The electrostatic energy per degree of freedom of a two-temperature plasma.
Electrostatic energy per degree of freedom of two-temperature plasma examined for validity of resonant approximations in ion wave region
Engineering topics
Publications and source records attributed to Primack, J. R..
Electrostatic energy per degree of freedom of two-temperature plasma examined for validity of resonant approximations in ion wave region
Analysis of ionized plasmas in which electron temperature exceeds ion temperature
Effective mass in nuclear deformational Hamiltonian calculated by asymptotic approximation method which is two orders of magnitude better than liquid drop model
Dielectric constant of homogeneous fully ionized two-temperature plasma for determining conditions under which ion waves can be found
Homogeneous, fully ionized plasma HF conductivity computed using kinetic equation, showing application to two-temperature plasma
Damping of high frequency waves in homogeneous fully ionized plasma with relative electron-ion drift calculated, using fokker-planck kinetic equation
Anisotropic ion or electron temperature relaxation times to isotropy and to equilibrium calculated, using plasma kinetic equation including dynamic shielding