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detonation

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View Explosivstoffe By Meyer, Rudolf
Cover of Explosivstoffe by meyer, rudolf

Explosivstoffe

By Meyer, Rudolf

View Explosive effects and applications By Jonas A. Zukas,Walters, W. P.
Cover of Explosive effects and applications by jonas a. zukas,walters, w. p.

Explosive effects and applications

By Jonas A. Zukas,Walters, W. P.

View Deflagration to detonation transition in thermonuclear supernovae By A. M. Khokhlov

Deflagration to detonation transition in thermonuclear supernovae

Deflagration to detonation transition in thermonuclear supernovae

By A. M. Khokhlov

View Effects of fuel distribution on detonation tube performance By Hugh Douglas Perkins

Effects of fuel distribution on detonation tube performance

Effects of fuel distribution on detonation tube performance

By Hugh Douglas Perkins

View Los Alamos explosives performance data By Charles L. Mader,James N. Johnson
Cover of Los Alamos explosives performance data by charles l. mader,james n. johnson

Los Alamos explosives performance data

By Charles L. Mader,James N. Johnson

View Explosives By
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Explosives

By

View Computational study of near-limit propagation of detonation in hydrogen-air mixtures By Shaye Yungster

Computational study of near-limit propagation of detonation in hydrogen-air mixtures

Computational study of near-limit propagation of detonation in hydrogen-air mixtures

By Shaye Yungster

View Effects of boundary layers on oblique detonation structures By C. Li

Effects of boundary layers on oblique detonation structures

Effects of boundary layers on oblique detonation structures

By C. Li

View Simulation of complex shock reflections from wedges in inert and reactive gaseous mixtures By D. L. Book

Simulation of complex shock reflections from wedges in inert and reactive gaseous mixtures

Simulation of complex shock reflections from wedges in inert and reactive gaseous mixtures

By D. L. Book

View Convection of a pattern of vorticity through a reacting shock wave By Thomas L. Jackson

Convection of a pattern of vorticity through a reacting shock wave

Convection of a pattern of vorticity through a reacting shock wave

By Thomas L. Jackson

View A performance map for ideal air breathing pulse detonation engines By Daniel E. Paxon

A performance map for ideal air breathing pulse detonation engines

A performance map for ideal air breathing pulse detonation engines

By Daniel E. Paxon

View Flame acceleration and transition to detonation in large fuel-air clouds with obstacles (U) By I. O. Moen

Flame acceleration and transition to detonation in large fuel-air clouds with obstacles (U)

Flame acceleration and transition to detonation in large fuel-air clouds with obstacles (U)

By I. O. Moen

View FCT simulation of HOB airblast phenomena By A. L. Kuhl

FCT simulation of HOB airblast phenomena

FCT simulation of HOB airblast phenomena

By A. L. Kuhl

View Contribution de Paul Vieille a la connaissance des detonations et des ondes de choc By N. Manson

Contribution de Paul Vieille a la connaissance des detonations et des ondes de choc

Contribution de Paul Vieille a la connaissance des detonations et des ondes de choc

By N. Manson

View Numerical studies of a detonation analogue By Clarke, J. F.

Numerical studies of a detonation analogue

Numerical studies of a detonation analogue

By Clarke, J. F.

View Proceedings By Symposium (International) on Detonation (9th 1989 Portland, Oregon)

Proceedings

Proceedings

By Symposium (International) on Detonation (9th 1989 Portland, Oregon)

View Detonation pulse engine By D. Helman

Detonation pulse engine

Detonation pulse engine

By D. Helman

View Riemann problems for reacting gas, with applications to transition By Zhen-huan Teng

Riemann problems for reacting gas, with applications to transition

Riemann problems for reacting gas, with applications to transition

By Zhen-huan Teng

View Performance trials of the eight-inch diameter UTIAS Implosion-Driven Hypervelocity Launchers MK II and MK III By S. K. Chan

Performance trials of the eight-inch diameter UTIAS Implosion-Driven Hypervelocity Launchers MK II and MK III

Performance trials of the eight-inch diameter UTIAS Implosion-Driven Hypervelocity Launchers MK II and MK III

By S. K. Chan