Uranium-thorium-protactinium dating systematics
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[1] Edwards,et al. Protactinium-231 Dating of Carbonates by Thermal Ionization Mass Spectrometry: Implications for Quaternary Climate Change , 1997, Science.
[2] M. Murrell,et al. Observations of231Pa/235U disequilibrium in volcanic rocks , 1997 .
[3] H. Schwarcz,et al. Latest Homo erectus of Java: Potential Contemporaneity with Homo sapiens in Southeast Asia , 1996, Science.
[4] J. Beck,et al. Annual cycles of UCa in coral skeletons and UCa thermometry , 1995 .
[5] T. Ku,et al. Uranium-series dating of carnotites: concordance between 230Th and 231Pa ages , 1995 .
[6] M. Murrell,et al. Determination of Femtogram Quantities of Protactinium in Geologic Samples by Thermal Ionization Mass Spectrometry , 1994 .
[7] Chen Tiemei,et al. Antiquity of Homo sapiens in China , 1994, Nature.
[8] R. Lawrence Edwards,et al. The Timing of High Sea Levels Over the Past 200,000 Years , 1994, Science.
[9] F. McDermott,et al. Open system modelling for U-series and ESR dating of teeth , 1994 .
[10] N. Sturchio. Uranium-series disequilibrium: Applications to Earth, Marine, and environmental sciences , 1993 .
[11] G. Wasserburg,et al. TIMS U-series dating and stable isotopes of the last interglacial event in Papua New Guinea , 1993 .
[12] J. Beck,et al. A Large Drop in Atmospheric 14C/12C and Reduced Melting in the Younger Dryas, Documented with 230Th Ages of Corals , 1993, Science.
[13] G. Henderson,et al. 234U/238U ratios and230Th ages for Hateruma Atoll corals: implications for coral diagenesis and seawater234U/238U ratios , 1993 .
[14] J. M. Landwehr,et al. Mass-Spectrometric 230Th-234U-238U Dating of the Devils Hole Calcite Vein , 1992, Science.
[15] R. Harmon,et al. Uranium-series disequilibrium : applications to earth, marine, and environmental science , 1992 .
[16] E. Bard,et al. 234U/238U mass spectrometry of corals: How accurate is the UTh age of the last interglacial period? , 1991 .
[17] E. Bard,et al. Uranium-234 anomalies in corals older than 150,000 years , 1991 .
[18] D. Geist,et al. Neodymium, strontium, and lead isotopes in the Maloin Ranch Pluton, Wyoming: Implications for the origin of evolved rocks at anorthosite margins , 1991 .
[19] G. Wasserburg,et al. Precise chronology of the last interglacial period: 234U-230Th data from fossil coral reefs in the Bahamas , 1991 .
[20] E. Bard,et al. U-Th ages obtained by mass spectrometry in corals from Barbados: sea level during the past 130,000 years , 1990, Nature.
[21] E. Bard,et al. U/Th ages obtained by mass spectrometry in corals from Barbados , 1990 .
[22] E. Bard,et al. Calibration of the 14C timescale over the past 30,000 years using mass spectrometric U–Th ages from Barbados corals , 1990, Nature.
[23] T. Ku,et al. U-Series Dating of Last Interglacial High Sea Stands: Barbados Revisited , 1990, Quaternary Research.
[24] T. Ku,et al. The U-series ages of carnotites and implications regarding their formation , 1989 .
[25] G. Wasserburg,et al. Dating earthquakes with high-precision thorium-230 ages of very young corals , 1988 .
[26] H. Veeh,et al. Uranium-Series Ages of Corals and Coexisting Phosphate Deposits on Pelsaert Reef Complex, Houtman-Abrolhos Islands, Western Australia , 1988, Quaternary Research.
[27] R. Edwards. High Precision Thorium-230 Ages of Corals and the Timing of Sea Level Fluctuations in the Late Quaternary , 1988 .
[28] H. Schwarcz,et al. ESR dating of tooth enamel: Coupled correction for U-uptake and U-series disequilibrium , 1988 .
