abhenry unit

data derived with UnitSystems.jl DOI

\[\text{F}\cdot \text{L}\cdot \text{T}^{2}\text{Q}^{-2}\]

\[\left[\hbar\cdot \text{c}^{-1}\mu_0\cdot \text{m}_\text{e}^{-1}\phi\cdot \lambda\cdot \alpha_\text{L}^{2}\text{g}_0\right]\]

Quantity Product UnitSystem
$1.0 \times 10^{-9}$ $\left[\text{H}\right]$ $2^{-9}5^{-9}$ Metric
$1.00000000055(15) \times 10^{-9}$ $\left[\text{H}\right]$ $\hbar\cdot \text{c}^{-1}\text{e}^{-2}\alpha\cdot \tau^{-1}2^{-2}5^{-2}$ SI2019
$1.0 \times 10^{-9}$ $\left[\text{kg}\cdot \text{m}^{2}\text{C}^{-2}\right]$ $2^{-9}5^{-9}$ SI1976
$1.00000000040(28) \times 10^{-9}$ $\left[\text{H}\right]$ $\text{c}^{-1}\alpha\cdot \text{R}_\text{K}\cdot \tau^{-1}2^{-2}5^{-2}$ CODATA
$9.9999998275(15) \times 10^{-10}$ $\left[\text{H}\right]$ $\text{c}^{-1}\alpha\cdot {\text{R}_\text{K}^{90}}\cdot \tau^{-1}2^{-2}5^{-2}$ Conventional
$9.995052449037728 \times 10^{-10}$ $\left[\text{H}\right]$ $\Omega_\text{it}^{-1}2^{-9}5^{-9}$ International
$9.995102399824086 \times 10^{-10}$ $\left[\text{H}\right]$ $2^{-9}5^{-9}/1.00049$ InternationalMean
$1.0 \times 10^{-9}$ $\left[\text{H}\right]$ $2^{-9}5^{-9}$ MetricTurn
$1.0 \times 10^{-9}$ $\left[\text{H}\right]$ $2^{-9}5^{-9}$ MetricSpatian
$1.0 \times 10^{-9}$ $\left[\text{H}\right]$ $2^{-9}5^{-9}$ MetricGradian
$1.0 \times 10^{-9}$ $\left[\text{H}\right]$ $2^{-9}5^{-9}$ MetricDegree
$1.0 \times 10^{-9}$ $\left[\text{H}\right]$ $2^{-9}5^{-9}$ MetricArcminute
$1.0 \times 10^{-9}$ $\left[\text{H}\right]$ $2^{-9}5^{-9}$ MetricArcsecond
$1.0197162129779284 \times 10^{-10}$ $\left[\text{kgf}\cdot \text{m}\cdot \text{s}^{2}\text{C}^{-2}\right]$ $\text{g}_0^{-1}2^{-9}5^{-9}$ Engineering
$1.0197162129779284 \times 10^{-10}$ $\left[\text{kgf}\cdot \text{m}\cdot \text{s}^{2}\text{C}^{-2}\right]$ $\text{g}_0^{-1}2^{-9}5^{-9}$ Gravitational
$1.0 \times 10^{-12}$ $\left[\text{t}\cdot \text{m}^{2}\text{C}^{-2}\right]$ $2^{-12}5^{-12}$ MTS
$1.0$ $\left[\text{cm}\right]$ $1$ EMU
$1.1126500560536184 \times 10^{-21}$ $\left[\text{cm}^{-1}\text{s}^{2}\right]$ $\text{c}^{-2}2^{-4}5^{-4}$ ESU
$1.1126500560536184 \times 10^{-21}$ $\left[\text{cm}^{-1}\text{s}^{2}\right]$ $\text{c}^{-2}2^{-4}5^{-4}$ Gauss
$8.85418781762039 \times 10^{-23}$ $\left[\text{cm}^{-1}\text{s}^{2}\right]$ $\text{c}^{-2}\tau^{-1}2^{-5}5^{-4}$ LorentzHeaviside
