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Resources

Resources

A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.

Displaying 41 - 50 of 56
Project Overview |

This project overview describes a 2011 Collaborative Research project the developed science-based, stakeholder-informed recommendations for freshwater management along Texas' central coast.

Project Overview |

This project overview describes a 2013 Collaborative Research project that refined and piloted the Climate Change Vulnerability Assessment Tool for Coastal Habitats ("CCVATCH").

Project Overview |

This project overview describes a 2012 Collaborative Research project that established the Partnership for Coastal Watersheds, a group of local stakeholders that represents diverse interests in Oregon's Coos Bay.

Website |

This website, created as part of a 2017 Collaborative Research project, describes a pilot program led by the University of New Hampshire and the NERRS to develop eDNA sample collection and analysis protocols.

Report |

This document summarizes a tool developed by the NERRS to evaluate and compare the ability of tidal marshes to thrive as sea level rises.

Journal Article |

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.

Tool |

This tool is a novel approach to compare the resilience of different marshes to sea level rise.

Project Overview |

This project overview describes a 2016 Science Transfer project that provided outreach to communicate blue carbon concepts to end users on the Gulf Coast.

Project Overview |

This project overview describes a 2016 Integrated Assessment project that is looking at how to create a modernized land use plan for Oregon's Coos Bay Estuary that balances responsible economic development, social interests, and protection of natural resources.

Project Overview |

This project overview describes a 2016 Collaborative Research project that filled information gaps and modeled estuarine circulation and sediment distribution in Oregon's Coos estuary.