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Journal
Publisher
Section
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Canada
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Elk Point Basin (1)
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Central Basin (2)
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Front Range (1)
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Guadalupe Mountains (1)
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Gulf of Mexico Basin (1)
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Marathon Basin (1)
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Mexico (1)
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North America
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Great Plains
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Southern Great Plains (1)
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Grenville Front (1)
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Gulf Coastal Plain (2)
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Keweenawan Rift (1)
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Rocky Mountains (1)
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North West Shelf (1)
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Permian Basin (37)
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Sacramento Mountains (2)
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South America
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Andes (1)
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United States
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Anadarko Basin (1)
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Ardmore Basin (1)
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Arkansas (1)
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California (1)
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Central Basin Platform (9)
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Colorado (2)
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Delaware Basin (20)
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Denver Basin (2)
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Hardeman Basin (1)
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Montana (1)
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New Mexico
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Eddy County New Mexico (1)
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Lea County New Mexico (1)
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Otero County New Mexico (1)
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Oklahoma
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Arbuckle Anticline (1)
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Criner Hills (1)
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Orogrande Basin (1)
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Ouachita Belt (1)
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Ouachita Mountains (1)
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Palo Duro Basin (4)
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Paradox Basin (1)
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Powder River basin (1)
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Texas
-
Andrews County Texas (3)
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Baylor County Texas (1)
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Borden County Texas (4)
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Callahan County Texas (1)
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Clay County Texas (1)
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Coke County Texas (1)
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Crane County Texas (1)
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Crockett County Texas (2)
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Culberson County Texas (1)
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Dawson County Texas (3)
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Eastland County Texas (1)
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Ector County Texas
-
Odessa Texas (1)
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-
Edwards Plateau (1)
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Fort Worth Basin (2)
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Glasscock County Texas (5)
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Hale County Texas (1)
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Hockley County Texas (1)
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Howard County Texas (3)
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Jack County Texas (1)
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Jones County Texas (1)
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King County Texas (1)
