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NARROW
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Atlantic Ocean
-
North Atlantic
-
Blake Plateau (2)
-
-
-
Canada
-
Eastern Canada
-
Newfoundland and Labrador
-
Newfoundland (1)
-
-
-
-
Europe
-
Jutland (1)
-
-
Grandfather Mountain (2)
-
North America
-
Appalachian Basin (14)
-
Appalachians
-
Appalachian Plateau (11)
-
Blue Ridge Mountains (7)
-
Blue Ridge Province (15)
-
Carolina slate belt (1)
-
Central Appalachians (193)
-
Cumberland Plateau (2)
-
Great Appalachian Valley (3)
-
Northern Appalachians (2)
-
Piedmont (23)
-
Shawangunk Mountains (1)
-
Southern Appalachians (28)
-
Valley and Ridge Province (26)
-
-
Eastern Overthrust Belt (4)
-
Great Lakes region (1)
-
Rocky Mountains
-
Northern Rocky Mountains (1)
-
-
-
Rome Trough (3)
-
Saltville Fault (1)
-
South Mountain (2)
-
United States
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Alabama (2)
-
Atlantic Coastal Plain (3)
-
Blue Ridge Mountains (7)
-
Brevard Zone (2)
-
Carolina Terrane (3)
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Catskill Delta (1)
-
Delaware
-
New Castle County Delaware (3)
-
-
Eastern U.S. (6)
-
Florida (1)
-
Georgia
-
Murray County Georgia (1)
-
Whitfield County Georgia (1)
-
-
Hayesville Fault (3)
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Hudson Valley (1)
-
Illinois
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Effingham County Illinois (1)
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Tazewell County Illinois (1)
-
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Kentucky
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Perry County Kentucky (1)
-
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Kiokee Belt (2)
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Maryland
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Allegany County Maryland (1)
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Washington County Maryland (2)
-
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Michigan
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Michigan Lower Peninsula
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Washtenaw County Michigan
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Ann Arbor Michigan (1)
-
-
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Montana (1)
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New England (1)
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New Jersey
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Hunterdon County New Jersey (1)
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Mercer County New Jersey
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Trenton New Jersey (1)
-
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New Jersey Highlands (2)
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Sussex County New Jersey (1)
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Warren County New Jersey (1)
-
-
New York
-
Orange County New York (1)
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Ulster County New York
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Shawangunk Mountains (1)
-
-
-
North Carolina
-
Alleghany County North Carolina (1)
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Cherokee County North Carolina (1)
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Mitchell County North Carolina (1)
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Randolph County North Carolina (1)
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Transylvania County North Carolina (1)
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Ohio (7)
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Pennsylvania
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Adams County Pennsylvania (1)
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Berks County Pennsylvania (2)
