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Active Landscapes of IberiaGalve, J. P., Pérez-Peña, J. V., Azañón, J. M., Insua Pereira, D. M., Cunha, P. P., Pereira, P., Ortuño, M., Viaplana-Muzas, M., Gracia Prieto, F. J., Remondo, J., Jabaloy, A., Bardají, T., Silva, P. G., Lario, J., Zazo, C., Goy, J. L., Dabrio, C. J., & Cabero, A. (2020). Active Landscapes of Iberia BT – The Geology of Iberia: A Geodynamic Approach: Volume 5: Active Processes: Seismicity, Active Faulting and Relief (C. Quesada & J. T. Oliveira (eds.); pp. 77–124). Springer International Publishing. https://doi.org/10.1007/978-3-030-10931-8_5 |
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What can seismic noise tell us about the Alpine reactivation of the Iberian Massif? An example in the Iberian Central SystemAndrés J, Ayarza P, Schimmel M, Palomeras I, Ruiz M, Carbonell R. What can seismic noise tell us about the Alpine reactivation of the Iberian Massif? An example in the Iberian Central System. Solid Earth. 2020;11(6):2499-2513. doi:10.5194/se-11-2499-2020 |
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Interevaporitic deposits of Las Minas Gypsum Unit: A record of Late Tortonian marine incursions and dolomite precipitation in Las Minas Basin (eastern Betic Cordillera, SE Spain)Pineda V, Gibert L, Soria JM, Carrazana A, Ibáñez-Insa J, Sánchez-Román M. Interevaporitic deposits of Las Minas Gypsum Unit: A record of Late Tortonian marine incursions and dolomite precipitation in Las Minas Basin (eastern Betic Cordillera, SE Spain). Palaeogeogr Palaeoclimatol Palaeoecol. 2021;564:110171. doi:https://doi.org/10.1016/j.palaeo.2020.110171 |
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Epistemological limitations of Earth system science to confront the Anthropocene crisisSoriano C. (2020) Epistemological limitations of Earth system science to confront the Anthropocene crisis. The Anthropocene Review. doi:10.1177/2053019620978430 |
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The polarization of ambient noise on MarsStutzmann, E., Schimmel, M., Lognonné, P., Horleston, A., Ceylan, S., van Driel, M., et al. (2021). The polarization of ambient noise on Mars. Journal of Geophysical Research: Planets, 126, e2020JE006545. https://doi.org/10.1029/2020JE006545 |
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Influence of basement rocks on fluid evolution during multiphase deformation: The example of the Estamariu thrust in the Pyrenean Axial ZoneMuñoz-López, D., Alías, G., Cruset, D., Cantarero, I., John, C. M., & Travé, A. (2020). Influence of basement rocks on fluid evolution during multiphase deformation: the example of the Estamariu thrust in the Pyrenean Axial Zone. Solid Earth, 11(6), 2257–2281. https://doi.org/10.5194/se-11-2257-2020 |
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External forcing mechanisms controlling the North Atlantic coastal upwelling regime during the mid-HoloceneHernández, A., Cachão, M., Sousa, P., Trigo, R. M., Luterbacher, J., Vaquero, J. M., & Freitas, M. C. (2020). External forcing mechanisms controlling the North Atlantic coastal upwelling regime during the mid-Holocene. Geology. https://doi.org/10.1130/G48112.1 |
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Influence of tubing/oil-blanket lifting on construction and geometries of two-well-horizontal salt cavernsWan, J., Peng, T., Yuan, G., Ban, F., Jurado, M. J., & Xia, Y. (2020). Influence of tubing/oil-blanket lifting on construction and geometries of two-well-horizontal salt caverns. Tunnelling and Underground Space Technology, 103688. https://doi.org/https://doi.org/10.1016/j.tust.2020.103688 |
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Pliocene growth of the Dowlatabad syncline in Frontal Fars arc: Folding propagation across the Zagros Fold Belt, IranNajafi, M., Beamud, E., Ruh, J., Mouthereau, F., Tahmasbi, A., Bernaola, G., Yassaghi, A., Motamedi, H., Sherkati, S., Hassan Goodarzi, M. G., & Vergés, J. (2020). Pliocene growth of the Dowlatabad syncline in Frontal Fars arc: Folding propagation across the Zagros Fold Belt, Iran. GSA Bulletin. https://doi.org/10.1130/B35748.1 |
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The Anthropozoic era revisitedRull, V. (2020).The Anthropozoic era revisited. Lethaia, https://doi.org/10.1111/let.12408 Vol. 000, pp. 1– 11. |
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Underwater Monitoring of Submarine Volcanic Activity: El Hierro (Canary Islands 2011–2012) EruptionJurado, Maria Jose, Maurizio Ripepe, Carmen Lopez, Antonio Ricciardi, Maria Jose Blanco, and Giorgio Lacanna. 2020. “Underwater Monitoring of Submarine Volcanic Activity: El Hierro (Canary Islands 2011–2012) Eruption.” Journal of Volcanology and Geothermal Research, 107097. https://doi.org/https://doi.org/10.1016/j.jvolgeores.2020.107097. |
