Geology Essays (Examples)

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A Focus On Florida Coast Geography Of Soils And Vegetation In Coastal

Pages: 11 (3221 words) Sources: 8 Document Type:Essay Document #:72447094

...Geology Geography of Soils and Vegetation in Coastal Environments; focus on Florida Coast
Introduction
A significant relationship exists between vegetation and soil: soil supports sufficient vegetation growth by providing the latter with moisture, anchorage, and essential nutrients; meanwhile, vegetation serves as a protective covering for soil, safeguarding it against erosion and also facilitating the maintenance of soil nutrition levels using nutrient cycling (i.e., accumulation of litter and its subsequent decay). Thus, soil and vegetation may be said to be reciprocally interrelated. Vegetation is responsible for supporting essential ecosystem functions at multiple spatial scales.
Furthermore, it strongly influences soil quality and attributes such as texture, volume, and chemistry that, in turn, and reciprocally impact several characteristics of vegetation, like floristic composition, productivity, and structure (Eni et al., 1). In this paper, coastal area vegetation and soil geography will be analyzed. But as considerable variation exists between different coastal areas (e.g., the coast……

References

Works cited

Araujo, D. S. D., and M. C. A. Pereira. " INTERNATIONAL COMMISSION ON TROPICAL BIOLOGY AND NATURAL RESOURCES - Sandy coastal vegetation." Encyclopedia of Life Support Systems (EOLSS), (2012).

Armentano, Thomas V., et al. "Vegetation pattern and process in tree islands of the southern Everglades and adjacent areas." Tree islands of the Everglades. Springer, Dordrecht, 2002. 225-281.

Bakker, Jan P., et al. "Environmental impacts—coastal ecosystems." North Sea region climate change assessment. Springer, Cham, 2016. 275-314.

Benedet, L., C. W. Finkl, and A. H. F. Klein. "Morphodynamic classification of beaches on the Atlantic coast of Florida: geographical variability of beach types, beach safety, and coastal hazards." Journal of Coastal Research (2006): 360-365.

Bini, C., et al. "Soils and vegetation of coastal and wetland areas in Northern Adriatic (NE Italy)." 7. International Meeting on Soils with Mediterranean Type of Climate, Valenzano (Italy), 23-28 Sep 2001. CIHEAM-IAMB, 2002.

Eni, D. D., A. I. Iwara, and R. A. Offiong. "Analysis of soil-vegetation interrelationships in a south-southern secondary forest of Nigeria." International Journal of Forestry Research 2012 (2012).

Psuty, Norbert P., Philip E. Steinberg, and Dawn J. Wright. "Coastal and marine geography." Geography in America at the Dawn of the 21st Century (2004): 314-25.

Wright, Lynn D., and Andrew D. Short. "Morphodynamic variability of surf zones and beaches: a synthesis." Marine Geology 56.1-4 (1984): 93-118

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Baseline Tectonics Of The Arabian Plate

Pages: 6 (1813 words) Sources: 6 Document Type:Term Paper Document #:38137867

...Geology Pan-African Cratonization (about 800 to 680 Ma)
Nehlig et al. (2002) conducted a study to review the Pan-African evolution of the Arabian Shield on the premise that new perspectives on the geologic history and structural evolution on the Arabian Shield had emerged. These new perspectives were brought by the extensive fieldwork as well as synthesis and review of structural, aeromagnetic, geochemical, geologic, and geochronological data. The geologic evolution of the Arabian Shield took place between 900 to 550 Ma. This period was also characterized by the “formation, amalgamation, and final Pan-African cratonization of several tectonostratigraphic terranes” (Nehlig et al., 2002, p.103). These terranes were separated by key NW-trending faults and various oriented suture zones covered by ophiolites i.e. serpentinized ultramafic rocks.
Pan-African cratonization between 800 and 680 Ma incorporated the final cratonization of the terranes. The final cratonization of the terranes, which took place between 680 and 610 Ma, generated……

References

Reference

Caby, R. (2003, May 27). Terrane Assembly and Geodynamic Evolution of Central-Western Hoggar: A Synthesis. Journal of African Earth Sciences, 37, 133-159.

Kroner, A., Roobol, M.J., Ramsay, C.R. & Jackson, N.J. (2013, February 28). Pan African Ages of Some Gneissic Rocks in the Saudi Arabian Shield. Journal of the Geological Society, London, 136, 455-461.

Black, R. & Liegeois, J.P. (1993). Cratons, Mobile Belts, Alkaline Rocks and Continential Lithospheric Mantle: The Pan-African Testimony. Journal of the Geological Society, London, 150, 89-98.

Heikal et al. (2013, May). Lithostratigraphy, Deformation History, and Tectonic Evolution of the Basement Rocks, Republic of Yemen: An Overview. Arabian Journal of Geosciences, 7(5), 1-12.

Kroner, A. (2000). Pan African Plate Tectonics and It’s Repercussions on the Crust of Northeast Africa. Geologische Rundschau, 68(2), 565-583.

Nehlig et al. (2002). A Review of the Pan-African Evolution of the Arabian Shield. GeoArabia, 7(1), 103-124.

 

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