This workshop report summarizes the March 2019 scoping session for a collaborative project to assess the potential effects of storm surge barriers on the Hudson River estuary.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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This website was developed by a 2017 Science Transfer project team to provide stakeholders along the Mississippi-Alabama coast with up-to-date data on how human wastewater affects water quality and tangible recommendations for improving it.
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This website contains information and resources from a 2012 Collaborative Research project that sought to reduce the vulnerabilities of Maryland's Deal Island Peninsula area to the impacts of climate change by creating partnerships between communities, decision-makers, and scientists.
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This website contains information and resources related to a 2013 Collaborative Research project studying sediment dynamics in tidal marshes in San Francisco Bay.
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This report summarizes the findings of a 2016 Science Transfer project that assessed the vulnerabilities of intertidal marsh sites in North and South Carolina.
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This manual describes methods employed by a 2015 Collaborative Research project team to dissipate wave energy along the Atlantic Intracoastal Waterway in Ponte Vedra Beach, Florida.
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This document is a summarization of data that describe the environmental and socioeconomic conditions in Coos Bay's South Slough and Coastal Frontal watersheds in Oregon.
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These risk assessments detail how climate could change in four New England municipalities over the 21st century, outlining each town's key climate change risks and potential adaptation options to address these risks. These assessments were produced as part of a 2012 Collaborative Research project.
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These stakeholder assessments capture opinions about climate change and adaptation held by diverse stakeholders in four New England municipalities as part of a 2012 Collaborative Research project.
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Southern California ’s coastal environments are under intense development pressure. In the Tijuana River Valley, this pressure translates into the fragmentation and loss of coastal wetlands that provide invaluable services, such as water quality protection.