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Blair County Pennsylvania (1)
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Cambria County Pennsylvania (1)
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Carbon County Pennsylvania (2)
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Chester County Pennsylvania (1)
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Delaware County Pennsylvania (2)
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Greene County Pennsylvania (1)
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Huntingdon County Pennsylvania (1)
-
Indiana County Pennsylvania (2)
-
Lackawanna County Pennsylvania (1)
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Lancaster County Pennsylvania (1)
-
Lehigh County Pennsylvania (2)
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Luzerne County Pennsylvania (1)
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Schuylkill County Pennsylvania (2)
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Somerset County Pennsylvania (1)
-
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Pine Mountain Window (1)
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Potomac River basin (2)
-
Reading Prong (1)
-
South Carolina (3)
-
Susquehanna River (1)
-
Susquehanna River basin (1)
-
Tennessee
-
Blount County Tennessee (1)
-
Carter County Tennessee (1)
-
Putnam County Tennessee (1)
-
Sevier County Tennessee (1)
-
Sullivan County Tennessee (1)
-
White County Tennessee (1)
-
-
Virginia
-
Albemarle County Virginia (3)
-
Augusta County Virginia (2)
-
Bath County Virginia (1)
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Carroll County Virginia (1)
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Clarke County Virginia (2)
-
Craig County Virginia (1)
-
Culpeper County Virginia (2)
-
Fauquier County Virginia (2)
-
Giles County Virginia (1)
-
Grayson County Virginia (2)
-
Highland County Virginia (4)
-
Lee County Virginia (2)
-
Loudoun County Virginia (2)
-
Madison County Virginia (2)
-
Montgomery County Virginia (1)
-
Nelson County Virginia (2)
-
Page County Virginia (1)
-
Pulaski County Virginia (1)
-
Rappahannock County Virginia (2)
-
Tazewell County Virginia (1)
-
Warren County Virginia (2)
-
Wythe County Virginia (1)
-
-
West Virginia
-
Boone County West Virginia (1)
-
Grant County West Virginia (5)
-
Greenbrier County West Virginia (1)
-
Hampshire County West Virginia (1)
-
Hardy County West Virginia (2)
-
Jackson County West Virginia
-
Cottageville Field (3)
-
-
Logan County West Virginia (2)
-
McDowell County West Virginia (1)
-
Mercer County West Virginia (2)
-
Mineral County West Virginia (3)
-
Mingo County West Virginia (2)
-
Monongalia County West Virginia (1)
-
Monroe County West Virginia (1)
-
Pendleton County West Virginia (5)
-
Pocahontas County West Virginia (4)
-
Putnam County West Virginia (1)
-
Raleigh County West Virginia (1)
-
Randolph County West Virginia (1)
-
Summers County West Virginia (1)
-
Tucker County West Virginia (1)
-
Upshur County West Virginia (1)
-
Wayne County West Virginia (2)
-
Wyoming County West Virginia (1)
-
-
Wyoming (1)
-
-
Yucatan Peninsula (1)
-
-
commodities
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barite deposits (2)
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brines (4)
-
coal deposits (1)
-
energy sources (7)
-
metal ores
-
base metals (2)
-
copper ores (2)
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gold ores (2)
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iron ores (2)
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lead ores (1)
-
lead-zinc deposits (3)
-
manganese ores (1)
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zinc ores (3)
-
-
mineral deposits, genesis (7)
-
mineral exploration (1)
-
oil and gas fields (9)
-
petroleum
-
natural gas (29)
-
-
talc deposits (1)
-
-
elements, isotopes
-
carbon
-
C-13/C-12 (3)
-
-
isotope ratios (8)
