Hostname: page-component-848d4c4894-5nwft Total loading time: 0 Render date: 2024-05-03T11:01:17.661Z Has data issue: false hasContentIssue false

The Future of the Past1

Published online by Cambridge University Press:  18 July 2016

Robert E M Hedges*
Affiliation:
Research Laboratory for Archaeology, Keble Road, Oxford, OX1 3QJ, United Kingdom. Email: robert.hedges@rlaha.ox.ac.uk.
Rights & Permissions [Opens in a new window]

Abstract

Image of the first page of this content. For PDF version, please use the ‘Save PDF’ preceeding this image.'
Type
Introduction
Copyright
Copyright © The Arizona Board of Regents on behalf of the University of Arizona 

References

Beavan-Athfield, N, Sparks, RJ. 2001. Bomb carbon as a tracer of dietary carbon sources in omnivorous feeders. Radiocarbon, this issue.CrossRefGoogle Scholar
Beck, B, Richards, D, Herrera, S, Calsoyas, L, Donahue, D, Edwards, L, Smart, P, Burr, G, Jull, T. 2001. 230Th and 14C dating of speleothems from the Bahams: implications for calibration of the radiocarbon timescale to 45 ka BP. Radiocarbon, this issue.Google Scholar
Bronk, CR, Hedges, REM. 1987. A gas ion source for radiocarbon dating. Nuclear Instruments and Methods in Physics Research B 29:45–9.CrossRefGoogle Scholar
Bronk Ramsey, C. 1995. Radiocarbon calibration and analysis of stratigraphy: the program OxCal. Radiocarbon 37(2):425–30.CrossRefGoogle Scholar
Bronk Ramsey, C, Hedges, REM. 1995. Radiocarbon with gas chromatography, Radiocarbon 37(2):711–6.CrossRefGoogle Scholar
Bronk Ramsey, C. 1998 Probability and dating. Radiocarbon 40(1):461–74.Google Scholar
Buck, CE, Litton, CD, Smith, AFM. 1992. Calibration of radiocarbon results pertaining to related archaeological events. Journal of Archaeological Science 19:497512.CrossRefGoogle Scholar
Buchholz, BA, Arjomand, A, Dueker, SR, Schneider, PD, Clifford, AJ, Vogel, JS. 1999. Intrinsic erythrocyte labeling and attomole pharmacokinetic tracing of C-14-labeled folic acid with accelerator mass spectrometry. Analytical Biochemistry 269:348–52.CrossRefGoogle Scholar
Eglinton, TI, Aluwihare, LI, Bauer, JE, Druffel, ERM, McNichol, AP. 1996. Gas chromatographic isolation of individual compounds from complex matrices for radiocarbon dating. Analytical Chemistry 68:904–12.CrossRefGoogle ScholarPubMed
Geyh, MA. 2001. Experience with bomb-14C dating of human bones and fur. Radiocarbon, this issue.Google Scholar
Grootes, PM. 1978. Carbon-14 time scale extended: comparison of chronologies. Science 200:11–5.CrossRefGoogle ScholarPubMed
Grootes, PM, Oriwall, A, Nadeau, M-J, Bruhn, F, Duhr, A, Leibniz, O. 2001. Are carbonate backgrounds individual? Radiocarbon, this issue.Google Scholar
Harkness, DD, Harrison, A.F.AF, Bacon, P. 1986. The temporal distribution of bomb-14C in a forest soil. Radiocarbon 28(1):328–37.CrossRefGoogle Scholar
Hughey, BJ, Klinkowstein, RE, Shefer, RE, Skipper, PL, Tannenbaum, SR, Wishnok, JS. 1997. Design of a compact 1 MV AMS system for biomedical research. Nuclear Instruments and Methods in Physics Research B 123:153–8.CrossRefGoogle Scholar
Schneider, RJ, von Reden, KF, Wills, JSC, Diamond, WT, Lewis, R, Savard, G, Schmeing, H. 1997. Hold-up and memory effect for carbon in a compact microwave ion source. Nuclear Instruments and Methods in Physics Research B 123:546–9.CrossRefGoogle Scholar
Jenkinson, DS, Meredith, J, Kinyamario, JI, Warren, GP, Wong, MTF, Harkness, DD, Bol, R, Coleman, K. 1999. Estimating net primary production from measurements made on soil organic matter. Ecology 80(8): 2762–73.CrossRefGoogle Scholar
Stein, M, Goldstein, SL, Schramm, A. 2001. The status of the radiocarbon time-scale calibration beyond the dendrochronology range. Radiocarbon, this issue.CrossRefGoogle Scholar
Stott, AW, Hedges, REM, Bronk Ramsey, C, Humm, MJ, Evershed, RP. 2001. Radiocarbon dating of single compounds isolated from pottery cooking vessel residues. Radiocarbon, this issue.CrossRefGoogle Scholar
Synal, H-A, Jacob, S, Suter, M. 2001. Status of radiocarbon detection at low energies. Radiocarbon, this issue.Google Scholar