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Vision 2033: Linking Science and Policy for Tomorrow's World.
Factors in the decline of coastal ecosystems.
An overview of coastal environmental health indicators
ecosystem health coastal environments vigor
2016/5/19
Discussions of the coastal environment and its health can be improved by more
precise use of terms and clarification of the relationship, if any, between the health
of ecosystems and the risks to hu...
Pfiesteria and the Chesapeake Bay.
Science and integrated drainage basin-coastal management:the Chesapeake Bay and the Mississippi Delta
basin-coastal management the Mississippi Delta
2016/5/19
Science and integrated drainage basin-coastal management:the Chesapeake Bay and the Mississippi Delta.
Measuring the health of the Chesapeake Bay: toward integration and prediction
health of the Chesapeake Bay integration prediction
2016/5/19
Measuring the health of the Chesapeake Bay: toward integration and prediction.
The role of science in ocean governance.
Science and management in four U.S. coastal ecosystems dominated by land-ocean interactions
coastal ecosystems land-ocean interactions
2016/5/19
The influence of science in the recognition of the
effects of landscape changes on coastal ecosystems and in the
development of effective policy for managing and restoring
these ecosystems is exami...
Consequences of climate change on the ecogeomorphology of coastal wetlands
coastal wetlands climate change
2016/5/18
Climate impacts on coastal and estuarine systems
take many forms and are dependent on the local conditions,
including those set by humans. We use a biocomplexity
framework to provide a perspective ...
Future consequences of climate change for the Chesapeake Bay ecosystem and its fisheries
climate change Chesapeake Bay ecosystem
2016/5/18
Future consequences of climate change for the Chesapeake Bay ecosystem and its fisheries.
Climate change impacts on U.S. coastal and marine ecosystems
Climate change marine ecosystems
2016/5/18
Climate change impacts on U.S. coastal and marine ecosystems.
There is overwhelming evidence that riverine
nutrients drive both the production of
phytoplankton and the size of the hypoxic
zone on the inner shelf.
Controlling eutrophication: nitrogen and phosphorus
Controlling eutrophication nitrogen phosphorus
2016/5/18
The need to reduce anthropogenic nutrient
inputs to aquatic ecosystems in
order to protect drinking-water supplies
and to reduce eutrophication, including
the proliferation of harmful algal blooms...
Characterization and long-term trends of hypoxia in the northern Gulf of Mexico: Does the science support the action plan?
long-term trends of hypoxia the northern Gulf of Mexico
2016/5/18
We update and reevaluate the scientific information on the distribution, history, and causes of continental
shelf hypoxia that supports the 2001 Action Plan for Reducing, Mitigating, and Controlling ...
mental benefit analysis” for making decisions
on the management of contaminated sites
within the DOE nuclear weapons complex.
We are not presently in a position to offer
critique or endorsement of...