1966
DOI: 10.2514/3.3495
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A direct method for computation of nonequilibrium flows with detached shock waves.

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1968
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Cited by 38 publications
(2 citation statements)
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“…and (10) where in is the molar mass of the background fluid, Y is the ratio of specific heats (assumed constant), N A is Avogadro's number, k is the Boltzmann constant, and n is the electron density. Consistent with the previously stated hypothesis about the behavior of the electrons, the expression for the current density J is Because the events following pellet microexplosion occur in times that are short in comparison to the characteristic time for the magnetic diffusivity in the wa"n material, it is appropriate also to require that the magnetic field at the boundary remain unchanged.…”
Section: The Thermodynamic Variables Are Related Withmentioning
confidence: 99%
“…and (10) where in is the molar mass of the background fluid, Y is the ratio of specific heats (assumed constant), N A is Avogadro's number, k is the Boltzmann constant, and n is the electron density. Consistent with the previously stated hypothesis about the behavior of the electrons, the expression for the current density J is Because the events following pellet microexplosion occur in times that are short in comparison to the characteristic time for the magnetic diffusivity in the wa"n material, it is appropriate also to require that the magnetic field at the boundary remain unchanged.…”
Section: The Thermodynamic Variables Are Related Withmentioning
confidence: 99%
“…Two basic variations utilizing the time-dependent approach have been developed. The simplest is the so-called "shock-capturing" technique [48][49][50]. In this technique the detached bow shock is automatically com puted with no a priori knowledge of its location or even existence.…”
mentioning
confidence: 99%