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Related Articles from SNS

Melting of Greenland ice sheet could release methane 'fire ice'

Seismic surveys and sediment cores suggest that dozens of deep pockmarks on the sea floor were created when Arctic methane stores were disrupted by climate change after the last glacial maximum – and scientists warn it could happen again

New Scientist 27d ago

Taimering mammoth was likely butchered by hunters and gatherers

The wooly mammoth from Taimering (Bavaria, Germany), discovered in 2020, was buried in a former Ice Age pond after its death. Pollen findings and radiocarbon dating confirm that the mammoth lived and died during the harsh conditions of the Last Glacial Maximum. Cut marks on several ribs suggest that Paleolithic humans tampered with the carcass.

Phys.org 7d ago

Study reveals north–south differences in water isotopes across North America during the last deglaciation

Study reveals north–south differences in water isotopes across North America during the last deglaciation Stephanie Baum Scientific Editor Robert Egan Associate Editor The last deglaciation (between 11,000 and 20,000 years ago) was a period of dramatic natural warming on Earth. During this time, North America experienced the most extensive ice-sheet melting on the planet, which profoundly reshaped its climate and water cycle. But when scientists look at oxygen isotopes in stalagmites—a key...

Phys.org 1d ago

Thirty years at El Mirón cave uncover 40,000 years of Iberian prehistory

Thirty years at El Mirón cave uncover 40,000 years of Iberian prehistory Lisa Lock Scientific Editor Robert Egan Associate Editor For the past three decades, a team of archaeologists have been uncovering some of the field's most recent monumental discoveries, relying on gut instinct, persistent hard work, and cutting-edge methods and technologies. The El Mirón Cave excavation project has been a long-term commitment for the lead researchers, fueled by each new discovery and a continued...

Phys.org 9d ago

Amplified Arctic iceberg traffic reshapes benthic biodiversity

Abstract The Arctic is undergoing rapid warming, resulting in retreating sea ice and glaciers1, yet how cryospheric changes propagate into the deep ocean remains poorly understood2. Here we identify a climate-driven mechanism linking accelerating glacier disintegration to an increase in deep-sea hard-bottom habitats far beyond calving fronts. Seafloor observations in Fram Strait show a localized increase in the density and patchiness of dropstones delivered by debris-laden icebergs.

Nature 18h ago