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Статті в журналах з теми "Georgina Basin"

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Lodwick, W. R., and J. F. Lindsay. "SOUTHERN GEORGINA BASIN: A NEW PERSPECTIVE." APPEA Journal 30, no. 1 (1990): 137. http://dx.doi.org/10.1071/aj89008.

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The Georgina Basin formed as a shallow intracratonic depression on the Australian craton along with a number of other basins in the Proterozoic and early Palaeozoic, probably in response to the break up of the Proterozoic supercontinent. Since all of these basins evolved under similar tectonic and sea-level controls, the basins all have similar sediment successions and, it might thus be assumed, similar petroleum prospectivity. One basin, the Amadeus Basin, currently has petroleum production, suggesting a potential for exploration success in the other intracratonic basins.In the Amadeus Basin the main petroleum prospects lie within or adjacent to major sub-basins that formed along the Basin's northern margin. The Georgina Basin has sub-basins that formed along its southern margin, almost as a mirror image of the Amadeus Basin. The lower Palaeozoic section of the Toko Syncline in the southern Georgina Basin has hydrocarbon shows in Middle Cambrian to Middle Ordovician rocks. Source rocks appear to have developed within the transgressive systems tract and the condensed interval of the highstand systems tract, at times when the basin was starved for clastic sediments and carbonate production was restricted.Seismic data acquired in the 1988 survey are of a higher quality than that previously obtained in the area. Its interpretation portrays the westward thrusting French Fault at the eastern edge of the Toko Syncline with potential hangingwall and footwall traps. Cambro- Ordovician Georgina Basin sediments subcrop the overlying Eromanga Basin with angularity, providing potentially large stratigraphic traps. Fracturing of the Cambrian and Ordovician carbonates within fault zones, and solution porosity at the unconformity, would also enhance reservoir potential in the area. Perhaps most significantly, the new data also shows an earlier, apparently independent basin completely buried beneath the Georgina section. The concealed section may simply be a very thick, early Upper Proterozoic section, or perhaps an equivalent to, or a lateral extension of the McArthur Basin. Recent work in the McArthur Basin has shown considerable source potential in the McArthur and Roper Groups, which may support the possibility of an additional, as yet unrecognised, source beneath the Georgina Basin.
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Won, Mun-Zu, and Raimond Below. "Cambrian Radiolaria from the Georgina Basin, Queensland, Australia." Micropaleontology 45, no. 4 (1999): 325. http://dx.doi.org/10.2307/1486119.

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Kruse, Peter D. "Cambrian fauna of the Top Springs Limestone, Georgina Basin." Beagle : Records of the Museums and Art Galleries of the Northern Territory 8, no. 1 (September 1991): 169–88. http://dx.doi.org/10.5962/p.262819.

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Smith, Tegan, Andrew P. Kelman, Robert Nicoll, Dianne Edwards, Lisa Hall, John Laurie, and Lidena Carr. "An updated stratigraphic framework for the Georgina Basin, NT and Queensland." APPEA Journal 53, no. 2 (2013): 487. http://dx.doi.org/10.1071/aj12098.

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The Georgina Basin is a Neoproterozoic to Lower Devonian sedimentary basin covering 325,000 km2 of western Queensland and the NT. It is a northwest-southeast-trending extensional basin, with prospective conventional and unconventional hydrocarbon targets in Cambrian and Ordovician carbonate and siliciclastic rock units. The unconventional gas and oil potential of the basin has led to recent exploration interest, although the basin has been relatively less explored in the past. At the southern end of the basin, depocentres contain up to 2.2 km of Cambrian to Devonian sedimentary rocks, overlying Neoproterozoic sedimentary rocks more than 1.5 km thick. The basin succession thins toward the north, where Cambrian sediments overlie the McArthur Basin sediments in the Beetaloo Sub-basin. Biostratigraphic interpretations of the prospective southern, central and eastern regions of the basin have been revised to reflect the 2012 Geological Time Scale (Gradstein, Ogg, Schmitz, and Ogg, 2012), resulting in an updated chronostratigraphic framework for the basin. The revised biostratigraphic interpretations have implications for important hydrocarbon source rocks. For example, the limestone unit in the southern parts of the basin, generally regarded as the Thorntonia Limestone, is of a different age to the type section for this unit, located in the Undilla Sub-basin. Additionally, the basal hot shale of the Arthur Creek Formation is diachronous across the Dulcie and Toko synclines, which may have ramifications for hydrocarbon exploration. This revised chronostratigraphic framework (by Geoscience Australia) for the Georgina Basin provides a baseline for the first basin-wide assessment of the unconventional hydrocarbon potential of the basin.
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Edwards, Sally, and Behnam Talebi. "New deep crustal seismic data acquisition program for NWQ's frontier petroleum basins." APPEA Journal 59, no. 2 (2019): 869. http://dx.doi.org/10.1071/aj18084.

