Abstract
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Ellery Frahm, Joshua M. Feinberg
Abstract
Rights: UNKNOWN · https://www.elsevier.com/tdm/userlicense/1.0/ · Source: journal-auto-sync:external:CROSSREF_ISSN
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Early Levallois technology and the transition from the Lower to Middle Palaeolithic in the Southern Caucasus
10.1126/science.1256484 · 2014
Chemical differentiation of obsidian within the Glass Buttes complex, Oregon
10.1006/jasc.2000.0593 · 2001
Experimental and archaeological verification of an index of retouch for hafted bifaces
10.2307/40035887 · 2006
Obsidian provenance studies in archaeology: a comparison between PIXE, ICP-AES and ICP-MS
10.1016/j.nimb.2005.06.216 · 2005
The application of energy dispersive X-ray fluorescence spectroscopy to determining the provenience of obsidian
10.1016/0020-708x(74)90068-4 · 1974
Unresolved referenced work
1982
Unresolved referenced work
2001
Unresolved referenced work
2012
Composition variations in obsidian sources and the archaeological implications
10.1111/j.1475-4754.1973.tb00080.x · 1973
On the uniformity of composition in obsidians and evidence for magmatic mixing
10.1086/627873 · 1973
The Malheur Headwaters, Northeast Oregon
2012
Mantle dynamics and genesis of mafic magmatism in the intermontane Pacific Northwest
2004
Trade and exchange in prehistoric British Columbia
1994
A method of locating petrographic sources of obsidian artifacts
1968
Obsidian: the primary sources
1989
Discussant for “A World of Obsidian: Sourcing, Dating, and Beyond
2012
Glass domes at Round Top Butte, Glass Buttes silicic complex, south-central Oregon
1984
Chapter 3: Factors affecting the energy-dispersive X-ray fluorescence (EDXRF) analysis of archaeological obsidian
2011
Determination of minor and trace elements in obsidian rock samples and archaeological artifacts by laser ablation inductively coupled plasma mass spectrometry using synthetic obsidian standards
10.1016/s0584-8547(01)00339-1 · 2001
Hydrogen isotope fractionation between coexisting vapor and silicate glasses and melts at low pressure
10.1016/0016-7037(89)90143-9 · 1989
Effect of heat treatment on siliceous rocks used in prehistoric lithic technology
10.1016/0305-4403(92)90031-w · 1992
Formative period obsidian exchange along the Pacific coast of Mesoamerica
2014
The role of raw material differences in stone tool shape variation: an experimental assessment
10.1016/j.jas.2014.05.034 · 2014
Subsource characterization: obsidian utilization of subsources of the Coso volcanic field, Coso Junction, California, USA
10.1002/gea.20024 · 2004
A Database of Obsidian Magnetic Properties for Archaeological Sourcing
2009
Magnetic Studies of Archaeological Obsidian: Variability of Eruptive Conditions within Obsidian Flows is Key to High-Resolution Artifact Sourcing
2013
Microdebitage analysis: initial considerations
10.1016/0305-4403(82)90050-4 · 1982
Reevaluation of the Lindenmeier Folsom: a replication experiment in lithic technology
10.2307/279406 · 1978
Bimodal volcanism of the High Lava Plains and Northwestern Basin and Range of Oregon: distribution and tectonic implications of age-progressive rhyolites
10.1002/ggge.20175 · 2013
Non-destructive analysis using PXRF: methodology and application to archaeological ceramics
10.1002/xrs.1360 · 2011
Distinguishing Nemrut Dağ and Bingöl A obsidians: geochemical and landscape differences and the archaeological implications
10.1016/j.jas.2011.12.038 · 2012
Is obsidian sourcing about geochemistry or archaeology? A reply to Speakman and Shackley
10.1016/j.jas.2012.10.001 · 2013
Buying local or ancient outsourcing? Locating production of prismatic obsidian blades in Bronze-Age Northern Mesopotamia
