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2008, ISBN 9780521835756, 292
Book
2014, Special publication number 46 of the International Association of Sedimentologists, ISBN 9781118920466, Volume no. 46., xii, 698
Book
Palaeogeography, palaeoclimatology, palaeoecology, ISSN 0031-0182, 2007, Volume 245, Issue 3, pp. 444 - 461
Paleosols | Paleocene–Eocene boundary | Bighorn Basin, alluvial | Paleocene–Eocene Thermal Maximum | Paleocene-Eocene Thermal Maximum | Paleocene-Eocene boundary | Geosciences, Multidisciplinary | Physical Sciences | Life Sciences & Biomedicine | Geology | Physical Geography | Geography, Physical | Paleontology | Science & Technology
Journal Article
Swiss Journal of geosciences, ISSN 1661-8726, 04/2020, Volume 113, Issue 1
Journal Article
Geology (Boulder), ISSN 0091-7613, 8/2015, Volume 43, Issue 10, pp. 859 - 862
microfossils | Paleogene | solid Earth (tectonophysics) | Himalayas | Paleocene | algae | chronostratigraphy | middle Paleocene | southern Xizang China | nannofossils | orthosilicates | zircon | China | absolute age | silicates | Stratigraphy | Radiolaria | Cenozoic | Far East | nesosilicates | Xizang China | Tertiary | Plantae | Geophysics | Eurasian Plate | dates | U/Pb | turbidite | Indian Plate | plate tectonics | sedimentary rocks | Selandian | zircon group | Asia | plate collision | biostratigraphy | Invertebrata | Protista | Geology | Physical Sciences | Science & Technology | Observations | Geochronology | Plate tectonics | Oceanography | Geological time | Topography
Journal Article
Geology (Boulder), ISSN 0091-7613, 3/2007, Volume 35, Issue 3, pp. 215 - 218
Paleogene | greenhouse effect | Paleocene | alluvial fans | PETM | Sedimentary petrology | carbon | isotopes | subtropical environment | Graus Spain | Spanish Pyrenees | Stratigraphy | Cenozoic | basins | Aragon Spain | clastic rocks | climate change | stable isotopes | geochemistry | atmospheric precipitation | paleotemperature | Europe | paleoclimatology | Tertiary | Claret Conglomerate | Iberian Peninsula | hydrologic cycle | sedimentary structures | lower Eocene | upper Paleocene | Southern Europe | Pyrenees | stratigraphic boundary | Tremp Spain | secondary structures | Garumnian | paleoatmosphere | Lleida Spain | sedimentary basins | carbon dioxide | isotope ratios | sed rocks, sediments | C-13/C-12 | Paleocene-Eocene boundary | Huesca Spain | Eocene | conglomerate | coastal environment | Spain | sedimentary rocks | concretions | paleochannels | paleohydrology | sediment transport | Catalonia Spain | seasonal variations | Paleocene-Eocene thermal maximum | Hydrological cycle | Fluvial megafan | Greenhouse warming | Carbon isotope excursion | Geology | Physical Sciences | Science & Technology | Environmental aspects | Hydrology | Precipitation (Meteorology) | Research | Greenhouse gases | Precipitation | Paleoecology | Atmosphere | Prehistoric era | Carbon dioxide | Naturvetenskap | Geologi | hydrological cycle | carbon isotope excursion | greenhouse warming | Natural Sciences | fluvial megafan | Geovetenskap och miljövetenskap | Earth and Related Environmental Sciences
Journal Article
1998, ISBN 0231102380, xv, 513 p., [10] p. of plates
Book
8.
A study of mammalia and geology across the cretaceous-tertiary boundary in Garfield County, Montana
1982, University of California publications in geological sciences, ISBN 0520096398, Volume 122., xvi, 286
Book
Geology (Boulder), ISSN 0091-7613, 9/2006, Volume 34, Issue 9, pp. 737 - 740
microfossils | Paleogene | O-18/O-16 | United States | Foraminifera | greenhouse effect | Paleocene | Paleocene-Eocene Thermal Maximum | algae | SEM data | case studies | PETM | nannofossils | cores | isotopes | Stratigraphy | Cenozoic | oxygen | marine sediments | climate change | stable isotopes | Dinoflagellata | Leg 174AX | isotope ratios | paleotemperature | sea-surface temperature | paleoclimatology | Tertiary | planktonic taxa | Plantae | Eocene | New Jersey | Gloucester County New Jersey | palynomorphs | lake sediments | lacustrine environment | Leg 150X | lower Eocene | Ocean Drilling Program | upper Paleocene | Atlantic Coastal Plain | Wilson Lake | Invertebrata | Protista | sediments | Taverne | Life sciences | Other biological specialities | International | Greenhouse | Isotopes | Geology | Physical Sciences | Science & Technology
Journal Article
Geology (Boulder), ISSN 0091-7613, 4/2008, Volume 36, Issue 4, pp. 315 - 318
