electrostatic unit
data derived with UnitSystems.jl
\[\text{F}\cdot \text{L}^{2}\text{Q}^{-2}\]
\[\left[\text{c}^{2}\mu_0\cdot \lambda\cdot \alpha_\text{L}^{2}\right]\]
\[k_e = \frac{\lambda}{4\pi\varepsilon_0} = \frac{\mu_0\lambda (c\alpha_L)^2}{4\pi} = \frac{\alpha \hbar c}{e^2} = \frac{R_K\alpha c}{2\pi} = \frac{\alpha_B}{\alpha_L\mu_0\varepsilon_0} = k_mc^2\]
Quantity | Product | UnitSystem |
---|---|---|
$8.987551787368176 \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}^{2}2^{-7}5^{-7}$ | Metric |
$8.9875517923(14) \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\hbar\cdot \text{c}\cdot \text{e}^{-2}\alpha\cdot \tau^{-1}$ | SI2019 |
$8.987551787368176 \times 10^{9}$ $\left[\text{kg}\cdot \text{m}^{3}\text{s}^{-2}\text{C}^{-2}\right]$ | $\text{c}^{2}2^{-7}5^{-7}$ | SI1976 |
$8.9875517909(25) \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}\cdot \alpha\cdot \text{R}_\text{K}\cdot \tau^{-1}$ | CODATA |
$8.9875516323(14) \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}\cdot \alpha\cdot {\text{R}_\text{K}^{90}}\cdot \tau^{-1}$ | Conventional |
$8.983105150318768 \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}^{2}\Omega_\text{it}^{-1}2^{-7}5^{-7}$ | International |
$8.98315004384669 \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}^{2}2^{-7}5^{-7}/1.00049$ | InternationalMean |
$8.987551787368176 \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}^{2}2^{-7}5^{-7}$ | MetricTurn |
$8.987551787368176 \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}^{2}2^{-7}5^{-7}$ | MetricSpatian |
$8.987551787368176 \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}^{2}2^{-7}5^{-7}$ | MetricGradian |
$8.987551787368176 \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}^{2}2^{-7}5^{-7}$ | MetricDegree |
$8.987551787368176 \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}^{2}2^{-7}5^{-7}$ | MetricArcminute |
$8.987551787368176 \times 10^{9}$ $\left[\text{m} \cdot \text{F}^{-1}\right]$ | $\text{c}^{2}2^{-7}5^{-7}$ | MetricArcsecond |
$9.164752272558087 \times 10^{8}$ $\left[\text{kgf}\cdot \text{m}^{2}\text{C}^{-2}\right]$ | $\text{c}^{2}\text{g}_0^{-1}2^{-7}5^{-7}$ | Engineering |
$9.164752272558087 \times 10^{8}$ $\left[\text{kgf}\cdot \text{m}^{2}\text{C}^{-2}\right]$ | $\text{c}^{2}\text{g}_0^{-1}2^{-7}5^{-7}$ | Gravitational |
$8.987551787368177 \times 10^{6}$ $\left[\text{t}\cdot \text{m}^{3}\text{s}^{-2}\text{C}^{-2}\right]$ | $\text{c}^{2}2^{-10}5^{-10}$ | MTS |
$8.987551787368175 \times 10^{20}$ $\left[\text{erg} \cdot \text{g}^{-1}\right]$ | $\text{c}^{2}2^{4}5^{4}$ | EMU |
$1.0$ $\left[\mathbb{1}\right]$ | $1$ | ESU |
$1.0$ $\left[\mathbb{1}\right]$ | $1$ | Gauss |
$0.07957747154594767$ $\left[\mathbb{1}\right]$ | $\tau^{-1}2^{-1}$ | LorentzHeaviside |
$6.997304562531027 \times 10^{11}$ $\left[\text{lb}\cdot \text{ft}^{3}\text{s}^{-2}\text{C}^{-2}\right]$ | $\text{c}^{2}\text{ft}^{-3}\text{lb}^{-1}2^{-7}5^{-7}$ | FPS |
$3.131753391983621 \times 10^{12}$ $\left[\text{lb}\cdot \text{in}^{2}\text{C}^{-2}\right]$ | $\text{c}^{2}\text{g}_0^{-1}\text{ft}^{-2}\text{lb}^{-1}2^{-3}3^{2}5^{-7}$ | IPS |
