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“Warm Ice Age” changed climate cycles

Researchers from Heidelberg University identified a pivotal step in the Earth's later climate development, finding that a warm ice age around 700,000 years ago led to changes in global climate rhythms. This 'warm ice age' caused accumulation of excess continental ice, resulting in prolonged and far-reaching glaciation.

SourceHeidelberg University·JournalNature Communications·TypeComputational simulation/modeling·DateMay 16, 2023

Nature favors creatures in largest and smallest sizes

A study by McGill University and University of British Columbia found that the planet's biomass is concentrated in organisms at either end of the size spectrum. The researchers discovered a universal upper limit for maximum body size across multiple species and environments, with similar sizes reached by trees, fish, and other organisms.

SourceMcGill University·JournalPLOS ONE·TypeData/statistical analysis·DateMay 10, 2023

6% of nations provide for citizens in just, sustainable manner

Researchers at Ohio State University found that only 6% of countries provide for all citizens in an ecologically sustainable way. The study measured the ecological and social impact of water and carbon use, finding that while 67% operate safely and sustainably in water use, only 9% do in carbon sequestration. The US is among the majori...

SourceOhio State University·JournalOne Earth·TypeMeta-analysis·DateApr 28, 2023

Scientists detect seismic waves traveling through Martian core for the first time

Researchers used NASA InSight data to directly measure Mars' core properties, finding a completely liquid iron-alloy core with high percentages of sulfur and oxygen. This discovery provides new insights into Martian formation and geological differences between Earth and Mars, potentially impacting planetary habitability.

SourceUniversity of Maryland·JournalProceedings of the National Academy of Sciences·TypeData/statistical analysis·DateApr 24, 2023

Metal-poor stars are more life-friendly

Researchers found that metal-poor stars, with fewer heavy elements, emit less intense ultraviolet radiation into space. This allows their planets to form a protective ozone layer, making conditions more life-friendly. The study suggests that as the universe ages, it becomes increasingly unfavourable for complex life on new planets.

SourceMax-Planck-Gesellschaft·JournalNature Communications·TypeComputational simulation/modeling·DateApr 18, 2023

How did the Andes Mountains get so huge? A new geological research method may hold the answer

Researchers used a novel method to study tectonic plate movement, finding two significant slowdowns in the South American plate over the past 15 million years. These events may have contributed to the widening of the Andes mountain range by causing unstable material to tear free and sink into the mantle.

SourceUniversity of Copenhagen - Faculty of Science·JournalEarth and Planetary Science Letters·DateApr 13, 2023

How did Earth get its water?

Researchers propose that early interactions between the magma ocean and a molecular hydrogen proto-atmosphere could have given rise to Earth's signature features, including its abundant water. The study suggests that even dry rocky material collisions would generate large quantities of water through these atmospheric-magma interactions.

SourceCarnegie Institution for Science·JournalNature·TypeComputational simulation/modeling·DateApr 12, 2023

Harnessing nature to promote planetary sustainability

The latest issue of PLOS Biology features a special collection on biology-based solutions to reduce plastic pollution, carbon dioxide emissions, and produce food or energy more sustainably. Insect enzymes may degrade plastic waste, while photosynthetic algae can capture CO2 produced by industrial applications.

SourcePLOS·JournalPLOS Biology·TypeCommentary/editorial·DateMar 31, 2023

Earth’s anisotropic inner core structure driven by dipole geomagnetic field: Study

A recent study published in Nature Communications reveals that Earth's anisotropic inner core structure is driven by the dipole geomagnetic field. The researchers found that hexagonal-close-packed (hcp) Fe-H alloy exhibited both seismic anisotropy and H-ion diffusion anisotropy under high pressure-temperature conditions.

