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A recent study published in Nature Astronomy has concluded that Venus likely never had oceans or conditions conducive to life. The research, led by Tereza Constantinou, a doctoral researcher at the University of Cambridge’s Institute of Astronomy, analysed the planet’s atmospheric composition to infer its interior water content. The findings suggest that Venus’s interior is substantially dry, supporting the idea that the planet remained parched throughout its history. These conclusions challenge earlier theories suggesting Venus may have once held liquid water.

Key Indicators of a Dry Interior

As per reports, Venus’s atmospheric chemistry was a focal point of the study. Volcanism on Earth releases gases that are more than 60 percent water vapour, reflecting a water-rich mantle. In contrast, volcanic eruptions on Venus emit gases with no more than 6 percent water vapour. This stark difference indicates a dry interior, suggesting that Venus’s surface conditions were never capable of sustaining liquid water.

In a statement to Reuters, Constantinou explained that the atmospheric chemistry suggests that volcanic eruptions on Venus release very little water, implying that the planet’s interior—the source of volcanism—is equally dry.

Diverging Evolution of Sister Planets

Venus and Earth share many physical similarities, including size and composition. However, their evolutionary trajectories have diverged significantly. As per sources, Venus experiences extreme surface temperatures of approximately 465 degrees Celsius, atmospheric pressure 90 times greater than Earth’s, and sulphuric acid clouds in its toxic atmosphere. Constantinou highlighted these contrasts, stating that such conditions underscore the challenges in studying Venus’s history of habitability.

Future Exploration Plans

Upcoming missions aim to enhance understanding of Venus. NASA’s DAVINCI mission, scheduled for the 2030s, will deploy a descent probe to analyse the planet’s atmosphere and surface, as per reports. The European Space Agency’s EnVision mission will use radar mapping to explore Venus’s surface and atmospheric composition.

These findings provide insight into Venus’s inhospitable history, distinguishing it sharply from Mars, which has evidence of ancient oceans and potential subsurface water reservoirs, according to recent studies.

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Point Nemo: The Remote Ocean Graveyard Where the ISS Will Make Its Final Descent in 2030

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NASA will retire the ISS in 2030, sending it to Point Nemo, a remote Pacific zone known as the spacecraft cemetery. Most of the station will burn up during reentry, with remaining debris falling harmlessly into the sea. The controlled descent aims to avoid past mishaps and reflects a new era of commercial space stations.

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Dark Matter May Behave Like Ordinary Matter Under Gravity, New Study Finds

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A new study shows dark matter falls into cosmic gravity wells much like ordinary matter, narrowing one of astronomy’s biggest mysteries. Researchers say any unknown force acting on dark matter must be very weak, though future missions could detect smaller effects. The findings bring scientists closer to understanding how the universe’s unseen mass behaves.

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Interstellar Visitor 3I/ATLAS Brightens Faster Than Expected, Surprising Scientists

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The interstellar comet 3I/ATLAS has brightened far faster than expected during its solar approach, surprising researchers. Scientists say the unusual surge may point to rare chemical traits from another star system. Further observations in 2025 may reveal why this cosmic visitor behaves differently from typical comets in our solar neighbourhood.

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