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Morton, A.C., Whitham, A.G., Fanning, C.M. (2005) Provenance of Late Cretaceous to Paleocene submarine fan sandstones in the Norwegian Sea: Integration of heavy mineral, mineral chemical and zircon age data. Sedimentary Geology, 182 (1) 3-28 doi:10.1016/j.sedgeo.2005.08.007

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Reference TypeJournal (article/letter/editorial)
TitleProvenance of Late Cretaceous to Paleocene submarine fan sandstones in the Norwegian Sea: Integration of heavy mineral, mineral chemical and zircon age data
JournalSedimentary Geology
AuthorsMorton, A.C.Author
Whitham, A.G.Author
Fanning, C.M.Author
Year2005 (December)Volume182
Page(s)3-28Issue1
PublisherElsevier BV
DOIdoi:10.1016/j.sedgeo.2005.08.007Search in ResearchGate
Mindat Ref. ID555021Long-form Identifiermindat:1:5:555021:4
GUIDe05d45ec-339b-4a10-a89b-c9a64873e60e
Full ReferenceMorton, A.C., Whitham, A.G., Fanning, C.M. (2005) Provenance of Late Cretaceous to Paleocene submarine fan sandstones in the Norwegian Sea: Integration of heavy mineral, mineral chemical and zircon age data. Sedimentary Geology, 182 (1) 3-28 doi:10.1016/j.sedgeo.2005.08.007
Plain TextMorton, A.C., Whitham, A.G., Fanning, C.M. (2005) Provenance of Late Cretaceous to Paleocene submarine fan sandstones in the Norwegian Sea: Integration of heavy mineral, mineral chemical and zircon age data. Sedimentary Geology, 182 (1) 3-28 doi:10.1016/j.sedgeo.2005.08.007
In(2005, December) Sedimentary Geology Vol. 182 (1) Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Bingen (2002) U–Pb geochronology of Paleozoic events in the mid Scandinavian Caledonides , 66
Brekke (2000) The tectonic evolution of the Norwegian Sea Continental Margin with emphasis on the Vøring and Møre Basins vol. 167, 327
Brekke (1999) The prospectivity of the Vøring and Møre basins on the Norwegian Sea continental margin , 261
Bryhni (1985) Caledonides of southwestern Norway , 89
Corfu (2003) Norges Geologiske Undersøgelse Bulletin Preliminary U–Pb geochronology in the West Troms Basement Complex, North Norway: Archaean and Palaeoproterozoic events and younger overprints 441, 61
Dalland (1988) NPD Bulletin A lithostratigraphic scheme for the Mesozoic and Cenozoic succession offshore mid- and northern Norway 4, 1
Droop (1995) Journal of Petrology The effect of Mn on the phase relations of medium grade pelites: constraints from natural assemblages on petrogenetic grid topology 36, 1549
Escher, J.C., Pulvertaft, T.C.R., 1995. Geological Map of Greenland, 1:2,500,000. Geological Survey of Greenland, Copenhagen.
Furnes (1982) Norsk Geologisk Tidsskrift Petrography and geochemistry of peralkaline, ultrapotassic syenite dykes of Middle Permian age, Sunnfjord, West Norway 62, 147
Gjelberg (2001) The Maastrichtian and Danian depositional setting, along the eastern margin of the Møre Basin (mid-Norwegian Shelf): implications for reservoir development of the Ormen Lange Field vol. 10, 421
Henriksen (1985) The Caledonides of central East Greenland 70°–76°N , 1095
Henry (1985) American Mineralogist Tourmaline as a petrogenetic indicator mineral: an example from the staurolite-grade metapelites of NW Maine 70, 1
Kittilsen (1999) The first deepwater well in Norway and its implications for the Upper Cretaceous play, Vøring Basin , 275
Ludwig (1999) Isoplot, a geochronological toolkit for Microsoft Excel vol. 1a
Ludwig (2001) SQUID 1.00, a user's manual vol. 2, 17
Mange (1992)
Morton (1987) Journal of Sedimentary Petrology Influences of provenance and diagenesis on detrital garnet suites in the Forties sandstone, Paleocene, central North Sea 57, 1027
Morton (1998) Bulletin of the American Association of Petroleum Geologists Cretaceous depositional systems in the Norwegian Sea: heavy mineral constraints 82, 274
Morton (2005) The role of East Greenland as a source of sediment to the Vøring Basin during the Late Cretaceous vol. 12, 83
Not Yet Imported: Rapport Grønlands Geologiske Undersøgelse - journal-article : 10.34194/rapggu.v162.8254

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Price (1997) Bulletin of the American Association of Petroleum Geologists Exhumed hydrocarbon traps in East Greenland: analogs for the Lower–Middle Jurassic play of NW Europe 81, 196
Qvale (1985) Ultramafic rocks in the Scandinavian Caledonides , 693
Scott (2000) Polarforschung Mesozoic–Cenozoic evolution of East Greenland: implications of a reinterpreted continent–ocean boundary location 68, 83
Shanmugam (1994) Bulletin of the American Association of Petroleum Geologists Slump and debris-flow dominated upper slope facies in the Cretaceous of the Norwegian and northern North Sea (61–67°N): implications for sand distribution 78, 910
Sigmond (1992) Geological Survey of Norway Bedrock map of Norway and adjacent ocean areas, scale 1:300,000,000
Spencer (1999) Petroleum systems of the Atlantic margin of northwest Europe , 231
Not Yet Imported: Rapport Grønlands Geologiske Undersøgelse - journal-article : 10.34194/rapggu.v100.7712

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Stephens (1985) The Caledonides of central–north Scandinavia—a tectonostratigraphic overview , 135
Surlyk (1986) The Permian of the western margin of the Greenland Sea—a future exploration target vol. 40, 629
Tucker (1990) Proterozoic evolution and age–province boundaries in the central part of the Western Gneiss Region, Norway: results of U–Pb dating of accessory minerals from Trondheimsfjord to Geiranger vol. 38, 149
Williams (1998) U–Th–Pb geochronology by ion microprobe vol. 7, 1


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