Advances in Chemical Propulsion (auth unkn) [No TOC]

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1989. High-energy-density solid and liquid hydrocarbon fuels. ). Distribution unlimited. 2. Marchand, A. , Z. Liu, D. Rajagopal, V. D. Sorokin, F. Zaragoza, and A. Zope. 1994. New high-energy/high-density fuel systems: synthesis and characterization. 7th ONR Propulsion Meeting Proceedings. Eds. G. D. Roy and P. Givi. Buffalo, NY: State University of New York at Buffalo. 82–90. 3. McMurry, J. , and M. P. Fleming. 1974. A new method for the reductive coupling of carbonyls to olefins: Synthesis of β-carotene.

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. Li and S. L. Anderson A method is described that allows study of thermal breakdown behavior of organic high-energy-density fuel molecules. In addition to stability vs. temperature results, the distribution of product species as a function of temperature is also determined. The method uses a microflow tube reactor to allow study of small samples.

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. Li and S. L. Anderson A method is described that allows study of thermal breakdown behavior of organic high-energy-density fuel molecules.

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