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    المساهمون: Universidad de la República Montevideo (UDELAR), Géosciences Rennes (GR), Université de Rennes (UR)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National de la Recherche Scientifique (CNRS)-Observatoire des sciences de l'environnement de Rennes (OSERen), Université de Rennes (UR)-Institut national des sciences de l'Univers (INSU - CNRS)-Université de Rennes 2 (UR2)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Recherche pour l’Agriculture, l’Alimentation et l’Environnement (INRAE)-Institut national des sciences de l'Univers (INSU - CNRS)-Université de Rennes 2 (UR2)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Recherche pour l’Agriculture, l’Alimentation et l’Environnement (INRAE)

    المصدر: XXI congreso Geologico Argentino ; https://insu.hal.science/insu-02893316 ; XXI congreso Geologico Argentino, Sep 2020, Purto Madryn, Chubut, Argentina ; http://www.congresogeologico.org.ar/

    جغرافية الموضوع: Chubut, Argentina

    Time: Purto Madryn, Chubut, Argentina

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    Academic Journal

    المصدر: Earth Sciences Research Journal; Vol. 25 No. 2 (2021); 157-168 ; Earth Sciences Research Journal; Vol. 25 Núm. 2 (2021); 157-168 ; 2339-3459 ; 1794-6190

    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/esrj/article/view/89652/80376; Almeida, F. F. M., Amaral, G., Cordani, U. G. & Kawashita, K. (1973). The Precambrian evolution of the South American cratonic margin South of the Amazon River. In: Nairm A.E. & Stehli F.G. (Eds.) The ocean basins and margins, 1 (The South Atlantic), Plenum Press, New York, 441-446. Almeida, F. F. M., Brito Neves, B. B. & Carneiro, C. D. (2000). The origin and evolution of the South American Platform. Earth-Science Reviews, 50, 77–111. https://doi.org/10.1016/S0012-8252(99)00072-0 Azbej, T., Szabo, C., Bodnar, R. & Dobosi, G. (2006). Genesis of carbonate aggregates in lamprophyres from the northeastern Transdanubian Central Range, Hungary: Magmatic or hydrothermal origin? Mineralogy and Petrology, 88, 479–497. https://doi.org/10.1007/s00710-006-0123-y Bhowmick, S. K. (2000). Ultrapotassic rocks along late ductile shear zones from Eastern Ghats belt, India. Gondwana Research, 3, 55-63. https://doi.org/10.1016/S1342-937X(05)70057-5 Bleeker, W. & Ernst, R. (2006). Short-lived mantle generated magmatic events and their dyke swarms: The key unlocking Earth's paleogeographic record back to 2.6 Ga. In: Hanski, S., Mertanen, T., Rämö, T.& Vuollo, J. (Eds.) Dyke Swarms — The Markers of Crustal Evolution. London, 23–26. Bonin, B. (1996). A-type granite ring complexes: mantle origin through crustal filters and the anorthosite–rapakivi magmatism connection. In: Demaiffe, D. (Ed.) Petrology and geochemistry of magmatic suites of rocks in the continental and oceanic crusts. Bruxelles, 201-217. Bossi, J. (1965). Geología del Uruguay. Departamento de Publicaciones de la Universidad de la República, Montevideo, 460 pp. Bossi, J. & Campal, N. (1992). Magmatismo y tectónica transcurrente durante el Paleozoico Inferior en Uruguay. In: De Gutiérrez Marco, J., Saavedra, J., & Rábano, I. (Editors). Simposio Internacional del Paleozoico Inferior Latinoamericano, Actas, I. Salamanca, España, 343-356. Bossi, J., & Cingolani, C. (2009). Extension and general evolution of the Rio de la Plata Craton. In: Gaucher, C., Sial, A. N., Halverson, G. P. & Frimmel, H. E. (Eds). Neoproterozoic–Cambrian Tectonics, Global Change and Evolution: A Focus on Southwestern Gondwana. Elsevier, Developments in Precambrian Geology, 16, 73–85. Bossi, J., Preciozzi, F. & Campal, N. (1993). Predevoniano en el Uruguay. Tomo I-Terreno Piedra Alta. Dirección Nacional de Minería y Geología, Montevideo, 50 pp. Boynton, W. (1984). Geochemistry of the rare earth elements: meteorite studies. In: Henderson, H. (Ed.). Rare earth element geochemistry. Elsevier Science, Amsterdam, 63-114. Cernuschi, F., Dilles, J. H., Kent, J. R., Schroer, G., Raab, A. K., Conti, B., & Muzio, R. (2015). Geology, geochemistry and geochronology of the Cretaceous Lascano East intrusive