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  • Other Sources  (1)
  • Lunar and Planetary Science and Exploration  (1)
  • GEOSCIENCES (GENERAL)
  • Space Sciences (General); Lunar and Planetary Science and Exploration
  • 1990-1994  (1)
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  • Other Sources  (1)
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    In:  Other Sources
    Publication Date: 2019-07-18
    Description: Today, Mars is cold and dry. With a 7 mbar mean surface pressure, its thin predominantly CO2 atmosphere is not capable of raising global mean surface temperatures significantly above its 217K effective radiating temperature, and the amount of water vapor in the atmosphere is equivalent to a global ocean only 10 microns deep. Has Mars always been in such a deep freeze? There are several lines of evidence that suggest it has not. First, there are the valley networks which are found throughout the heavily cratered terrains. These features are old (3.8 Gyr) and appear to require liquid water to form. A warm climate early in Mars' history has often been invoked to explain them, but the precise conditions required to achieve this have yet to be determined. Second, some of the features seen in orbiter images of the surface have been interpreted in terms of glacial activity associated with an active hydrological cycle some several billion years ago. This interpretation is controversial as it requires the release of enormous quantities of ground water and enough greenhouse warming to raise temperatures to the melting point. Finally, there are the layered terrains that characterize both polar regions. These terrains are geologically young (10 Myr) and are believed to have formed by the slow and steady deposition of dust and water ice from the atmosphere. The individual layers result from the modulation of the deposition rate which is driven by changes in Mars' orbital parameters. The ongoing research into each of these areas of Martian climate change will be reviewed, and similarities to the Earth's climate system will be noted.
    Keywords: Lunar and Planetary Science and Exploration
    Type: 1994 American Geophysical Union Meeting; Dec 05, 1994 - Dec 09, 1994; San Francisco, CA; United States
    Format: text
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