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The Georgina and South Nicholson basins and the Isa Superbasin of North West Queensland (NWQ), represent frontier basins earmarked for examination of resource potential under the Strategic Resources Exploration Program. Little exploration has occurred for petroleum resources in these basins although a proven petroleum system exists in both the Isa Superbasin and the Georgina Basin with demonstrated flow at sub-commercial rates. To increase knowledge of the petroleum system, define the extent of the South Nicholson Basin and examine basin architecture, Geoscience Australia acquired deep (to 20-s listening time) seismic data across the South Nicholson Basin and northern Isa Superbasin area in 2017. However, this survey focused on broader structural architecture definition across the Proterozoic Isa Superbasin and South Nicholson and McArthur basins. Little is understood of the petroleum system in the southern Isa Superbasin, or even if this structure is part of the Isa Superbasin, where Proterozoic gas is inferred from mineral boreholes and oil stained Cambrian-aged carbonates exist. To increase understanding of this southern region, the Queensland Government acquired a new NWQ SEEBASE® (depth to basement) model in 2018, and will be undertaking a 2D deep seismic survey within the Camooweal region to better understand the structural architecture, sediment thicknesses and seismic characteristic of packages of this southern area. The seismic survey is centred on the Georgina Basin and will tie into the South Nicholson survey – extending knowledge further south across major structures featured in the SEEBASE® model.
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Draper, J. "GEORGINA BASIN—AN EARLY PALAEOZOIC CARBONATE PETROLEUM SYSTEM IN QUEENSLAND." APPEA Journal 47, no. 1 (2007): 107. http://dx.doi.org/10.1071/aj06006.

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Queensland contains a number of carbonate-bearing basins which are under-explored for petroleum, but contain the elements of potentially economic petroleum systems. The oldest such basin is the Neoproterozoic to Ordovician Georgina Basin which straddles the Queensland-Northern Territory border and is traversed by the Ballera to Mount Isa gas pipeline.The basin developed across several major crustal blocks resulting in regional variations in deposition and deformation. Thick Neoproterozoic rocks of the Centralian Superbasin form the base of the sequence in apparently fault-bounded, extensional sub-basins. These rocks are generally tight and source rocks are unknown. The Cambrian to Ordovician rocks have the best petroleum potential with the most prospective part of the basin being the Toko Syncline. The Burke River Structural Belt is less prospective, but is worthy of further exploration. Basin fill consists of Cambrian and Early Ordovician rocks which are dominantly carbonates, with both limestones and dolostones present. In the Early to Middle Ordovician, the rocks became predominantly siliciclastic.The main phase of deformation affecting the Georgina Basin occurred in the Devonian as part of the Alice Springs Orogeny. The Toomba Fault, which forms the western boundary of the asymmetric Toko Syncline, is a thrust fault with up to 6.5 km of uplift. The angle of thrusting is between less than 40 degrees and up to 70 degrees. Rich, marine source rocks of Middle Cambrian age in the Toko Syncline are mature for oil except in the deepest part of the syncline where they are mature for dry gas. The deeper part of the Toko Syncline may be gas saturated.Potential hydrocarbon targets include large folds associated with fault rollovers, stratigraphic traps and faultbounded traps. Vugular, secondary porosity in dolostones offers the best chance for commercial reservoirs within the Ninmaroo and Kelly Creek formations and Thorntonia Limestone. There are also oolitic carbonates which may have good primary porosity, as well as interbedded sandstones in the carbonates with preserved porosity. Structurally controlled hydrothermal dolomite facies represent potential reservoirs. The dominantly siliciclastic Ordovician sequence is water flushed. Fracture porosity is another possibility (cf. the Palm Valley gas field in the Amadeus Basin). As the deeper part of the Toko Syncline appears to be gas saturated, there may be potential for basin-centred gas. Fine-grained carbonates and shales provide excellent seals. There has not been a valid structural test; although AOD Ethabuka–1 flowed 7,000 m3/d of dry gas, the well was abandoned short of the target depth.
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Ambrose, G. J., P. D. Kruse, and P. E. Putnam. "GEOLOGY AND HYDROCARBON POTENTIAL OF THE SOUTHERN GEORGINA BASIN, AUSTRALIA." APPEA Journal 41, no. 1 (2001): 139. http://dx.doi.org/10.1071/aj00007.

