numpy_ipps.constants.physics.float64 module

Physics numerical constants as float64.

numpy_ipps.constants.physics.float64.F_C = <cdata 'double' 96485.33212331001>

Faraday constant in SI as float64, use F if you need a ndarray

numpy_ipps.constants.physics.float64.G0_C = <cdata 'double' 7.74809172986365e-05>

Conductance quantum in SI as float64, use G0 if you need a ndarray

numpy_ipps.constants.physics.float64.G_C = <cdata 'double' 6.674e-11>

Newtonian constant of gravitation in SI as float64, use G if you need a ndarray

numpy_ipps.constants.physics.float64.KJ_C = <cdata 'double' 483597848416983.6>

Josephson constant in SI as float64, use KJ if you need a ndarray

numpy_ipps.constants.physics.float64.Laplace_C = <cdata 'double' 0.662743419349181>

Laplace limit as float64, use Laplace if you need a ndarray

numpy_ipps.constants.physics.float64.NA_C = <cdata 'double' 6.02214076e+23>

Avogadro constant in SI as float64, use NA if you need a ndarray

numpy_ipps.constants.physics.float64.Phi0Bar_C = <cdata 'double' 3.2910597847545335e-16>

Reduced magnetic flux quantum in SI as float64, use Phi0Bar if you need a ndarray

numpy_ipps.constants.physics.float64.Phi0_C = <cdata 'double' 2.0678338484619295e-15>

Magnetic flux quantum in SI as float64, use Phi0 if you need a ndarray

numpy_ipps.constants.physics.float64.Q2e_C = <cdata 'double' 3.204353268e-19>

Cooper pair charge in SI as float64, use Q2e if you need a ndarray

numpy_ipps.constants.physics.float64.RK2e_C = <cdata 'double' 6453.201864826127>

Superconducting quantum of resistance in SI as float64, use RK2e if you need a ndarray

numpy_ipps.constants.physics.float64.RK_C = <cdata 'double' 25812.80745930451>

Von Klitzing constant in SI as float64, use RK if you need a ndarray

numpy_ipps.constants.physics.float64.R_C = <cdata 'double' 8.31446261815324>

Molar gas constant in SI as float64, use R if you need a ndarray

numpy_ipps.constants.physics.float64.Z0_C = <cdata 'double' 376.73031334826817>

Characteristic impedance of vacuum in SI as float64, use Z0 if you need a ndarray

numpy_ipps.constants.physics.float64.alphaPauw_C = <cdata 'double' 4.532360141827196>

Van der Pauw constant in SI as float64, use alphaPauw if you need a ndarray

numpy_ipps.constants.physics.float64.alpha_c = <cdata 'double' 0.007297352563106645>

Fine-structure constant as float64, use alpha if you need a ndarray

numpy_ipps.constants.physics.float64.c_C = <cdata 'double' 299792458.0>

Speed of light in vacuum in SI as float64, use c if you need a ndarray

numpy_ipps.constants.physics.float64.e_C = <cdata 'double' 1.602176634e-19>

Elementary charge in SI as float64, use h if you need a ndarray

numpy_ipps.constants.physics.float64.eps0_C = <cdata 'double' 8.854187820288008e-12>

Vacuum electric permitivity in SI as float64, use eps0 if you need a ndarray

numpy_ipps.constants.physics.float64.g0_C = <cdata 'double' 9.80665>

Newtonian constant of gravitation in SI as float64, use g0 if you need a ndarray

numpy_ipps.constants.physics.float64.gd_C = <cdata 'double' 0.85743823>

Deuteron g-factor as float64, use gd if you need a ndarray

numpy_ipps.constants.physics.float64.ge_C = <cdata 'double' -2.002319304362>

Electron g-factor as float64, use ge if you need a ndarray

numpy_ipps.constants.physics.float64.gh_C = <cdata 'double' -4.2552506>

Helion g-factor as float64, use gh if you need a ndarray

numpy_ipps.constants.physics.float64.gmu_C = <cdata 'double' -2.00233184>

Muon g-factor as float64, use gmu if you need a ndarray

numpy_ipps.constants.physics.float64.gn_C = <cdata 'double' -3.826085>

Neutron g-factor as float64, use gn if you need a ndarray

numpy_ipps.constants.physics.float64.gp_C = <cdata 'double' -5.58569468>

Proton g-factor as float64, use gp if you need a ndarray

numpy_ipps.constants.physics.float64.gt_C = <cdata 'double' 5.9579249>

Triton g-factor as float64, use gt if you need a ndarray

numpy_ipps.constants.physics.float64.hBar_C = <cdata 'double' 1.0545718176461565e-34>

Reduced Planck constant in SI as float64, use hBar if you need a ndarray

numpy_ipps.constants.physics.float64.h_C = <cdata 'double' 6.62607015e-34>

Planck constant in SI as float64, use h if you need a ndarray

numpy_ipps.constants.physics.float64.kB_C = <cdata 'double' 1.380649e-23>

Boltzmann constant in SI as float64, use kB if you need a ndarray

numpy_ipps.constants.physics.float64.kC_C = <cdata 'double' 8987551784.66038>

Coulomb constant in SI as float64, use kC if you need a ndarray

numpy_ipps.constants.physics.float64.md_C = <cdata 'double' 3.34358377e-27>

Deuteron mass in SI as float64, use md if you need a ndarray

numpy_ipps.constants.physics.float64.me_C = <cdata 'double' 9.1093837e-31>

Electron mass in SI as float64, use me if you need a ndarray

numpy_ipps.constants.physics.float64.mh_C = <cdata 'double' 5.00641277e-27>

Helion mass in SI as float64, use mh if you need a ndarray

numpy_ipps.constants.physics.float64.mmu_C = <cdata 'double' 1.8835316e-28>

Muon mass in SI as float64, use mmu if you need a ndarray

numpy_ipps.constants.physics.float64.mn_C = <cdata 'double' 1.674927498e-27>

Neutron mass in SI as float64, use mn if you need a ndarray

numpy_ipps.constants.physics.float64.mp_C = <cdata 'double' 1.672621923e-27>

Proton mass in SI as float64, use mp if you need a ndarray

numpy_ipps.constants.physics.float64.mt_C = <cdata 'double' 5.00735674e-27>

Triton mass in SI as float64, use mt if you need a ndarray

numpy_ipps.constants.physics.float64.mu0_C = <cdata 'double' 1.2566370610573137e-06>

Vacuum magnetic permeability in SI as float64, use mu0 if you need a ndarray

numpy_ipps.constants.physics.float64.thetam_C = <cdata 'double' 0.9553166181245092>

Magic angle in radian as float64, use thetam if you need a ndarray