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A groundbreaking discovery has been made in Antarctica, where a team of scientists successfully extracted a 2.8-kilometre-long ice core believed to contain air bubbles and particles from 1.2 million years ago. This ancient ice sample, retrieved under extreme conditions with temperatures reaching -35 degree Celsius, holds the potential to reveal crucial insights about a critical period in Earth’s climate history. Researchers aim to study this ice to understand significant climatic shifts and their potential links to near-extinction events in human ancestry.

Historic Ice Recovery and Its Implications

According to reports from BBC News, the ice core was obtained from a drilling site named Little Dome C, situated on the Antarctic Plateau at an elevation of nearly 3,000 meters. The project, led by the Italian Institute of Polar Sciences and supported by scientists from ten European countries, took four Antarctic summers to complete. The extracted ice contains air bubbles, volcanic ash, and other particles, providing a snapshot of atmospheric conditions from up to 1.2 million years ago.

This ice core could shed light on the Mid-Pleistocene Transition, a period 900,000 to 1.2 million years ago when the glacial cycle lengthened from 41,000 to 100,000 years. Experts are particularly interested in whether this climatic shift correlates with a dramatic population decline in human ancestors.

Scientific Process and Goals

The core was transported in freezing conditions, cut into one-meter sections, and distributed to institutions across Europe for analysis. Scientists hope to uncover patterns in greenhouse gas emissions and temperature changes from this period, which could help refine climate models for future projections. Professor Carlo Barbante, a lead researcher at Ca’ Foscari University of Venice, highlighted to BBC News, the significance of handling ancient air samples and volcanic ash embedded in the ice, emphasising its potential to expand understanding of Earth’s climatic past.

The analysis of this ice core is expected to provide pivotal data, offering scientists a clearer picture of how historical climatic changes shaped the planet and influenced early human evolution.

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NASA’s Perseverance May Have Found Its First Meteorite on Mars

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NASA’s Perseverance rover may have discovered its first meteorite on Mars, a 31-inch iron-nickel boulder named Phippsaksla found in Jezero Crater. Its pitted, coral-like texture and unusually high metal content resemble meteorites previously identified by Curiosity, Spirit, and Opportunity. Scientists are now analysing the rock’s composition in detail to determine…

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Dark Matter May Have Been Seen for the First Time in NASA Gamma-Ray Data

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A new analysis of NASA’s Fermi telescope data reveals a faint gamma-ray halo around the Milky Way’s core, matching predictions for annihilating dark-matter particles. Researchers say no known astrophysical source fits the signal, raising the possibility of the first direct evidence of dark matter. Experts, however, stress caution and call for verification in other…

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Boiling Oceans May Hide Beneath Icy Moons, New Study Suggests

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A new study suggests that icy moons such as Mimas and Enceladus may host boiling subsurface oceans triggered by thinning ice shells and falling pressure. This low-temperature boiling could still support life beneath the surface. The research also explains geological features on larger icy moons and strengthens their potential as sites for finding extraterrestrial life…

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