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The Georgina Basin is an intracratonic basin on the central-northern Australian craton. Its southern portion includes a highly prospective Middle Cambrian petroleum system which remains largely unexplored. A plethora of stratigraphic names plagued previous exploration but the lithostratigraphy has now been rationalised using previously unpublished electric-log correlations and seismic and core data.Neoproterozoic and Lower Palaeozoic sedimentary rocks of the southern portion of the basin cover an area of 100,000 km2 and thicken into two main depocentres, the Toko and Dulcie Synclines. In and between these depocentres, a Middle Cambrian carbonate succession comprising Thorntonia Limestone and Arthur Creek Formation provides a prospective reservoir-source/seal couplet extending over 80,000 km2. The lower Arthur Creek Formation includes world class microbial source rocks recording total organic carbon (TOC) values of up to 16% and hydrocarbon yields up to 50 kg/tonne. This blanket source/seal unconformably overlies sheetlike, platform dolostone of the Thorntonia Limestone which provides the prime target reservoir. Intra- Arthur Creek high-permeability grainstone shoals are important secondary targets.In the Toko Syncline, Middle Cambrian source rocks entered the oil window during the Ordovician, corresponding to major sediment loading at this time. The gas window was reached prior to structuring associated with the Middle Devonian-Early Carboniferous Alice Springs Orogeny, and source rocks today lie in the dry gas window. In contrast, high-temperature basement granites have resulted in overmaturity of the Arthur Creek Formation in the Dulcie Syncline area. On platform areas adjacent to both these depocentres source rocks reached peak oil generation shortly after the Alice Springs Orogeny; numerous structural leads have been identified in these areas. In addition, an important stratigraphic play occurs in the Late Cambrian Arrinthrunga Formation (Hagen Member) on the southwestern margin of the basin. Key elements of the play are the pinchout of porous oil-stained, vuggy dolostone onto basement where top seal is provided by massive anhydrite while underlying Arthur Creek Formation shale provides a potential source.
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Laurie, John R. "Silicified Late Cambrian brachiopods from the Georgina Basin, western Queensland." Alcheringa: An Australasian Journal of Palaeontology 21, no. 3 (January 1997): 179–89. http://dx.doi.org/10.1080/03115519708619172.

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Bailey, A., E. Tenthorey, and B. Ayling. "Characterising the present-day stress regime of the Georgina Basin." Australian Journal of Earth Sciences 64, no. 1 (January 2, 2017): 121–36. http://dx.doi.org/10.1080/08120099.2017.1268206.

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Eyre, B. "Early Cambrian alluvial fan‐deltas in the Georgina Basin, Australia." Australian Journal of Earth Sciences 41, no. 1 (February 1994): 27–36. http://dx.doi.org/10.1080/08120099408728110.

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Дисертації з теми "Georgina Basin"

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Nicolaides, Stelios. "Dolomitization of the Early to Middle Cambrian carbonate rocks of Georgina Basin, Northern Territory, Australia /." Title page, contents and abstract only, 1991. http://web4.library.adelaide.edu.au/theses/09SM/09smn637.pdf.

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Eyre, Bradley. "Depositional environment and diagenetic controls on porosity and permeability of early Cambrian basal siliciclastics in the Georgina Basin /." Title page, contents and abstract only, 1989. http://web4.library.adelaide.edu.au/theses/09SB/09sbe98.pdf.

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Njiraini, Georgina Wambui [Verfasser]. "Water Policy in South Africa : Effects, impacts, and the associated transaction costs in the Olifants Basin / Georgina Wambui Njiraini." Bonn : Universitäts- und Landesbibliothek Bonn, 2016. http://d-nb.info/1107541751/34.

