Condensed Matter Detonation: Theory and Practice

Author:

Tarver Craig M.

Publisher

Springer Berlin Heidelberg

Reference95 articles.

1. Asay, B.W., McAfee, J.M.: Temperature effects on failure thickness and the deflagration-to-detonation transition in PBX 9502 and TATB. In: Tenth International Detonation Symposium, pp. 485–489. Office of Naval Research, Boston (1993). ONR 33395-12

2. Asay, B.W., Kennedy, J.E., Ramsay, J.B., Schelling, F.J., Takala, B. E.: Indices of the Proceedings for the 13th International Symposium on Detonation 1951–2006, Los Alamos National Laboratory Report LA-UR-07-4550 (2007)

3. Bastea, S., Glaesemann, K.R., Fried, L.E.: Equation of state for high explosives detonation products with polar and ionic species. In: Thirteenth International Detonation Symposium, pp. 1137–1143. Office of Naval Research, Norfolk (2006). ONR 351-07-01

4. Bernshtein, V., Oref, I.: Energy transfer rate coefficients from trajectory calculations and contributions of supercollisions to reaction rate coefficients. J. Phys. Chem. 100, 9738–9744 (1996)

5. Bowden, F.P., Yoffe, A.D.: Ignition and Growth of Explosion in Liquids and Solids. Cambridge University Press, Cambridge (1985)

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