. "4 Asteroids and Meteorites." Evaluating the Biological Potential in Samples Returned from Planetary Satellites and Small Solar System Bodies: Framework for Decision Making. Washington, DC: The National Academies Press, 1998.
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Evaluating the Biological Potential in Samples Returned from Planetary Satellites and Small Solar System Bodies: Framework for Decision Making
Keil, K., D. Stoffler, S.G. Love, and E.R.D. Scott. 1997. Constraints on the role of impact heating and melting in asteroids. Meteoritics Planet. Sci. 32:349–363.
Kerridge, J.F. 1993. Origins of organic matter in meteorites. Proc. NIPR Symp. Antarctic Meteorites 6:293–303.
McCord, T.B., J.B. Adams, and T.V. Johnson. 1970. Asteroid Vesta: Spectral reflectivity and compositional implications. Science 168:1445–1447.
McSween, H.Y., D.W.G. Sears, and R.T. Dodd. 1988. Thermal metamorphism. Pp. 102–113 in Meteorites and the Early Solar System, J.F. Kerridge and M.S. Matthews (eds.). Tucson, Arizona: University of Arizona Press.
Melosh, H.J., and E.V. Ryan. 1997. Asteroids: Shattered but not dispersed. Icarus 129:562–564.
Ruzmaikina, T.V., V.S. Safronov, and S.J. Weidenschilling. 1989. Radial mixing of material in the asteroidal zone. Pp. 681–700 in Asteroids II, R.P. Binzel, T. Gehrels, and M.S. Matthews (eds.). Tucson, Arizona: University of Arizona Press.
Warren, P.H. 1994. Lunar and martian delivery services. Icarus 111:338–363.
Wasson, J.T. 1985. Meteorites: Their Record of Early Solar-System History. New York: W.H. Freeman and Co.
Watson K., B. Murray, and H. Brown. 1963. The stability of volatiles in the solar system. Icarus 1:317–327.
Wetherill, G.W., and C.R. Chapman. 1988. Asteroids and meteorites. Pp. 35–67 in Meteorites and the Early Solar System, J.F. Kerridge and M.S. Matthews (eds.). Tucson, Arizona: University of Arizona Press.
Wisdom, J. 1985. Meteorites may follow a chaotic route to Earth. Nature 315:731–733.
Yang, J., and S. Epstein. 1983. Interstellar organic matter in meteorites. Geochim. Cosmochim. Acta 47:2199-2216.
Zolensky, M., and H.Y. McSween. 1988. Aqueous alteration. Pp. 114–143 in Meteorites and the Early Solar System, J.F. Kerridge and M.S. Matthews (eds.). Tucson, Arizona: University of Arizona Press.