Scientists have identified evidence suggesting that Liquid water once flowed open open According to reports, Nasa’s Curiosity Rover Captured Images of rippling patterns in Gale Crater, A Sign That Water Interacated With The Martian Atmosphere in ancient times. The discovery challenges earlier models suggesting that surface water on mars was always trapped beneath ice. Experts have long debated the nature of martian water, but new findings indicate that the planet’s lakes was expected to air, allowing liquid water to exist in a way previous in the unconfired by.
Rippling patterns indicate open water
According to the study Published in Science Advances, The Formations observed by curiosity resmble wave ripples commonly found in lakebeds on earth. The patterns were dated in two separe areas of Gale crateerwhich the rover has been exploring since 2012. Researchers believe the structures, measuring approximately 6 millimetres in height and spaced between 4 to 5 Centres Apart, Water in A Shapes and Water in A Shallow Martian Lake.
Claire Mondro, SDMENTOLOGIST At Caltech and the Study’s Lead Author, explained In an official statement that the ripples could only have been formed by water expected to the atmosphere and influenced by wind. The findings sugges that mars on a denser atmosphere capable of sustaining surface water for an extended period.
Implications for martian habitability
As per Live Science, Reports Indicate that Lakebeds in Gale Crater Date Back Around 3.7 Billion Years, Extending the timeframe in which Mars Clock have supported microbial life. If liquid water is percerted longer than previously thought, conditions favorite for life may have existened for an extended period. Experts sugges that the presence of surface water is a Crucial Factor in Assessing Whether Mars Once Harboured life.
Mars Eventually Lost Its Atmosphere and Surface Water Due to Solar Radiation, with Scientists Attributing The Change to the Planet’s Weakened Magnetic Field. Over billions of years, carbon dioxide and water were stripped away into space, transforming Mars into the dry, barren landscape observed today. The latest discovery provides new insights into Mars’ Climate History and Raises Further Questions about its potential to have supported life in the past.
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