complex and magmatic evolution of the Laguna Merín basin, Uruguay. Gondwana Research, 28, 837–857. DOI:10.1016/j.gr.2014.07.007 Cingolani, C. A. (2010). The Tandilia System of Argentina as a southern extension of the Rio de la Plata craton: an overview. International Journal of Earth Sciences, 100(2), 221–242. DOI:10.1007/s00531-010-0611-5 Cingolani, C., Basei, M., Bossi, J., Piñeyro, D. & Uriz, N. (2012). U-Pb (LA-ICP-MS) zircon age of the La Paz Granite (Pando Belt, Uruguay): an Upper Neoproterozoic magmatic event in the Río de la Plata Craton. VIII South American Symposium on Isotope Geology, Medellín, Colombia, Abstracts (CD-ROM), 139. Cingolani, C., Varela, R., Dalla Salda, L., Bossi, J., Campal, N., Ferrando, L., Piñeiro, D., & Schipilov, A. (1997). Rb/Sr geocronology from the Río de la Plata Craton of Uruguay. I South American Symposium on Isotope Geology, Campos do Jordão, Brazil, Abstracts. Cordani, U., Sato, K., Teixeira, W., Tassinari, C. & Basei, M. A. S. (2000). Crustal evolution of the South American platform. In: Cordani, U. G., Milani, E. J., Thomaz-Filho, A. & Campos, D. A. (Eds.) Tectonic Evolution of South America, Finep, Brazil, 19–40. Coronel, N., & Oyhantçabal, P. (1988). Carta geológica del Uruguay a escala 1/100.000-fotoplano J-28 Pando. Dirección Nacional de Minería y Geología-Facultad de Agronomía-Facultad de Ciencias, Montevideo, Uruguay. Dristas, J., Martínez, J., Massonne, H., & Pimentel, M. (2013). Mineralogical and geochemical characterization of a rare ultramafic lamprophyre in the Tandilia belt basement, Río de la Plata Craton, Argentina. Journal of South American Earth Sciences, 43, 46-61. https://doi.org/10.1016/j.jsames.2013.01.002 Esperanza, S., & Holloway, J. (1987). On the origin of some mica-lamprophyres: experimental evidence from a mafic minette. Contributions to Mineralogy and Petrology, 95, 207-216. https://doi.org/10.1007/BF00381270 Ernst, R. E., & Buchan, K. L. (2001a). The use of mafic dike swarms in identifying and locating mantle plumes. In: Ernst, R. E. & Buchan, K. L. (Eds). Mantle Plumes: Their Identification through Time. Geological Society of America Special Paper, 352, 247–265. Ernst, R. E. & Buchan, K. L. (2001b). Large mafic magmatic events through time and links to mantle plume heads. In: Ernst, R. E. & Buchan, K. L. (Eds). Mantle Plumes: Their identification through Time. Geological Society of America Special Paper, 352, 483–575. Foley, S. (1992). Petrological characterization of the source components of potassic magmas: Geochemical and experimental constraints. Lithos, 28, 187-204. https://doi.org/10.1016/0024-4937(92)90006-K Foley, S., & Peccerillo, A. (1992). Potassic and ultrapotassic magmas and their origin. Lithos, 28, 181-185. https://doi.org/10.1016/0024-4937(92)90005-J Foley, S., Venturelli, G., Green, D. & Toscani, L. (1987). The ultrapotassic rocks: characteristics, classification, and constraints for petrogenetic models. Earth-Science Reviews, 24, 81-134. https://doi.org/10.1016/0012-8252(87)90001-8 Gibson, A., Thompson, R., Leat, P., Morrison, M., Hendry, G., Dicking, A. & Mitchell, J. (1992). Ultrapotassic magmas along the flanks of the Oligo-Miocene Rio Grande Rift, USA: Monitors of the zone of lithospheric mantle extension and thinning beneath a continental rift. Journal of Petrology, 34, 87-228. https://doi.org/10.1093/petrology/34.1.187 Girardi, V. A., Teixeira, W., Mazzucchelli, M. & Corrêa da Costa, P.C. (2013). Sr-Nd constraints and trace-elements geochemistry of selected Paleo and Mesoproterozoic mafic dikes and related intrusions from the South American Platform: Insights into their mantle sources and geodynamic implications. Journal of South American Earth Sciences, 41, 65–82. https://doi.org/10.1016/j.jsames.2012.09.006 Green, T. (1995). Significance of Nb/Ta as an indicator of geochemical processes in the crust-mantle system. Chemical Geology, 120, 347-359. https://doi.org/10.1016/0009-2541(94)00145-X Gregoire, M., Moine B., O'Reilly S., Cottin J. & Giret, A. (2000). Trace element residence and partitioning in mantle xenoliths metasomatised by high alkaline silicate and carbonate-rich