SourceChinese Academy of Sciences Headquarters·JournalNature Communications·DateMar 30, 2023

Scientists share ‘comprehensive’ map of volcanoes on Venus — all 85,000 of them

Researchers Paul Byrne and Rebecca Hahn have compiled a global catalog of 85,000 volcanoes on Venus, providing the most comprehensive understanding of the planet's volcanic properties. The dataset includes detailed analyses of volcano distribution, size, and clustering, which will aid in locating future active lava flows.

SourceWashington University in St. Louis·JournalJournal of Geophysical Research Planets·TypeImaging analysis·DateMar 29, 2023

Global population could peak below 9 billion in 2050s

Researchers from the Earth4All initiative project that global population could peak at 8.5 billion people by mid-century with unprecedented investment in poverty alleviation. The team's analysis also suggests that extreme poverty can be eliminated in a generation, leading to a decline in global population trends.

SourceThe Club of Rome·TypeComputational simulation/modeling·DateMar 27, 2023

The planet that could end life on Earth

A recent experiment by UC Riverside astrophysicist Stephen Kane demonstrates that a terrestrial planet in this location would have disastrous effects on the solar system. The simulation found that such a planet could destabilize Earth's orbit, making it far less habitable and potentially ejecting Mercury and Venus from the solar system.

SourceUniversity of California - Riverside·JournalThe Planetary Science Journal·TypeComputational simulation/modeling·DateMar 7, 2023

Geosciences at the Crossroads of America

The 57th annual meeting of the Geological Society of America's South-Central Section will take place in Oklahoma, USA, from March 13-14. The event features a diverse program covering various geologic disciplines and includes environmental-related sessions on topics such as hydrogeology and unconventional resources.

New insights from an ancient asteroid

Researchers at Tohoku University analyzed samples from Japan's Hayabusa2 spacecraft and identified what they believe may be the oldest solids from the solar system. The grains were likely transported outward from the inner regions of the early solar system to their current location in the outer reaches.

SourceTohoku University·JournalNature Communications·DateFeb 28, 2023

Early Cretaceous shift in the global carbon cycle affected both land and sea

A recent geological study has confirmed that major changes in the global carbon cycle occurred on land during the early Cretaceous Period, matching those recorded in marine sedimentary rocks. The research, led by Matt Joeckel of the University of Nebraska-Lincoln, used chemical and radioactivity-based analyses to find evidence of two d...

SourceUniversity of Nebraska-Lincoln·JournalGeosciences·TypeObservational study·DateFeb 22, 2023

Better tools needed to determine ancient life on Mars

Researchers found microorganisms in Martian rocks that are difficult to detect with current instrumentation. The team suggests more powerful tools or bringing samples to Earth to conclusively address whether life existed on Mars. A European Mars rover expected to launch in 2028 will carry a drill capable of analyzing sediments deeper, ...

SourceCornell University·JournalNature Communications·DateFeb 21, 2023

Study finds watching TV is good for the planet

A new study by Oxford University Press USA found that watching nature documentaries, such as BBC's Green Planet, increases public awareness of plants and their importance. The researchers measured online behavior and found a significant effect on viewers' interest in portrayed plant species.

SourceOxford University Press USA·JournalAnnals of Botany·TypeContent analysis·DateFeb 16, 2023

New models shed light on life’s origin

Researchers studied lithospheric fluids billions of years ago to infer the presence of metals that could have supported life. Manganese was found to be a likely candidate, while copper was not detected in high concentrations. The study provides new insights into the origin of life and will inform future experiments.

SourceUniversity of Rochester·JournalScience·DateFeb 10, 2023

Fossil discovery reveals complex ecosystems existed on Earth much earlier than previously thought

A 250.8 million-year-old fossil find reveals complex marine ecosystems on Earth just one million years after the Permian-Triassic mass extinction, contradicting long-held theories. The discovery provides insights into life's rapid recovery from extreme crises and necessitates a re-evaluation of early Triassic ocean conditions.

SourceMcGill University·JournalScience·TypeObservational study·DateFeb 9, 2023