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Knox County Texas (1)
-
Lamb County Texas (1)
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Llano Uplift (3)
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Loving County Texas (1)
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Lubbock County Texas (1)
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Lynn County Texas (2)
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Marfa Basin (1)
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Martin County Texas (4)
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Midland Basin (114)
-
Midland County Texas (7)
-
Mitchell County Texas (2)
-
Palo Pinto County Texas (1)
-
Pecos County Texas (1)
-
Reagan County Texas (7)
-
Reeves County Texas (3)
-
San Marcos Arch (1)
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Scurry County Texas (4)
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Shackelford County Texas (1)
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Stephens County Texas (1)
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Sterling County Texas (2)
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Stonewall County Texas (1)
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Taylor County Texas (1)
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Terry County Texas (2)
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Upton County Texas (3)
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Val Verde Basin (3)
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Ward County Texas (2)
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West Texas (37)
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Winkler County Texas (1)
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Wise County Texas (1)
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Yoakum County Texas (1)
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Young County Texas (1)
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Uncompahgre Uplift (1)
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Utah (1)
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Washakie Basin (1)
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Western U.S. (1)
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Wyoming (2)
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-
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commodities
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brines (4)
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energy sources (4)
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oil and gas fields (19)
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petroleum
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natural gas (5)
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tight sands (2)
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water resources (1)
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-
elements, isotopes
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carbon
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C-13/C-12 (2)
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halogens
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bromine
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bromide ion (1)
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chlorine
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chloride ion (1)
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hydrogen
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D/H (1)
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isotope ratios (4)
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isotopes
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stable isotopes
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C-13/C-12 (2)
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D/H (1)
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O-18/O-16 (5)
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S-34/S-32 (1)
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Sr-87/Sr-86 (3)
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metals
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actinides
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uranium (1)
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alkaline earth metals
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strontium
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Sr-87/Sr-86 (3)
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iron (2)
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zirconium (1)
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nitrogen (1)
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oxygen
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dissolved oxygen (1)