melts (Kerguelen Islands, Indian Ocean). Journal of Petrology, 41, 477–509. https://doi.org/10.1093/petrology/41.4.477 Gupta, A. (2015). Origin of Potassium-rich Silica-deficient Igneous Rocks. Springer, New Dehli, India, 536 pp. Halls, H. C. & Fahrig, W. F. (1987). Mafic dyke swarms. Geological Association of Canada Special Paper, 34, 503 pp. Halls, H. C., Campal, N., Davis, D. W. & Bossi, J. (2001). Magnetic studies and U–Pb geochronology of the Uruguayan dyke swarm, Rio de la Plata craton, Uruguay: paleomagnetic and economic implications. Journal of South American Earth Sciences, 14, 349 – 361. https://doi.org/10.1016/S0895-9811(01)00031-1 Hartmann, L. A., Pineyro, D., Bossi, J., Leite, J. A. D. & McNaughton, N. J. (2000). Zircon U–Pb SHRIMP dating of Paleoproterozoic Isla Mala granitic magmatism in the Rio de la Plata Craton, Uruguay. Journal of South American Earth Sciences,13, 105–113. DOI:10.1016/S0895-9811(00)00018-3 Hartmann, L. A., Campal, N., Santos, J. O. S., McNaughton, N. J., Bossi, J., Schipilov, A. & Lafon, J. M. (2001). Archean crust in the Rio de la Plata Craton, Uruguay - SHRIMP U–Pb zircon reconnaissance geochronology. Journal of South American Earth Sciences, 14, 557 – 570. https://doi.org/10.1016/S0895-9811(01)00055-4 Iacumin, M., Piccirillo, E. M., Girardi, V. A. V., Teixeira, W., Bellieni, G., Echeveste, H., Fernandez, R., Pinese, J. P. P. & Ribot, A. (2001). Early Proterozoic calc-alkaline and middle Proterozoic tholeiitic dike swarms from central-eastern Argentina: petrology, geochemistry, Sr–Nd isotopes and tectonic implications. Journal of Petrology, 42, 2109–2143. https://doi.org/10.1093/petrology/42.11.2109 Ionov, D., Griffin, W. & O'Reilly, S. (1997). Volatile- bearing minerals and lithophile trace elements in the upper mantle. Chemical Geology, 141, 153 - 184. https://doi.org/10.1016/S0009-2541(97)00061-2 Irving, T & Baragar, W. (1971). A guide to the chemical classification of the common volcanic rocks. Journal of Earth Sciences, 8, 523 - 548. https://doi.org/10.1139/e71-055 Le Bas, M., Le Maitre, R., Streckeisen, A., Zanettin, B. & IUGS Subcommission on the Systematics of Igneous Rocks (1986). A Chemical Classification of Volcanic Rocks Based on the Total Alkali-Silica Diagram. Journal of Petrology, 27(3), 745-750. https://doi.org/10.1093/petrology/27.3.745 Le Maitre, R. W., Streckeisen, A., Zanettin, B., Le Bas, M. J., Bonin, B., Bateman, P., Bellieni, G., Dudek, A., Efremova, S., Keller, J., Lameyere, J., Sabine, P. A., Schmid, R., Sørensen, H., & Woolley, A. R. (2002). Igneous rocks: A Classification and Glossary of Terms. Cambridge University Press, Cambridge, UK, 236 pp. Loyd, F., Arima, M. & Edgar, A. (1985). Partial melting of a phlogopite cliopyroxenite nodule from south-west Uganda: an experimental study bearing on the origin of highly potassic continental rift volcanics. Contributions to Mineralogy and Petrology, 91, 321-329. DOI:10.1007/BF00374688 Lustrino, M., Melluso, L., Brotzu, P., Gomes, C., Morbidelli, L., Muzio, R., Ruberti, E., & Tassinari, C. (2005). Petrogenesis of the Early Cretaceous Valle Chico igneous complex (SE Uruguay): relationships with Paraná-Etendeka felsic rocks. Lithos, 82, 407-434. https://doi.org/10.1016/j.lithos.2004.07.004 Mahoney, J., Graham, D., Christie, D., Johnson, K., Hall, S., & Vonderhaar, D. (2002). Between a Hotspot and a Cold Spot: Isotopic Variation in the Southeast Indian Ridge Asthenosphere, 86°E–118°E. Journal of Petrology, 43(7), 1155-1176. https://doi.org/10.1093/petrology/43.7.1155 Marchese, H.G. & Di Paola, E. (1975). Miogeosinclinal Tandil. Revista de la Asociación Geológica Argentina, 30(2), 161-179. Martino, N. (2017). Estudio petrológico de diques lamprófidos en el sector sur del terreno Piedra Alta. Graduation Thesis, Facultad de Ciencias, Universidad de la República, Montevideo, Uruguay, 115 pp. Masquelin, E., Gutierrez, L., & Sienra, M. (2003). Análisis estructural y cinemático de la Formación Montevideo. VI Congreso Uruguayo de Geología, Montevideo, Uruguay, Actas, CD-ROM. Mazzucchelli, M., Rivalenti, G., Piccirillo, E., Girardi, V. A. V., & Civetta, L. (1995). Petrology