This paper, published in Biological Conservation, describes an innovative approach developed by the NERRS to evaluate the ability of tidal marshes to thrive as sea levels rise.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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https://coast.noaa.gov/estuaries/curriculum/dont-shut-your-mouth.htmlThis lesson encourages students to make evidence-based conclusions about the impacts of development, pollution, and climate on the Los Penasquitos Lagoon in southern California.
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The Buffer Options for the Bay website integrates the key findings of Great Bay Reserve's 2015 Integrated Assessment project and is designed to help agencies, non-profits, and communities working on buffers in New Hampshire.
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These lesson plans are classroom-tested science lesson plans created for the Virginia Scientists and Educators Alliance by graduate students.
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This paper details findings presented at the U.S.-Iran Symposium on Wetlands in March 2016 about the increasing watershed influence and hypo-salinity in Los Penasquitos Lagoon.
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This art collection is the result of work by 3rd-6th graders and stemmed from a climate resilience workshop hosted by the Tijuana River and Kachemak Bay Reserves as part of a 2015 Science Transfer project
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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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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.
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This lesson plan helps teachers and students understand the concept of blue carbon and the impacts of sea level rise on salt marshes.
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This journal article was published in Estuaries and Coasts in 2016, and decribes a study of how seasonal changes in temperature and salinity impact larval Olympia oyster recruitment across a range of sites and time intervals.