Site type

Location

Coordinates (degrees)
057.448° N, 002.153° W
Coordinates (DMS)
057° 26' 00" W, 002° 09' 00" N
Country (ISO 3166)
United Kingdom (GB)

radiocarbon date Radiocarbon dates (56)

Lab ID Context Material Taxon Method Uncalibrated age Calibrated age References
GrA-24019 NA bone (cremated) NA NA 3460±40 BP 3835–3590 cal BP Bevan 2017 Bird et al. 2022
GrA-24020 NA bone (cremated) NA NA 3495±40 BP 3875–3643 cal BP Bevan 2017 Bird et al. 2022
GrA-24021 NA bone (cremated) NA NA 3395±45 BP 3821–3489 cal BP Bevan 2017 Bird et al. 2022
GrA-24024 NA bone (cremated) NA NA 3470±40 BP 3840–3593 cal BP Bevan 2017 Bird et al. 2022
GrA-24025 NA bone (cremated) NA NA 3385±40 BP 3812–3489 cal BP Bevan 2017 Bird et al. 2022
GrA-24026 NA bone (cremated) NA NA 3415±40 BP 3825–3562 cal BP Bevan 2017 Bird et al. 2022
GrA-24027 NA bone (cremated) NA NA 3560±45 BP 3977–3716 cal BP Bevan 2017 Bird et al. 2022
GrA-24029 NA bone (cremated) NA NA 3455±40 BP 3833–3590 cal BP Bevan 2017 Bird et al. 2022
GrA-24030 NA bone (cremated) NA NA 3450±40 BP 3831–3583 cal BP Bevan 2017 Bird et al. 2022
GrA-24031 NA bone (cremated) NA NA 3445±40 BP 3829–3580 cal BP Bevan 2017 Bird et al. 2022
GrA-24034 NA bone (cremated) NA NA 3365±40 BP 3692–3484 cal BP Bevan 2017 Bird et al. 2022
GrA-24035 NA bone (cremated) NA NA 3390±40 BP 3815–3491 cal BP Bevan 2017 Bird et al. 2022
GrA-24039 NA bone (cremated) NA NA 3485±40 BP 3870–3639 cal BP Bevan 2017 Bird et al. 2022
GrA-24040 NA bone (cremated) NA NA 3545±40 BP 3964–3700 cal BP Bevan 2017 Bird et al. 2022
GrA-24041 NA bone (cremated) NA NA 3510±45 BP 3896–3645 cal BP Bevan 2017 Bird et al. 2022
GrA-24043 NA bone (cremated) NA NA 3430±40 BP 3827–3570 cal BP Bevan 2017 Bird et al. 2022
GrA-24045 NA bone (cremated) NA NA 3455±40 BP 3833–3590 cal BP Bevan 2017 Bird et al. 2022
GrA-24046 NA bone (cremated) NA NA 3485±40 BP 3870–3639 cal BP Bevan 2017 Bird et al. 2022
GrA-24047 NA bone (cremated) NA NA 3380±45 BP 3812–3484 cal BP Bevan 2017 Bird et al. 2022
GrA-26519 NA bone (cremated) NA NA 3400±40 BP 3822–3493 cal BP Bevan 2017 Bird et al. 2022

typological date Typological dates (0)

Classification Estimated age References

Bibliographic reference Bibliographic references

  • Bevan, A. H. (2017). Radiocarbon Dataset and Analysis from Bevan, A., Colledge, S., Fuller, D., Fyfe, R., Shennan, S. and C. Stevens 2017. Holocene Fluctuations in Human Population Demonstrate Repeated Links to Food Production and Climate [Data set]. UCL Institute of Archaeology. https://doi.org/10.14324/000.ds.10025178 [Bevan2017]
  • No bibliographic information available. [Clist 2018: 237 Tab. 18.1 254 Tab. 19.2]
  • No bibliographic information available. [Clist 2018: 237 Tab. 18.1 239 Tab. 18.3]
  • No bibliographic information available. [Tomasso A. e.a;. Journal of Archaeological Science 100 (2018) 158-175.]
  • Bird, D., Miranda, L., Vander Linden, M., Robinson, E., Bocinsky, R. K., Nicholson, C., Capriles, J. M., Finley, J. B., Gayo, E. M., Gil, A., d’Alpoim Guedes, J., Hoggarth, J. A., Kay, A., Loftus, E., Lombardo, U., Mackie, M., Palmisano, A., Solheim, S., Kelly, R. L., & Freeman, J. (2022). P3k14c, a Synthetic Global Database of Archaeological Radiocarbon Dates. Scientific Data, 9(1), 27. https://doi.org/10.1038/s41597-022-01118-7 [p3k14c]
@dataset{Bevan2017,
  title = {Radiocarbon Dataset and Analysis from Bevan, A., Colledge, S., Fuller, D., Fyfe, R., Shennan, S. and C. Stevens 2017. Holocene Fluctuations in Human Population Demonstrate Repeated Links to Food Production and Climate},
  author = {Bevan, A. H.},
  date = {2017-10-20},
  publisher = {UCL Institute of Archaeology},
  location = {London, UK},
  doi = {10.14324/000.ds.10025178},
  url = {https://discovery.ucl.ac.uk/id/eprint/10025178/},
  urldate = {2023-09-07},
  langid = {english}
}
@misc{Clist 2018: 237 Tab. 18.1 254 Tab. 19.2,
  