-
isotopes
-
radioactive isotopes
-
Be-10 (2)
-
Be-10/Be-9 (1)
-
Pb-206/Pb-204 (3)
-
Pb-207/Pb-204 (3)
-
Pb-208/Pb-204 (2)
-
Sm-147/Nd-144 (1)
-
-
stable isotopes
-
Be-10/Be-9 (1)
-
C-13/C-12 (3)
-
Hf-177/Hf-176 (1)
-
Nd-144/Nd-143 (2)
-
O-18/O-16 (3)
-
Pb-206/Pb-204 (3)
-
Pb-207/Pb-204 (3)
-
Pb-208/Pb-204 (2)
-
S-34/S-32 (3)
-
Sm-147/Nd-144 (1)
-
Sr-87/Sr-86 (2)
-
-
-
metals
-
actinides
-
uranium (1)
-
-
alkali metals
-
potassium (1)
-
rubidium (2)
-
-
alkaline earth metals
-
barium (1)
-
beryllium
-
Be-10 (2)
-
Be-10/Be-9 (1)
-
-
strontium
-
Sr-87/Sr-86 (2)
-
-
-
arsenic (1)
-
hafnium
-
Hf-177/Hf-176 (1)
-
-
iron (1)
-
lead
-
Pb-206/Pb-204 (3)
-
Pb-207/Pb-204 (3)
-
Pb-208/Pb-204 (2)
-
-
nickel (1)
-
rare earths
-
cerium (1)
-
europium (1)
-
neodymium
-
Nd-144/Nd-143 (2)
-
Sm-147/Nd-144 (1)
-
-
samarium
-
Sm-147/Nd-144 (1)
-
-
-
titanium (1)
-
zirconium (1)
-
-
noble gases
-
radon (1)
-
-
oxygen
-
O-18/O-16 (3)
-
-
silicon (1)
-
sulfur
-
S-34/S-32 (3)
-
-
-
fossils
-
burrows (2)
-
Chordata
-
Vertebrata
-
Pisces (2)
-
-
-
cyanobacteria
-
Renalcis (1)
-
-
Graptolithina
-
Graptoloidea
-
Monograptina
-
Monograptus
-
Monograptus uniformis (1)
-
-
-
-
-
ichnofossils
-
Cruziana (2)
-
Nereites (1)
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Planolites (1)
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Rusophycus (1)
-
Skolithos (1)
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Teichichnus (1)
-
-
Invertebrata
-
Arthropoda
-
Trilobitomorpha
-
Trilobita (3)
-
-
-
Brachiopoda (3)
-
Bryozoa (1)
-
Cnidaria
-
Anthozoa
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Zoantharia
-
Scleractinia (1)
-
-
-
-
Echinodermata (1)
-
Mollusca
-
Bivalvia (1)
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Gastropoda (2)
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Hyolithes (1)
-
-
Porifera
-
Stromatoporoidea (2)
-
-
Protista (1)
-
-
microfossils
-
Conodonta
-
Panderodus (1)
-
-
-
Plantae
-
algae
-
Epiphyton (1)
-
-
Pteridophyta
-
Lycopsida (1)
-
-
-
thallophytes (1)
-
-
geochronology methods
-
(U-Th)/He (3)
-
Ar/Ar (2)
-
exposure age (1)
-
fission-track dating (2)
-
K/Ar (2)
-
paleomagnetism (7)
-
Rb/Sr (2)
-
Sm/Nd (2)
-
tephrochronology (1)
-
thermochronology (1)
-
U/Pb (9)
-
-
geologic age
-
Cenozoic
-
Quaternary
-
Holocene (1)
-
Pleistocene
-
upper Pleistocene
-
Wisconsinan (1)
-
-
-
-
Tertiary
-
Neogene
-
Miocene (1)
-
Pliocene (3)
-
-
Paleogene
-
Eocene (1)
-
-
-
-
Mesozoic
-
Jurassic
-
Lower Jurassic (1)
-
-
Triassic
-
Upper Triassic (1)
-
-
-
Paleozoic
-
Bedford Shale (1)
-
Berea Sandstone (1)
-
Cambrian
-
Acadian (1)
-
Lower Cambrian
-
Chilhowee Group (2)
-
Kinzers Formation (1)
-
Murphy Marble (1)
-
Rome Formation (1)
-
-
Middle Cambrian (1)
-
Upper Cambrian
-
Dresbachian (1)
-
-
-
Carboniferous
-
Mississippian
-
Lower Mississippian
-
Pocono Formation (5)
-
-
Price Formation (2)
-
Upper Mississippian
-
Greenbrier Limestone (3)
-
Hinton Formation (2)
-
Mauch Chunk Formation (4)
-
-
-
Pennsylvanian
-
Conemaugh Group (1)
-
Lower Pennsylvanian
-
New River Formation (4)
-
Pocahontas Formation (3)
-
-
Middle Pennsylvanian
-
Allegheny Group (4)
-
Atokan (1)
-
Breathitt Formation (1)
-
Kanawha Formation (2)
-
-
Monongahela Group (3)
-
Pottsville Group (2)
-
-
Upper Carboniferous
-
Westphalian (1)
-
-
-
Catskill Formation (4)
-
Chattanooga Shale (2)
-
Devonian
-
Lower Devonian
-
Oriskany Sandstone (3)
-
-
Middle Devonian
-
Hamilton Group (3)
-
Mahantango Formation (1)
-
Marcellus Shale (5)
-
Onondaga Limestone (1)
-
Tully Limestone (1)
-
-
Upper Devonian
-
Brallier Shale (4)
-
Chemung Formation (2)
-
Cleveland Member (1)
-
Hampshire Formation (1)
-
Huron Member (2)
-
Ohio Shale (2)
-
West Falls Formation (1)
-
-
-
Dunkard Group (1)
-
Helderberg Group (3)
-
Keyser Limestone (2)
-
Knox Group (1)
-
lower Paleozoic
-
Ashe Formation (1)
-
Chopawamsic Formation (2)
-
Conococheague Formation (4)
