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explosive
The method proposed in [1, 2] is used to construct an analytic solution of the problem of two incompressible plates propelled by the explosion products of a condensed explosive.
      
This work is a continuation of the study of explosive reaction regimes associated with an initial nonuniformity of the reaction induction period.
      
Numerical solutions of problems are used to investigate explosive processes for characteristic heights and initial cloud parameters using a model of quasisteady nucleation.
      
The possibility of impulsive (using a chemical explosive) gas transport at high initial pressure from a secondary into a primary vessel in times 100≤t≤175μsec has been experimentally demonstrated.
      
Gasdynamics of the scattering of the detonation products of a cylindrical explosive charge with inert metal particles
      
A mathematical model of the scattering of the detonation products of a condensed explosive with inert metal particles when the wave travels along the axis of a cylindrical charge is proposed and numerical calculations are carried out.
      
The structural relaxation is studied in amorphous magnetic screens produced by plasma deposition and explosive compacting from an amorphous metallic ribbon.
      
Manganese ferrite (MnFe2O4) ultramicropowders were successfully synthesized via a new synthetic method, i.e., detonation of a special explosive emulsion.
      
The negatively charged large carbon particles with a size of up to 106 atoms were assumed to directly appear from explosive bulk effervescence and spinodal separation of the overheated carbon phase on the graphite surface.
      
Deformation mechanism of the explosive degradation of heavy metal azides under pulsed treatments
      
The experimental results on the kinetics of explosive degradation of heavy metal azides by the action of nanosecond laser and electron-beam pulses and by the impact of accelerated microparticles are reported.
      
A physical model of the phenomenon is developed, which includes superheating and explosive boiling of water in recesses of wavy vapor film.
      
Melt/Water Explosive Interaction: VAPEX-D Code Simulation
      
A VAPEX-D computer code is developed for the simulation of the process of high-temperature melt/water explosive interaction (vapor explosion).
      
An Energy Source Based on a Spiral Magnetic-flux Compression Generator with Simultaneous Axial Initiation of an Explosive Charge
      
A spiral magnetic-flux compression generator with simultaneous axial initiation of an explosive charge is treated.
      
Nucleation Mechanism of Explosive Destruction of Conductors of High Energy Density
      
Explosive collapse of vapor film under conditions of intensive heat fluxes
      
The part played by explosive processes in the formation of discharge in argon
      
The equation is valid for moderate and high pressures up to 4 × 1012 Pa, in particular, explosive and static compression in a wide range of densities.
      
 

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