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Missiaen, Lise (2019): (Table S03) Radiocarbon ages from sediment core SU90-03 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.902697, In supplement to: Missiaen, Lise; Waelbroeck, Claire; Pichat, Sylvain; Jaccard, Samuel L; Eynaud, Frédérique; Greenop, Rosanna; Burke, Andrea (2019): Improving North Atlantic marine core chronologies using 230Th‐normalization. Paleoceanography and Paleoclimatology, https://doi.org/10.1029/2018PA003444

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Related to:
Chapman, Mark R; Shackleton, Nicholas J; Duplessy, Jean-Claude (2000): Sea surface temperature variability during the last glacial-interglacial cycle: assessing the magnitude and pattern of climate change in the North Atlantic. Palaeogeography, Palaeoclimatology, Palaeoecology, 157(1-2), 1-25, https://doi.org/10.1016/S0031-0182(99)00168-6
Further details:
Bronk Ramsey, Christopher (2009): Bayesian analysis of radiocarbon dates. Radiocarbon, 51(1), 337-360, https://doi.org/10.1017/S0033822200033865
Chapman, Mark R; Shackleton, Nicholas J; Duplessy, Jean-Claude (2000): Age determinations on sediment core SU90-03 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.57052
Key, Robert M; Kozyr, Alexander; Sabine, Christopher L; Lee, Kern Y; Wanninkhof, Rik; Bullister, John L; Feely, Richard A; Millero, Frank J; Mordy, Calvin; Peng, Tsung-Hung (2004): A global ocean carbon climatology: Results from Global Data Analysis Project (GLODAP). Global Biogeochemical Cycles, 18(4), n/a-n/a, https://doi.org/10.1029/2004GB002247
Reimer, Paula J; Bard, Edouard; Beck, J Warren; Blackwell, Paul G; Ramsey, Christopher Bronk; Buck, Caitlin E; Cheng, Hai; Edwards, R Lawrence; Friedrich, Michael; Grootes, Pieter Meiert; Guilderson, Thomas P; Haflidason, Haflidi; Hajdas, Irka; Hatte, Christine; Heaton, T J; Hoffmann, Dirk L; Hogg, Alan G; Hughen, Konrad A; Kaiser, Klaus-Felix; Kromer, Bernd; Manning, Sturt W; Niu, Mu; Reimer, Ron W; Richards, David A; Scott, Marian; Southon, John R; Staff, Richard A; Turney, Chris S M; van der Plicht, Johannes (2013): IntCal13 and Marine13 Radiocarbon Age Calibration Curves 0–50,000 Years cal BP. Radiocarbon, 55(4), 1869-1887, https://doi.org/10.2458/azu_js_rc.55.16947
Coverage:
Latitude: 40.505000 * Longitude: -32.053333
Date/Time Start: 1990-01-01T00:00:00 * Date/Time End: 1990-01-01T00:00:00
Minimum DEPTH, sediment/rock: 0.3300 m * Maximum DEPTH, sediment/rock: 1.3200 m
Event(s):
SU90-03 * Latitude: 40.505000 * Longitude: -32.053333 * Date/Time: 1990-01-01T00:00:00 * Elevation: -2475.0 m * Recovery: 11 m * Location: North Atlantic Ocean * Campaign: PALEOCINAT * Basis: Le Suroît * Method/Device: Piston corer (PC)
Comment:
For age dating methods, see references. Calendar ages were calculated from the published raw radiocarbon ages into calendar ages using using Oxcal (online version 4.3) (Ramsey, 2009), the IntCal13 calibration curve (Reimer et al., 2013) and the modern reservoir age corresponding to each location extracted from GLODAP (Key et al., 2004). The reservoir age considered is 400 ± 100 a.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1DEPTH, sediment/rockDepth sedmMissiaen, LiseGeocode
2Age, dated materialDated materialMissiaen, Lise
3Age, datedAge datedkaMissiaen, LiseAge, 14C AMS
4Age, dated standard deviationAge dated std dev±Missiaen, LiseAge, 14C AMS
5Calendar ageCal ageka BPMissiaen, LiseAge, 14C calibrated
6Calendar age, standard deviationCal age std dev±Missiaen, LiseAge, 14C calibrated
Size:
30 data points

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