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NASA’s Hubble Space Telescope and New Horizons spacecraft have joined forces to observe Uranus, a planet known for its mysterious atmosphere. Hubble, from its position in low-Earth orbit, captured detailed images of Uranus‘ atmosphere, including clouds and storms, while New Horizons, located 6.5 billion miles away, observed the planet as a small dot. These combined observations offer astronomers important insights into imaging distant exoplanets around other stars, providing essential context for future missions.

A Unique Perspective on Exoplanet Imaging

Lead author Samantha Hasler from the Massachusetts Institute of Technology, who works with the New Horizons team, explained that the collaboration between these two spacecrafts serves as a test case for observing distant exoplanets. Hubble’s close-up view of Uranus, in combination with New Horizons’ distant observation, helps researchers learn how gas giants similar to Uranus might appear when observed from light-years away.

Valuable Insights for Future Missions

The observations revealed that Uranus was dimmer than predicted in New Horizons’ data, providing a new understanding of how light is reflected at different angles. This discovery has significant implications for future missions like NASA‘s Nancy Grace Roman Space Telescope and the Habitable Worlds Observatory, both of which will focus on studying exoplanets. Alan Stern, Principal Investigator for New Horizons at the Southwest Research Institute, highlighted that these findings contribute to understanding distant planetary atmospheres, preparing astronomers for future missions aimed at detecting habitable worlds.

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MIT Detects Traces of a Lost ‘Proto Earth’ Deep Beneath Our Planet’s Surface

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MIT researchers have discovered rare isotopic traces of a “proto Earth” that existed before the giant impact that shaped our modern planet. Found deep in ancient rocks, these potassium isotope signatures reveal remnants of Earth’s earliest material, offering fresh insight into the planet’s formation and the solar system’s earliest history.

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Astronomers Detect Heavy Water in Planet-Forming Disk Around Young Star

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Scientists have detected heavy water in the planet-forming disk around young star V883 Orionis, confirming the water existed long before the star formed. The discovery, made using ALMA, shows that water’s origins trace back to ancient interstellar clouds, linking molecular gas, comets, and planetary systems across billions of years.

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NASA Experiment Shows Martian Ice Could Preserve Signs of Ancient Life

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A NASA study suggests that traces of ancient life could be locked in Martian ice. Lab tests freezing bacteria under Mars-like radiation revealed amino acids can persist for tens of millions of years. Researchers say pure ice offers protection, making Mars’ frozen regions ideal for searching preserved biomolecules.

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