-
Glenarm Series (1)
-
Wilmington Complex (2)
-
-
New Albany Shale (1)
-
Ordovician
-
Lower Ordovician
-
Beekmantown Group (3)
-
Ibexian (1)
-
-
Martinsburg Formation (3)
-
Middle Ordovician
-
Black River Group (1)
-
-
Trenton Group (3)
-
Upper Ordovician
-
Cincinnatian
-
Richmondian (1)
-
-
Juniata Formation (3)
-
Reedsville Formation (3)
-
Trentonian (3)
-
-
-
Permian
-
Lower Permian (1)
-
Upper Permian (1)
-
-
Shawangunk Formation (2)
-
Silurian
-
Lockport Formation (2)
-
Lower Silurian
-
Llandovery (1)
-
Tuscarora Formation (3)
-
Wenlock (1)
-
-
Middle Silurian
-
Keefer Sandstone (3)
-
McKenzie Formation (1)
-
Rose Hill Formation (3)
-
-
Niagaran (3)
-
Upper Silurian
-
Bloomsburg Formation (1)
-
Cayugan
-
Tonoloway Limestone (1)
-
Williamsport Sandstone (1)
-
-
Salina Group (3)
-
-
-
upper Paleozoic (3)
-
Wissahickon Formation (3)
-
-
Precambrian
-
Baltimore Gneiss (2)
-
Catoctin Formation (2)
-
Eocambrian (2)
-
upper Precambrian
-
Proterozoic
-
Mesoproterozoic (1)
-
Neoproterozoic
-
Ediacaran (1)
-
Lynchburg Formation (1)
-
Vendian (1)
-
-
-
-
-
-
igneous rocks
-
igneous rocks
-
kimberlite (3)
-
plutonic rocks
-
diabase (2)
-
gabbros (1)
-
granites (3)
-
ultramafics
-
chromitite (1)
-
peridotites
-
dunite (1)
-
lherzolite (1)
-
-
pyroxenite
-
websterite (1)
-
-
-
-
volcanic rocks
-
andesites (1)
-
basalts
-
olivine basalt (1)
-
-
glasses (1)
-
pyroclastics
-
tuff (1)
-
-
rhyolites (2)
-
-
-
-
metamorphic rocks
-
metamorphic rocks
-
amphibolites (2)
-
gneisses
-
paragneiss (1)
-
-
marbles (1)
-
metaigneous rocks
-
metabasalt (1)
-
metagranite (1)
-
metarhyolite (1)
-
-
metasedimentary rocks
-
metasandstone (1)
-
paragneiss (1)
-
-
metavolcanic rocks (3)
-
mylonites
-
ultramylonite (1)
-
-
quartzites (4)
-
schists (1)
-
-
turbidite (2)
-
-
minerals
-
carbonates
-
calcite (3)
-
dolomite (2)
-
-
manganese minerals (1)
-
minerals (2)
-
oxides
-
gahnite (1)
-
jacobsite (1)
-
spinel group (1)
-
-
phosphates
-
apatite (1)
-
-
silicates
-
chain silicates
-
amphibole group
-
clinoamphibole
-
hornblende (1)
-
-
-
-
framework silicates
-
feldspar group
-
plagioclase (1)
-
-
-
orthosilicates
-
nesosilicates
-
staurolite (1)
-
zircon group
-
zircon (10)
-
-
-
sorosilicates
-
epidote group (1)
-
-
-
sheet silicates
-
chlorite group (1)
-
clay minerals
-
kaolinite (1)
-
-
corrensite (1)
-
illite (1)
-
mica group
-
biotite (3)
-
muscovite (1)
-
-
-
-
sulfates
-
barite (1)
-
-
sulfides
-
pyrite (1)
-
pyrrhotite (1)
-
sphalerite (2)
-
-
-
Primary terms
-
absolute age (16)
-
Atlantic Ocean
-
North Atlantic
-
Blake Plateau (2)
-
-
-
barite deposits (2)
-
biogeography (2)
-
brines (4)
-
Canada
-
Eastern Canada
-
Newfoundland and Labrador
-
Newfoundland (1)
-
-
-
-
carbon
-
C-13/C-12 (3)
-
-
Cenozoic
-
Quaternary
-
Holocene (1)
-
Pleistocene
-
upper Pleistocene
-
Wisconsinan (1)
-
-
-
-
Tertiary
-
Neogene
-
Miocene (1)
-
Pliocene (3)
-
-
Paleogene
-
Eocene (1)
-
-
-
-
Chordata
-
Vertebrata
-
Pisces (2)
-
-
-
clay mineralogy (1)
-
climate change (2)
-
coal deposits (1)
-
continental drift (5)
-
crust (11)
-
crystal chemistry (1)
-
crystal structure (1)
-
data processing (4)
-
deformation (16)
-
diagenesis (6)
-
earthquakes (2)
-
ecology (1)
-
economic geology (36)
-
energy sources (7)
-
engineering geology (2)
-
Europe
-
Jutland (1)
-
-
faults (40)
-
folds (28)
-
foliation (2)
-
foundations (1)
-
fractures (15)
-
geochemistry (20)
-
geochronology (7)
-
geomorphology (11)
-
geophysical methods (12)
-
glacial geology (1)
-
Graptolithina
-
Graptoloidea
-
Monograptina
-
Monograptus
-
Monograptus uniformis (1)
-
-
-
-
-
ground water (4)
-
heat flow (1)
-
hydrology (3)
-
ichnofossils
-
Cruziana (2)
-
Nereites (1)
-
Planolites (1)
-
Rusophycus (1)
-
Skolithos (1)
-
Teichichnus (1)
-
-
igneous rocks
-
kimberlite (3)
-
plutonic rocks
-
diabase (2)
-
gabbros (1)
-
granites (3)
-
ultramafics
-
chromitite (1)
-
peridotites
-
dunite (1)
-
