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all geography including DSDP/ODP Sites and Legs
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Asia
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Far East
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China
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North China Platform (1)
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Canada
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Primary terms
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Asia
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China
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Canada
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Cenozoic
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Neogene
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volcanic rocks
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isotopes
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stable isotopes
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Sr-87/Sr-86 (1)
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lava (1)
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magmas (2)
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mantle (3)
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Mesozoic
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Cretaceous
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Upper Cretaceous (5)
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metal ores
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gold ores (1)
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metals
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alkaline earth metals
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strontium
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Sr-87/Sr-86 (1)
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lead
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Pb-206/Pb-204 (1)
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Pb-207/Pb-204 (1)
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rare earths
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neodymium
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Nd-144/Nd-143 (1)
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metamorphic rocks
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cataclasites (1)
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gneisses
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granite gneiss (1)
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metaigneous rocks
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metabasite (1)
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metasedimentary rocks (1)
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schists (1)
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mineral deposits, genesis (1)
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North America
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Basin and Range Province (1)
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Disturbed Belt (1)
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North American Cordillera (1)
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Rocky Mountains
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U. S. Rocky Mountains
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Beartooth Mountains (1)
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Rocky Mountains foreland (1)
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paleogeography (1)
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Paleozoic
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Carboniferous (1)
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placers (1)
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upper Precambrian
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sedimentary rocks
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structural analysis (1)
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tectonics
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United States
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Alaska
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Talkeetna Mountains (1)
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Idaho
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Fremont County Idaho (1)
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Montana
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Deer Lodge County Montana (1)
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Jefferson County Montana (1)
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Little Belt Mountains (1)
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Madison County Montana (2)
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Powell County Montana (1)
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Sweet Grass County Montana (1)
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Nevada
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Clark County Nevada (1)
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Las Vegas Valley (1)
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New Mexico
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San Miguel County New Mexico (1)
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Santa Fe County New Mexico (1)
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U. S. Rocky Mountains
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Absaroka Range
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Beartooth Mountains (1)
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Little Belt Mountains (1)
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Wyoming
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sedimentary rocks
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sedimentary rocks
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clastic rocks
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red beds (1)
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volcaniclastics (1)
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sediments