}
@misc{Clist 2018: 237 Tab. 18.1 239 Tab. 18.3,
  
}
@misc{Tomasso A. e.a;. Journal of Archaeological Science 100 (2018) 158-175.,
  
}
@article{p3k14c,
  title = {P3k14c, a Synthetic Global Database of Archaeological Radiocarbon Dates},
  author = {Bird, Darcy and Miranda, Lux and Vander Linden, Marc and Robinson, Erick and Bocinsky, R. Kyle and Nicholson, Chris and Capriles, José M. and Finley, Judson Byrd and Gayo, Eugenia M. and Gil, Adolfo and d’Alpoim Guedes, Jade and Hoggarth, Julie A. and Kay, Andrea and Loftus, Emma and Lombardo, Umberto and Mackie, Madeline and Palmisano, Alessio and Solheim, Steinar and Kelly, Robert L. and Freeman, Jacob},
  year = {2022},
  month = {jan},
  journal = {Scientific Data},
  volume = {9},
  number = {1},
  pages = {27},
  publisher = {Nature Publishing Group},
  issn = {2052-4463},
  doi = {10.1038/s41597-022-01118-7},
  abstract = {Archaeologists increasingly use large radiocarbon databases to model prehistoric human demography (also termed paleo-demography). Numerous independent projects, funded over the past decade, have assembled such databases from multiple regions of the world. These data provide unprecedented potential for comparative research on human population ecology and the evolution of social-ecological systems across the Earth. However, these databases have been developed using different sample selection criteria, which has resulted in interoperability issues for global-scale, comparative paleo-demographic research and integration with paleoclimate and paleoenvironmental data. We present a synthetic, global-scale archaeological radiocarbon database composed of 180,070 radiocarbon dates that have been cleaned according to a standardized sample selection criteria. This database increases the reusability of archaeological radiocarbon data and streamlines quality control assessments for various types of paleo-demographic research. As part of an assessment of data quality, we conduct two analyses of sampling bias in the global database at multiple scales. This database is ideal for paleo-demographic research focused on dates-as-data, bayesian modeling, or summed probability distribution methodologies.},
  copyright = {2022 The Author(s)},
  langid = {english},
  keywords = {Archaeology,Chemistry},
  month_numeric = {1}
}
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---
- :bibtex_key: Bevan2017
  :bibtex_type: :dataset
  :title: "{Radiocarbon Dataset and Analysis from Bevan, A., Colledge, S., Fuller,
    D., Fyfe, R., Shennan, S. and C. Stevens 2017. Holocene Fluctuations in Human
    Population Demonstrate Repeated Links to Food Production and Climate}"
  :author: "{Bevan, A. H.}"
  :date: "{2017-10-20}"
  :publisher: "{UCL Institute of Archaeology}"
  :location: "{London, UK}"
  :doi: "{10.14324/000.ds.10025178}"
  :url: "{https://discovery.ucl.ac.uk/id/eprint/10025178/}"
  :urldate: "{2023-09-07}"
  :langid: "{english}"
---
:bibtex_key: 'Clist 2018: 237 Tab. 18.1 254 Tab. 19.2'
:bibtex_type: :misc
---
:bibtex_key: 'Clist 2018: 237 Tab. 18.1 239 Tab. 18.3'
:bibtex_type: :misc
---
:bibtex_key: Tomasso A. e.a;. Journal of Archaeological Science 100 (2018) 158-175.
:bibtex_type: :misc
---
- :bibtex_key: p3k14c
  :bibtex_type: :article
  :title: "{P3k14c, a Synthetic Global Database of Archaeological Radiocarbon Dates}"
  :author: "{Bird, Darcy and Miranda, Lux and Vander Linden, Marc and Robinson, Erick
    and Bocinsky, R. Kyle and Nicholson, Chris and Capriles, José M. and Finley, Judson
    Byrd and Gayo, Eugenia M. and Gil, Adolfo and d’Alpoim Guedes, Jade and Hoggarth,
    Julie A. and Kay, Andrea and Loftus, Emma and Lombardo, Umberto and Mackie, Madeline
    and Palmisano, Alessio and Solheim, Steinar and Kelly, Robert L. and Freeman,
    Jacob}"
  :year: "{2022}"
  :month: "{jan}"
  :journal: "{Scientific Data}"
  :volume: "{9}"
  :number: "{1}"
  :pages: "{27}"
  :publisher: "{Nature Publishing Group}"
  :issn: "{2052-4463}"
  :doi: "{10.1038/s41597-022-01118-7}"
  :abstract: "{Archaeologists increasingly use large radiocarbon databases to model
    prehistoric human demography (also termed paleo-demography). Numerous independent
    projects, funded over the past decade, have assembled such databases from multiple
    regions of the world. These data provide unprecedented potential for comparative
    research on human population ecology and the evolution of social-ecological systems
    across the Earth. However, these databases have been developed using different
    sample selection criteria, which has resulted in interoperability issues for global-scale,
    comparative paleo-demographic research and integration with paleoclimate and paleoenvironmental
    data. We present a synthetic, global-scale archaeological radiocarbon database
    composed of 180,070 radiocarbon dates that have been cleaned according to a standardized
    sample selection criteria. This database increases the reusability of archaeological
    radiocarbon data and streamlines quality control assessments for various types
    of paleo-demographic research. As part of an assessment of data quality, we conduct
    two analyses of sampling bias in the global database at multiple scales. This
    database is ideal for paleo-demographic research focused on dates-as-data, bayesian
    modeling, or summed probability distribution methodologies.}"
  :copyright: "{2022 The Author(s)}"
  :langid: "{english}"
  :keywords: "{Archaeology,Chemistry}"
  :month_numeric: "{1}"

Changelog