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The relaxation zone behind ormal shock waves in a dusty reacting diatomic gas
O. Igra
,
G. Ben-Dor
Department of Mechanical Engineering
Research output
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peer-review
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Dive into the research topics of 'The relaxation zone behind ormal shock waves in a dusty reacting diatomic gas'. Together they form a unique fingerprint.
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Keyphrases
Shock Waves
100%
Diatomic Gas
100%
Relaxation Zone
100%
Dust
50%
Specific Heat Capacity
50%
Shock Front
50%
Size-density
50%
Flow Field
25%
Heat Transfer
25%
Physical Properties
25%
Temperature Variation
25%
Heat Shock
25%
Mass Concentration
25%
Nitrogen Gas
25%
Size Dependence
25%
Normal Shock Wave
25%
Dust Particles
25%
Gaseous Phase
25%
Viscous Interaction
25%
Equilibrium State
25%
Sudden Change
25%
Mach number
25%
Thermal Relaxation
25%
Difference in Temperature
25%
Property Size
25%
Dust Concentration
25%
Inert Dusts
25%
Kinematic Relaxation
25%
Change in Velocity
25%
Engineering
Specific Heat Capacity
100%
Shock Front
100%
Diatomic Gas
100%
Flow Field
50%
Mass Concentration
50%
Normal Shock Wave
50%
Gaseous Phase
50%
Mach Number
50%
Sudden Change
50%
Thermal Relaxation
50%