$2.3730360404231933 \times 10^{-8}$ $\left[\text{lb}\cdot \text{ft}^{2}\text{C}^{-2}\right]$ $\text{ft}^{-2}\text{lb}^{-1}2^{-9}5^{-9}$ FPS
$8.850745791327184 \times 10^{-9}$ $\left[\text{lb}\cdot \text{in}\cdot \text{s}^{2}\text{C}^{-2}\right]$ $\text{g}_0^{-1}\text{ft}^{-1}\text{lb}^{-1}2^{-7}3\cdot 5^{-9}$ IPS
$7.375621492772654 \times 10^{-10}$ $\left[\text{lb}\cdot \text{ft}\cdot \text{s}^{2}\text{C}^{-2}\right]$ $\text{g}_0^{-1}\text{ft}^{-1}\text{lb}^{-1}2^{-9}5^{-9}$ British
$7.375621492772654 \times 10^{-10}$ $\left[\text{lbf}\cdot \text{ft}\cdot \text{s}^{2}\text{C}^{-2}\right]$ $\text{g}_0^{-1}\text{ft}^{-1}\text{lb}^{-1}2^{-9}5^{-9}$ English
$7.375606741529669 \times 10^{-10}$ $\left[\text{lbf}\cdot \text{ft}\cdot \text{s}^{2}\text{C}^{-2}\right]$ $\text{g}_0^{-1}\text{ft}_\text{US}^{-1}\text{lb}^{-1}2^{-9}5^{-9}$ Survey
$8.512095530673184 \times 10^{-16}$ $\left[\text{lb}\cdot \text{mi}^{2}\text{C}^{-2}\right]$ $\text{ft}^{-2}\text{lb}^{-1}2^{-19}3^{-2}5^{-11}11^{-2}$ MPH
$1.0 \times 10^{-15}$ $\left[\text{kg}\cdot \text{km}^{2}\text{C}^{-2}\right]$ $2^{-15}5^{-15}$ KKH
$2.9117835793(29) \times 10^{-16}$ $\left[\text{keg}\cdot \text{nm}^{2}\text{eC}^{-2}\right]$ $\text{g}_0^{1/2}\text{GM}_\text{E}^{-1/2}\tau^{-1}2^{-8}3^{6}5^{-12}$ Nautical
$9.985540395(10) \times 10^{-10}$ $\left[\text{eH}\right]$ $\text{g}_0^{1/2}\text{GM}_\text{E}^{-1/2}\tau^{-1}5^{-2}$ Meridian
$2.247209(50) \times 10^{-62}$ $\left[\text{M}_\odot\cdot \text{au}^{2}\text{C}^{-2}\right]$ $\hbar\cdot \text{c}\cdot \text{au}^{-5}\text{k}_\text{G}^{-2}\text{m}_\text{P}^{-2}\tau^{-3}2^{19}3^{14}5$ IAU☉
$1.133192(25) \times 10^{-51}$ $\left[\text{ME}\cdot \text{LD}^{2}\text{C}^{-2}\right]$ $\hbar\cdot \text{c}\cdot \text{m}_\text{P}^{-2}\text{GM}_\text{E}^{-1}\tau^{-1}2^{-15}3^{-6}5^{-15}/2.0269216899999997 \times 10^{8}$ IAUE
$8.69324(19) \times 10^{-61}$ $\left[\text{MJ}\cdot \text{JD}^{2}\text{C}^{-2}\right]$ $\hbar\cdot \text{c}\cdot \text{m}_\text{P}^{-2}\text{GM}_\text{J}^{-1}\tau^{-1}2^{-21}3^{-2}5^{-21}/67336617049$ IAUJ
$7.314(45) \times 10^{-29}$ $\left[\text{T}^{2}\text{Q}^{-2}\right]$ $\text{c}^{-1}\text{H}_0\cdot \text{au}^{-1}\tau\cdot 2^{-12}3^{-4}5^{-8}$ Hubble
