Hostname: page-component-7479d7b7d-8zxtt Total loading time: 0 Render date: 2024-07-10T04:19:07.077Z Has data issue: false hasContentIssue false

Yale Natural Radiocarbon Measurements IV

Published online by Cambridge University Press:  18 July 2016

Edward S. Deevey
Affiliation:
Geochronometric Laboratory, Yale University, New Haven, Connecticut
L. J. Gralenski
Affiliation:
Geochronometric Laboratory, Yale University, New Haven, Connecticut
Väinö Hoffren
Affiliation:
Geochronometric Laboratory, Yale University, New Haven, Connecticut
Rights & Permissions [Opens in a new window]

Extract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

Dates obtained since our last date list (Yale III∗), and up to the end of 1958, are given here. All are based on duplicate measurements of CO2 in a proportional counter. Grateful acknowledgment is made to the National Science Foundation, which has supported our work through grant no. G-2278. Participation of Väinö Hoffren during 1956–1957 was made possible through an arrangement with the Geological Survey of Finland. The technical assistance of Julius Kovats has been invaluable.

Type
Research Article
Copyright
Copyright © The American Journal of Science 

References

Arnold, J. R., and Libby, W. F., 1951, Radiocarbon dates: Science, v. 113, p. 111120.Google Scholar
Auer, Väinö, 1948, Las capas volcánicas como nuevo método de cronología postglacial en Fuegopatagonia: Gaea, v. 8, p. 311336; repr. as: Rep. Argentina, Minist. Agricultura, Inst. Suelos Agrotecnia Pub. 6.Google Scholar
Auer, Väinö 1950, Las capas volcánicas como base de la cronología postglacial de Fuegopatagonia: Rev. Inv. Agr., v. 3, p. 49208; repr. as: Rep. Argentina, Minist. Agricultura, Inst. Suelos Agrotechnia Pub. 9.Google Scholar
Auer, Väinö 1952, Evolución postglacial del valle inferior del río Negro y varaciones cuaternarias de la línea costanera: Rev. Inv. Agr., v. 5 [1951], p. 425464.Google Scholar
Auer, Väinö 1953, Nuevos aspectos de la sequía en la Patagonia: Idia [Buenos Aires], no. 61, 8 p.Google Scholar
Auer, Väinö 1956, The Pleistocene of Fuego-Patagonia. Part I: The ice and interglacial ages: Acad. Sci. Fennicae Annales, ser. A, III, no. 45, 226 p., 5 pl. Google Scholar
Auer, Väinö 1958, The Pleistocene of Fuego-Patagonia. Part II: The history of the flora and vegetation: Acad. Sci. Fennicae Annales, ser. A, III, no. 50, 239 p., 10 pl. Google Scholar
Barendsen, G. W., Deevey, E. S., and Gralenski, L. J., 1957, Yale natural radiocarbon measurements III: Science, v. 126, p. 908919.Google Scholar
Berlin, Heinrich, 1952, Excavaciones en Kaminal Juyu: Monticulo D-III-13: Antropología Hist. Guatemala, v. 4, no. 1, p. 318.Google Scholar
Brannon, H. R., Jr., and others, 1957, Humble Oil Company radiocarbon dates II: Science, v. 125, p. 919923.CrossRefGoogle Scholar
Broecker, W. S., and Kulp, J. L., 1957, Lamont natural radiocarbon measurements IV: Science, v. 126, p. 13241334.Google Scholar
Broecker, W. S., Kulp, J. L., and Tucek, C. S., 1956, Lamont natural radiocarbon measurements III: Science, v. 124, p. 154165.Google Scholar
Burns, G. W., 1958, Wisconsin age forests in western Ohio. II. Vegetation and burial conditions: Ohio Jour. Sci., v. 58, p. 220230.Google Scholar
Cameron, H. L., 1956, Nova Scotia historic sites: Royal Soc. Canada Trans., ser. 3, v. 50, sec. 2, p. 17.Google Scholar
