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Sea Level Rise

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Saltwater Intrusion and Sea Level Rise Monitoring in New Jersey

Frequently, water withdrawals for public supply are made from the freshwater reaches of rivers and streams across new Jersey. Overall, there is a lack of scientific information describing the movement of saltwater upstream into the tributaries discharging into Delaware Bay. This project is beginning to collect water quality data along three selected tributaries in New Jersey to Delaware Bay in an...
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Saltwater Intrusion and Sea Level Rise Monitoring in New Jersey

Frequently, water withdrawals for public supply are made from the freshwater reaches of rivers and streams across new Jersey. Overall, there is a lack of scientific information describing the movement of saltwater upstream into the tributaries discharging into Delaware Bay. This project is beginning to collect water quality data along three selected tributaries in New Jersey to Delaware Bay in an...
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Hurricane Sandy Science, Ten-years Later

On October 29, 2012, Hurricane Sandy made landfall in New Jersey after several days of impacting the Atlantic coastline. Ten years later the impacted communities have recovered and rebuilt, and the New Jersey Water Science Center has expanded its scientific understanding of storm impacts on our state.
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Hurricane Sandy Science, Ten-years Later

On October 29, 2012, Hurricane Sandy made landfall in New Jersey after several days of impacting the Atlantic coastline. Ten years later the impacted communities have recovered and rebuilt, and the New Jersey Water Science Center has expanded its scientific understanding of storm impacts on our state.
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New Jersey Coastal Surge, Wave, and Tide Hydrodynamics Network (SWaTH)

Following Hurricane Sandy, the USGS began construction of an overland Surge, Wave, and Tide Hydrodynamics (SWaTH) Network along the Northeastern Atlantic Coast from North Carolina to Maine. This network, developed collaboratively with numerous partners, features the integration of long-term tide gage networks, with real-time rapid-deployment gages (RDG) and mobile storm-tide sensors (STS). An...
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New Jersey Coastal Surge, Wave, and Tide Hydrodynamics Network (SWaTH)

Following Hurricane Sandy, the USGS began construction of an overland Surge, Wave, and Tide Hydrodynamics (SWaTH) Network along the Northeastern Atlantic Coast from North Carolina to Maine. This network, developed collaboratively with numerous partners, features the integration of long-term tide gage networks, with real-time rapid-deployment gages (RDG) and mobile storm-tide sensors (STS). An...
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Sandy Hook Gateway National Recreation Area Study

The Sandy Hook Unit, Gateway National Recreation Area (hereafter Sandy Hook) in New Jersey is a 10-kilometer-long spit visited by thousands of people each year who take advantage of the historical and natural resources and recreational opportunities.
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Sandy Hook Gateway National Recreation Area Study

The Sandy Hook Unit, Gateway National Recreation Area (hereafter Sandy Hook) in New Jersey is a 10-kilometer-long spit visited by thousands of people each year who take advantage of the historical and natural resources and recreational opportunities.
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The Health of Maritime Forests in Three Mid-Atlantic National Seashores

The National Resources Protection Program (NRPP) project on Fire Island, Sandy Hook, and Assateague included a description of the issues and implications; description of the methods; and summary of the tasks, including site selection, well and instrumentation installation, and monitoring groundwater levels, temperature, and specific conductance, needed to understand the impact of global climate...
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The Health of Maritime Forests in Three Mid-Atlantic National Seashores

The National Resources Protection Program (NRPP) project on Fire Island, Sandy Hook, and Assateague included a description of the issues and implications; description of the methods; and summary of the tasks, including site selection, well and instrumentation installation, and monitoring groundwater levels, temperature, and specific conductance, needed to understand the impact of global climate...
Learn More