lherzolite (1)
-
-
pyroxenite
-
websterite (1)
-
-
-
-
volcanic rocks
-
andesites (1)
-
basalts
-
olivine basalt (1)
-
-
glasses (1)
-
pyroclastics
-
tuff (1)
-
-
rhyolites (2)
-
-
-
inclusions
-
fluid inclusions (8)
-
-
intrusions (14)
-
Invertebrata
-
Arthropoda
-
Trilobitomorpha
-
Trilobita (3)
-
-
-
Brachiopoda (3)
-
Bryozoa (1)
-
Cnidaria
-
Anthozoa
-
Zoantharia
-
Scleractinia (1)
-
-
-
-
Echinodermata (1)
-
Mollusca
-
Bivalvia (1)
-
Gastropoda (2)
-
Hyolithes (1)
-
-
Porifera
-
Stromatoporoidea (2)
-
-
Protista (1)
-
-
isostasy (1)
-
isotopes
-
radioactive isotopes
-
Be-10 (2)
-
Be-10/Be-9 (1)
-
Pb-206/Pb-204 (3)
-
Pb-207/Pb-204 (3)
-
Pb-208/Pb-204 (2)
-
Sm-147/Nd-144 (1)
-
-
stable isotopes
-
Be-10/Be-9 (1)
-
C-13/C-12 (3)
-
Hf-177/Hf-176 (1)
-
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Central Appalachians
Syntectonic sediment loading and fold-thrust belt structural architecture: An example from the central Appalachians (USA)
Spatially variable syn- and post-Alleghanian exhumation of the central Appalachian Mountains from zircon (U-Th)/He thermochronology
Skempton’s poroelastic relaxation: The mechanism that accounts for the distribution of pore pressure and exhumation-related fractures in black shale of the Appalachian Basin
Hotspot signatures at the North American passive margin
Quantifying shortening across the central Appalachian fold-thrust belt, Virginia and West Virginia, USA: Reconciling grain-, outcrop-, and map-scale shortening
New insights into the geologic evolution of the Grenvillian Trenton Prong inlier, Central Appalachian Piedmont, USA
Further detrital zircon evidence for peri-Gondwanan blocks in the central Appalachian Piedmont Province, USA
Erosion rates and sediment flux within the Potomac River basin quantified over millennial timescales using beryllium isotopes
Geochemical Insights Into Provenance of the Middle Devonian Hamilton Group of the Central Appalachian Basin, U.S.A.
Study of an Ordovician Carbonate with Alternating Dolomite–Calcite Laminations and Its Implication For Catalytic Effects of Microbes On the Formation of Sedimentary Dolomite
Laurentian and Amazonian sediment sources to Neoproterozoic–lower Paleozoic Maryland Piedmont rocks
A billion years of deformation in the central Appalachians: Orogenic processes and products
Abstract The central Appalachians form a classic orogen whose structural architecture developed during episodes of contractional, extensional, and transpressional deformation from the Proterozoic to the Mesozoic. These episodes include components of the Grenville orogenic cycle, the eastern breakup of Rodinia, Appalachian orogenic cycles, the breakup of Pangea, and the opening of the Atlantic Ocean basin. This field trip examines an array of rocks deformed via both ductile and brittle processes from the deep crust to the near-surface environment, and from the Mesoproterozoic to the present day. The trip commences in suspect terranes of the eastern Piedmont in central Virginia, and traverses northwestward across the Appalachian orogen through the thick-skinned Blue Ridge basement terrane, and into the thin-skinned fold-and-thrust belt of the Valley and Ridge geologic province. The traverse covers a range of deformation styles that developed over a vast span of geologic time: from high-grade metamorphic rocks deformed deep within the orogenic hinterland, to sedimentary rocks of the foreland that were folded, faulted, and cleaved in the late Paleozoic, to brittle extensional structures that overprint many of these rocks. Stops include: the damage zone of a major Mesozoic normal fault, composite fabrics in gneiss domes, transpressional mylonites that accommodated orogen-parallel elongation, contractional high-strain zones, and overpressured breccia zones in the Blue Ridge, as well as folds, thrusts, and back thrusts of the Alleghanian foreland.