of the Proterozoic mafic dike swarms of Uruguay and constraints on their mantle source composition. Precambrian Research, 74, 177-194. https://doi.org/10.1016/0301-9268(95)00014-V Mitchell, R. H. (1994). The lamprophyre facies. Mineralogy and Petrology, 51, 137-146. https://doi.org/10.1007/BF01159724 Mitchell, R. H. and Bergman, S.C. (1991). Petrology of Lamproites. Plenum Press, New York, USA, 447 pp. Oyhantçabal, P., Spoturno, J., Aubet, N., Cazaux, S. & Huelmo, S. (2002). La Formación Montevideo y los granito-neises asociados. II Taller del Precámbrico del Uruguay. Montevideo, Uruguay, Actas, 11-17. Oyhantçabal, P., Spoturno, J., Aubet, N., Cazaux, S. & Huelmo, S. (2003). Proterozoico del suroeste del Uruguay: nueva propuesta estratigráfica para la Formación Montevideo y el magmatismo asociado. Revista Sociedad Uruguaya de Geología, Publicación Especial, 1, 38-48. Oyhantçabal, P., Siegesmund, S. & Wemmer, K. (2011). The Río de la Plata Craton: a review of units, boundaries, ages and isotopic signature. International Journal of Earth Sciences, 100, 201 – 220. https://doi.org/10.1007/s00531-010-0580-8 Pankhurst, R. J., Ramos, A. & Linares, E. (2003). Antiquity and evolution of the Río de la Plata craton in Tandilia, southern Buenos Aires province, Argentina. Journal of South American Earth Sciences, 16, 5–13. Pascale, A. (2013). Petrografía y geoquímica de las Anfibolitas de Formación Montevideo y los Ortoneises Asociados. Graduation Thesis, Facultad de Ciencias, Universidad de la República, Montevideo, Uruguay, 130pp. Pascale, A., & Oyhantçabal, P. (2010). Estudio petrográfico-estructural de un afloramiento del Basamento Cristalino de Montevideo. VI Congreso Uruguayo de Geología, Montevideo, Uruguay, Actas CD-ROM. Peel, E. & Preciozzi, F. (2006). Geochronologic synthesis of the Piedra Alta Terrane, Uruguay. V South American Symposium on Isotope Geology, Punta del Este, Uruguay, Abstracts, 234-237. Phillpotts, A. (1990). Principles of Igneous and Metamorphic Petrology. Prentice Hall. Englewood Cliffs, New Jersey, 498 pp. Plá Cid, J., Campos, C., Nardi, L. & Florisbal, L. (2011). Petrology of Gameleira potassic lamprophyres, São Francisco Craton. Anais da Academia Brasileira de Ciências, 84(2), 377-398. https://doi.org/10.1590/S0001-37652012005000030 Preciozzi, F., Spoturno, J., & Heinzen, W. (1979). Carta geo-estructural del Uruguay a escala 1/2.000.000. Instituto Geológico Ing. Eduardo Terra Arocena, Montevideo, Uruguay, 42 pp. Preciozzi, F., Basei, M. A. & Masquelin, E. (1999). New geochronological data from the Piedra Alta Terrane (Río de la Plata Craton). II South American Symposium on Isotope Geology, Córdoba, Argentina, Abstracts, 341-344. Quartino, B. J. & Villar Fabre, J. F. (1967). Geología y petrología del basamento de Tandil y Barker (provincia de Buenos Aires) a la luz del estudio de las localidades críticas. Revista de la Asociación Geológica Argentina, 22(3), 223-251. Rapela, C. W., Pankhurst, R. J., Casquet, C., Fanning, C. M., Baldo, E. G., González-Casado, J. M., Galindo, C. & Dahlquist, J. (2007). The Rio de la Plata Craton and the assembly of SW Gondwana. Earth Sciences Review, 83, 49–82. https://doi.org/10.1016/j.earscirev.2007.03.004 Rapela, C. W., Fanning, C. M., Casquet, C., Pankhurst, R. J., Spalletti, L., Poiré, D. & Baldo, E. G. (2011). The Rio de la Plata Craton and the adjoining Pan-African/Brasiliano Terranes: Their origins and incorporation into South-West Gondwana. Gondwana Research, 20(4), 673–690. https://doi.org/10.1016/j.gr.2011.05.001 Reed, J. (2005). Electron Microprobe analysis and scanning electron microscopy in geology. Cambridge University Press, Cambridge, UK, 216 pp. Rock, N. M. S. (1987). The nature and origin of lamprophyres: an overview. Geological Society, London, Special Publications, 30, 191–226. https://doi.org/10.1144/GSL.SP.1987.030.01.09 Rock, N.M.S. (1991). Lamprophyres. Blackie & Son (Editors), Glasgow –London-New York, 285 pp. Rhodes, J. (1981). Characteristics of primary basaltic magmas. In: Basaltic Volcanism on the Terrestrial Planets, Pergamon, New York, USA, 409 - 432. Sánchez