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Resources

Resources

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

Displaying 31 - 40 of 41
Tool |

This document provides guidance on the use of thin-layer sediment placement (TLP) as a tool for tidal marsh resilience in the face of sea-level rise.

Factsheet |

This summary brochure describes thin-layer placement (TLP) as a strategy for marsh resilience, and National Estuarine Research Reserve System research and recommendations for TLP use.

Multimedia |

This webinar was originally presented on February 20, 2020 as part of the Restoration Webinar Series, hosted by the National Oceanic and Atmospheric Administration and U.S. Fish & Wildlife Service's National Conservation Training Center. Presenters: Kerstin Wasson, Beth Watson, and Kenny Raposa

Thesis or Dissertation |

This thesis represents the first study to examine a full individual energy budget for the triploid Eastern oyster, Crassostrea virginica, with implications for shellfish aquaculture in the southeastern United States.

K-12 |

This document contains three lesson plans developed as part of a 2016 Collaborative Research project. The lesson plans help students explore the causes and impacts of stormwater discharges.

Report |

This report summarizes the findings of a 2016 Science Transfer project that assessed the vulnerabilities of intertidal marsh sites in North and South Carolina.

Report |

This guide, developed as part of a 2013 Collaborative Research project, includes simple projects that homeowners can undertake to reduce pollution from their yards.

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.