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The ephemeral development of C′ shear bands: A numerical modelling approachFinch, M. A., Bons, P. D., Steinbach, F., Griera, A., Llorens, M.-G., Gomez-Rivas, E., Ran, H., & de Riese, T. (2020). The ephemeral development of C′ shear bands: A numerical modelling approach. Journal of Structural Geology, 139, 104091. https://doi.org/https://doi.org/10.1016/j.jsg.2020.104091 |
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Ecology of the collapse of Rapa Nui societyLima, M., Gayo, E. M., Latorre, C., Santoro, C. M., Estay, S. A., Cañellas-Boltà, N., Margalef, O., Giralt, S., Sáez, A., Pla-Rabes, S., & Chr. Stenseth, N. (2020). Ecology of the collapse of Rapa Nui society. Proceedings of the Royal Society B: Biological Sciences, 287(1929), 20200662. https://doi.org/10.1098/rspb.2020.0662 |
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Evolution of the South-Iberian paleomargin: From hyperextension to continental subductionPedrera, A., Ruiz-Constán, A., García-Senz, J., Azor, A., Marín-Lechado, C., Ayala, C., … Rodríguez-Fernández, L. R. (2020). Evolution of the South-Iberian paleomargin: From hyperextension to continental subduction. Journal of Structural Geology, 138, 104122. https://doi.org/https://doi.org/10.1016/j.jsg.2020.104122 |
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Structural and geophysical characterization of the western termination of the South Pyrenean triangle zoneSantolaria, P., Ayala, C., Pueyo, E. L., Rubio, F. M., Soto, R., & Calvín, P., et al. (2020). Structural and geophysical characterization of the western termination of the South Pyrenean triangle zone. Tectonics, 39, e2019TC005891. https://doi.org/10.1029/2019TC005891 |
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Church bells and ground motionsDiaz, J. (2020). Church bells and ground motions. Journal of Seismology. https://doi.org/10.1007/s10950-020-09935-2 |
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Long lifetime of the E1u in-plane infrared-active modes of h-BNSegura, A., Cuscó, R., Taniguchi, T., Watanabe, K., & Artús, L. (2020). Long lifetime of the E1u in-plane infrared-active modes of h-BN. Physical Review B, 101(23), 235203. https://doi.org/10.1103/PhysRevB.101.235203 |
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10 Myr evolution of sedimentation rates in a deep marine to non‐marine foreland basin system: Tectonic and sedimentary controls (Eocene, Tremp–Jaca Basin, Southern Pyrenees, NE Spain)Vinyoles, A, López-Blanco, M, Garcés, M, et al. 10 Myr evolution of sedimentation rates in a deep marine to non-marine foreland basin system: Tectonic and sedimentary controls (Eocene, Tremp–Jaca basin, Southern Pyrenees, NE Spain). Basin Res. 2020; 00: 1– 31. https://doi.org/10.1111/bre.12481 |
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An analogue of dominance of tectonic over climatic forcing in intermontane coal-bearing basins: Padul (SE Spain)Torres, T., Ortiz, J. E., Soler, V., Delgado, A., Araujo, R., Valle, M., Rivas, M. R., Julià, R., Sánchez-Palencia, Y., & Vega-Panizo, R. (2020). An analogue of dominance of tectonic over climatic forcing in intermontane coal-bearing basins: Padul (SE Spain). International Journal of Coal Geology, 227, 103530. https://doi.org/https://doi.org/10.1016/j.coal.2020.103530 |
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Holocene environmental changes inferred from Antarctic lake sedimentsGiralt, S., Hernández, A., Pla-Rabes, S., Antoniades, D., Toro, M., Granados, I., & Oliva, M. (2020). Chapter 3 – Holocene environmental changes inferred from Antarctic lake sediments (M. Oliva & J. B. T.-P. A. Ruiz-Fernández (eds.); pp. 51–66). Academic Press. https://doi.org/https://doi.org/10.1016/B978-0-12-817925-3.00003-3 |
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Significance of Fracture-Filling Rose-Like Calcite Crystal Clusters in the SE PyreneesCruset, D.; Ibáñez-Insa, J.; Cantarero, I.; John, C.M.; Travé, A. Significance of Fracture-Filling Rose-Like Calcite Crystal Clusters in the SE Pyrenees. Minerals 2020, 10, 522. |
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Characteristics and emplacement mechanisms of the Coranzulí ignimbrites (Central Andes)Guzmán, S., Doronzo, D. M., Martí, J., & Seggiaro, R. (2020). Characteristics and emplacement mechanisms of the Coranzulí ignimbrites (Central Andes). Sedimentary Geology, 405, 105699. https://doi.org/https://doi.org/10.1016/j.sedgeo.2020.105699 |