Bettucci, L., Peel, E. & Oyhantcabal, P. (2010). Precambrian geotectonic units of the Río de La Plata craton. International Geology Review, 52(1), 32–50. DOI:10.1080/00206810903211104 Severin, K. P. (2004). Energy Dispersive Spectrometry of Common Rock Forming Minerals. Department of Geology and Geophysics, University of Alaska Fairbanks, U.S.A, 228 pp. Spell, T. L. & McDougall, I. (2003). Characterization and calibration of 40Ar/39Ar dating standards. Chemical Geology, 198, 189 - 211. https://doi.org/10.1016/S0009-2541(03)00005-6 Spoturno, J. J., Oyhantcabal, P., Goso, C., Aubet, N., Cazaux, S. & Morales, E. (2004). Mapa geológico y recursos minerales del Departamento de Montevideo, escala 1/50.000. DINAMIGE – Facultad de Ciencias (Editors), Montevideo, Uruguay, CD. Staudacher, T. H., Jessberger, E. K., Dorflinger, D. & Kiko, J. (1978). A refined ultrahigh-vacuum furnace for rare gas analysis. Journal of Physics Earth Sciences: scientific instruments, 2(8), 781–784. Sun, S. & McDonough, W. F. (1989). Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes. Geological Society London, Special Publications, 42, 313-345. https://doi.org/10.1144/GSL.SP.1989.042.01.19 Tappe, S., Foley, S., Jenner, G. & Kjarsgaard, B. (2005). Integrating Ultramafic Lamprophyres into the IUGS classification of igneous rocks: rationale and implications. Journal of Petrology, 46(9), 1893-1900. https://doi.org/10.1093/petrology/egi039 Teixeira, W., Renne, P. R., Bossi, J., Campal, N. & D'Agrella-Filho, M. S. (1999). 40Ar–39Ar and Rb–Sr geochronology of the Uruguayan dike swarm, Rio de la Plata Craton and implications for Proterozoic intraplate activity in western Gondwana. Precambrian Research, 93, 153–180. https://doi.org/10.1016/S0301-9268(98)00087-4 Teixeira, W., Pinese, J. P. P., Iacumin, M., Girardi, V. A. V., Piccirillo, E. M., Echevest, E. H., Ribot, A., Fernandez, R., Renne, P. R. & Heaman, L. M. (2002). Calc-alkaline and tholeitic dike swarms of Tandilia, Rio de la Plata craton, Argentina: U–Pb, Sm–Nd, Rb–Sr and 40Ar/39Ar data provide new clues for intraplate rifting shortly after the Trans - Amazonian orogeny. Precambrian Research, 119, 329–353. https://doi.org/10.1016/S0301-9268(02)00128-6 Teixeira, W., D´Agrella Filho, M. S., Ernst, R. E., Girardi, V. A., Mazzucchelli, M. & Bettencourt, J.S. (2013). U–Pb (ID-TIMS) baddeleyite ages and paleomagnetism of 1.79 and 1.59 Ga tholeiitic dyke swarms, and position of the Rio de la Plata Craton within the Columbia supercontinent. Lithos, 174, 157–174. https://doi.org/10.1016/j.lithos.2012.09.006 Turner, S., Arnaud, N., Liu, J., Rogers, N., Hawkesworth, C., Harris, N., Kelley, S., Van Calsteren, P. & Deng, W. (1996). Post collision shoshonitic volcanism on the Tibetan plateau: implications for convective thinning of the lithosphere and the source of ocean island basalts. Journal of Petrology, 37, 45–71. https://doi.org/10.1093/petrology/37.1.45 Wallace, P. & Carmichael, I. (1989). Minettes lavas and associated leucitites from the western front of the Mexican volcanic belt: petrology, chemistry and origin. Contributions to Mineralogy and Petrology, 103, 470-492. https://doi.org/10.1007/BF01041754 Whalen, J., Currie, K. & Chappel, B. (1987). A-type granites: geochemical characteristics, discrimination and petrogenesis. Contributions to Mineralogy and Petrology, 95, 407-419. https://doi.org/10.1007/BF00402202 Walther, K. (1935). La estructura geológica de los alrededores de Montevideo. Anales del Museo de Historia Natural de Montevideo. 2da serie, 4 (7), Montevideo, Uruguay, 164-179. Walther, K. (1948). El basamento cristalino de Montevideo. Instituto Geológico del Uruguay, Boletín N.º 33, Montevideo, Uruguay, 198 pp. Wendt, I. & Carl, C. (1991). The statistical distribution of the mean squared weighted deviation. Chemical Geology, 86, 275-285. https://doi.org/10.1016/0168-9622(91)90010-T Winchester, J. A. & Floyd, P. A. (1977). Geochemical discrimination of different magma series and their differentiation products using immobile elements. Chemical Geology, 20, 325-343. https://doi.org/10.1016/0009-2541(77)90057-2; https://revistas.unal.edu.co/index.php/esrj/article/view/89652