Crane, H. R., 1956, University of Michigan radiocarbon dates I: Science, v. 124, p. 664672.CrossRefGoogle ScholarPubMed
Crane, H. R., and Griffin, J. B., 1958a, University of Michigan radiocarbon dates II: Science, v. 127, p. 10981105.Google Scholar
Crane, H. R., and Griffin, J. B. 1958b, University of Michigan radiocarbon dates III: Science, v. 128, p. 11171123.Google Scholar
Cummings, Byron, 1933, Cuicuilco and the Archaic culture of Mexico: Arizona Univ. Bull., v. 4, no. 8; Soc. Sci. Bull. 4, 56 p.Google Scholar
Cruxent, J. M., and Rouse, Irving, 1959, An archaeological chronology of Venezuela: Pan American Union Soc. Sci. Mon., v. 0, 000 p., atlas of 000 figs., 000 pls.Google Scholar
Deevey, E. S., 1948, On the date of the last rise of sea level in southern New England, with remarks on the Grassy Island site: Am. Jour. Sci., v. 246, p. 329352.Google Scholar
Deevey, E. S. 1951, Late-glacial and postglacial pollen diagrams from Maine: Am. Jour. Sci., v. 249, p. 177207.CrossRefGoogle Scholar
Deevey, E. S. 1958, Radiocarbon-dated pollen sequences in eastern North America: Geobot. Inst. Rübel, Zürich, Veröffentl., no. 34, p. 3037.Google Scholar
Douglas, D. L., 1952, Measuring low-level radioactivity: General Electric Rev., v. 55, no. 5 (September), p. 1620.Google Scholar
Drucker, P., Heizer, R. F., and Squier, R. J., 1957, Radiocarbon dates from La Venta, Tabasco: Science, v. 126, p. 7273.CrossRefGoogle ScholarPubMed
Fairbridge, R. W., 1950, The geology and geomorphology of Point Peron, Western Australia: Royal Soc. Western Australia Jour., v. 34, p. 3572.Google Scholar
Fairbridge, R. W. 1958, Dating the latest movements of the Quaternary sea level: New York Acad. Sci. Trans., ser. 2, v. 20, p. 471482.Google Scholar
Fergusson, G. J., and Rafter, T. A., 1955, New Zealand 14C age measurements II: New Zealand Jour. Sci. and Technology, sec. B, v. 36, p. 371374.Google Scholar
Fitch, F. M., 1954, The geology and mineral resources of part of the Segama Valley and Darvel Bay area of North Borneo: British Borneo Geol. Survey Mem. 4, p. 4954.Google Scholar
Flint, R. F., 1955a, Rates of advance and retreat of the margin of the late-Wisconsin ice sheet: Am. Jour. Sci., v. 253, p. 249255.CrossRefGoogle Scholar
Flint, R. F. 1955b, Pleistocene geology of eastern South Dakota: U. S. Geol. Survey Prof. Paper 262, 173 p.Google Scholar
Flint, R. F., and Deevey, E. S., 1951, Radiocarbon dating of late-Pleistocene events: Am. Jour. Sci., v. 249, p. 257300.Google Scholar
Flint, R. F., and Gale, W. A., 1958, Stratigraphy and radiocarbon dates at Searles Lake, California: Am. Jour. Sci., v. 256, p. 698714.Google Scholar
Flint, R. F., and Rubin, Meyer, 1955, Radiocarbon dates of pre-Mankato events in eastern and central North America: Science, v. 121, p. 649658.Google Scholar
Frenguelli, Joaquín, 1953, Análisis microscópico de una segunda serie de muestras de la turbera del Río de la Misión, Río Grande, Tierra del Fuego: Acad. Sci. Fennicae Annales, ser. A, III, no. 34, 52 p.Google Scholar
Gill, E. D., 1955, Radiocarbon dates for Australian archaeological and geological samples: Australian Jour. Sci., v. 18, p. 4952.Google Scholar
Godwin, H., Suggate, R. P., and Willis, E. H., 1958, Radiocarbon dating of the eustatic rise in ocean-level: Nature, v. 181, p. 15181519.Google Scholar
Goldthwait, R. P., 1958, Wisconsin age forests in western Ohio. I. Age and glacial events: Ohio Jour. Sci., v. 58, p. 209219.Google Scholar