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Introduction: Handling uncertainty in the geosciences: identification, mitigation and communicationPérez-Díaz, L., Alcalde, J., & Bond, C. E. (2020). Introduction: Handling uncertainty in the geosciences: identification, mitigation and communication. Solid Earth, 11(3), 889–897. https://doi.org/10.5194/se-11-889-2020 |
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Analog and numerical experiments of double subduction systems with opposite polarity in adjacent segmentsPeral, M., Ruh, J., Zlotnik, S., Funiciello, F., Fernàndez, M., Vergés, J., & Gerya, T. ( 2020). Analog and numerical experiments of double subduction systems with opposite polarity in adjacent segments. Geochemistry, Geophysics, Geosystems, 21, e2020GC009035. https://doi.org/10.1029/2020GC009035 |
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Comparative study of the high-pressure behavior of ZnV2O6, Zn2V2O7, and Zn3V2O8Díaz-Anichtchenko, D., Santamaria-Perez, D., Marqueño, T., Pellicer-Porres, J., Ruiz-Fuertes, J., Ribes, R., Ibañez, J., Achary, S. N., Popescu, C., & Errandonea, D. (2020). Comparative study of the high-pressure behavior of ZnV2O6, Zn2V2O7, and Zn3V2O8. Journal of Alloys and Compounds, 837, 155505. https://doi.org/https://doi.org/10.1016/j.jallcom.2020.155505 |
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Controls of magma chamber zonation on eruption dynamics and deposits stratigraphy: The case of El Palomar fallout succession (Tenerife, Canary Islands)Martí, J., Zafrilla, S., Andújar, J., Jiménez-Mejías, M., Scaillet, B., Pedrazzi, D., Doronzo, D., & Scaillet, S. (2020). Controls of magma chamber zonation on eruption dynamics and deposits stratigraphy: The case of El Palomar fallout succession (Tenerife, Canary Islands). Journal of Volcanology and Geothermal Research, 106908. https://doi.org/https://doi.org/10.1016/j.jvolgeores.2020.106908 |
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Isotopic Disorder: The Prevailing Mechanism in Limiting the Phonon Lifetime in Hexagonal BNCuscó, R., Edgar, J. H., Liu, S., Li, J., & Artús, L. (2020). Isotopic Disorder: The Prevailing Mechanism in Limiting the Phonon Lifetime in Hexagonal BN. Physical Review Letters, 124(16), 167402. https://doi.org/10.1103/PhysRevLett.124.167402 |
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On the Anthropocene formalization and the proposal by the Anthropocene Working GroupSoriano, C., 2020. On the Anthropocene formalization and the proposal by the Anthropocene Working Group. Geologica Acta, 18.6, 1-10. DOI: 10.1344/GeologicaActa2020.18.6 |
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A combined approach to establishing the timing and magnitude of anthropogenic nutrient alteration in a mediterranean coastal lake- watershed systemFuentealba, M., Latorre, C., Frugone-Álvarez, M. et al. A combined approach to establishing the timing and magnitude of anthropogenic nutrient alteration in a mediterranean coastal lake- watershed system. Scientific Reports 10, 5864 (2020). https://doi.org/10.1038/s41598-020-62627-2 |
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Deciphering the metamorphic evolution of the Pulo do Lobo metasedimentary domain (SW Iberian Variscides)Pérez-Cáceres, I., Jesús Martínez Poyatos, D., Vidal, O., Beyssac, O., Nieto, F., Simancas, J. F., Azor, A., & Bourdelle, F. (2020). Deciphering the metamorphic evolution of the Pulo do Lobo metasedimentary domain (SW Iberian Variscides). Solid Earth, 11(2), 469–488. https://doi.org/10.5194/se-11-469-2020 |
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Tectono‐Sedimentary Evolution of Jurassic‐Cretaceous diapiric structures: Miravete anticline, Maestrat Basin, SpainVergés, J., Poprawski, Y., Almar, Y., Drzewiecki, P.A., Moragas, M., Bover‐Arnal, T., Macchiavelli, C., Wright, W., Messager, G., Embry, J.‐C. and Hunt, D. (2020),Tectono‐Sedimentary Evolution of Jurassic‐Cretaceous diapiric structures: Miravete anticline, Maestrat Basin, Spain. Basin Research. doi:10.1111/bre.12447 |
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Neotropical Diversification: Patterns and ProcessesRull, V.; Carnaval, A.C.(ed)(2020). Neotropical Diversification: Patterns and Processes. Springer International Publishing. ISBN: 978-3-030-31166-7 |