$ | $1$ | English |
$1.0$ $\left[\text{lb-mol}\right]$ | $1$ | Survey |
$1.0$ $\left[\text{lb-mol}\right]$ | $1$ | MPH |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | KKH |
$451.6275838(14)$ $\left[\text{eg-mol}\right]$ | $\text{g}_0^{3/2}\text{lb}\cdot \text{GM}_\text{E}^{-3/2}\tau^{-3}2^{30}5^{24}$ | Nautical |
$451.6275838(14)$ $\left[\text{eg-mol}\right]$ | $\text{g}_0^{3/2}\text{lb}\cdot \text{GM}_\text{E}^{-3/2}\tau^{-3}2^{30}5^{24}$ | Meridian |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | IAU☉ |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | IAUE |
$453.59237$ $\left[\text{mol}\right]$ | $\text{lb}\cdot 2^{3}5^{3}$ | IAUJ |
$4.9793969039(15) \times 10^{29}$ $\left[\mathbb{1}\right]$ | $\hbar^{-1}\text{c}\cdot \text{R}_{\infty}^{-1}\alpha^{2}\text{lb}\cdot 2^{-1}$ | Hubble |
$1.776(13) \times 10^{-53}$ $\left[\text{M}\right]$ | $\hbar\cdot \text{c}^{-2}\Omega_{\Lambda}^{1/2}\text{H}_0\cdot \text{au}^{-1}\text{lb}\cdot \text{m}_\text{P}^{-2}\tau^{1/2}2^{-9}3^{-7/2}5^{-6}$ | Cosmological |
$1.1319(42) \times 10^{38}$ $\left[\text{M}\right]$ | $\hbar^{-1/2}\text{c}\cdot \Omega_{\Lambda}^{-1/4}\text{H}_0^{-1/2}\text{au}^{1/2}\text{lb}\cdot \text{m}_\text{P}^{-1/2}\tau^{1/4}2^{11/2}3^{7/4}5^{3}$ | CosmologicalQuantum |
$7.387971(81) \times 10^{7}$ $\left[\text{M}\right]$ | $\text{lb}\cdot \text{m}_\text{P}^{-1}\tau^{1/2}2^{1/2}$ | Planck |
$2.084108(23) \times 10^{7}$ $\left[\text{m}_\text{P}\right]$ | $\text{lb}\cdot \text{m}_\text{P}^{-1}$ | PlanckGauss |
$2.439706(27) \times 10^{8}$ $\left[\text{M}\right]$ | $\alpha^{-1/2}\text{lb}\cdot \text{m}_\text{P}^{-1}$ | Stoney |
$4.9793969039(15) \times 10^{29}$ $\left[\mathbb{1}\right]$ | $\hbar^{-1}\text{c}\cdot \text{R}_{\infty}^{-1}\alpha^{2}\text{lb}\cdot 2^{-1}$ | Hartree |
$2.48969845195(76) \times 10^{29}$ $\left[\text{M}\right]$ | $\hbar^{-1}\text{c}\cdot \text{R}_{\infty}^{-1}\alpha^{2}\text{lb}\cdot 2^{-2}$ | Rydberg |
$2.439706(27) \times 10^{8}$ $\left[\text{M}\right]$ | $\alpha^{-1/2}\text{lb}\cdot \text{m}_\text{P}^{-1}$ | Schrodinger |
$4.9793969039(15) \times 10^{29}$ $\left[\mathbb{1}\right]$ | $\hbar^{-1}\text{c}\cdot \text{R}_{\infty}^{-1}\alpha^{2}\text{lb}\cdot 2^{-1}$ | Electronic |
$4.9793969039(15) \times 10^{29}$ $\left[\mathbb{1}\right]$ | $\hbar^{-1}\text{c}\cdot \text{R}_{\infty}^{-1}\alpha^{2}\text{lb}\cdot 2^{-1}$ | Natural |
$4.9793969039(15) \times 10^{29}$ $\left[\mathbb{1}\right]$ | $\hbar^{-1}\text{c}\cdot \text{R}_{\infty}^{-1}\alpha^{2}\text{lb}\cdot 2^{-1}$ | NaturalGauss |
$2.71186431060(85) \times 10^{26}$ $\left[\text{m}_\text{p}\right]$ | $\hbar^{-1}\text{c}\cdot \text{R}_{\infty}^{-1}\alpha^{2}\mu_\text{eu}\cdot \mu_\text{pu}^{-1}\text{lb}\cdot 2^{-1}$ | QCD |
$2.71186431060(85) \times 10^{26}$ $\left[\text{m}_\text{p}\right]$ | $\hbar^{-1}\text{c}\cdot \text{R}_{\infty}^{-1}\alpha^{2}\mu_\text{eu}\cdot \mu_\text{pu}^{-1}\text{lb}\cdot 2^{-1}$ | QCDGauss |
$2.71186431060(85) \times 10^{26}$ $\left[\text{m}_\text{p}\right]$ | $\hbar^{-1}\text{c}\cdot \text{R}_{\infty}^{-1}\alpha^{2}\mu_\text{eu}\cdot \mu_\text{pu}^{-1}\text{lb}\cdot 2^{-1}$ | QCDoriginal |