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Tytuł artykułu

The method of combining radiocarbon dates and other information in application to study the chronologies of archaeological sites

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The Bayesian theorem provides mathematical base for probabilistic calibration of radiocarbon dates, but it is also a base for more sophisticated analysis - combining of probability distribution of calibrated radiocarbon dates with information from other sources – for example stratigraphic information or dates obtained by a method differ than radiocarbon dating. This paper presents three examples of using the method of combining radiocarbon and other information to study the chronologies of archaeological sites. The first example concerns the Inca State chronology and is an attempt to define the time intervals of Inca Imperial Phase and Inca Preimperial Phase accurately. The second refers to the settlement in Wolin and allows to assign the chronology to cultural layers excavated in Trench 6, Site 1 located in central part of settlement and to precise obtained results. The last example concerns South American site - Maucallcta and is a case, when application of the method does not give results because of ambiguity of stratigraphic information.
Wydawca
Czasopismo
Rocznik
Tom
Strony
41--46
Opis fizyczny
Bibliogr. 10 poz., tab. wykr.
Twórcy
  • Department of Radioisotopes, Institute of Physics, Silesian University of Technology, Krzywoustego 2, 44-100 Gliwice, Poland
autor
  • Department of Radioisotopes, Institute of Physics, Silesian University of Technology, Krzywoustego 2, 44-100 Gliwice, Poland
Bibliografia
  • 1. Adamska A. and Michczyński A., 1996: Towards radiocarbon chronology of the Inca State. Andes - Boletín de la Misión Arqueológica Andina 1: 35-60.
  • 2. Bronk Ramsey C., 1995: Radiocarbon calibration and analysis of stratigraphy: the OxCal program. Radiocarbon 37(2): 425-430.
  • 3. Bronk Ramsey C., 2000: Comment on „The use of Bayesian statistic for 14C dates of chronologically ordered samples: a critical analysis”. Radiocarbon 42(2): 199-202.
  • 4. Buck C.E., Kenworthy J.B, Litton C.D. and Smith A.F.M., 1991: Combining archaeological and radiocarbon information: a Bayesian approach to calibration. Antiquity 65: 808-821.
  • 5. Filipowiak W., 1973: Wyspa Wolin w prahistorii i we wczesnym średniowieczu (Wolin Island in prehistory and early middle ages) Prace Instytutu Zachodniopomorskiego 45: 37-137.
  • 6. Filipowiak W., 1994: Wolin i żegluga u ujścia Odry w świetle chronologii radiowęglowej (The Wolin settlement and navigation at the mouth of the Odra river in the light of radiocarbon dating). Geochronometria 9: 113-126.
  • 7. Michczyński A., Olko J., Pazdur A. and Ziółkowski M., 2000: The first attempt to establish the chronology of Maucallacta site (Peru) – poster presentation. 17th International Radiocarbon Conferenc, Israel 2000.
  • 8. Pazdur M.F., Awsiuk R., Goslar T. and Pazdur A., 1994: Chronologia radiowęglowa początków osadnictwa w Wolinie i żeglugi u ujścia Odry (Radiocarbon chronology of the Wolin settlement and navigation at the mouth of Odra river). Geochronometria 9: 127-195.
  • 9. Steier P. and Rom W., 2000: The use of Bayesian statistic for 14C dates of chronologically ordered samples: a critical analysis. Radiocarbon 42(2): 183-198.
  • 10. Ziółkowski M.S., Franco L.A.B., Avendano M.N., Piasecki K., Belmonte J.A.E. and Michczyński A., 1999: Skala kulturowochronologiczna dla Południowych Andów Peruwiańskich (IIXV w.n.e): Churajón - Condesuyos (1996-1998) (The culturalchronologic scale for South Peruvian Andes (II-XV century AD: Churajón - Condesuyos (1996-1998)). Raport z realizacji projektu badawczego KBN Nr 1 HO1G 056 10.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT3-0007-0005
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