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Research finds spike in dust storms in American Southwest driven by ocean changes

More dust storms may be contributing to dramatic rise in Valley fever in the Southwest

People living in the American Southwest have experienced a dramatic increase in windblown dust storms in the last two decades, likely driven by large-scale changes in sea surface temperature in the Pacific Ocean drying the region’s soil, according to new NOAA-led research.

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Dungeness crab larvae already showing effects of coastal acidification

Dungeness crab larvae already showing effects of coastal acidification Read more

Analysis of larval crab sampled from coastal waters identified examples of damage to the outer shell of numerous larval Dungeness crabs, as well as the loss of hair-like sensory structures crabs use to orient themselves to their surroundings. 

NOAA launches major field campaign to improve weather and climate prediction

NOAA launches major field campaign to improve weather and climate prediction Read more

Picture a calm, sunny day at a tropical beach. You look out at the ocean and in the distance a flotilla of small white clouds sails close to the waves. It’s ideal weather and typical of many days in the tropical Atlantic. However, scientists don’t fully understand how these ubiquitous clouds (a type of “shallow convective cloud”) form and impact the ocean, and it represents one of the largest uncertainties in predicting climate change.

NOAA researchers are working to make traveling in winter weather safer

Wave gliders, ocean drifters and drones to help international researchers solve key climate question

Wave gliders, ocean drifters and drones to help international researchers solve key climate question Read more

American and European scientists are deploying dozens of autonomous and remotely-piloted instrument platforms to capture simultaneous observations of the lower atmosphere and the upper ocean offshore of Barbados with unprecedented detail.

Tiny shells reveal waters off California are acidifying twice as fast as the global ocean

Tiny shells reveal waters off California are acidifying twice as fast as the global ocean Read more

In first-of-its-kind research, NOAA scientists and academic partners used 100 years of microscopic shells to show that the coastal waters off California are acidifying twice as fast as the global ocean average — with the seafood supply in the crosshairs.

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Oceanic and Atmospheric Research (OAR) - or "NOAA Research" - provides the research foundation for understanding the complex systems that support our planet. Working in partnership with other organizational units of the NOAA, a bureau of the Department of Commerce, NOAA Research enables better forecasts, earlier warnings for natural disasters, and a greater understanding of the Earth. Our role is to provide unbiased science to better manage the environment, nationally, and globally.

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