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Marwood, Tim. "Antarctic intermediate water and the Antarctic circumpolar current in the Southwest Atlantic." Thesis, University of East Anglia, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.365060.

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Wong, Johnny King Alaziz. "Troubled Waters: Georgia, Florida and Alabama's Conflict Over the Waters of the ACF River Basin." Scholar Commons, 2014. https://scholarcommons.usf.edu/etd/5155.

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Since 1989, the co-riparian States of Georgia, Florida and Alabama have been locked in an overt and institutionalized conflict to secure access to the waters of the Apalachicola-Chattahoochee-Flint (ACF) River Basin. In 1997, in an effort to end this interstate conflict which had earned the reputation as the longest water conflict in U.S. history, public officials at the federal and state scales agreed to suspend all pending litigation against one another and concurrently deployed a dispute resolution mechanism, known as `compact negotiations,' in the hope of equitably allocating the waters of the ACF Basin. Despite proclamations by public officials, exclaiming their commitment to the process of compact negotiations and their desire to see an end to the lingering conflict, 2014 marks the 25th anniversary of the bitter conflict over the ACF waters and a sustainable resolution has not yet been achieved. Against this background, this study provides an in-depth empirical explanation for why multiple efforts to resolve the ACF conflict have been unsuccessful and largely counterproductive. Using data collected from in-depth interviews with elite stakeholders and archival data parsed from executive agencies, bureaucratic reports and media sources, this study demonstrates that Georgia's strategic efforts to (a) rescale water management authority in the basin along neoliberal lines and (b) spatiotemporally displace demand- and supply-side management policies, have allowed Georgia and metropolitan Atlanta to achieve water security through a process of accumulation by dispossession. Finally, this study shows that Georgia and Atlanta's water security has compromised the authority of federal agencies to manage interstate waters, exposed the inability of the three riparian states to reach equitable compromise, and demonstrated the Court's express complicity in (re)producing uneven development in the American South.
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Anderson, John R. II. "The Effects of High Density Septic Systems on Surface Water Quality in Gwinnett County, Georgia." Digital Archive @ GSU, 2010. http://digitalarchive.gsu.edu/geosciences_theses/28.

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Gwinnett County, Georgia experienced rapid growth in the 1970’s without the infrastructure so septic systems were installed for residential homes. The number of septic systems grew to over 85,000 with a density of 487 septic systems per square mile. This study mapped the distribution of septic systems to determine regions of potential pathogen surface water. This study addressed what potential health risks do high density septic systems have on surface water quality and how can the history of Gwinnett County assist in future development in the Metropolitan Atlanta area? It was found that the density of septic systems has reduced the surface water quality for streams in the Yellow and Alcovy River basins. An average rainfall cause septic flushing and an increase in the fecal coliform. Other trends observed in the surface water quality of increased BOD, water temperature, and various metals also indicated this flushing effect.
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Layfield, Nathan Timothy Hames W. "Permian to Cretaceous evolution of the Piedmont along the Alabama - Georgia coastal plain unconformity." Auburn, Ala, 2009. http://hdl.handle.net/10415/1731.

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Perkins, James A. "Equipping parents of grade-school children in basic principles of Christian parenting at Friendship Baptist Chapel, Eatonton, Georgia." Theological Research Exchange Network (TREN), 1994. http://www.tren.com.

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Withanachchi, Sisira Saddhamangala [Verfasser]. "Sustainable Water Resource Management for a Safe Food System in Georgia: A study of Water Quality Governance, focusing the Mashavera River Basin / Sisira Saddhamangala Withanachchi." Kassel : Universitätsbibliothek Kassel, 2018. http://d-nb.info/117036134X/34.

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Withanachchi, Sisira S. [Verfasser]. "Sustainable Water Resource Management for a Safe Food System in Georgia: A study of Water Quality Governance, focusing the Mashavera River Basin / Sisira Saddhamangala Withanachchi." Kassel : Universitätsbibliothek Kassel, 2018. http://nbn-resolving.de/urn:nbn:de:hebis:34-2018092556441.