Hansen, H. P., 1941, Further pollen studies of post Pleistocene bogs in the Puget lowland of Washington: Torrey Bot. Club Bull., v. 68, p. 133148.CrossRefGoogle Scholar
Hansen, H. P. 1947, Postglacial forest succession, climate, and chronology in the Pacific Northwest: Am. Philos. Soc. Trans., new ser., v. 37, part 1, 130 p.Google Scholar
Hay, R. L., 1958, Crystal-rich glowing-avalanche deposits of St. Vincent, B.W.I. [abs.]: Geol. Soc. America Bull., v. 69, p. 15781579.Google Scholar
Johnson, Frederick, and others, 1942, The Boylston Street fishweir: R. S. Peabody Found. Archaeology [Phillips Acad.] Papers, v. 2, xii, 212 p.Google Scholar
Johnson, Frederick, ed., 1949, The Boylston Street fishweir II: R. S. Peabody Found. Archaeology [Phillips Acad.] Papers, v. 4, no. 1, x, 133 p.Google Scholar
Kidder, A. V., Jennings, J. D., and Shook, E. M., 1946, Excavations at Kaminaljuyu, Guatemala: Carnegie Inst. Washington Pub. 561, ix, 248 p., illus. Google Scholar
Kulp, J. L., Feely, H. W., and Tryon, L. E., 1951, Lamont natural radiocarbon measurements, I: Science, v. 114, p. 565568.Google Scholar
Kulp, J. L., and others, 1952, Lamont natural radiocarbon measurements, II: Science, v. 116, p. 409414.CrossRefGoogle Scholar
Leopold, E. B., 1956, Two late-glacial deposits in southern Connecticut: Nat. Acad. Sci. Proc., v. 42, p. 863867.CrossRefGoogle ScholarPubMed
Libby, W. F., 1952, Chicago radiocarbon dates, III: Science, v. 116, p. 673681.CrossRefGoogle ScholarPubMed
Libby, W. F. 1954, Chicago radiocarbon dates V: Science, v. 120, p. 733742.Google Scholar
Linné, Sigvald, 1956, Radiocarbon dates in Teotihuacan: Ethnos, 1956, no. 3–4, p. 180193.Google Scholar
Lothrop, S. R., 1924, Tulum. An archaeological study of the east coast of Yucatan: Carnegie Inst. Washington Pub. 335, vii, 179 p.Google Scholar
Livingstone, D. A., and Livingstone, B. G. R., 1958, Late-glacial and postglacial vegetation from Gillis Lake in Richmond County, Cape Breton Island, Nova Scotia: Am. Jour. Sci., v. 256, p. 341359.Google Scholar
Lyon, C. J., and Goldthwait, J. W., 1934, An attempt to cross-date trees in drowned forests: Geog. Rev., v. 24, p. 605614.Google Scholar
Margalef, Ramón, 1956, Paleoecología postglacial de la Ría de Vigo: Inv. Pesqueras, v. 5, p. 89112.Google Scholar
Martin, A. R. H., 1956, The ecology and history of Groenvlei: South African Jour. Sci., v. 52, p. 187192, 198.Google Scholar
Martin, P. S., 1958, Taiga-tundra and the full-glacial period in Chester County, Pennsylvania: Am. Jour. Sci., v. 256, p. 470502.Google Scholar
McGimsey, C. R., 1956, Cerro Mangote: a preceramic site in Panama: Am. Antiquity, v. 22, p. 151161.CrossRefGoogle Scholar
Münnich, K. O., 1957, Heidelberg natural radiocarbon measurements I: Science, v. 126, p. 194199.Google Scholar
Nesteroff, W. D., 1955, Les récifs coralliens du Banc Farsan Nord (Mer Rouge), in: Resultats scientifiques des campagnes de la “Calypso”, I. Campagne en Mer Rouge (1951–1952): Inst. Océanog. [Monaco] Annales, v. 30, 53 p., 21 pl. Google Scholar
Östlund, H. G., 1957, Stockholm natural radiocarbon measurements I: Science, v. 126, p. 493497.Google Scholar
Preston, R. S., Person, Elaine, and Deevey, E. S., 1955, Yale natural radiocarbon measurements II: Science, v. 122, p. 954960.Google Scholar
Rigg, G. B., and Gould, H. R., 1957, Age of Glacier Peak eruption and chronology of post-glacial peat deposits in Washington and surrounding areas: Am. Jour. Sci., v. 255, p. 341363.CrossRefGoogle Scholar
