Computer Science – Numerical Analysis
Scientific paper
Feb 1981
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1981ap%26ss..74..453r&link_type=abstract
Astrophysics and Space Science, vol. 74, no. 2, Feb. 1981, p. 453-462.
Computer Science
Numerical Analysis
Gas Density, Gas Dynamics, Plane Waves, Relativistic Velocity, Shock Wave Propagation, Density Distribution, Distribution Functions, Energy Distribution, Equations Of Motion, Nucleons, Numerical Analysis, Shock Fronts, Velocity Distribution
Scientific paper
Similarity solutions for propagation of plane relativistic shock waves through a medium of decreasing nucleon density and approaching the edge of the gas as well as for the subsequent motion of the gas after the shock front arrives at the vacuous boundary are studied in this paper. The medium in the pre-disturbed stage is assumed cold and in the disturbed stage its equation of state is taken as that of a photonic gas.
Deb Ray G.
Sanyal Gautam
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