By combining computer tomography—the same technology used for medical scans—with a high-powered particle accelerator, ...
Better tracking of these reactive compounds is essential for understanding how the atmosphere and terrestrial biosphere ...
Warming surface waters and increased stratification result in uneven loss of dissolved oxygen across the Pacific basin that ...
In Alaska’s boreal forests, a negative feedback loop between wildfires and vegetation plays an important role in governing ...
NASA’s MERRA-2 reanalysis of past weather and climate reveals substantial shifts in extreme heat seasonality over the past 45 years.
New research shows that peptides can fold into “omega loops” linked to biological functions, even in highly acidic environments.
Two basic atmospheric factors can explain the weak and, at times, contrasting trends in global wind energy dissipation under climate change.
New evidence from the depths of the Red Sea supports the oxidation of manganese and iron as an engine for life in the earliest oceans.
Low-frequency infragravity waves shape shorelines, but exactly how they contribute is mysterious. A technique from Bayesian probability theory might change that.
Cold air outbreaks and warm air intrusions link Arctic and midlatitude weather and climate. But a lack of data on these ...
Trees release invisible gases that can create clouds, trap heat, and worsen pollution. Scientists are busy trying to unravel forests’ complex atmospheric contributions in a changing climate.
The cephalopods had already significantly dispersed throughout the world’s oceans 67 million years ago, paving the way for their modern-day ubiquity.
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