168 results on '"Nøhr-Hansen, Henrik"'
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2. Lithostratigraphy of the Cretaceous–Paleocene Nuussuaq Group, Nuussuaq Basin, West Greenland
3. Review of Survey activities 2005: Continental crust in the Davis Strait: new evidence from seabed sampling
4. A new record of the Cenomanian–Turonian transgression preserved in the Ikorfat Fault zone, Nuussuaq Basin, West Greenland
5. The Cretaceous to Eocene: a biostratigraphical review and a new detailed palynostratigraphy of Greenland and adjacent areas.
6. Three-phased latest Jurassic–Eocene rifting and mild mid-Cenozoic compression offshore NE Greenland
7. A hidden succession revealed:Cretaceous and Paleocene sediments and a native-iron-bearing lava flow in cores near Qullissat, Disko, West Greenland
8. A hidden succession revealed: Cretaceous and Paleocene sediments and a native-iron-bearing lava flow in cores near Qullissat, Disko, West Greenland
9. Paleocene-Eocene volcanic segmentation of the Norwegian-Greenland seaway reorganized high-latitude ocean circulation
10. New Albian to Cenomanian (Cretaceous) dinoflagellate cyst taxa of ovoidinioid affinities from East Greenland, the Barents Sea and England
11. Burial history of a folded Cretaceous succession – A case study from the southern part of Kilen, eastern North Greenland
12. Stratigraphy of the Upper Jurassic to lowermost Cretaceous in the Rødryggen-1 and Brorson Halvø-1 boreholes, Wollaston Forland, North-East Greenland
13. Organic geochemistry of an Upper Jurassic – Lower Cretaceous mudstone succession in a narrow graben setting, Wollaston Forland Basin, North-East Greenland
14. Upper Barremian to Upper Albian (Lower Cretaceous) Dinoflagellate Cyst Assemblages, Canadian Arctic Archipelago
15. From land to sea: provenance, composition, and preservation of organic matter in a marine sediment record from the North‐East Greenland shelf spanning the Younger Dryas–Holocene
16. From land to sea:provenance, composition, and preservation of organic matter in a marine sediment record from the North-East Greenland shelf spanning the Younger Dryas–Holocene
17. Organic geochemistry of an Upper Jurassic – Lower Cretaceous mudstone succession in a narrow graben setting, Wollaston Forland Basin, North-East Greenland
18. Stratigraphy of the Upper Jurassic to lowermost Cretaceous in the Rødryggen-1 and Brorson Halvø-1 boreholes, Wollaston Forland, North-East Greenland
19. The GEUS Palynology, Nannofossil, and Microfossil Arctic Slide Collection
20. The Extant Thermophilic Dinoflagellate Tectatodinium pellitum (al. Tectatodinium rugulatum) from the Danian of Denmark
21. Palynostratigraphy of the Cretaceous–lower Palaeogene sedimentary succession in the Kangerlussuaq Basin, southern East Greenland
22. Baffin Bay Composite Tectono-Sedimentary Element
23. The GEUS Palynology, Nannofossil, and Microfossil Arctic Slide Collection
24. The Cretaceous succession of northeast Baffin Bay: Stratigraphy, sedimentology and petroleum potential
25. Central East and NE Greenland Composite Tectono-Sedimentary Element, East Greenland Rifted Margin, Greenland Sea
26. The Permian to Cretaceous succession at Permpasset, Wollaston Forland: the northernmost Permian and Triassic in North–East Greenland
27. Comment on essd-2021-158
28. The Permian to Cretaceous succession at Permpasset, Wollaston Forland: the northernmost Permian and Triassic in North–East Greenland
29. Regional impact of Early Cretaceous tectono-magmatic uplift in the Arctic:Implications of new data from eastern North Greenland
30. Sedimentology and reservoir architecture of a widespread siliciclastic intra-lava unit, Kangerlussuaq, East Greenland
31. Comment on ‘Redox conditions, productivity, and volcanic input during deposition of uppermost Jurassic and Lower Cretaceous organic-rich siltstones in Spitsbergen, Norway’ by Rakociński et al. (2018)
32. Regional impact of Early Cretaceous tectono‐magmatic uplift in the Arctic: Implications of new data from eastern North Greenland
33. The Middle Jurassic to lowermost Cretaceous in the SW Barents Sea: Interplay between tectonics, coarse‐grained sediment supply and organic matter preservation
34. Upper Cretaceous bottom current deposits, north‐east Greenland
35. Tectonostratigraphy and evolution of the West Greenland continental margin
36. A mid-Cretaceous petroleum source-rock in the North Atlantic region? Implications of the Nanok-1 fully cored borehole, Hold with Hope, northeast Greenland
37. Cretaceous lithostratigraphy of North-East Greenland
38. Dinocyst stratigraphy of the Valanginian–Aptian Rurikfjellet and Helvetiafjellet formations on Spitsbergen, Arctic Norway
39. Cretaceous lithostratigraphy of North-East Greenland
40. Dinocyst stratigraphy of the Valanginian–Aptian Rurikfjellet and Helvetiafjellet formations on Spitsbergen, Arctic Norway
41. Sedimentology and palynology of the Lower Cretaceous succession of central Spitsbergen: integration of subsurface and outcrop data
42. Tectonostratigraphy and evolution of the west Greenland continental margin
43. Regional impact of Early Cretaceous tectono‐magmatic uplift in the Arctic: Implications of new data from eastern North Greenland.
44. The Middle Jurassic to lowermost Cretaceous in the SW Barents Sea: Interplay between tectonics, coarse-grained sediment supply and organic matter preservation.
45. Inversion structures as potential petroleum exploration targets on Nuussuaq and Northern Disko, onshore West Greenland
46. Sedimentary and structural evidence of a new early Campanian rift phase in the Nuussuaq Basin, West Greenland
47. Descriptive text to the Geological map of Greenland, 1:100 000, Kilen 81 Ø.1 Syd
48. Revised stratigraphy of Kap Rigsdagen beds, Wandel Sea Basin, North Greenland
49. New subsurface mapping offshore southern West Greenland using geophysical and geological data
50. Effects of adjacent fault systems on drainage patterns and evolution of uplifted rift shoulders: The Lower Cretaceous in the Loppa High, southwestern Barents Sea
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