time series analysis | Paleogene | aliphatic hydrocarbons | stratigraphic boundary | Atlantic Ocean | Paleocene | Paleocene-Eocene Thermal Maximum | digital simulation | global | paleogeography | PETM | biogenic structures | paleo-oceanography | volcanism | calcium carbonate | carbon | Stratigraphy | Cenozoic | alkanes | hydrocarbons | paleotemperature | paleoclimatology | Tertiary | data processing | carbonate compensation depth | Eocene | Walvis Ridge | global warming | sedimentary structures | Equatorial Pacific | GENIE-1 | global change | numerical models | theoretical models | lower Eocene | methane | upper Paleocene | South Atlantic | Pacific Ocean | organic compounds | statistical analysis | bioturbation | Methane | Carbonate compensation depth | Model studies | Volcanism | Paleocene-Eocene thermal maximum | Geology | Physical Sciences | Science & Technology | Paleogeography | Analysis | Environmental aspects | Global warming | Models | Research | Properties | Carbon | Simulation | Geological time | Sedimentation & deposition
Journal Article
Geology (Boulder), ISSN 0091-7613, 2/2016, Volume Pre-Issue Publication, Issue 4, pp. 275 - 278
microfossils | Paleogene | United States | Foraminifera | Paleocene | Paleocene-Eocene Thermal Maximum | TEX-86 | metals | Bass River | acidification | paleo-oceanography | cores | carbon | isotopes | Stratigraphy | Cenozoic | lithostratigraphy | climate change | Mg/Ca | stable isotopes | calcium | Leg 174AX | isotope ratios | C-13/C-12 | paleotemperature | paleoclimatology | Tertiary | magnesium | Eocene | Vincetown Formation | New Jersey | chemostratigraphy | Marlboro Formation | alkaline earth metals | lower Eocene | Ocean Drilling Program | upper Paleocene | Atlantic Coastal Plain | biostratigraphy | Invertebrata | Protista | Burlington County New Jersey | sediments | Geology | Physical Sciences | Science & Technology | Observations | Ocean acidification | Continental shelf | Ocean temperature | Acidification | Temperature | Oceans | Geological time
Journal Article
Geology (Boulder), ISSN 0091-7613, 8/2007, Volume 35, Issue 8, pp. 699 - 702
Paleogene | depositional environment | Leg 171B | carbonate rocks | Australasia | Dee Stream | Paleocene | Paleocene-Eocene Thermal Maximum | PETM | paleo-oceanography | calcium carbonate | limestone | carbon | isotopes | ODP Site 1051 | North Atlantic | Stratigraphy | Cenozoic | clastic rocks | climate change | deep-sea environment | stable isotopes | geochemistry | outcrops | paleotemperature | paleoclimatology | Tertiary | ODP Site 1262 | South Island | Walvis Ridge | Mead Stream | sedimentation | New Zealand | correlation | marine environment | lower Eocene | Ocean Drilling Program | upper Paleocene | South Atlantic | shallow-water environment | Atlantic Ocean | hyperthermal events | Blake Plateau | Clarence Valley | isotope ratios | C-13/C-12 | Leg 208 | Eocene | continental margin sedimentation | sedimentary rocks | marl | Blake Nose | CIE | Carbon isotope excursion | Paleocene-Eocene thermal maximum | Geology | Physical Sciences | Science & Technology | Climatic changes | Chemical properties | Geological research | Observations | Carbon | Isotopes | Petrology | Geological time | Sediments | Dissolution
Journal Article
Carbonates and evaporites, ISSN 0891-2556, 03/2018, Volume 33, Issue 1, pp. 167 - 167
Journal Article
Geology (Boulder), ISSN 0091-7613, 2/2016, Volume 44, Issue 2, pp. 171 - 174
microfossils | Mesozoic | Paleogene | magnetostratigraphy | stratigraphic boundary | mercury | Foraminifera | Paleocene | metals | Pyrenees-Atlantiques France | Bidart France | volcanism | iridium | mass extinctions | southwestern France | Stratigraphy | Upper Cretaceous | Cenozoic | France | total organic carbon | Deccan Traps | Europe | lower Paleocene | Tertiary | K-T boundary | Cretaceous | Western Europe | sedimentary rocks | chemostratigraphy | geochemical anomalies | platinum group | organic compounds | Invertebrata | Protista | Geology | Physical Sciences | Science & Technology | Geological research | Mass extinction theory | Environmental aspects | Research | Properties | Volcanism | Mercury | Clay | Lava | Extinction
Journal Article
AAPG bulletin, ISSN 0149-1423, 12/2016, Volume 100, Issue 12, pp. 1803 - 1831
Paleogene | depositional environment | controls | thickness | Paleocene | Paleocene-Eocene Thermal Maximum | cycles | elastic waves | North America | frequency | equations | cores | North Atlantic | Stratigraphy | Cenozoic | petroleum | clastic rocks | paleoclimatology | Tertiary | patterns | sediment supply | offshore | planar bedding structures | Bee County Texas | marine environment | sedimentary structures | Texas | lower Eocene | Wilcox Group | upper Paleocene | Gulf Coastal Plain | shorelines | transgression | production | United States | Atlantic Ocean | well logs | sandstone | eustasy | amplitude | lithofacies | provenance | Gulf of Mexico | deep-water environment | calibration | onshore | shelf environment | estuarine environment | sea-level changes | energy sources | sand bodies | rates | Eocene | aggradation | sedimentary rocks | grain size | sequence stratigraphy | Economic geology | regression | Karnes County Texas | petroleum exploration | progradation | deltaic environment | stacking | Geosciences, Multidisciplinary | Physical Sciences | Geology | Science & Technology
Journal Article