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Seismic Anisotropy of Temperate Ice in Polar Ice SheetsLlorens, M.G., Griera, A., Bons, P. D., Gomez-Rivas, E., Weikusat, I., Prior, D. J., et al. (2020). Seismic anisotropy of temperate ice in polar ice sheets. Journal of Geophysical Research: Earth Surface, 125, e2020JF005714. https://doi.org/10.1029/2020JF005714 |
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Evolution of a salt-rich transtensional rifted margin, eastern North Pyrenees, FranceFord, M., & Vergés, J. (2020). Evolution of a salt-rich transtensional rifted margin, eastern North Pyrenees, France. Journal of the Geological Society, jgs2019-157. https://doi.org/10.1144/jgs2019-157 |
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Detection, Analysis, and Removal of Glitches From InSight’s Seismic Data From MarsScholz, J.-R., Widmer-Schnidrig, R.b, Davis, P.c, Lognonné, P.d, Pinot, B.e, Garcia, R.F.e, Hurst, K.f, Pou, L.g, Nimmo, F.g, Barkaoui, S.d, de Raucourt, S.d, Knapmeyer-Endrun, B.h, Knapmeyer, M.i, Orhand-Mainsant, G.e, Compaire, N.e, Cuvier, A.j, Beucler, É.j, Bonnin, M.j, Joshi, R.a, Sainton, G.d, Stutzmann, E.d, Schimmel, M.k, Horleston, A.l, Böse, M.m, Ceylan, S.n, Clinton, J.m. (2020). Detection, Analysis, and Removal of Glitches From InSight’s Seismic Data From Mars. Earth and Space Science, 7(11). https://doi.org/10.1029/2020EA001317 |
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Pristinity, degradation and replacement: The three dimensions of human impact on island vegetationRull V. Pristinity, degradation and replacement: The three dimensions of human impact on island vegetation. Progress in Physical Geography: Earth and Environment. October 2020. doi:10.1177/0309133320960992 |
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Identification, cataloguing and preservation of outcrops of geological interest in monogenetic volcanic fields: the case of La Garrotxa Volcanic Zone Natural ParkPlanagumà, L., Martí, J. Identification, cataloguing and preservation of outcrops of geological interest in monogenetic volcanic fields: the case of La Garrotxa Volcanic Zone Natural Park. Geoheritage 12, 84 (2020). https://doi.org/10.1007/s12371-020-00508-w |
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Paleoenvironmental evolution of Picos de Europa (Spain) during marine isotopic stages 5c to 3 combining glacial reconstruction, cave sedimentology and paleontological findingsBallesteros, D., Álvarez-Vena, A., Monod-Del Dago, M., Rodríguez-Rodríguez, L., Sanjurjo-Sánchez, J., Álvarez-Lao, D., Pérez-Mejías, C., Valenzuela, P., DeFelipe, I., Laplana, C., Cheng, H., & Jiménez-Sánchez, M. (2020). Paleoenvironmental evolution of Picos de Europa (Spain) during marine isotopic stages 5c to 3 combining glacial reconstruction, cave sedimentology and paleontological findings. Quaternary Science Reviews, 248, 106581. https://doi.org/https://doi.org/10.1016/j.quascirev.2020.106581 |
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Geochemical and Sr–Nd Isotopic Features of the Zaro Volcanic Complex: Insights on the Magmatic Processes Triggering a Small-Scale Prehistoric Eruption at Ischia Island (South Italy)Pelullo, C, G Cirillo, R S Iovine, I Arienzo, M Aulinas, L Pappalardo, P Petrosino, J L Fernandez-Turiel, and M D’Antonio. 2020. “Geochemical and Sr–Nd Isotopic Features of the Zaro Volcanic Complex: Insights on the Magmatic Processes Triggering a Small-Scale Prehistoric Eruption at Ischia Island (South Italy).” International Journal of Earth Sciences. https://doi.org/10.1007/s00531-020-01933-6. |
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The magnitude and impact of the 431 CE Terra Blanca Jove eruption of Ilopango, El Salvador.Smith, V., et al (2020)., The magnitude and impact of the 431 CE Tierra Blanca Joven eruption of Ilopango, El Salvador. PNAS. doi: https://www.pnas.org/cgi/doi/10.1073/pnas.2003008117 |
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Fluid Dynamics in a Thrust Fault Inferred from Petrology and Geochemistry of Calcite Veins: An Example from the Southern Pyrenees1. Muñoz-López D, Cruset D, Cantarero I, Benedicto A, John CM, Travé A. Fluid Dynamics in a Thrust Fault Inferred from Petrology and Geochemistry of Calcite Veins: An Example from the Southern Pyrenees. Bons PD, ed. Geofluids. 2020;2020:8815729. doi:10.1155/2020/8815729 |
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The lithospheric structure of the Gibraltar Arc System from wide‐angle seismic dataGómez de la Peña, L., Grevemeyer, I., Kopp, H., Díaz, J., Gallart, J., Booth‐Rea, G., et al. (2020). The lithospheric structure of the Gibraltar Arc System from wide‐angle seismic data. Journal of Geophysical Research: Solid Earth, 125, e2020JB019854. https://doi.org/10.1029/2020JB019854 |