This project overview describes a 2015 Science Transfer project that produced tools, graphical support, and training for research staff at the Mid-Atlantic reserves to better utilize reserve monitoring data.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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This project overview describes a 2017 Collaborative Research project that tested the effectiveness of thin-layer sediment placement as a marsh adaptation strategy.
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These slides summarize a webinar given by Thomas Grothues of the Jacques Cousteau Reserve on September 19, 2018 about methods for analyzing trends in SWMP temperature with missing data.
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Eleven projects have been recommended for funding by the National Oceanic and Atmospheric Administration ’s National Estuarine Research Reserve System (NERRS) Science Collaborative.
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These slides summarize a webinar given by Susi Moser on January 10, 2018 on the Successful Adaptation Indicators and Metrics project, which focuses on measuring the success of climate adaptation.
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This 2017 article appeared in the journal Ecology, and presents findings from a study assessing the individual and synergistic effects of air temperature and salinity on Olympia oyster mortality across temporal patterns that accurately reflect the natural environment.
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Over $2.6 million will be awarded to six projects by the National Oceanic and Atmospheric Administration ’s National Estuarine Research Reserve System Science Collaborative that engage research efforts on 12 reserves across the nation.
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Nearly $400,000 will be awarded by NOAA ’s National Estuarine Research Reserve System Science Collaborative, managed by University of Michigan Water Center, to four projects involving 15 reserve sites across the nation.
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NOAA ’s National Estuarine Research Reserve System Science Collaborative, managed by University of Michigan Water Center, is pleased to announce the outcome of the 2017 Science Transfer competition.
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This 2016 journal article was published in Proceedings of the Royal Society B. The study highlights how extreme precipitation events in 2011 may have contributed to near 100% mass mortality of wild oysters in northern San Francisco Bay.