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Resources

Resources

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

Displaying 1 - 10 of 15
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This toolkit organizes and consolidates content from a combination of literature reviews, SWMP data interpretation, and interviews and exhibit evaluations at multiple reserves into a comprehensive package of resources that is accessible to all education coordinators and exhibit designers in the Reserve System.
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This curriculum was developed as part of a 2018 Science Transfer project to share knowledge and lessons learned about managing conflict in collaborative science.

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This advisory committee charter, developed for a National Estuarine Research Reserve project to evaluate a thin-layer placement as a strategy for marsh resilience, offers an example for engaging diverse end users in collaborative research.

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This how-to guide describes how to synthesize salt marsh monitoring data from the National Estuarine Research Reserve System.

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This how-to guide describes how to integrate plant cover data from two common methods of estimating marsh plant cover.

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These coastal hazard risk communication training process agendas can be used to as a model help facilitators develop trainings for coastal decision makers in other communities.

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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.

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These coastal hazard risk communication workshop materials can be used to help facilitate trainings for coastal decision makers.

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This collection features climate resilience and adaptation work completed by project teams from 2015-2018. The collection includes a detailed management brief narrative, an infographic showing how the interconnected nature of the NERRS facilitates collective learning and accelerated action, and a webinar recording from a panel discussion on September 9, 2019.
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This guide outlines a structured process to engage experts and develop timely, science-based solutions to environmental problems. The FAST process provides an iterative, weight-of-evidence approach for these experts to reach general agreement around technical recommendations.