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Extra info for Advances in Chemical Propulsion (auth unkn) [No TOC]
M. Sharma, A. Devasagayaraj, S. Alihodzic, and S. B. Lewis. 1996. Large-scale synthesis of new high-energy–high-density hydrocarbon fuel systems. 9th ONR Propulsion Meeting Proceedings. Eds. G. D. Roy and K. Kailasanath. Washington, DC: Naval Research Laboratory. 130–38. 13. Marchand, A. , A. Zope, F. Zaragoza, H. L. Ammon, and Z. Du. 1994. Synthesis, characterization and crystal density modeling of four C24 H28 cage-functionalized alkenes. Tetrahedron 50:1687–98. 14. Marchand, A. , D. Vidyanand, Z.
Los Alamos Scientiﬁc Laboratory, Los Alamos, NM. 30. Tarver, C. M. 1979. Density estimations for explosives and related compounds using the group additivity approach. J. Chemical Engineering Data 24:136–45. 31. Cichra, D. , J. R. Holden, and C. Dickinson. 1980. Estimation of normal densities of explosive compounds from empirical atomic volumes. Report 79-273. Naval Surface Weapons Center, Silver Spring, MD. 32. Stine, J. R. 1981. Prediction of crystal densities of organic explosives by group additivity.
Kozyro, A. P. Marchand, V. V. Diky, V. V. Simirsky, L. S. Ivashkevich, A. P. Krasulin, V. M. Sevruk, and M. L. Frenkel. 1994. Thermodynamic properties of heptacyclotetradecane, C14 H16 . J. Chem. Thermodynamics 26: 129–42. 39. Kabo, G. , A. A. Kozyro, V. V. Diky, V. V. Simirsky, L. S. Ivashkevich, A. P. Krasulin, V. M. Sevruk, A. P. Marchand, and M. L. Frenkel. 1995. Thermodynamic properties of pentacycloundecane, C11 H14 . J. Chem. Thermodynamics 27: 707–20. © 2002 by CRC Press LLC Chapter 4 DECOMPOSITION CHEMISTRY OF HIGH-ENERGY-DENSITY FUELS BY FLOW TUBE MASS SPECTROMETRY Z.
Advances in Chemical Propulsion (auth unkn) [No TOC]