This high school STEM curriculum module, created as part of the project Bringing Wetlands to Market Phase 1: Nitrogen and Coastal Blue Carbon, examine the relationship between climate change impacts and carbon storage in New England salt marsh.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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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 case studies summarize findings from a 2012 Collaborative Research project studying climate change adaptation and risks in four New England communities.
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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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This article describes a 2013 Collaborative Research project in Exeter, NH that studied adaptive governance and climate change adaptation planning by evaluating stakeholder involvement in a local institutional setting.
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This document provides guidance to those wishing to use the Climate Change Vulnerability Assessment Tool for Coastal Habitats ("CCVATCH") - a decision support tool which guides users through a series of questions to calculate numerical climate vulnerability scores for ecological habitats.
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These case studies highlight towns in coastal New Hampshire that used low impact development and green infrastructure strategies to reduce stormwater runoff and adapt to climate change.
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This interim report summarizes a community meeting hosted by a 2013 Collaborative Research project team in Exeter, New Hampshire about how to prepare the town for a changing climate.
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This document outlines the strategy developed by a 2012 Collaborative Research project team to achieve a complete community approach for mitigating the negative effects associated with increasing impervious cover and stormwater runoff in coastal New Hampshire.