$2.1748287444330704 \times 10^{10}$ $\left[\text{lb}\cdot \text{ft}^{2}\text{C}^{-2}\right]$ | $\text{c}^{2}\text{g}_0^{-1}\text{ft}^{-2}\text{lb}^{-1}2^{-7}5^{-7}$ | British |
$2.1748287444330704 \times 10^{10}$ $\left[\text{lbf}\cdot \text{ft}^{2}\text{C}^{-2}\right]$ | $\text{c}^{2}\text{g}_0^{-1}\text{ft}^{-2}\text{lb}^{-1}2^{-7}5^{-7}$ | English |
$2.1748200451267933 \times 10^{10}$ $\left[\text{lbf}\cdot \text{ft}^{2}\text{C}^{-2}\right]$ | $\text{c}^{2}\text{g}_0^{-1}\text{ft}_\text{US}^{-2}\text{lb}^{-1}2^{-7}5^{-7}$ | Survey |
$6.16075603622543 \times 10^{7}$ $\left[\text{lb}\cdot \text{mi}^{3}\text{h}^{-2}\text{C}^{-2}\right]$ | $\text{c}^{2}\text{ft}^{-3}\text{lb}^{-1}2^{-14}3\cdot 5^{-6}11^{-3}$ | MPH |
$1.1647867116429156 \times 10^{8}$ $\left[\text{kg}\cdot \text{km}^{3}\text{h}^{-2}\text{C}^{-2}\right]$ | $\text{c}^{2}2^{-8}3^{4}5^{-12}$ | KKH |
$1.8288194531(37) \times 10^{7}$ $\left[\text{keg}\cdot \text{nm}^{3}\text{h}^{-2}\text{eC}^{-2}\right]$ | $\text{c}^{2}\text{g}_0\cdot \text{GM}_\text{E}^{-1}\tau^{-2}2^{7}3^{13}5^{-4}$ | Nautical |
$8.961579289(18) \times 10^{9}$ $\left[\text{em} \cdot \text{eF}^{-1}\right]$ | $\text{c}^{2}\text{g}_0\cdot \text{GM}_\text{E}^{-1}\tau^{-2}2^{11}5^{7}$ | Meridian |
$1.007829(22) \times 10^{-44}$ $\left[\text{M}_\odot\cdot \text{au}^{3}\text{D}^{-2}\text{C}^{-2}\right]$ | $\hbar\cdot \text{c}^{3}\text{au}^{-6}\text{k}_\text{G}^{-2}\text{m}_\text{P}^{-2}\tau^{-3}2^{35}3^{20}5^{7}$ | IAU☉ |
$1.977836(44) \times 10^{-31}$ $\left[\text{ME}\cdot \text{LD}^{3}\text{D}^{-2}\text{C}^{-2}\right]$ | $\hbar\cdot \text{c}^{3}\text{m}_\text{P}^{-2}\text{GM}_\text{E}^{-1}\tau^{-1}2^{-2}3^{-3}5^{-12}/2.8857284100529995 \times 10^{12}$ | IAUE |
$7.49210(17) \times 10^{-44}$ $\left[\text{MJ}\cdot \text{JD}^{3}\text{D}^{-2}\text{C}^{-2}\right]$ | $\hbar\cdot \text{c}^{3}\text{m}_\text{P}^{-2}\text{GM}_\text{J}^{-1}\tau^{-1}2^{-11}3^{3}5^{-21}/1.7473380767896158 \times 10^{16}$ | IAUJ |
$1.0$ $\left[\text{T}\cdot \text{Q}^{-2}\right]$ | $1$ | Hubble |
$1.0$ $\left[\text{M}\cdot \text{T}\cdot \text{Q}^{-2}\right]$ | $1$ | Cosmological |
$1.0$ $\left[\text{e}_\text{n}^{-2}\right]$ | $1$ | CosmologicalQuantum |
$0.07957747154594767$ $\left[\mathbb{1}\right]$ | $\tau^{-1}2^{-1}$ | Planck |
$1.0$ $\left[\text{e}_\text{n}^{-2}\right]$ | $1$ | PlanckGauss |
$1.0$ $\left[\text{M}\cdot \text{T}\cdot \text{Q}^{-2}\right]$ | $1$ | Stoney |
$1.0$ $\left[\text{a}_0^{-1}\text{e}^{-2}\right]$ | $1$ | Hartree |
$1.0$ $\left[\text{M}\cdot \text{L}^{3}\text{T}^{-2}\text{Q}^{-2}\right]$ | $1$ | Rydberg |
$1.0$ $\left[\text{M}\cdot \text{L}^{3}\text{T}^{-2}\text{Q}^{-2}\right]$ | $1$ | Schrodinger |
$1.0$ $\left[\text{T}\cdot \text{Q}^{-2}\right]$ | $1$ | Electronic |
$0.07957747154594767$ $\left[\mathbb{1}\right]$ | $\tau^{-1}2^{-1}$ | Natural |
$1.0$ $\left[\text{e}_\text{n}^{-2}\right]$ | $1$ | NaturalGauss |
$0.07957747154594767$ $\left[\mathbb{1}\right]$ | $\tau^{-1}2^{-1}$ | QCD |
$1.0$ $\left[\text{e}_\text{n}^{-2}\right]$ | $1$ | QCDGauss |
$0.0072973525693(11)$ $\left[\text{e}^{-2}\right]$ | $\alpha$ | QCDoriginal |