38 results on '"Blockley, S.P.E."'
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2. A multi-dating approach to age-modelling long continental records: The 135 ka El Cañizar de Villarquemado sequence (NE Spain)
3. Developing a robust tephrochronological framework for Late Quaternary marine records in the Southern Adriatic Sea: new data from core station SA03-11
4. A new contribution to the Late Quaternary tephrostratigraphy of the Mediterranean: Aegean Sea core LC21
5. Tephrochronology of core PRAD 1-2 from the Adriatic Sea: insights into Italian explosive volcanism for the period 200–80 ka
6. The evolution of Palaeolake Flixton and the environmental context of Star Carr: an oxygen and carbon isotopic record of environmental change for the early Holocene
7. The evolution of Palaeolake Flixton and the environmental context of Star Carr, NE. Yorkshire: stratigraphy and sedimentology of the Last Glacial-Interglacial Transition (LGIT) lacustrine sequences
8. Supplementary material for article'A multi-dating approach to age-modelling long continental records: The 135 ka El Cañizar de Villarquemado sequence (NE Spain)'
9. Regional climate change from peat stratigraphy for the mid- to late Holocene in central Ireland
10. A regional tephrostratigraphic framework for central and southern European climate archives during the Last Glacial to Interglacial transition: comparisons north and south of the Alps
11. Was the 12.1 ka Icelandic Vedde Ash one of a kind?
12. Tephrochronology and absolute centennial scale synchronisation of European and Greenland records for the last glacial to interglacial transition: A case study of Soppensee and NGRIP
13. A revised chronology for the adoption of agriculture in the Southern Levant and the role of Lateglacial climatic change
14. Late Holocene vegetation and palaeoenvironmental history of the Dunadd area, Argyll, Scotland: chronology of events
15. Distal tephra record for the last ca 105,000 years from core PRAD 1-2 in the central Adriatic Sea: implications for marine tephrostratigraphy
16. Improved age modelling approaches as exemplified by the revised chronology for the Central European varved lake Soppensee
17. Distal volcanic ash layers in the Lateglacial Interstadial (GI-1): problems of stratigraphic discrimination
18. Evidence for the presence of the Vedde Ash in Central Europe
19. Building and testing age models for radiocarbon dates in Lateglacial and Early Holocene sediments
20. Some numerical considerations in the geochemical analysis of distal microtephra
21. Refining mutual climatic range (MCR) quantitative estimates of palaeotemperature using ubiquity analysis
22. A new and less destructive laboratory procedure for the physical separation of distal glass tephra shards from sediments
23. Devensian Lateglacial environmental changes in Britain: a multi-proxy environmental record from Llanilid, South Wales, UK
24. The marine isotope stage 1–5 cryptotephra record of Tenaghi Philippon, Greece: Towards a detailed tephrostratigraphic framework for the Eastern Mediterranean region
25. Advancing tephrochronology as a global dating tool: Applications in volcanology, archaeology, and palaeoclimatic research
26. Rapid human response to Late Glacial climate change: a reply to Housley et al. (2000)
27. Radiocarbon calibration and Late Glacial occupation in northwest Europe
28. Bayesian analysis of radiocarbon chronologies: examples from the European Late-glacial
29. Bayesian analysis of radiocarbon chronologies: examples from the European Lateglacial
30. Short-term events during the Early Holocene (Pre-Boreal) and GI-1 (Bolling-Allerod) interval in the Central Mediterranean: plaeoceanographic and palaeoclimatic inferences
31. Synchronisation of palaeoenvironmental records over the last 60,000 years, and an extended INTIMATE event stratigraphy to 48,000 b2k
32. Temporal patterns in lacustrine stable isotopes as evidence for climate change during the late glacial in the Southern European Alps
33. Corrigendum to “Regional climate change from peat stratigraphy for the mid- to late Holocene in central Ireland” [Quat. Int. 268 (2012) 145–155]
34. A new and less destructive laboratory procedure for the physical separation of distal glass tephra shards from sediments
35. The INTegration of Ice core, MArine and TErrestrial records of the last termination (INTIMATE)60,000 to 8000 BP
36. Was the 12.1ka Icelandic Vedde Ash one of a kind?
37. The Middle to Upper Paleolithic transition: dating, stratigraphy, and isochronous markers
38. Reply to the comment on “Some numerical considerations in the geochemical analysis of distal microtephra”, by Nicholas J.G. Pearce, Charles A. Bendall and John A. Westgate
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