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O-18/O-16 (5)
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silicon (1)
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sulfur
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S-34/S-32 (1)
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trace metals (1)
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fossils
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Chordata
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Vertebrata (1)
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cyanobacteria (1)
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Invertebrata
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Brachiopoda
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Articulata
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Spiriferida (1)
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-
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Bryozoa (1)
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Mollusca
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Cephalopoda
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Ammonoidea (1)
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-
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Protista
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Foraminifera
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Fusulinina
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Fusulinidae (3)
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microfossils
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Conodonta (2)
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Fusulinina
-
Fusulinidae (3)
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-
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Plantae
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algae (1)
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Spermatophyta
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Gymnospermae
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Coniferales (2)
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Pteridospermae (1)
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-
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thallophytes (1)
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geochronology methods
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fission-track dating (1)
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K/Ar (1)
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paleomagnetism (1)
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Pb/Pb (1)
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U/Pb (3)
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geologic age
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Mesozoic
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Cretaceous
-
Comanchean
-
Buda Limestone (1)
-
-
Upper Cretaceous
-
Almond Formation (1)
-
Buda Limestone (1)
-
Gulfian
-
Austin Chalk (2)
-
Eagle Ford Formation (1)
-
-
Lewis Shale (1)
-
-
-
Triassic
-
Upper Triassic
-
Dockum Group (1)
-
-
-
-
Paleozoic
-
Bird Spring Formation (1)
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Cambrian (2)
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Carboniferous
-
Mississippian
-
Barnett Shale (3)
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Lower Mississippian (1)
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Stanley Group (1)
-
Upper Mississippian (2)
-
-
Pennsylvanian
-
Middle Pennsylvanian
-
Atokan
-
Atoka Formation (1)
-
-
Desmoinesian (2)
-
-
Strawn Series (6)
-
Upper Pennsylvanian
-
Canyon Group (5)
-
Cisco Group (8)
-
Gzhelian (1)
-
Holder Formation (2)
-
Missourian (2)
-
Virgilian (7)
-
-
-
Upper Carboniferous (1)
-
-
Devonian
-
Keg River Formation (1)
-
Lower Devonian (1)
-
Thirtyone Formation (1)
-
Upper Devonian (1)
-
-
Laborcita Formation (2)
-
Ordovician
-
Lower Ordovician
-
Ellenburger Group (6)
-
-
Middle Ordovician
-
Simpson Group (2)
-
-
Montoya Group (1)
-
-
Permian
-
Guadalupian
-
Grayburg Formation (3)
-
-
Lower Permian
-
Abo Formation (1)
-
Cisuralian (1)
-
Leonardian
-
Bone Spring Limestone (2)
-
Clear Fork Group (4)
-
-
Wichita Group (2)
-
Wolfcampian (32)
-
-
Middle Permian (1)
-
Upper Permian
-
Salado Formation (1)
-
-
Yates Formation (1)
-
Yeso Formation (1)
-
-
Silurian (1)
-
upper Paleozoic (5)
-
Woodford Shale (3)
-
-
Precambrian
-
upper Precambrian
-
Proterozoic
-
Neoproterozoic (1)
-
-
-
-
-
igneous rocks
-
igneous rocks
-
volcanic rocks
-
pyroclastics
-
tuff (1)
-
-
-
-
-
metamorphic rocks
-
turbidite (3)
-
-
minerals
-
carbonates
-
calcite (5)
-
dolomite (3)
-
-
halides
-
chlorides
-
halite (3)
-
-
-
oxides
-
hematite (1)
-
magnetite (1)
-
-
silicates
-
framework silicates
-
silica minerals
-
quartz (1)
-
-
-
sheet silicates
-
chlorite group
-