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volcaniclastics (1)
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GeoRef Categories
Era and Period
Epoch and Age
Date
Availability
Geology and Timing of Ore Formation in the Willow Creek Gold District, Talkeetna Mountains, Southern Alaska Available to Purchase
40 Ar/ 39 Ar Geochronology and Geochemical Reconnaissance of the Eocene Lowland Creek Volcanic Field, West-Central Montana Available to Purchase
Rapid, high-temperature formation of large-scale rheomorphic structures in the 2.06 Ma Huckleberry Ridge Tuff, Idaho, USA Available to Purchase
Paleomagnetism of Tertiary intrusive and volcaniclastic rocks of the Cerrillos Hills and surrounding region, Española Basin, New Mexico, U.S.A.: Assessment and implications of vertical-axis rotations associated with extension of the Rio Grande rift Open Access
Paleomagnetism and geochronology of sills of the Doherty Mountain area, southwestern Montana: Implications for the timing of fold-and-thrust belt deformation and vertical-axis rotations along the southern margin of the Helena salient Available to Purchase
New 40 Ar/ 39 Ar age determinations and paleomagnetic results bearing on the tectonic and magmatic history of the northern Madison Range and Madison Valley region, southwestern Montana, U.S.A. Available to Purchase
40 Ar/ 39 Ar dates from alkaline intrusions in the northern Crazy Mountains, Montana : Implications for the timing and duration of alkaline magmatism in the central Montana alkalic province Available to Purchase
Gunbarrel mafic magmatic event: A key 780 Ma time marker for Rodinia plate reconstructions Available to Purchase
An Ancient Depleted Mantle Sample from a 42-Ma Dike in Montana: Constraints on Persistence of the Lithosphere during Eocene Magmatism Available to Purchase
New 40 Ar/ 39 Ar isotopic dates from Miocene volcanic rocks in the Lake Mead area and southern Las Vegas Range, Nevada Free
40 Ar/ 39 Ar geochronology and paleomagnetism of Independence volcano, Absaroka Volcanic Supergroup, Beartooth Mountains, Montana Free
The Eocene Big Timber stock, south-central Montana: Development of extensive compositional variation in an arc-related intrusion by side-wall crystallization and cumulate glomerocryst remixing Available to Purchase
Timing of emplacement of the sapphire-bearing Yogo Dike, Little Belt Mountains, Montana Available to Purchase
Late Cretaceous remagnetization of Proterozoic mafic dikes, southern Highland Mountains, southwestern Montana: A paleomagnetic and 40 Ar/ 39 Ar study Available to Purchase
Mechanical behavior of basement rocks during movement of the Scarface thrust, central Madison Range, Montana Available to Purchase
The Scarface thrust of the western Madison Range, Montana, is a 17° west-dipping Late Cretaceous thrust that places Archean gneisses over a complexly folded panel of Phanerozoic sedimentary rocks. The Archean-Cambrian contact on the footwall of the Scarface thrust is nearly vertical, and both bedding in the cover and foliation in the gneisses near the contact were rotated by 38° during folding. Paleozoic rocks up section in the footwall are overturned, with an axial surface that dips less than 10° west. The Scarface thrust is locally folded over lower Paleozoic rocks on the footwall. Folding was produced by post-Scarface thrust movement on a minor east-dipping splay fault that follows bedding in Devonian rocks. Of the two dominant shear fracture and fault sets in the basement (strikes and dips of N52°W, 47°NE; N20°W, 50°SW), the northeast-dipping set is parallel to foliation and reflects a strong influence of foliation on basement deformation. Intergranular fractures nucleated at the tips of biotite grains. Narrow zones of cataclasis containing shredded biotite formed along the intergranular fractures. Advanced stages of deformation were accompanied by formation of thicker zones of wavy, foliated cataclasites defined by dark seams of comminuted biotite, feldspar, and quartz. The recumbent footwall syncline is superimposed on the west limb of a large, more open syncline in Paleozoic and Mesozoic rocks. We are unable to resolve which fold formed first. Faulting sequences are also equivocal. The Scarface thrust may have been emplaced as a shallowly dipping sheet, or it may have been steeper initially and rotated during movement on the structurally lower Beaver Creek thrust.
Deformation mechanisms and kinematics of a Precambrian-cored fold and fault structure: Jakeys Fork structure, northeastern Wind River Range, Wyoming Available to Purchase
The Jakeys Fork fold and fault structure is a Precambrian granite-gneiss–cored anticline in the hanging wall of the steeply west dipping Ross Lakes shear zone. The Ross Lakes shear zone juxtaposes Precambrian rocks in its hanging wall and steeply dipping to overturned Cambrian and Ordovician sedimentary rocks in its footwall. Precambrian and Cambrian Flathead Sandstone in the hanging wall of the Ross Lakes shear zone are folded in an open, kinklike fold defined by gently and steeply dipping panels of Cambrian Flathead Sandstone. Precambrian rocks in the core of the hanging-wall anticline deformed by slip on a narrow fault in the hinge zone of the fold and by randomly oriented slip on narrow, discrete faults of many orientations on either side of the hinge zone. Cambrian Flathead Sandstone was welded to the Precambrian rocks during folding, and detachment occurred in the Cambrian Gros Ventre Formation. The Ross Lakes shear zone formed by brecciation and cataclasis. Precambrian rocks in the footwall of the Ross Lakes shear zone deformed by small amounts of slip on steeply west dipping faults, which resulted in a steepening of the contact between Precambrian rocks and the overlying Cambrian Flathead Sandstone. Faults in Precambrian rocks in the footwall of the Ross Lakes shear zone bound regions of undeformed Precambrian rock with widely spaced fracture sets. Cambrian Gros Ventre and younger formations are folded into a tight, overturned footwall syncline with its steep limb parallel to the Ross Lakes shear zone.