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    المساهمون: Universidad de la República Montevideo (UDELAR), Universidad de Buenos Aires Buenos Aires (UBA), Géosciences Rennes (GR), Université de Rennes (UR)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National de la Recherche Scientifique (CNRS)-Observatoire des sciences de l'environnement de Rennes (OSERen), Université de Rennes (UR)-Institut national des sciences de l'Univers (INSU - CNRS)-Université de Rennes 2 (UR2)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Recherche pour l’Agriculture, l’Alimentation et l’Environnement (INRAE)-Institut national des sciences de l'Univers (INSU - CNRS)-Université de Rennes 2 (UR2)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Recherche pour l’Agriculture, l’Alimentation et l’Environnement (INRAE), Dirección Nacional de Minería y Geología

    المصدر: ISSN: 0040-1951.

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    المساهمون: Systèmes Tectoniques, Géosciences Rennes (GR), Université de Rennes (UR)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre Armoricain de Recherches en Environnement-Centre National de la Recherche Scientifique (CNRS)-Université de Rennes (UR)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre Armoricain de Recherches en Environnement-Centre National de la Recherche Scientifique (CNRS), Terre, Temps, Traçage

    المصدر: XVIII Congreso Geológico Argentino ; https://hal-insu.archives-ouvertes.fr/insu-00610081 ; XVIII Congreso Geológico Argentino, May 2011, Neuquén, Argentina

