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et al. Ancient Volcanism on the Moon: Insights from Pb Isotopes in the MIL 13317 and Kalahari 009 Lunar Meteorites // Earth and Planetary Science Letters 502 (2018). doi: 10.1016/j.epsl.2018.08.035.

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13. Pasckert J. H. Hiesinger H. & van der Bogert C. H. Small-Scale Lunar Farside Volcanism // Icarus 257 (2015). doi: 10.1016/ j.icarus.2015.04.040.

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6. Поверженный бог

1. Howell Elizabeth. Mariner 9: First Spacecraft to Orbit Mars // Space.com (November 08, 2018). URL: https://www.space.com/18439-mariner-9.html.

2. Andrews-Hanna J. C., Zuber M. T. & Banerdt W. B. The Borealis Basin and the Origin of the Martian Crustal Dichotomy // Nature 453 (2008). doi: 10.1038/nature07011.

3. Leone G. et al. Three‐Dimensional Simulations of the Southern Polar Giant Impact Hypothesis for the Origin of the Martian Dichotomy // Geophysical Research Letters 41, 24 (2014). doi: 10.1002/2014GL062261.

4. Wilson L. & Mouginis-Mark P. J. Phreatomagmatic Explosive Origin of Hrad Vallis, Mars // JGR Planets 108, E8 (2003). doi: 10.1029/2002JE001927.

5. Brož, P. & Hauber E. Hydrovolcanic Tuff Rings and Cones as Indicators for Phreatomagmatic Explosive Eruptions on Mars // JGR Planets 118, 8 (2013). doi: 10.1002/jgre.20120.

6. Wall K. T. et al. Determining Volcanic Eruption Styles on Earth and Mars from Crystallinity Measurements // Nature Communications 5 (2014). doi: 10.1038/ncomms6090.

7. Jet Propulsion Laboratory. (2016) Found: Clues about Volcanoes Under Ice on Ancient Mars. [Press release] URL: https://www.jpl.nasa.gov/news/news.php?feature=6472.

8. Brož P. et al. Experimental Evidence for Lava-Like Mud Flows Under Martian Surface Conditions // Nature Geoscience 13 (2020). doi: 10.1038/s41561-020-0577-2.

9. NASA. (2018) Jamming with the “Spiders” from Mars. [Press release] URL: https://www.nasa.gov/image-feature/jpl/jamming-with-the-spiders-from-mars.

10. The Planetary Society. Every Mission to Mars, Ever. [Factbox] URL: https://www.planetary.org/space-missions/every-mars-mission.

11. Andrews Robin George. Rocks, Rockets and Robots: The Plan to Bring Mars Down to Earth // Scientific American (February 6, 2020). URL: https://www.scientificamerican.com/article/rocks-rockets-and-robots-the-plan-to-bring-mars-down-to-earth1/.

12. International Meteorite Collectors Association. Martian Meteorites. [Factbox] URL: https://imca.cc/mars/martian-meteorites.htm.

13. Lapen T. J. et al. Two Billion Years of Magmatism Recorded from a Single Mars Meteorite Ejection Site // Geology 3, 2 (2017). doi: 10.1126/sciadv.1600922.

14. Carr M.H. & Head III J.W. Geologic History of Mars // Earth and Planetary Science Letters 294 (2010). doi: 10.1016/j.epsl.2009.06.042.

15. Bouley S. et al. The Revised Tectonic History of Tharsis // Earth and Planetary Science Letters 488 (2018). doi: 10.1016/j.epsl.2018.02.019.

16. Lillis R. J. et al. Demagnetization of Crust by Magmatic Intrusion Near the Arsia Mons Volcano: Magnetic and Thermal Implications for the Development of the Tharsis Province, Mars Journal of Volcanology and Geothermal Research 185, 1–2 (2009). doi: 10.1016/j.jvolgeores.2008.12.007.

17. Bouley S. et al. Late Tharsis Formation and Implications for Early Mars // Nature 531 (2016). doi: 10.1038/nature17171.

18. Ojha L. et al. Spectral Evidence for Hydrated Salts in Recurring Slope Lineae on Mars // Nature Geoscience 8 (2015). doi: 10.1038/ngeo2546.

19. DiBiase R.A. et al. Deltaic Deposits at Aeolis Dorsa: Sedimentary Evidence for a Standing Body of Water on the Northern Plains of Mars // JGR Planets 118,

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