Pilauco Bajo (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Pilauco Bajo" in English language version.

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doi.org

  • This evidence include sediment layers with charcoal and pollen assemblages both indicating major disturbances as well as rare metallic spherules, and a Pt. Au and Pd peak anomaly originating from claimed to be derivative of airbursts or impacts.Pino, Mario; Abarzúa, Ana M.; Astorga, Giselle; Martel-Cea, Alejandra; Cossio-Montecinos, Nathalie; Navarro, N. Ximena; Lira, Maria Paz; Labarca, Rafael; LeCompte, Malcolm A.; Adedeji, Victor; Moore, Christopher R.; Bunch, Ted E.; Mooney, Charles; Wolbach, Wendy S.; West, Allen; Kennett, James P. (2019). "Sedimentary record from Patagonia, southern Chile supports cosmic-impact triggering of biomass burning, climate change, and megafaunal extinctions at 12.8 ka". Nature. 9 (1): 4413. doi:10.1038/s41598-018-38089-y. PMC 6416299. PMID 30867437.
  • Holliday, Vance; Surovell, Todd; Meltzer, David; Grayson, Donald; Boslough, Mark (2014-08-01). "The Younger Dryas impact hypothesis: A cosmic catastrophe". Journal of Quaternary Science. 29 (6): 515–530. Bibcode:2014JQS....29..515H. doi:10.1002/jqs.2724. S2CID 18644154.
  • Navarro-Harris, Ximena; Pino, Mario; Guzmán‐Marín, Pedro; Lira, María Paz; Labarca, Rafael; Corgne, Alexandre (2019-03-02). "The procurement and use of knappable glassy volcanic rawmaterial from the late Pleistocene Pilauco site, ChileanNorthwestern Patagonia". Geoarchaeology. 34 (5): 592–612. doi:10.1002/gea.21736.

harvard.edu

ui.adsabs.harvard.edu

nih.gov

ncbi.nlm.nih.gov

  • This evidence include sediment layers with charcoal and pollen assemblages both indicating major disturbances as well as rare metallic spherules, and a Pt. Au and Pd peak anomaly originating from claimed to be derivative of airbursts or impacts.Pino, Mario; Abarzúa, Ana M.; Astorga, Giselle; Martel-Cea, Alejandra; Cossio-Montecinos, Nathalie; Navarro, N. Ximena; Lira, Maria Paz; Labarca, Rafael; LeCompte, Malcolm A.; Adedeji, Victor; Moore, Christopher R.; Bunch, Ted E.; Mooney, Charles; Wolbach, Wendy S.; West, Allen; Kennett, James P. (2019). "Sedimentary record from Patagonia, southern Chile supports cosmic-impact triggering of biomass burning, climate change, and megafaunal extinctions at 12.8 ka". Nature. 9 (1): 4413. doi:10.1038/s41598-018-38089-y. PMC 6416299. PMID 30867437.

pubmed.ncbi.nlm.nih.gov

  • This evidence include sediment layers with charcoal and pollen assemblages both indicating major disturbances as well as rare metallic spherules, and a Pt. Au and Pd peak anomaly originating from claimed to be derivative of airbursts or impacts.Pino, Mario; Abarzúa, Ana M.; Astorga, Giselle; Martel-Cea, Alejandra; Cossio-Montecinos, Nathalie; Navarro, N. Ximena; Lira, Maria Paz; Labarca, Rafael; LeCompte, Malcolm A.; Adedeji, Victor; Moore, Christopher R.; Bunch, Ted E.; Mooney, Charles; Wolbach, Wendy S.; West, Allen; Kennett, James P. (2019). "Sedimentary record from Patagonia, southern Chile supports cosmic-impact triggering of biomass burning, climate change, and megafaunal extinctions at 12.8 ka". Nature. 9 (1): 4413. doi:10.1038/s41598-018-38089-y. PMC 6416299. PMID 30867437.

researchgate.net

semanticscholar.org

api.semanticscholar.org

web.archive.org