GAS RETENTION CHRONOLOGY OF PETERSBURG AND OTHER METEORITES.
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[1] R. Srinivasan,et al. Radiation Effects in 129I-129Xe Dating of Bjurble Chondrules by Neutron Irradiation , 1972 .
[2] G. Wasserburg,et al. Rare gas studies of the galactic cosmic ray irradiation history of lunar rocks. , 1972 .
[3] G. Wasserburg,et al. Xe and Kr analyses of silicate inclusions from iron meteorites. , 1971 .
[4] J. Huneke,et al. Isotopic composition of 244Pu fission xenon in meteorites: reevaluation using lunar spallation xenon , 1971 .
[5] E. Alexander,et al. Plutonium-244: Confirmation as an Extinct Radioactivity , 1971, Science.
[6] F. Podosek. Neutron-activation potassium-argon dating of meteorites , 1971 .
[7] C. Hohenberg,et al. Spallation yields of xenon from irradiation of Cs, Ce, Nd, Dy, and a rare Earth mixture with 730‐Mev protons , 1970 .
[8] F. Podosek. The abundance of244Pu in the early solar system , 1970 .
[9] F. Podosek. Dating of meteorites by the high-temperature release of iodine-correlated Xe129 , 1970 .
[10] C. M. Hohenbebg. Xenon from the Angra dos Reis meteorite , 1970 .
[11] C. Hohenberg. Radioisotopes and the History of Nucleosynthesis in the Galaxy , 1969, Science.
[12] G. Wasserburg,et al. Initial strontium for a chondrite and the determination of a metamorphism or formation interval , 1969 .
[13] G. Wasserburg,et al. Correlation between fission tracks and fission type xenon in meteoritic Whitlockite , 1969 .
[14] D. Heymann,et al. Ages of calcium-rich achondrites—I. Eucrites , 1968 .
[15] G. Wasserburg,et al. Evidence for the formation of an iron meteorite at 3.8 × 109 years , 1967 .
[16] J. H. Reynolds,et al. Xenon-Iodine Dating: Sharp Isochronism in Chondrites , 1967, Science.
[17] A. Birch. Biosynthesis of polyketides and related compounds. , 1967, Science.
[18] J. Miller,et al. THE THERMAL HISTORY OF THE BRUDERHEIM METEORITE , 1966 .
[19] Grenville Turner,et al. Potassium‐argon dating by activation with fast neutrons , 1966 .
[20] D. York. Least-squares fitting of a straight line. , 1966 .
[21] P. K. Kuroda,et al. FISSIOGENIC XENON FROM THE PASAMONTE METEORITE , 1965 .
[22] H. Stauffer. On the production ratios of rare gas isotopes in stone meteorites , 1962 .
[23] R. Pepin,et al. Meteoritic krypton and barium versus the general isotopic anomalies in meteoritic xenon , 1962 .
[24] P. M. Jeffery,et al. Origin of excess Xe129 in stone meteorites , 1961 .
[25] P. K. Kuroda,et al. Mass Fractionation and Isotope Anomalies in Neon and Xenon , 1970, Nature.
[26] J. A. Philpotts,et al. Apollo 11 lunar samples - K, Rb, Sr, Ba and rare-earth concentrations in some rocks and separated phases , 1970 .
[27] G. Wasserburg,et al. Nuclear Chronologies for the Galaxy , 1969 .
[28] J. A. Philpotts,et al. Genesis of the Calcium-Rich Achondrites in Light of Rare-Earth and Barium Concentrations , 1969 .
[29] L. Ahrens. Origin and distribution of the elements , 1968 .
[30] G. Turner. The Distribution of Potassium and Argon in Chondrites , 1968 .
[31] G. Wasserburg,et al. Initial strontium isotopic abundances and the resolution of small time differences in the formation of planetary objects , 1968 .
[32] F. Podosek,et al. Spallation yields of krypton and xenon from irradiation of strontium and barium with 730 MeV protons , 1967 .
[33] J. H. Reynolds. DETERMINATION OF THE AGE OF THE ELEMENTS , 1960 .