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Units

This page is a unit-system lookup table. It states what is being set to one and what must be restored when translating formulas.

QuantitySI UnitSymbol
Lengthmeterm\mathrm m
Masskilogramkg\mathrm{kg}
Timeseconds\mathrm s
Electric currentampereA\mathrm A
TemperaturekelvinK\mathrm K
Amount of substancemolemol\mathrm{mol}
Luminous intensitycandelacd\mathrm{cd}
QuantityUnitDefinition
EnergyjouleJ=kg m2 s−2\mathrm J=\mathrm{kg\,m^2\,s^{-2}}
FrequencyhertzHz=s−1\mathrm{Hz}=\mathrm{s^{-1}}
ChargecoulombC=A s\mathrm C=\mathrm{A\,s}
Electric potentialvoltV=J C−1\mathrm V=\mathrm{J\,C^{-1}}
Magnetic fieldteslaT=kg s−2 A−1\mathrm T=\mathrm{kg\,s^{-2}\,A^{-1}}
Angular momentumjoule secondJ s\mathrm{J\,s}
Wave numberinverse meterm−1\mathrm{m^{-1}}
Unit SystemSet to OneCommon UseMain Risk
SIno constants suppressedlaboratory values, metrology, engineeringformulas can be cluttered by 4πϵ04\pi\epsilon_0, cc, and ℏ\hbar
Natural unitsℏ=c=1\hbar=c=1relativistic and field-theory bridge workdimensions collapse into powers of energy
Atomic unitsℏ=me=e=4πϵ0=1\hbar=m_e=e=4\pi\epsilon_0=1atomic and molecular calculationscharge and electromagnetic conventions differ from SI-looking formulas
Thermal unitskB=1k_B=1statistical mechanics and many-body theorytemperature and energy share dimensions
ConversionValue
Electron volt1 eV=1.602176634×10−19 J1\ \mathrm{eV}=1.602176634\times10^{-19}\ \mathrm J
Hartree1 Eh≈27.211386245988 eV1\ E_h\approx27.211386245988\ \mathrm{eV}
Rydberg energy1 Ry=Eh/21\ \mathrm{Ry}=E_h/2
Temperature-energy1 K=kB K≈8.617333262×10−5 eV1\ \mathrm{K}=k_B\ \mathrm K\approx8.617333262\times10^{-5}\ \mathrm{eV}
Dimensionless ConventionRestoration Rule
ℏ=1\hbar=1restore ℏ\hbar by dimensional analysis in actions, commutators, angular momenta, and frequencies
c=1c=1restore cc when converting mass, energy, momentum, and time
kB=1k_B=1restore kBk_B when converting temperatures to energies
4πϵ0=14\pi\epsilon_0=1restore SI Coulomb factors carefully; do not mix with Gaussian conventions
  • Adding quantities with incompatible dimensions after setting constants to one.
  • Treating angular frequency ω\omega and ordinary frequency ν\nu as identical without the factor 2π2\pi.
  • Forgetting that E=ℏωE=\hbar\omega but E=hνE=h\nu.
  • Restoring cc but not ℏ\hbar in relativistic formulas.