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UNDERWOOD, C.J. & WARD, D.J. (2008) (Carcharhiniformes) 100%

Reinterpretation of previously figured Jurassic and Cretaceous fossils, along with collection of new specimens from the Cretaceous of the British Isles, has allowed the early record of this order to be reinterpreted.

https://www.fichier-pdf.fr/2013/02/17/underwood-c-j-ward-d-j-2008-carcharhiniformes/

17/02/2013 www.fichier-pdf.fr


YABUMOTO, Y. & UYENO, T. (1994) (Meso-Cénozoïque Japon) 97%

At the end of the Cretaceous Period a number of cartilaginous fishes disappeared.

https://www.fichier-pdf.fr/2013/02/15/yabumoto-y-uyeno-t-1994-meso-cenozoeque-japon/

15/02/2013 www.fichier-pdf.fr

FS11-3105 96%

The Sirte Basin originated as a Cretaceous rift that evolved into a post-rift basin dominated by thermal subsidence;

https://www.fichier-pdf.fr/2011/12/17/fs11-3105/

17/12/2011 www.fichier-pdf.fr

Gisements de pétrole et de gaz 96%

The Sirte Basin originated as a Cretaceous rift that evolved into a post-rift basin dominated by thermal subsidence;

https://www.fichier-pdf.fr/2017/05/01/gisements-de-petrole-et-de-gaz/

01/05/2017 www.fichier-pdf.fr

WELTON, B.J. & FARISH, R.F. (1993) (Crétacé Texas) 95%

The Collector's Guide to Fossil Sharks and Rays From the cretaceous of Texas Hybodus - Lissodus Polyacrodus Pfychodus Hexanchus Squalus ~ Etmopterinae Somniosinae Heterodontus Pararhincodon Cretorecfolobus Odontaspis Cretolamna Paraisurus Leptosfyrax Micmorax Pseudocorax Scyliorhinus Pseudohypolaphus Squatirhina Squatina Chiloscyllium Carcharias Serratolamna Scapanorhynchus Galeorhinus Rajidae Cantioscyllium Pmtolamna Palaeogaleus lschyrhiza Onchopristis Ginglymostoma Cretodus Paranornotodon Rhinobatos Onchosaurus Cretoxythina Squalicorax Pmtoplat@ina Schizorhiza U Sclemrhynchus Ptychotrygon Wrachyrhizodus Myliobatidae Rhombodus Dasyatis Bmce J.

https://www.fichier-pdf.fr/2013/02/15/welton-b-j-farish-r-f-1993-cretace-texas/

15/02/2013 www.fichier-pdf.fr

WOODWARD, A.S. (1894) (Crétacé UK) 93%

NOTES ON THE SHARKS' TEETH FROM BRITISH CRETACEOUS FORMATIONS.

https://www.fichier-pdf.fr/2013/02/27/woodward-a-s-1894-cretace-uk/

27/02/2013 www.fichier-pdf.fr

Main report 6 84%

Removal of Several Heavy Metals by Tunisian Natural Limestones and Clays in Aqueous System January 2012 Ali SDIRI Removal of Several Heavy Metals by Tunisian Natural Limestones and Clays in Aqueous System A Dissertation Submitted to the Graduate School of Life and Environmental Sciences, the University of Tsukuba in Partial Fulfillment of the Requirements for the Degree of Doctor of Philosophy in Science (Doctoral Program in Geoenvironmental Sciences) Ali SDIRI Abstract The present study has been conducted to characterize physico-chemical properties of the Upper Cretaceous deposits from Tunisia, including the Abiod limestones and the Aleg clays, and to evaluate their capacities in removing toxic metals from aqueous solutions in mono- and multiple-elements systems.

https://www.fichier-pdf.fr/2012/04/19/main-report-6/

19/04/2012 www.fichier-pdf.fr

Carr et al 2017 (1) 83%

Jason R. Moore5 A new species of tyrannosaurid from the upper Two Medicine Formation of Montana supports the presence of a Laramidian anagenetic (ancestor-descendant) lineage of Late Cretaceous tyrannosaurids.

https://www.fichier-pdf.fr/2018/12/17/carr-et-al-2017-1/

17/12/2018 www.fichier-pdf.fr

Turbinoliidae - A Generic Revision and Phylogenetic Analysis 82%

The earliest known turbinoliid is from the Late Cretaceous (Campanian) of Antarctica.

https://www.fichier-pdf.fr/2010/10/07/turbinoliidae-a-generic-revision-and-phylogenetic-analysis/

07/10/2010 www.fichier-pdf.fr

Colloque cénomanien 80%

Exhumation and burial of the Armorican Massif (Western France) through Cretaceous times.