The tectono-thermal evolution of the central Appalachian Orogen: Accretion of a peri-Gondwanan(?) Ordovician arc
Abstract Recent detrital zircon results in both the central Appalachians and New England demonstrate that middle Ordovician, ‘Taconic’ island arcs, long considered to be peri-Laurentian, are built upon or associated with rock of Gondwanan affinity. This trip will visit granulite-facies orthogneiss of the Wilmington Complex, a 475–480 Ma magmatic arc, and the adjacent Wissahickon Formation. The Wissahickon Formation is intruded by and interlayered with meta-igneous rocks with arc affinity and contains detrital zircon populations characteristic of both Gondwanan and Laurentian sources. The Chester Park Gneiss, now known to have detrital zircon age spectra which match the Gondwana-derived Moretown Terrane in New England, is also featured. The trip will examine contact relationships between arc and Laurentian rocks and a newly discovered location where metapelitic rock contains garnet with crystallographically oriented rutile inclusions, possibly indicative of ultrahigh-temperature or ultrahigh-pressure metamorphism. We will discuss similarities between rocks of the central and northern Appalachians and evaluate a new model wherein the central Appalachian rocks were originally part of the Taconic arc in New England and were translated by strike-slip deformation to their present position in the orogen.
Abstract This trip seeks to illustrate the succession of Cambrian and Ordovician facies deposited within the Pennsylvania and Maryland portion of the Great American Carbonate Bank. From the Early Cambrian (Dyeran) through Late Ordovician (Turinan), the Laurentian paleocontinent was rimmed by an extensive carbonate platform. During this protracted period of time, a succession of carbonate rock, more than two miles thick, was deposited in Maryland and Pennsylvania. These strata are now exposed in the Nittany arch of central Pennsylvania; the Great Valley of Pennsylvania, Maryland, and Virginia; and the Conestoga and Frederick Valleys of eastern Pennsylvania and Maryland. This field trip will visit key outcrops that illustrate the varied depositional styles and environmental settings that prevailed at different times within the Pennsylvania reentrant portion of the Great American Carbonate Bank. In particular, we will contrast the timing and pattern of sedimentation in off-shelf (Frederick Valley), outer-shelf (Great Valley), and inner-shelf (Nittany arch) deposits. The deposition was controlled primarily by eustasy through the Cambrian and Early Ordovician (within the Sauk megasequence), but was strongly influenced later by the onset of Taconic orogenesis during deposition of the Tippecanoe megasequence.
Abstract The latest Devonian (Famennian) is characterized by an extensive Southern Hemisphere glaciation. Deposits resulting from this glaciation are present in several formations in the mid-Atlantic region, including the Hampshire, Catskill, Rockwell, and Spechty Kopf. The Hampshire (= Catskill) Formation exhibits a noticeable stratigraphic change upsection from the middle to the top. The middle part consists of thick intervals of red, channel-phase sandstones with thin overbank siltstone and mudstone. These mudstones contain poorly developed, calcareous paleosols. The top of the Hampshire Formation consists of greenish-gray sandstones containing abundant coaly plant fragments, coalified logs, and pyrite, interbedded with thick paleo-Vertisols. The upsection increase in preserved terrestrial organic matter suggests the onset of environmental conditions that became increasingly wet. The Late Devonian escalation in climate wetness culminated in the development of a stratigraphically and spatially restricted succession of diamictite-mudstone-sandstone interpreted as having formed in glacial and proglacial environments. These glacial environments are recorded in the lower Rockwell Formation of western Maryland and contemporaneously deposited intervals of the Spechty Kopf Formation of northeastern Pennsylvania. Sheared and massive diamictite facies are interpreted as lodgement and meltout deposits, respectively; whereas, bedded diamictites are interpreted as resedimented deposits. The diamictite facies is locally overlain by a mudstone facies with variable characteristics. Both the massive and deformed mudstone lithofacies are interpreted as a clast-poor, subaqueous glaciolacustrine deposit. Laminated mudstones are interpreted as forming in quiet glaciolacustrine environments. The pebbly sandstone facies is interpreted as proglacial braided outwash deposits that both preceded glacial advance and followed glacial retreat.