$2.097(16) \times 10^{-29}$ $\left[\text{M}\cdot \text{T}^{2}\text{Q}^{-2}\right]$ $\text{c}^{-1}\Omega_{\Lambda}^{1/2}\text{H}_0\cdot \text{au}^{-1}\tau^{1/2}2^{-13}3^{-7/2}5^{-8}$ Cosmological
$113.92(42)$ $\left[\text{M}^{-1}\text{Q}^{-2}\right]$ $\hbar^{-1/2}\Omega_{\Lambda}^{1/4}\text{H}_0^{1/2}\text{au}^{-1/2}\text{m}_\text{P}^{1/2}\tau^{3/4}2^{-15/2}3^{-7/4}5^{-5}$ CosmologicalQuantum
$1.388914(15) \times 10^{31}$ $\left[\text{M}^{-1}\right]$ $\hbar^{-1}\text{c}\cdot \text{m}_\text{P}\cdot \tau^{-1/2}2^{-7/2}5^{-2}$ Planck
$6.187141(68) \times 10^{32}$ $\left[\text{m}_\text{P}^{-1}\text{e}_\text{n}^{-2}\right]$ $\hbar^{-1}\text{c}\cdot \text{m}_\text{P}\cdot \tau\cdot 2^{-2}5^{-2}$ PlanckGauss
$7.242815(80) \times 10^{33}$ $\left[\text{M}\cdot \text{T}^{2}\text{Q}^{-2}\right]$ $\hbar^{-1}\text{c}\cdot \alpha^{-1/2}\text{m}_\text{P}\cdot \tau\cdot 2^{-2}5^{-2}$ Stoney
$10063.0475809(15)$ $\left[\text{a}_0^{2}\text{e}^{-2}\right]$ $\text{R}_{\infty}\cdot \alpha\cdot \tau\cdot 2^{-1}5^{-2}$ Hartree
$2515.76189523(39)$ $\left[\text{M}\cdot \text{L}^{2}\text{Q}^{-2}\right]$ $\text{R}_{\infty}\cdot \alpha\cdot \tau\cdot 2^{-3}5^{-2}$ Rydberg
$2.053850(23) \times 10^{25}$ $\left[\text{M}\cdot \text{L}^{2}\text{Q}^{-2}\right]$ $\hbar^{-1}\text{c}\cdot \alpha^{7/2}\text{m}_\text{P}\cdot \tau\cdot 2^{-2}5^{-2}$ Schrodinger
$3.5486911866(16) \times 10^{12}$ $\left[\text{T}^{2}\text{Q}^{-2}\right]$ $\text{R}_{\infty}\cdot \alpha^{-3}\tau\cdot 2^{-1}5^{-2}$ Electronic
$2.06074224158(63) \times 10^{9}$ $\left[\mathbb{1}\right]$ $\text{R}_{\infty}\cdot \alpha^{-2}2^{-2}5^{-2}$ Natural
$2.58960507484(79) \times 10^{10}$ $\left[\text{e}_\text{n}^{-2}\right]$ $\text{R}_{\infty}\cdot \alpha^{-2}\tau\cdot 2^{-1}5^{-2}$ NaturalGauss
$3.7838373761(12) \times 10^{12}$ $\left[\text{m}_\text{p}^{-1}\right]$ $\text{R}_{\infty}\cdot \alpha^{-2}\mu_\text{eu}^{-1}\mu_\text{pu}\cdot 2^{-2}5^{-2}$ QCD
$4.7549102813(15) \times 10^{13}$ $\left[\text{m}_\text{p}^{-1}\text{e}_\text{n}^{-2}\right]$ $\text{R}_{\infty}\cdot \alpha^{-2}\mu_\text{eu}^{-1}\mu_\text{pu}\cdot \tau\cdot 2^{-1}5^{-2}$ QCDGauss
$3.46982567579(57) \times 10^{11}$ $\left[\text{m}_\text{p}^{-1}\text{e}^{-2}\right]$ $\text{R}_{\infty}\cdot \alpha^{-1}\mu_\text{eu}^{-1}\mu_\text{pu}\cdot \tau\cdot 2^{-1}5^{-2}$ QCDoriginal