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NARROW
Format
Article Type
Journal
Publisher
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Antarctica
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Antarctic ice sheet
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East Antarctic ice sheet (1)
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East Antarctica (1)
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Transantarctic Mountains
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Beardmore Glacier (1)
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North America
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Canadian Shield
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San Bernardino Mountains (1)
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United States
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elements, isotopes
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upper Precambrian
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igneous rocks
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igneous rocks (1)
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minerals
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hornblende (1)
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orthosilicates
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Primary terms
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Antarctica
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Antarctic ice sheet
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East Antarctica (1)
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stable isotopes
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metals
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alkaline earth metals
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strontium
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sedimentary rocks
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clastic sediments
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till (2)
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Southern Ocean
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Ross Sea (1)
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tectonics (2)
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United States
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California
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Riverside County California (1)
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sedimentary rocks
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sedimentary rocks
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clastic rocks
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tillite (1)
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sediments
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sediments
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clastic sediments
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diamicton (1)
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till (2)
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GeoRef Categories
Era and Period
Epoch and Age
Date
Availability
Testing models of Laramide orogenic initiation by investigation of Late Cretaceous magmatic-tectonic evolution of the central Mojave sector of the California arc Open Access
Nunatak moraines as a repository of what lies beneath the East Antarctic ice sheet Available to Purchase
The particle size and provenance signature of glacial till from the Lonewolf Nunataks at the head of Byrd Glacier, Antarctica, show evidence of subglacial origin and therefore provide new information about ice-covered bedrock of East Antarctica. Particle-size data from ice-cored moraines at Lonewolf Nunataks show more abundant silt and clay (>50% fines) than active lateral moraines along downstream sites (<10% fines), and 25% of pebbles are faceted and/or striated. Sand and pebbles from moraines at Lonewolf Nunataks are a mix of locally derived Beacon Supergroup rocks and exotic felsic igneous and metamorphic rocks. The U/Pb detrital zircon data from the Lonewolf Nunataks till show significant populations of zircon ages, including early Ross and/or Pan-African ages of ca. 565–610 Ma, Grenville ages (ca. 950–1270 Ma), several Proterozoic peaks, and one prominent late Archean peak at ca. 2700 Ma. 40 Ar/ 39 Ar analyses of detrital hornblende and mica also show Ross and/or Pan-African ages from ca. 500 to 580 Ma, with a population of Grenville-age hornblende grains of ca. 1150–1250 Ma. This combination of geochronological tools can be used to identify recycled versus primary age populations eroded by the ice sheet, and so provide constraints on the age and distribution of unmapped, ice-covered bedrock. Our data show that petrologic and geochronologic signatures in East Antarctic till can be used to address geologic problems ranging from Cenozoic ice sheet history to Precambrian bedrock geology.