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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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Nile River (1)
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North Africa
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Egypt
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Nile Delta (1)
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Asia
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Far East
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Indonesia
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Sumatra (1)
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Indian Ocean (1)
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United States
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Atlantic Coastal Plain (1)
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Chesapeake Bay (1)
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District of Columbia (1)
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Florida
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Broward County Florida (1)
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Everglades (1)
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Miami-Dade County Florida (1)
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Monroe County Florida (1)
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Palm Beach County Florida (1)
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Maryland (1)
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New York (1)
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Pennsylvania (1)
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Virginia (1)
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West Virginia (1)
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fossils
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Invertebrata
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Protista
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Foraminifera (1)
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microfossils (3)
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palynomorphs
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miospores
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pollen (3)
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geologic age
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Cenozoic
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Quaternary
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Holocene (4)
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Primary terms
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Africa
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Nile River (1)
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North Africa
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Egypt
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Nile Delta (1)
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-
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Asia
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Far East
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Indonesia
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Sumatra (1)
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-
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Cenozoic
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Quaternary
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Holocene (4)
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climate change (1)
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Indian Ocean (1)
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Invertebrata
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Protista
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Foraminifera (1)
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land use (1)
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paleoclimatology (2)
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paleoecology (1)
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palynomorphs
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miospores
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pollen (3)
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sea-level changes (2)
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sedimentary rocks
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clastic rocks
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sandstone (1)
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sediments (1)
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United States
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Atlantic Coastal Plain (1)
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Chesapeake Bay (1)
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District of Columbia (1)
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Florida
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Broward County Florida (1)
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Everglades (1)
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Miami-Dade County Florida (1)
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Monroe County Florida (1)
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Palm Beach County Florida (1)
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Maryland (1)
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New York (1)
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Pennsylvania (1)
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Virginia (1)
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West Virginia (1)
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sedimentary rocks
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sedimentary rocks
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clastic rocks
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sandstone (1)
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sediments
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sediments (1)
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Accommodation space, relative sea level, and the archiving of paleo-earthquakes along subduction zones
Abstract The mid-Atlantic region and Chesapeake Bay watershed have been influenced by fluctuations in climate and sea level since the Cretaceous, and human alteration of the landscape began ~12,000 years ago, with greatest impacts since colonial times. Efforts to devise sustainable management strategies that maximize ecosystem services are integrating data from a range of scientific disciplines to understand how ecosystems and habitats respond to different climatic and environmental stressors. Palynology has played an important role in improving understanding of the impact of changing climate, sea level, and land use on local and regional vegetation. Additionally, palynological analyses have provided biostratigraphic control for surficial mapping efforts and documented agricultural activities of both Native American populations and European colonists. This field trip focuses on sites where palynological analyses have supported efforts to understand the impacts of changing climate and land use on the Chesapeake Bay ecosystem.