https://www.fichier-pdf.fr/2016/05/20/colloque-cenomanien/

20/05/2016 www.fichier-pdf.fr

EGU2017-6229 74%

Geological constraints from the inverted Cretaceous basin of the North-Pyrenean Zone (‘Chaînons Béarnais’, Western Pyrenees) Benjamin Corre (1), Yves Lagabrielle (1), Pierre Labaume (2), Abdeltif Lahfid (3), Philippe Boulvais (1), Geraldine Bergamini (1), Serge Fourcade (1), and Camille Clerc (4) (1) Géosciences Rennes, Université de Rennes 1, Rennes, France (benjamin.corre@univ-rennes1.fr), (2) Géosciences Montpellier, Université de Montpellier 2, Montpellier, France (Pierre.Labaume@gm.univ-montp2.fr), (3) Bureau de Recherche Géologique et Minière, Orléans, France (a.lahfid@brgm.fr), (4) Laboratoire Insulaire du Vivant et de l’Environnement, University of New Caledonia, Nouméa, France (camille.clerc@univ-nc.nc) Sub-continental lithospheric mantle rocks are exhumed at the foot of magma-poor distal passive margins as a response to extreme stretching of the continental crust during plate separation.

https://www.fichier-pdf.fr/2018/02/22/egu2017-6229/

22/02/2018 www.fichier-pdf.fr

Aadjour 64%

Palynostratigraphy of Jurassic-Cretaceous deposits in wells MAC-1 (Doukkala basin) and ADM-1 (Essaouira basin), western Morocco.

https://www.fichier-pdf.fr/2011/11/10/aadjour/

10/11/2011 www.fichier-pdf.fr

FS12-3147 62%

Shading indicates not applicable] Total petroleum systems (TPS) and assessment units (AU) Field type Expected largest field size Total undiscovered resources Oil (MMBO) F95 F50 Gas (BCFG) F5 Mean F95 F50 NGL (MMBNGL) F5 Mean F95 F50 F5 Mean Nile Delta Basin Province, Mesozoic-Cenozoic Composite TPS Nile Margin Reservoirs AU Nile Cone AU Oil 214 Gas 766 Oil 311 Gas 17,194 Oil 432 Gas 2,042 449 1,150 2,600 1,288 42 256 1,666 475 551 1,425 3,237 1,597 11 29 66 32 698 2,193 5,750 2,574 21 68 181 80 152 930 6,123 1,758 6 38 255 73 91,213 197,850 410,825 217,313 2,413 5,269 10,962 5,789 Sirte Basin Province, Sirte-Rachmat Composite TPS Onshore Sirte Carbonate-Clastic AU Offshore Sirte Basin AU Oil 857 Gas 6,843 364 563 1,087 1,838 2,823 5,457 1,278 2,267 418 1,338 4,035 1,673 22 74 240 96 1,267 4,179 12,569 5,169 44 151 478 192 633 2,250 7,677 2,972 34 124 454 170 6,591 19,540 49,077 22,637 233 709 1,903 840 Pelagian Basin Province, Bou Dabbous-Cenozoic TPS Bou Dabbous-Cenozoic Structural/Stratigraphic AU Oil 60 Gas 616 Oil 13 Gas 569 Oil 96 Gas 249 Oil 12 130 283 552 305 45 113 274 131 1 3 8 4 1,443 2,933 5,405 3,119 37 75 140 80 Pelagian Basin Province, Jurassic-Cretaceous Composite TPS Jurassic-Cretaceous Structural/Stratigraphic AU 62 116 212 124 79 154 287 165 2 4 7 4 1,044 2,409 5,023 2,643 32 73 154 80 Trias/Ghadames Basin Province, Paleozoic Composite TPS Oued Mya Paleozoic Reservoirs AU Melrhir Paleozoic Reservoirs AU Berkine Paleozoic and Mesozoic Reservoirs AU Gas 65 Oil 194 Gas 631 1,004 1,539 1,035 480 768 1,180 791 20 32 49 33 363 753 1,573 831 24 54 128 63 153 225 157 4 6 9 6 195 287 419 294 103 571 861 1,270 883 52 79 117 81 1,101 1,786 2,777 1,839 2,484 4,169 6,792 4,338 130 221 365 231 1,157 2,138 3,751 2,255 72 135 244 143 450 Hamra Basin Province, Silurian/Upper Devonian-Ghadames/Berkine Composite TPS Hamra Deep Structures and Subcrop AU Oil 69 Gas 378 Hamra Basin Margin Structures AU Oil 73 Gas 266 Oil 44 Gas 267 Oil 19 Al Atshan Saddle AU Sirte Basin Subcrop AU 124 42 13 0 430 190 66 18 841 499 232 86 451 220 87 26 Gas 232 836 1,801 902 9 32 76 36 556 2,010 4,088 2,130 51 195 437 213 79 369 1,042 439 3 14 43 18 79 400 1,411 525 8 39 143 52 25 130 476 174 1 5 20 7 81 399 1,421 526 7 39 145 53 0 35 175 52 0 1 7 2 0 0 0 0 0 0 0 0 Illizi Basin Province, Paleozoic Composite TPS Illizi Paleozoic Reservoirs AU Oil 177 Gas 1,411 Oil 22 Gas 1,125 537 973 1,650 1,017 1,998 3,673 6,456 3,884 35 65 115 69 7,124 11,800 18,515 12,176 508 879 1,458 918 Grand Erg/Ahnet Basin Province, Paleozoic Composite TPS Gourara Paleozoic Reservoirs AU Ahnet Paleozoic Reservoirs AU Oil Gas 125 0 217 0 365 0 227 0 155 275 493 846 518 5 9 15 9 8,538 14,893 24,989 15,559 14 25 47 27 0 0 0 0 0 0 0 0 2,419 3,994 6,571 4,176 3 4 7 4 Essaouira Basin Province, Paleozoic-Mesozoic Composite TPS Essaouira Basin AU Offshore Salt Structures AU Total conventional resources Oil 42 Gas 253 Oil 1,788 Gas 10,778 52 2,416 6,846 116 6,715 16,532 246 15,496 37,460 128 7,557 18,618 53 122 268 136 1 3 7 4 315 691 1,474 766 10 22 49 25 3,794 10,759 25,476 12,198 100 286 697 328 14,681 40,352 92,348 45,208 896 2,482 5,759 2,791 149,541 335,112 712,430 370,375 4,809 11,244 24,785 12,553 References Cited For Further Information Kirschbaum, M.A., Schenk, C.J., Charpentier, R.R., Klett, T.R., Brownfield, M.E., Pitman, J.K., Cook, T.A., and Tennyson, M.E., 2010, Assessment of undiscovered oil and gas resources of the Nile Delta Province, Eastern Mediterranean:

https://www.fichier-pdf.fr/2013/12/12/fs12-3147/

12/12/2013 www.fichier-pdf.fr

WARD, D.J. (2010) (Albien UK) 58%

See also Welton and Farish (1993) ‘The collector’s guide to fossil sharks and rays from the Cretaceous of Texas’ for a more detailed explanation of sharks’ tooth terminology.

https://www.fichier-pdf.fr/2013/02/15/ward-d-j-2010-albien-uk/

15/02/2013 www.fichier-pdf.fr

Actualités et découvertes sur les dinosaures 53%

Source Oxygen isotopes of East Asian dinosaurs reveal exceptionally cold Early Cretaceous climates.

https://www.fichier-pdf.fr/2014/03/10/actualites-et-decouvertes-sur-les-dinosaures-1/

10/03/2014 www.fichier-pdf.fr

Les richesses de la Côte d'Ivoire et du Golfe de Guinée 49%

Unit Name Code Region Sub-Saharan Africa 7 Province Gulf of Guinea 7183 Total petroleum system Cretaceous Composite 718301 Assessment unit Coastal Plain and Offshore 71830101 The codes for the regions and provinces are listed in Klett and others (1997).

https://www.fichier-pdf.fr/2011/03/27/les-richesses-de-la-cote-d-ivoire-et-du-golfe-de-guinee/

27/03/2011 www.fichier-pdf.fr

HS 4 vaches noires pc pl 41%

This classic site, constantly eroded by the ocean tide, is famous for its Jurassic and Cretaceous faunas, notably ammonites, many of them are used as index fossils for the Late Callovian and Early Oxfordian.

https://www.fichier-pdf.fr/2015/05/12/hs-4-vaches-noires-pc-pl/

12/05/2015 www.fichier-pdf.fr

la plateforme de Sahel 40%

(a) an extensive phase Cretaceous in age, ~N110° oriented and materialized by NS normal faults, NW-SE to WNW-ESE dextral and ENE-WSW to NE-SW sinistral faults, (b) a NW-SE compression during the Eocene, (c) a NE-SW Oligocene extension, (d) a NW-SE Tortonian compression followed by (e) a NE-SW Messinian distension and (f) a NW-SE Pliocene compression.

https://www.fichier-pdf.fr/2018/10/08/la-plateforme-de-sahel/

08/10/2018 www.fichier-pdf.fr

floods semi-arid, example of the ourika 33%

N Cretaceous Triasicbasalts Detrital Trias Palaeozoique Precambrian Major faults Fig.

https://www.fichier-pdf.fr/2011/10/26/floods-semi-arid-example-of-the-ourika/

26/10/2011 www.fichier-pdf.fr