Ritchie, W. A., 1945, An early site in Cayuga County, New York: Rochester Mus. Arts Sci. Res. Rec. 7.Google Scholar
Rouse, Irving, 1951a, Areas and periods of culture in the Greater Antilles: Southwestern Jour. Anthropology, v. 7, p. 248265.Google Scholar
Rouse, Irving 1951b, Prehistoric Caribbean culture contact as seen from Venezuela: New York Acad. Sci. Trans., ser. II, v. 13, p. 342347.Google Scholar
Rubin, Meyer, and Alexander, Corrinne, 1958, U. S. Geological Survey radiocarbon dates IV: Science, v. 127, p. 14761487.Google Scholar
Rubin, Meyer, and Suess, H. E., 1955, U. S. Geological Survey radiocarbon dates II: Science, v. 121, p. 481488.CrossRefGoogle ScholarPubMed
Salmi, Martti, 1941, Die postglazialen Eruptionsschichten Patagoniens und Feuerlands: Acad. Sci. Fennicae Annales, ser. A, III, no. 2, 115 p., 2 pl. Google Scholar
Shepard, F. P., and Moore, D. G., 1955, Central Texas coast sedimentation; characteristics of sedimentary environment, recent history, and diagenesis: Am. Assoc. Petroleum Geologists Bull., v. 39, p. 14631593.Google Scholar
Shepard, F. P., and Suess, H. E., 1956, Rate of postglacial rise of sea level: Science, v. 123, p. 10821083.Google Scholar
Shook, E. M., 1952, Lugares arqueológicos del altiplano meridonal central de Guatemala: Antropología Hist. Guatemala, v. 4, no. 2, p. 340.Google Scholar
Shook, E. M., and Kidder, A. V., 1952, Mound E-III-3, Kaminaljuyu, Guatemala: Carnegie Inst. Washington Pub. 596, p. 35127, 81 figs.Google Scholar
Smith, A. L., 1950, Uaxactun, Guatemala: excavation of 1931–1937: Carnegie Inst. Washington Pub. 588, xi, 108 p., 143 fig. Google Scholar
Smith, A. L., and Kidder, A. V., 1951, Excavations at Nebaj, Guatemala: Carnegie Inst. Washington Pub. 594, vii, 90 p., illus., map. Google Scholar
Suess, H. E., 1954, U. S. Geological Survey radiocarbon dates I: Science, v. 120, p. 467473.Google Scholar
Suess, H. E. 1955, Radiocarbon concentration in modern wood: Science, v. 122, p. 415417.Google Scholar
Summers, Roger, 1955, The dating of the Zimbabwe ruins: Antiquity, v. 29, p. 104111.Google Scholar
Teichert, Curt, 1950, Late Quaternary sea-level changes at Rottnest Island, Western Australia: Royal Soc. Victoria Proc., v. 59, p. 6379.Google Scholar
Thwaites, F. T., and Bertrand, Kenneth, 1957, Pleistocene geology of the Door peninsula, Wisconsin: Geol. Soc. America Bull., v. 68, p. 831880, 8 pls. Google Scholar
Vaillant, G. C., 1935, Early cultures of the Valley of Mexico: results of the stratigraphical project of the American Museum of Natural History in the Valley of Mexico, 1928–1933: Am. Mus. Nat. History Anthropol. Papers, v. 35, p. 281328.Google Scholar
Vries, Hl. de, Barendsen, G. W., and Waterbolk, H. T., 1958, Groningen radiocarbon dates II: Science, v. 127, p. 129137.Google Scholar
Wauchope, Robert, 1948, Excavations at Zacualpa, Guatemala: Tulane Univ. Middle Am. Res. Inst. Pub. 14, 168 p., illus. Google Scholar
Willey, G. R., and McGimsey, C. R., 1954, The Monagrillo culture of Panama: Peabody Mus. Archaeology and Ethnology [Harvard Univ.] Papers, v. 49, xiii, 158 p., 54 figs.Google Scholar
Williams, Stephen, 1957, The Island 35 mastodon: its bearing on the age of Archaic cultures in the East: Am. Antiquity, v. 22, p. 349372.Google Scholar
Zeuner, F. E., 1955, Radiocarbon dates: Univ. London Inst. Archaeology 11th Ann. Rept., p. 4350.Google Scholar