Turbulence Can Help Activate Aerosol Particles to Form Clouds
Turbulent air in the atmosphere affects how cloud droplets form. New research changes the way scientists model clouds and, therefore, climate.
Turbulent air in the atmosphere affects how cloud droplets form. New research changes the way scientists model clouds and, therefore, climate.
Microscopic features of neptunium dioxide control how contaminants dissolve in underground disposal of spent nuclear fuel.
Soil warming leads to more complex, larger, and more connected networks of microbes in those soils
Molybdenum Limits Microbes’ Ability to Remove Harmful Nitrate from Soil
Microbial cycling of phosphorus through reduction-oxidation reactions is older and more widespread than expected.
Lipids transfer energy and serve as an inter-kingdom communication tool in leaf-cutter ants’ fungal gardens.
Scientists get a molecular look at how plants and bacteria interact, with insights for agriculture.
Two important factors help determine how much sunlight soot absorbs.
A new data pipeline identifies metabolites following heavy isotope labeling.
High-yield miscanthus and switchgrass are promising alternatives to traditional annual crops for biofuels.
Research produces an improved dynamical core to model the evolution of winds, temperatures, and pressures in the atmosphere.
White-rot fungi use lignin from wood as a source of carbon.