    جغرافية الموضوع: Neuquén, Argentina

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    وصف الملف: application/pdf

    Relation: info:eu-repo/semantics/altIdentifier/url/http://ref.scielo.org/v368sk; http://hdl.handle.net/11336/66325; Masquelin, Henri; Silva Lara, Hernán; Bettucci Sanchez, Leda; Núñez Demarco, Pablo Andrés; Pascual, Sofía; et al.; Lithologies, structure and basement-cover relationships in the schist belt of the Dom Feliciano Belt in Uruguay; Sociedade Brasileira de Geologia; Brazilian Journal of Geology; 47; 1; 3-2017; 21-42; CONICET Digital; CONICET

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    المصدر: International Geology Review; Jun2012, Vol. 54 Issue 7, p844-860, 17p

    مصطلحات جغرافية: URUGUAY

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    Academic Journal

    وصف الملف: application/pdf

    Relation: info:eu-repo/semantics/altIdentifier/url/https://linkinghub.elsevier.com/retrieve/pii/S0040195120300561; http://hdl.handle.net/11336/143207; Núñez Demarco, Pablo Andrés; Masquelin, Henri; Prezzi, Claudia Beatriz; Aïfa, Tahar; Muzio, Rossana; et al.; Aeromagnetic patterns in Southern Uruguay: Precambrian-Mesozoic dyke swarms and Mesozoic rifting structural and tectonic evolution; Elsevier Science; Tectonophysics; 789; 8-2020; 1-39; 228373; CONICET Digital; CONICET

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    المساهمون: Géosciences Rennes (GR), Université de Rennes 1 (UR1), Université de Rennes (UNIV-RENNES)-Université de Rennes (UNIV-RENNES)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre Armoricain de Recherches en Environnement-Centre National de la Recherche Scientifique (CNRS), Dubigeon, Isabelle, Université de Rennes (UR)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre Armoricain de Recherches en Environnement-Centre National de la Recherche Scientifique (CNRS)

    المصدر: HAL
    VI Congresso Uruguayo de Geologia 2010
    VI Congresso Uruguayo de Geologia 2010, May 2010, Parque de Ute Minas-Lavalleja, Uruguay

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    Academic Journal

    Alternate Title: L’essaim filonien doléritique mésozoïque du Cuaró, bassin sud du Paraná, Uruguay : exemples de fabriques magnétiques superposées ?

    المؤلفون: Masquelin, Henri1, Aïfa, Tahar2 tahar.aifa@univ-rennes1.fr, Muzio, Rossana1, Hallot, Erwan2, Veroslavsky, Gerardo1, Bonnevalle, Laure2

    المصدر: Comptes Rendus Géoscience. Dec2009, Vol. 341 Issue 12, p1003-1015. 13p.

    مصطلحات جغرافية: URUGUAY