Citation: S. Yang et al., AN EXPERIMENTAL-STUDY OF TEMPERATURE STRUCTURE OF SHOCK RELAXATION INAIR-DUSTY EXPLOSIVE MEDIA, Shock waves, 5(1-2), 1995, pp. 121-123
Citation: F. Lordet et al., NONEQUILIBRIUM VIBRATION-DISSOCIATION PHENOMENA BEHIND A PROPAGATING SHOCK-WAVE - VIBRATIONAL POPULATION CALCULATION, Shock waves, 4(6), 1995, pp. 299-312
Citation: Jl. Palmer et Rk. Hanson, SHOCK TUNNEL FLOW VISUALIZATION USING PLANAR LASER-INDUCED FLUORESCENCE IMAGING OF NO AND OH, Shock waves, 4(6), 1995, pp. 313-323
Authors:
PRESLES HN
VIDAL P
GOIS JC
KHASAINOV BA
ERMOLAEV BS
Citation: Hn. Presles et al., INFLUENCE OF GLASS MICROBALLOONS SIZE ON THE DETONATION OF NITROMETHANE BASED MIXTURES, Shock waves, 4(6), 1995, pp. 325-329
Authors:
MATSUE H
YAMAGUCHI I
SEKINE T
YOSHIHARA K
Citation: H. Matsue et al., SHOCK-INDUCED CHEMICAL PROCESSES AND MOLECULAR ROCKET REACTION IN METALLOCENES AND THEIR CYCLODEXTRIN INCLUSION-COMPOUNDS, Shock waves, 4(5), 1995, pp. 267-270
Citation: B. Veyssiere et Ba. Khasainov, STRUCTURE AND MULTIPLICITY OF DETONATION REGIMES IN HETEROGENEOUS HYBRID MIXTURES, Shock waves, 4(4), 1995, pp. 171-186
Citation: A. Korobkin, IMPACT ON THE SURFACE OF A COMPRESSIBLE LIQUID .1. PROPAGATION OF A WEAK, NEARLY PLANE SHOCK-WAVE, Shock waves, 4(4), 1995, pp. 209-216
Citation: A. Korobkin, IMPACT ON THE SURFACE OF A COMPRESSIBLE LIQUID .2. FOCUSING OF A WEAK, NEAR-CYLINDRICAL SHOCK-WAVE, Shock waves, 4(4), 1995, pp. 217-224