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Western Canada
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carbon
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Tertiary
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Ellensburg Formation (1)
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middle Miocene (3)
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upper Miocene (1)
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Pliocene
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lower Pliocene (1)
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Ringold Formation (1)
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Paleogene
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lower Paleocene (1)
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Chordata
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Vertebrata
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Mesozoic
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Middle Cretaceous (2)
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Permian
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palynomorphs
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Coniferales
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sedimentary rocks
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coal
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bituminous coal (1)
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sedimentary structures
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sedimentary structures
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sediments
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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Taxodium distichum
Figure 2. Daily pattern of CO 2 exchange for Taxodium distichum grown a...
Tectonic Signal in Baldcypress Trees at Reelfoot Lake, Tennessee
Monoporate Grains 57–58 Spartina alterniflora (Poaceae) 59–60 Zizaniopsis...
Figure 1. Temperature trace for high- and low-CO 2 –grown branchlet of Tax...
Comparison of growth-ring parameters of Agathoxylon argentinum n. sp. wit...
High CO 2 increases the freezing sensitivity of plants: Implications for paleoclimatic reconstructions from fossil floras
A LATE CRETACEOUS CONIFEROUS WOODLAND FROM THE SAN JUAN BASIN, NEW MEXICO
Contrasting seasonal patterns of carbon gain in evergreen and deciduous trees of ancient polar forests
Global climate analysis of growth rings in woods, and its implications for deep-time paleoclimate studies
COASTAL DYNAMICS AND CULTURAL OCCUPATIONS ON CHOCTAWHATCHEE BAY, FLORIDA, U.S.A.
Middle Miocene palynoflora from the Adamów lignite deposit, central Poland
Ecological polarities of mid-Cenozoic fossil plants and animals from central Oregon
MUDFLOW DISTURBANCE IN LATEST MIOCENE FORESTS IN LEWIS COUNTY, WASHINGTON
Paleobotanical evidence for the post-Miocene uplift of the Cascade Range
Role of Charcoal Analysis for Interpreting Vegetation Change and Paleoclimate in the Miocene Rhine Embayment (Germany)
THE SIGNIFICANCE OF PEATLAND AGGRADATION IN MODERN AND ANCIENT ENVIRONMENTS
Biodiversity and terrestrial ecology of a mid-Cretaceous, high-latitude floodplain, Alexander Island, Antarctica
Palynology and paleoecology of the Middle Miocene Alum Bluff flora, Liberty County, Florida, USA
Application of Magnetic Susceptibility for Wetlands Delineation
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.