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2018, Special paper, ISBN 0813725372, Volume 537., iv, 68 pages
"The Chesapeake Bay impact structure is a well-documented example of a small group of multi-layer, marine-target impacts formed in continental shelves or... 
Geology, Stratigraphic | Cratères d'impact | Sedimentation and deposition | Sédimentation (Géologie) | Stratigraphie | Impact craters
Book
1994, Critical moments in paleobiology and earth history series., ISBN 9780231080910, xvii, 291
Book
1992, Princeton series in geology and paleontology, ISBN 9780691025421, xi, 568
Book
2014, Special publication of the International Association of Sedimentologists, ISBN 9781118920466, Volume no. 46, xii, 698
The Norwegian Continental Shelf (NCS), focus of this special publication, is a prolific hydrocarbon region and both exploration and production activity remains... 
Sedimentology | Geology, Stratigraphic | Geology | Sedimentary structures | Continental shelf | Petroleum
Book
American journal of physical anthropology, ISSN 0002-9483, 11/2017, Volume 164, Issue 3, p. 645
Journal Article
2014, Princeton Series in Geology and Paleontology, ISBN 1400862922, 583
The transition from the Eocene to the Oligocene epochs was the most significant event in earth history since the extinction of dinosaurs. As the first... 
Eocene | Paleontology | Biological Sciences | Geology, Stratigraphic | Paleoclimatology | Oligocene | Life Sciences | Biology | SCIENCE
eBook
1996, ISBN 0521433878, xiii, 688
During the transition from the Eocene to the Oligocene epochs, the mild tropical climates of the Paleocene and early Eocene were replaced by modern climatic... 
Eocene-Oligocene boundary | Geology, Stratigraphic | Geology | Paleontology, Stratigraphic | Paleontology
Book
Palaeogeography, palaeoclimatology, palaeoecology, ISSN 0031-0182, 2007, Volume 245, Issue 3, pp. 444 - 461
The Paleocene Eocene Thermal Maximum (PETM) was a transient episode of global warming that occurred at the Paleocene/Eocene boundary. The event is marked by a... 
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
2009, Special paper, ISBN 081372452X, Volume 452, viii, 322
Book
Geochemistry, geophysics, geosystems : G3, ISSN 1525-2027, 12/2007, Volume 8, Issue 12, pp. Q12002 - n/a
Journal Article
2008, Special paper / Geological Society of America, ISBN 9780813724355, Volume 435., ix, 177
Book
Rivista italiana di paleontologia e stratigrafia, ISSN 0035-6883, 1995, Volume 101, Issue 1, pp. 63 - 80
Some larger  foraminiferal assemblages (mostly nummulitids) near the Middle/Upper Eocene boundary have been investigated. Sections of the Veneto area (Berici... 
Northern Mediterranean | Biostratigraphy | Nummulites | Middle/Upper Eocene boundary
Journal Article
Global and planetary change, ISSN 0921-8181, 07/2019, Volume 181, p. 102991
The Paleocene-Eocene Thermal Maximum (PETM; ~ 56 million years ago) is the most severe carbon cycle perturbation event of the Cenozoic. Although the PETM is... 
Biomarkers | GDGTs | Hydrology | Eocene | Lignite | Peat
Journal Article
1963, Memoir / Geological Society of America, Volume 91, 113
Book
Tectonics (Washington, D.C.), ISSN 0278-7407, 11/2017, Volume 36, Issue 11, pp. 2693 - 2713
The Andes between 28° and 30°S represent a transition between the Puna‐Altiplano Plateau and the Frontal/Principal Cordillera fold‐and‐thrust belts to the... 
thermochronology | Eocene constructional phase | South Central Andes | exhumation | mountain building | Exhumation | Research | Orogeny | Uplift (Geology) | Thermochromism | Heart | Cooling | Deformation | Eocene | Uplift | Mountains | Plateaux | Apatite | Modelling | Miocene | Cenozoic
Journal Article