Angstrom star
The 2022 CODATA recommended value of Angstrom star, retained with its published standard uncertainty.
Registry collection
Published physical bounds on matter, motion, information, and the behavior of the universe.
100+ published records in this collectionThe 2022 CODATA recommended value of Angstrom star, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Avogadro constant, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Bohr magneton, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Bohr magneton in Hz/T, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Bohr magneton in K/T, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Bohr magneton in eV/T, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Bohr magneton in inverse meter per tesla, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Bohr radius, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Boltzmann constant, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Boltzmann constant in Hz/K, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Boltzmann constant in eV/K, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Boltzmann constant in inverse meter per kelvin, retained with its published standard uncertainty.
No heat engine operating between two temperature reservoirs can convert heat to work more efficiently than a reversible one: the Carnot limit η ≤ 1 − T_c/T_h, where T_h and T_c are the hot and cold reservoir temperatures.
The 2022 CODATA recommended value of Compton wavelength, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Copper x unit, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Faraday constant, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Fermi coupling constant, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Hartree energy, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Hartree energy in eV, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Josephson constant, retained with its published standard uncertainty.
Erasing one bit of information in a logically irreversible way necessarily dissipates heat into the environment — a fundamental link between information and thermodynamics. The minimum dissipated energy is Q ≥ k_B T ln(2), where T is the system's temperature.
The 2022 CODATA recommended value of Loschmidt constant (273.15 K, 100 kPa), retained with its published standard uncertainty.
The 2022 CODATA recommended value of Loschmidt constant (273.15 K, 101.325 kPa), retained with its published standard uncertainty.
The 2022 CODATA recommended value of Molybdenum x unit, retained with its published standard uncertainty.
The Navier–Stokes equations, formulated in the 19th century, describe how fluids like air and water move and are the basis of weather prediction, aircraft design, and blood-flow modeling. Despite how thoroughly they're used in practice, nobody has proven that their solutions in three dimensions stay smooth (well-behaved) for all time rather than developing a singularity — or found a case where one does.
The 2022 CODATA recommended value of Newtonian constant of gravitation, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Newtonian constant of gravitation over h-bar c, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Planck constant, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Planck constant in eV/Hz, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Planck length, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Planck mass, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Planck mass energy equivalent in GeV, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Planck temperature, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Planck time, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Rydberg constant, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Rydberg constant times c in Hz, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Rydberg constant times hc in J, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Rydberg constant times hc in eV, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Sackur-Tetrode constant (1 K, 100 kPa), retained with its published standard uncertainty.
The 2022 CODATA recommended value of Sackur-Tetrode constant (1 K, 101.325 kPa), retained with its published standard uncertainty.
The speed of light in vacuum is one of the few physical constants whose value is exact by definition rather than measurement — the 1983 SI redefinition of the metre fixed it precisely, making it the ultimate speed limit for information and matter in relativity.
The 2022 CODATA recommended value of Stefan-Boltzmann constant, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Thomson cross section, retained with its published standard uncertainty.
The 2022 CODATA recommended value of W to Z mass ratio, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Wien frequency displacement law constant, retained with its published standard uncertainty.
The 2022 CODATA recommended value of Wien wavelength displacement law constant, retained with its published standard uncertainty.
Yang–Mills theory underlies the Standard Model's description of the strong nuclear force, and its predictions have been repeatedly confirmed in particle accelerators. Physicists have observed empirically that the theory's particles behave as if they have positive mass (a 'mass gap'), even though the classical fields it's built from travel at the speed of light — but no one has constructed the theory with full mathematical rigor or proven the mass gap exists.
The 2022 CODATA recommended value of alpha particle mass, retained with its published standard uncertainty.
The 2022 CODATA recommended value of alpha particle mass energy equivalent, retained with its published standard uncertainty.
The 2022 CODATA recommended value of alpha particle mass energy equivalent in MeV, retained with its published standard uncertainty.
The 2022 CODATA recommended value of alpha particle mass in u, retained with its published standard uncertainty.
The 2022 CODATA recommended value of alpha particle molar mass, retained with its published standard uncertainty.
The 2022 CODATA recommended value of alpha particle relative atomic mass, retained with its published standard uncertainty.
The 2022 CODATA recommended value of alpha particle rms charge radius, retained with its published standard uncertainty.
The 2022 CODATA recommended value of alpha particle-electron mass ratio, retained with its published standard uncertainty.
The 2022 CODATA recommended value of alpha particle-proton mass ratio, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic mass constant, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic mass constant energy equivalent, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic mass constant energy equivalent in MeV, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic mass unit-electron volt relationship, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic mass unit-hartree relationship, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic mass unit-hertz relationship, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic mass unit-inverse meter relationship, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic mass unit-joule relationship, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic mass unit-kelvin relationship, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic mass unit-kilogram relationship, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of 1st hyperpolarizability, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of 2nd hyperpolarizability, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of action, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of charge, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of charge density, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of current, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of electric dipole mom., retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of electric field, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of electric field gradient, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of electric polarizability, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of electric potential, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of electric quadrupole mom., retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of energy, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of force, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of length, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of mag. dipole mom., retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of mag. flux density, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of magnetizability, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of mass, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of momentum, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of permittivity, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of time, retained with its published standard uncertainty.
The 2022 CODATA recommended value of atomic unit of velocity, retained with its published standard uncertainty.
The 2022 CODATA recommended value of characteristic impedance of vacuum, retained with its published standard uncertainty.
The 2022 CODATA recommended value of classical electron radius, retained with its published standard uncertainty.
The 2022 CODATA recommended value of conductance quantum, retained with its published standard uncertainty.
The 2022 CODATA recommended value of conventional value of Josephson constant, retained with its published standard uncertainty.
The 2022 CODATA recommended value of conventional value of ampere-90, retained with its published standard uncertainty.
The 2022 CODATA recommended value of conventional value of coulomb-90, retained with its published standard uncertainty.
The 2022 CODATA recommended value of conventional value of farad-90, retained with its published standard uncertainty.
The 2022 CODATA recommended value of conventional value of henry-90, retained with its published standard uncertainty.
The 2022 CODATA recommended value of conventional value of ohm-90, retained with its published standard uncertainty.
The 2022 CODATA recommended value of conventional value of volt-90, retained with its published standard uncertainty.
The 2022 CODATA recommended value of conventional value of von Klitzing constant, retained with its published standard uncertainty.