chlorite (1)
-
-
clay minerals
-
smectite (1)
-
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illite (1)
-
-
-
sulfates
-
anhydrite (3)
-
gypsum (1)
-
-
sulfides
-
marcasite (1)
-
pyrite (4)
-
-
-
Primary terms
-
absolute age (3)
-
biogeography (2)
-
brines (4)
-
Canada
-
Elk Point Basin (1)
-
-
carbon
-
C-13/C-12 (2)
-
-
Chordata
-
Vertebrata (1)
-
-
climate change (1)
-
data processing (5)
-
deformation (4)
-
diagenesis (16)
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earthquakes (10)
-
economic geology (5)
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energy sources (4)
-
faults (13)
-
folds (2)
-
fractures (6)
-
geochemistry (4)
-
geochronology (1)
-
geophysical methods (25)
-
glacial geology (1)
-
ground water (3)
-
heat flow (1)
-
hydrogen
-
D/H (1)
-
-
igneous rocks
-
volcanic rocks
-
pyroclastics
-
tuff (1)
-
-
-
-
inclusions
-
fluid inclusions (1)
-
-
intrusions (1)
-
Invertebrata
-
Brachiopoda
-
Articulata
-
Spiriferida (1)
-
-
-
Bryozoa (1)
-
Mollusca
-
Cephalopoda
-
Ammonoidea (1)
-
-
-
Protista
-
Foraminifera
-
Fusulinina
-
Fusulinidae (3)
-
-
-
-
-
isotopes
-
stable isotopes
-
C-13/C-12 (2)
-
D/H (1)
-
O-18/O-16 (5)
-
S-34/S-32 (1)
-
Sr-87/Sr-86 (3)
-
-
-
maps (3)
-
Mesozoic
-
Cretaceous
-
Comanchean
-
Buda Limestone (1)
-
-
Upper Cretaceous
-
Almond Formation (1)
-
Buda Limestone (1)
-
Gulfian
-
Austin Chalk (2)
-
Eagle Ford Formation (1)
-
-
Lewis Shale (1)
-
-
-
Triassic
-
Upper Triassic
-
Dockum Group (1)
-
-
-
-
metals
-
actinides
-
uranium (1)
-
-
alkaline earth metals
-
strontium
-
Sr-87/Sr-86 (3)
-
-
-
iron (2)
-
zirconium (1)
-
-
metasomatism (1)
-
Mexico (1)
-
nitrogen (1)
-
North America
-
Great Plains
-
Southern Great Plains (1)
-
-
Grenville Front (1)
-
Gulf Coastal Plain (2)
-
Keweenawan Rift (1)
-
Rocky Mountains (1)
-
-
oil and gas fields (19)
-
oxygen
-
dissolved oxygen (1)
-
O-18/O-16 (5)
-
-
paleobotany (1)
-
paleoclimatology (4)
-
paleoecology (3)
-
paleogeography (13)
-
paleomagnetism (1)
-
Paleozoic
-
Bird Spring Formation (1)
-
Cambrian (2)
-
Carboniferous
-
Mississippian
-
Barnett Shale (3)
-
Lower Mississippian (1)
-
Stanley Group (1)
-
Upper Mississippian (2)
-
-
Pennsylvanian
-
Middle Pennsylvanian
-
Atokan
-
Atoka Formation (1)
-
-
Desmoinesian (2)
-
-
Strawn Series (6)
-
Upper Pennsylvanian
-
Canyon Group (5)
-
Cisco Group (8)
-
Gzhelian (1)
-
Holder Formation (2)
-
Missourian (2)
-
Virgilian (7)
-
-
-
Upper Carboniferous (1)
-
-
Devonian
-
Keg River Formation (1)
-
Lower Devonian (1)
-
Thirtyone Formation (1)
-
Upper Devonian (1)
-
-
Laborcita Formation (2)
-
Ordovician
-
Lower Ordovician
-
Ellenburger Group (6)
-
-
Middle Ordovician
-
Simpson Group (2)
-
-
Montoya Group (1)
-
-
Permian
-
Guadalupian
-
Grayburg Formation (3)
-
-
Lower Permian
-
Abo Formation (1)
-
Cisuralian (1)
-
Leonardian
-
Bone Spring Limestone (2)
-
Clear Fork Group (4)
-
-
Wichita Group (2)
-
Wolfcampian (32)
-
-
Middle Permian (1)
-
Upper Permian
-
Salado Formation (1)
-
-
Yates Formation (1)
-
Yeso Formation (1)
-
-
Silurian (1)
-
upper Paleozoic (5)
-
Woodford Shale (3)
-
-
paragenesis (1)
-
petroleum
-
natural gas (5)
-
-
Plantae
-
algae (1)
-
Spermatophyta
-
Gymnospermae
-
Coniferales (2)
-
Pteridospermae (1)
-
-
-
-
plate tectonics (2)
-
pollution (1)
-
Precambrian
-
upper Precambrian
-
Proterozoic
-
Neoproterozoic (1)
-
-
-
-
reefs (3)
-
rock mechanics (1)
-
sea-level changes (12)
-
sedimentary petrology (11)
-
sedimentary rocks
-
carbonate rocks
-
dolostone (2)
-
grainstone (4)
-
limestone (9)
-
packstone (3)
-
wackestone (2)
-
-
chemically precipitated rocks
-
evaporites (5)
-
-
clastic rocks
-
black shale (2)
-
mudstone (11)
-
red beds (1)
-
sandstone (7)
-
shale (12)
-
siltstone (3)
-
-
gas shale (1)
-
oil sands (1)
-
-
sedimentary structures
-
biogenic structures
-
bioturbation (3)
-
lebensspuren (1)
-
-
planar bedding structures
-
cross-laminations (1)
-
cyclothems (5)
-
laminations (1)
-
-
secondary structures
-
concretions (1)
-
stylolites (1)
-
-
turbidity current structures
-
Bouma sequence (1)
-
-
-
sedimentation (19)
-
sediments
-
clastic sediments
-
dust (2)
-
-
-
seismology (1)
-
silicon (1)
-
South America
-
Andes (1)
-
-
stratigraphy (10)
-
structural geology (1)
-
sulfur
-
S-34/S-32 (1)
-
-
tectonics (10)
-
thallophytes (1)
-
underground installations (4)
-
United States
-
Anadarko Basin (1)
-
Ardmore Basin (1)
-
Arkansas (1)
-
California (1)
-
Central Basin Platform (9)
-
Colorado (2)
-
Delaware Basin (20)
-
Denver Basin (2)
-
Hardeman Basin (1)
-
Montana (1)
-
New Mexico
-
Eddy County New Mexico (1)
-
Lea County New Mexico (1)
-
Otero County New Mexico (1)
-
-
Oklahoma
-
Arbuckle Anticline (1)
-
Criner Hills (1)
-
-
Orogrande Basin (1)
-
Ouachita Belt (1)
-
Ouachita Mountains (1)
-
Palo Duro Basin (4)
-
Paradox Basin (1)
-
Powder River basin (1)
-
Texas
-
Andrews County Texas (3)
-