[29] G. Wasserburg,et al. Precise Timing of the Last Interglacial Period from Mass Spectrometric Determination of Thorium-230 in Corals , 1987, Science.
[30] G. Wasserburg,et al. 238U234U230Th232Th systematics and the precise measurement of time over the past 500,000 years , 1987 .
[31] G. Wasserburg,et al. 238 U, 234 U and 232 Th in seawater , 1986 .
[32] A. Milnes,et al. Uranium-series isotopic studies of marine phosphorites and associated sediments from the East Australian continental margin , 1986 .
[33] W. Burnett,et al. Comparison of Radiocarbon and Uranium-Series Dating Methods as Applied to Marine Apatite , 1986, Quaternary Research.
[34] W. Burnett,et al. Pleistocene phosphorites off the west coast of South Africa , 1983, Nature.
[35] M. Ikeya. A Model of Linear Uranium Accumulation for ESR Age of Heidelberg (Mauer) and Tautavel Bones , 1982 .
[36] W. Burnett,et al. Excess protactinium in phosphate nodules from a coastal upwelling zone , 1982 .
[37] H. Veeh. Concordant 230Th and 231Pa ages of marine phosphorites , 1982 .
[38] J. Meadows,et al. Half-life of /sup 230/Th , 1980 .
[39] H. Schwarcz. ABSOLUTE AGE DETERMINATION OF ARCHAEOLOGICAL SITES BY URANIUM SERIES DATING OF TRAVERTINES , 1980 .
[40] W. Bull,et al. Th230-U234 dating of pedogenic carbonates in gravelly desert soils of Vidal Valley, southeastern California , 1979 .
[41] B. Szabo. 230Th, 231Pa, and open system dating of fossil corals and shells , 1979 .
[42] T. Ku,et al. Eustatic Sea Level 120,000 Years Ago on Oahu, Hawaii , 1974, Science.
[43] W. Broecker,et al. The status of U-series methods of mollusk dating , 1971 .
[44] B. Szabo,et al. Uranium-series dating of some pleistocene marine deposits in Southern California , 1971 .
[45] B. Szabo,et al. Uranium‐series dating of Pleistocene molluscan shells from southern California—An open system model , 1969 .
[46] J. Robert,et al. Mesure de la période du protactinium 231 par microcalorimétrie , 1969 .
[47] J. N. Rosholt. OPEN SYSTEM MODEL FOR URANIUM-SERIES DATING OF PLEISTOCENE SAMPLES. , 1968 .
[48] K. Komura,et al. STEPWISE DETERMINATIONS OF THORIUM, PROTACTINIUM, AND URANIUM ISOTOPES AND THEIR APPLICATIONS IN GEOCHRONOLOGICAL STUDIES. , 1968 .
[49] T. Ku. Protactinium 231 method of dating coral from Barbados Island. , 1968 .
[50] W. Broecker,et al. Comparison of Th230 and C14 ages for carbonate materials from lakes Lahontan and Bonneville , 1965 .
[51] W. Broecker,et al. Uranium-Series Ages of Pacific Atoll Coral , 1965, Science.
[52] W. Broecker,et al. Uranium-Series Dating of Corals and Oolites from Bahaman and Florida Key Limestones , 1965, Science.
[53] G. Wasserburg. Diffusion processes in lead-uranium systems , 1963 .
[54] G. Tilton. Volume diffusion as a mechanism for discordant lead ages , 1960 .
[55] L. Nicolaysen. Solid diffusion in radioactive minerals and the measurement of absolute age , 1957 .
[56] E. J. Lang,et al. Ratio of Ionium to Uranium in Coral Limestone. , 1956, Science.
[57] G. Wetherill. An interpretation of the Rhodesia and Witwatersrand age patterns , 1956 .
[58] G. Wetherill. Discordant uranium‐lead ages, I , 1956 .
[59] C. Stevens,et al. The Half-Life of U 232 , 1954 .