In honor of National Estuaries Week, the University of Michigan Water Center is pr
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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The National Estuarine Research Reserve System (NERRS) Science Collaborative is pleased to announce the results of the 2016 competition for research and integrated assessment proj
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NOAA ’s National Estuarine Research Reserve System Science Collaborative, managed by the University of Michigan Water Center, is pleased to announce the outcome of this year ’s competition
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This document helps guide coastal and land managers in understanding the ways by which coastal blue carbon can help achieve coastal management goals.
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This Plan is intended to serve as a guide for the towns of Exeter, Stratham and Newfields to support nitrogen load reduction, permit compliance, and ultimately ecosystem recovery in the Great Bay estuary which could fulfill permit requirements for a Nitrogen Control Plan.
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This document outlines procedures to use the Methodology for Tidal Wetland and Seagrass Restoration, approved by the Verified Carbon Standard, to estimate net greenhouse gas emission reductions and removals resulting from restoration of coastal wetlands.
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In October 2014, the Water Center began working with the National Oceanic and Atmospheric Administration (NOAA) and partners to coordinate the National Estuarine Research Reserve System (NERRS) Science Collaborative.
The University of Michigan (U-M) Water Center is pleased to announce the outcome of this year ’s competition for research and integrated assessment projects under NOAA ’s National Estuarine Research Reserve System (NERRS) Science Collaborative.
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The University of Michigan Water Center is pleased to announce the outcome of this year ’s competition for science transfer projects under NOAA ’s National Estuarine Research Reserve System (NERRS) Science Collaborative.
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As part of the 2010 Hudson River Sustainable Shorelines project, the project team conducted this forensic analysis of six sites on the Hudson River to study how each site responded to severe storms.