Ancient atmospheric oxygen sleuthing with ocean chromium
Findings show how the trace metal is chemically altered in the anoxic, modern ocean and provide the basis for investigating paleorecords of atmosphere composition shifts.
Findings show how the trace metal is chemically altered in the anoxic, modern ocean and provide the basis for investigating paleorecords of atmosphere composition shifts.
Maike Sonnewald adapts a method that identifies areas of the global ocean with similar physics, revealing global dynamical regimes.
As machine learning expands into climate modeling, EAPS Associate Professor Paul O’Gorman answers what that looks like and why it's important now.
New EAPS thesis field is the most recent to join the computational science and engineering doctoral program within the Center for Computational Engineering.
Visiting Assistant Professor Maryam Rashed Alshehhi models a region with freshwater shortages, oil spills, and frequent dust storms.
Carl Wunsch continues to expand his foundational framework for understanding the behavior of worldwide oceans as a whole.
Interactions among microorganisms account for nitrite accumulation just below the sunlit zone, with implications for oceanic carbon and nitrogen cycling.
Researchers celebrate women in environmental sciences and engineering at the MIT Museum’s Girls Day.
MIT Professor Kerry Emanuel explains the science behind climate change, as well as the associated risks and how to quantify them.
Research reveals the upwelling pathways and timescales of deep, overturning waters in the Southern Ocean.
By 2100, oceans may hold enough carbon to launch mass extermination of species in future millennia.
Study finds ocean circulation, coupled with trade wind changes, efficiently limits shifting of tropical rainfall patterns.
Richard Alley delivers 2016 Carlson Lecture on the physics of glaciers and how ice sheets capture a history of the world’s climate.
Awards to recent alumni honor the memory of Carl-Gustaf Rossby, a pioneer in earth and atmospheric sciences.