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Книги з теми "Georgina Basin"

1

Young, Gavin C. Devonian fish remains from the Dulcie Sandstone and Cravens Peak beds, Georgina Basin, central Australia. Perth, W.A: Western Australian Museum, 2003.

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2

Shergold, J. H. Middle Cambrian phosphatic and calcareous lithofacies along the eastern margin of the Georgina Basin, Western Queensland. Adelaide: Geological Society of Australia, 1986.

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Shergold, J. H. Notes to accompany the Hay River-Mount Whelan special 1:250 000 geological sheet, southern Georgina Basin. Canberra: Australian Govt. Pub. Service, 1985.

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4

Gold, Bernard. Georgia: Basic facts. [Washington, D.C.]: Congressional Research Service, Library of Congress, 1992.

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5

Shiukashvili-Conlan, Lali. Basic Georgian for foreign students. 2nd ed. Tbilisi, Republic of Georgia: Pub. House "Merani", 2003.

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6

D, Williams James. Freshwater mussels of Alabama and the Mobile Basin in Georgia, Mississippi and Tennessee. Tuscaloosa: University of Alabama Press, 2008.

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7

Robinson, James L. Ground-water resources of the Coosa River basin in Georgia and Alabama--Subarea 6 of the Apalachicola-Chattahoochee-Flint and Alabama-Coosa-Tallapoosa River basins. Montgomery, Ala: U.S. Dept. of the Interior, U.S. Geological Survey, 1997.

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Journey, Celeste A. Ground-water resources of the Tallapoosa River basin in Georgia and Alabama: Subarea 5 of the Apalachicola-Chattahoochee-Flint and Alabama-Coosa-Tallapoosa River basins. Montgomery, Ala: U.S. Geological Survey, 1997.

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9

Robinson, James L. Ground-water resources of the Coosa River basin in Georgia and Alabama--Subarea 6 of the Apalachicola-Chattahoochee-Flint and Alabama-Coosa-Tallapoosa River basins. Montgomery, Ala: U.S. Dept. of the Interior, U.S. Geological Survey, 1997.

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10

Robinson, James L. Ground-water resources of the Coosa River basin in Georgia and Alabama--Subarea 6 of the Apalachicola-Chattahoochee-Flint and Alabama-Coosa-Tallapoosa River basins. Montgomery, Ala: U.S. Dept. of the Interior, U.S. Geological Survey, 1997.

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Частини книг з теми "Georgina Basin"

1

Markle, Chantel E., and Patricia Chow-Fraser. "Georgian Bay, Lake Huron." In Biodiversity, Conservation, and Environmental Management in the Great Lakes Basin, 49–62. Milton Park, Abingdon, Oxon ; New York, NY : Routledge, 2018.: Routledge, 2017. http://dx.doi.org/10.4324/9781315268774-5.

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Guledani, Marina. "The Legal Basis for Business in Georgia." In The State of Law in the South Caucasus, 117–29. London: Palgrave Macmillan UK, 2005. http://dx.doi.org/10.1057/9780230506015_7.

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Verbetskaya, Katerina, N. Klymenko, and N. Voznyuk. "The Ecological Evaluation River Basins in West Georgia." In Black Sea Energy Resource Development and Hydrogen Energy Problems, 301–13. Dordrecht: Springer Netherlands, 2013. http://dx.doi.org/10.1007/978-94-007-6152-0_25.

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Sheath, Robert G., Julie A. Hambrook, and Christopher A. Nerone. "The benthic macro-algae of Georgian Bay, the North Channel and their drainage basin." In Limnology and Fisheries of Georgian Bay and the North Channel Ecosystems, 141–48. Dordrecht: Springer Netherlands, 1988. http://dx.doi.org/10.1007/978-94-009-3101-5_10.

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Wondolleck, Julia M., and Steven L. Yaffee. "Navigating International Boundaries in the Gulf of Maine and Puget Sound Georgia Basin." In Marine Ecosystem-Based Management in Practice, 13–41. Washington, DC: Island Press/Center for Resource Economics, 2017. http://dx.doi.org/10.5822/978-1-61091-800-8_2.

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Gersamia, Mariam, Maia Toradze, and Liana Markariani. "The Voice of Women and Challenges of Gender Equality in Georgian Media." In Handbook of Research on Discrimination, Gender Disparity, and Safety Risks in Journalism, 232–50. IGI Global, 2021. http://dx.doi.org/10.4018/978-1-7998-6686-2.ch013.