10.1016/j.jas.2013.10.007 · 2014
Characterizing obsidian sources with portable XRF: accuracy, reproducibility, and field relationships in a case study from Armenia
10.1016/j.jas.2014.05.003 · 2014
Chapter 8: What constitutes an obsidian “source”?: Landscape and geochemical considerations and their archaeological implications
2014
The technological versus methodological revolution of portable XRF in archaeology
10.1016/j.jas.2012.10.013 · 2013
From flow to quarry: magnetic properties of obsidian and changing the scales of archaeological sourcing
10.1016/j.jas.2013.04.029 · 2013
Handheld portable X-ray fluorescence of Aegean obsidians
10.1111/arcm.12012 · 2014
Sourcing geochemically identical obsidian: multiscalar magnetic variations in the Gutansar volcanic complex and implications for Palaeolithic research in Armenia
10.1016/j.jas.2014.04.015 · 2014
Ten seconds in the field: rapid Armenian obsidian sourcing with portable XRF to inform excavations and surveys
10.1016/j.jas.2013.08.012 · 2014
Origin of the Newberry Hotspot Track: evidence from shear-wave splitting
10.1016/j.epsl.2006.01.066 · doi-reference
An evaluation of X-ray fluorescence analysis as a method for correlating obsidian artifacts with source location
10.1111/j.1475-4754.1971.tb00026.x · doi-reference
Pressure blades and total cutting edge: an experiment in lithic technology
10.1126/science.175.4022.632 · doi-reference
Mass production and procurement at Valle del Azufre: a unique archaeological obsidian source in Baja California Sur
10.2307/282013 · doi-reference
Archaeological petrology and the archaeometry of lithic materials
10.1111/j.1475-4754.2008.00390.x · doi-reference
Trade, tribute, and neutron activation: The colonial political economy of Xaltocan, Mexico
10.1016/j.jaa.2013.07.001 · doi-reference
Characterization of Pacific Northwest Coast obsidian by X-ray fluorescence analysis
10.1111/j.1475-4754.1975.tb00117.x · doi-reference
Reconstructing prehistoric hunter–gatherer foraging radii: a case study from California's southern Sierra Nevada
10.1016/j.jas.2007.02.025 · doi-reference
PXRF characterisation of obsidian from central Anatolia, the Aegean and central Europe
10.1016/j.jas.2013.08.002 · doi-reference
Does Carneiro's circumscription theory help us understand Maori history? An analysis of the obsidian assemblage from Pouerua Pa, New Zealand (Aotearoa)
10.1016/j.jas.2013.11.034 · doi-reference
Geochemical sourcing of obsidians from the Pūrākaunui site, South Island, New Zealand
10.1002/arco.5032 · doi-reference
A provenance study of archaeological obsidian from the Andahuaylas region of southern Peru
10.1016/j.jas.2012.11.014 · doi-reference
New pieces: the acquisition and distribution of volcanic glass sources in northeast China during the Holocene
10.1016/j.jas.2012.09.001 · doi-reference
The speciation of dissolved water in rhyolitic melt
10.1016/s0016-7037(99)00277-x · doi-reference
Obsidian source identification by thermoluminescence
10.1111/j.1475-4754.1978.tb00226.x · doi-reference
Mass spectrometry with laser sampling: a new tool to characterize archaeological materials
10.1023/a:1010623703423 · doi-reference
Obsidian provenancing and magmatic fractionation in central Oregon
10.1002/gea.3340080504 · doi-reference
Archaeometry at the University of Missouri Research Reactor and the provenance of obsidian artefacts in North America
10.1111/j.1475-4754.2007.00305.x · doi-reference
Long-distance connections in Vanuatu: New obsidian characterisations for the Makué site, Aore Island
10.1002/arco.5030 · doi-reference
Hydration rate of obsidian
10.1126/science.191.4225.347 · doi-reference
Hydration rind dates rhyolite flows
10.1126/science.159.3817.878 · doi-reference