Baylor County Texas (1)
-
Borden County Texas (4)
-
Callahan County Texas (1)
-
Clay County Texas (1)
-
Coke County Texas (1)
-
Crane County Texas (1)
-
Crockett County Texas (2)
-
Culberson County Texas (1)
-
Dawson County Texas (3)
-
Eastland County Texas (1)
-
Ector County Texas
-
Odessa Texas (1)
-
-
Edwards Plateau (1)
-
Fort Worth Basin (2)
-
Glasscock County Texas (5)
-
Hale County Texas (1)
-
Hockley County Texas (1)
-
Howard County Texas (3)
-
Jack County Texas (1)
-
Jones County Texas (1)
-
King County Texas (1)
-
Knox County Texas (1)
-
Lamb County Texas (1)
-
Llano Uplift (3)
-
Loving County Texas (1)
-
Lubbock County Texas (1)
-
Lynn County Texas (2)
-
Marfa Basin (1)
-
Martin County Texas (4)
-
Midland Basin (114)
-
Midland County Texas (7)
-
Mitchell County Texas (2)
-
Palo Pinto County Texas (1)
-
Pecos County Texas (1)
-
Reagan County Texas (7)
-
Reeves County Texas (3)
-
San Marcos Arch (1)
-
Scurry County Texas (4)
-
Shackelford County Texas (1)
-
Stephens County Texas (1)
-
Sterling County Texas (2)
-
Stonewall County Texas (1)
-
Taylor County Texas (1)
-
Terry County Texas (2)
-
Upton County Texas (3)
-
Val Verde Basin (3)
-
Ward County Texas (2)
-
West Texas (37)
-
Winkler County Texas (1)
-
Wise County Texas (1)
-
Yoakum County Texas (1)
-
Young County Texas (1)
-
-
Uncompahgre Uplift (1)
-
Utah (1)
-
Washakie Basin (1)
-
Western U.S. (1)
-
Wyoming (2)
-
-
waste disposal (4)
-
water resources (1)
-
well-logging (4)
-
-
rock formations
-
San Andres Formation (7)
-
-
sedimentary rocks
-
caliche (2)
-
floatstone (1)
-
sedimentary rocks
-
carbonate rocks
-
dolostone (2)
-
grainstone (4)
-
limestone (9)
-
packstone (3)
-
wackestone (2)
-
-
chemically precipitated rocks
-
evaporites (5)
-
-
clastic rocks
-
black shale (2)
-
mudstone (11)
-
red beds (1)
-
sandstone (7)
-
shale (12)
-
siltstone (3)
-
-
gas shale (1)
-
oil sands (1)
-
-
siliciclastics (3)
-
turbidite (3)
-
-
sedimentary structures
-
channels (2)
-
sedimentary structures
-
biogenic structures
-
bioturbation (3)
-
lebensspuren (1)
-
-
planar bedding structures
-
cross-laminations (1)
-
cyclothems (5)
-
laminations (1)
-
-
secondary structures
-
concretions (1)
-
stylolites (1)
-
-
turbidity current structures
-
Bouma sequence (1)
-
-
-
-
sediments
-
sediments
-
clastic sediments
-
dust (2)
-
-
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siliciclastics (3)
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turbidite (3)
-
-
soils
-
paleosols (3)
-
GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Midland Basin
Fluid effect on elastic properties of carbonate and implication for CO 2 geologic sequestration monitoring
The geology of injection-induced earthquakes in the Midland Basin region: Introduction
Modeling the evolution of pore pressure from deep wastewater injection in the Midland Basin, Texas
Challenges with managing unconventional water production and disposal in the Permian Basin
Pore pressure thresholds associated with seismogenic fault slip in the Midland Basin, west Texas, United States
Lithofacies and porosity heterogeneity of Ordovician–Pennsylvanian successions of the Midland Basin: Implications for wastewater disposal reservoir potential
Interpretation, characterization, and slip hazard assessment of faults in the Midland Basin, west Texas, United States
The importance of nodal plane orientation diversity for earthquake focal mechanism stress inversions
Abstract Inversions of earthquake focal mechanisms are among the most accessible and reliable methods for determining crustal stress. However, the use of this method varies widely, and the assumptions that underpin it are often violated, potentially compromising stress estimates. We investigate the consequences of violating the little-studied assumption that the focal mechanisms have diverse orientations. Our approach is to employ data-informed synthetic mechanisms, with nodal plane orientations defined by recent earthquake lineaments in the Midland Basin, western Texas, and rakes consistent with slip in the mapped stress field. Using both the traditional stress inversion method that assumes constant shear stress magnitudes on the causative faults as well as a recently published variable shear stress method, we show that low fault plane diversity can cause maximum horizontal stress ( S Hmax ) orientation and relative principal stress magnitude (faulting regime) estimates to differ markedly from the true values. This problem is compounded for catalogues with even modest amounts of noise (≤15°) or few (e.g. 20) mechanisms. Significantly, traditional approaches for quantifying uncertainty such as the bootstrap can severely underestimate the true uncertainty under these circumstances. To remedy this, we provide simple tools to quantify nodal plane orientation diversity and stress inversion reliability.