
MARIA ISABEL
EGEA GONZALEZ
Profesora Permanente Laboral
Publications (16) MARIA ISABEL EGEA GONZALEZ publications View referenced research data.
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2025
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Ammonia or Methanol Would Enable Subsurface Liquid Water at the Martian South Pole
Astrobiology
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The Surface Heat Flow of Mars at the Noachian–Hesperian Boundary
Remote Sensing, Vol. 17, Núm. 2
2023
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Lithospheric contraction concentric to Tharsis: 3D structural modeling of large thrust faults between Thaumasia highlands and Aonia Terra, Mars
Journal of Structural Geology, Vol. 177
2022
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The speed and displacement of the Laetoli Site G track-maker hominins
Ichnos:an International Journal of Plant and Animal, Vol. 29, Núm. 3-4, pp. 205-217
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The stability of a liquid-water body below the south polar cap of Mars
Icarus, Vol. 383
2021
2019
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Comments on “Using the viscoelastic relaxation of large impact craters to study the thermal history of Mars” (Karimi et al., 2016, Icarus 272, 102–113) and “Studying lower crustal flow beneath mead basin: Implications for the thermal history and rheology of Venus” (Karimi and Dombard, 2017, Icarus 282, 34–39)
Icarus
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Evidence of thrust faulting and widespread contraction of Ceres
Nature Astronomy
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Fomento del aprendizaje colaborativo mediante la mentorización entre iguales
Brazilian Journal of Development, Vol. 5, Núm. 6, pp. 6936-6945
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Structural modeling of lobate scarps in the NW margin of Argyre impact basin, Mars
Icarus, Vol. 319, pp. 367-380
2017
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Resolución de problemas y evaluación continua en la enseñanza de la Física
Libro de Actas de las II Jornadas de Innovación Docente Universitaria UCA (Universidad de Cádiz), pp. 101-104
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Thrust fault modeling and Late-Noachian lithospheric structure of the circum-Hellas region, Mars
Icarus, Vol. 288, pp. 53-68
2014
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Influence of an insulating megaregolith on heat flow and crustal temperature structure of Mercury
Icarus, Vol. 232, pp. 220-225
2013
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Paleo-heat flows, radioactive heat generation, and the cooling and deformation history of Mercury
Icarus, Vol. 225, Núm. 1, pp. 86-92
2012
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Depth of faulting and ancient heat flows in the Kuiper region of Mercury from lobate scarp topography
Planetary and Space Science, Vol. 60, Núm. 1, pp. 193-198