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Анотація:
This research analyzes the media landscape in Georgia from a gender equality perspective to identify the existing stereotypes dominant in Georgian media organizations. Georgia (country) faces the challenges related to femicide, domestic violence, employment of women, early or forced marriages, sexual harassment, blackmailing of female journalists, and there is a lack of awareness regarding gender equality. The study answers research questions: What sociocultural context and basic psychological motivators drive females to choose journalism as a profession? Is there any gender inequality regarding the workplace and positions in Georgian media (TV, print, radio, and online media) and if ‘yes' how does it present? Are there any predefined topics/themes covered specifically by the male or female journalists? What gender-related stereotypes (if any) dominate/take over in Georgian media?
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Gippert, Jost. "Georgian." In A Guide to Early Jewish Texts and Traditions in Christian Transmission, 165–94. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780190863074.003.0009.

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Within the 1500 years of Georgian literacy, Jewish literature of the Second Temple period is represented by biblical apocrypha and pseudepigrapha as well as a translation of Josephus’s Antiquitates. Among the former, it is especially the ancient versions of Wisdom, Sirach, and the Apocalypsis of Ezra (IV Ezra), preserved in the Oshki-Bible of 978 CE, that deserve special interest. Beyond, the Georgian tradition is comparatively rich in apocryphal texts that are related to Genesis, including two versions of the Vita Adae and various adaptations of the Caverna Thesaurorum. Whereas some of these texts are of noteworthy age (eleventh to fifteenth centuries) and based on Greek or Armenian models, some others such as the Historia de Melchisedech are late translations from Russian (eighteenth to nineteenth centuries). Josephus’s Antiquitates were mostly translated from Greek by the Hellenizing school of Gelati (eleventh to twelfth centuries); chapters 16 to 20 were added in the nineteenth century on a Russian basis.
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Brenner, C., and J. LaBrecque. "Bathymetry of the Georgia Basin and environs." In Proceedings of the Ocean Drilling Program. Ocean Drilling Program, 1988. http://dx.doi.org/10.2973/odp.proc.ir.114.102.1988.

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"Balancing Fisheries Management and Water Uses for Impounded River Systems." In Balancing Fisheries Management and Water Uses for Impounded River Systems, edited by James M. Long and Christopher R. Martin. American Fisheries Society, 2008. http://dx.doi.org/10.47886/9781934874066.ch3.

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<em>Abstract</em>.—The Upper Chattahoochee River (UCR) basin is typical of many river systems in the southeastern United States. A warmwater system with high biodiversity, the creation of impoundments for human water use has altered water quality and quantity and, in some reaches, converted it into a coldwater system. To recover lost fishing opportunities, nonnative trout (Salmonidae) were introduced into the system and a popular fishery developed. Recent drought, human population growth, and increased water use has resulted in changes in the fish populations and fisheries management objectives in the UCR basin. As water allocation discussions continue among the states of Alabama, Florida, and Georgia, the future of the fishery in the UCR basin is unknown. This paper describes the changes in fisheries management in the UCR basin during the last century in relation to impoundment and increased water use in the Chattahoochee River near Atlanta, Georgia.
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"Biology and Management of Dogfish Sharks." In Biology and Management of Dogfish Sharks, edited by Gordon A. McFarlane and Jackie R. King. American Fisheries Society, 2009. http://dx.doi.org/10.47886/9781934874073.ch7.

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Abstract.—The development of effective ecosystem management requires an understanding of the movements of the species of interest within and between ecosystems. The present study examines the movement of spiny dogfish <em>Squalus acanthias </em>within the Georgia basin (Strait of Georgia and Puget Sound). A total of 51,063 dogfish were tagged in the Strait of Georgia from 1978 to 1988. In general, dogfish tagged in a specific region tended to be recaptured within the same region regardless of years at liberty. However, a complex movement of dogfish within the Strait of Georgia proper (which includes north Puget Sound) as well as south Puget Sound was noted. The findings of this study have important implications for the development of trans-boundary management strategies to ensure sustained dogfish fishing opportunities for both Canada and the USA.
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Тези доповідей конференцій з теми "Georgina Basin"

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Smith, Tegan E., John R. Laurie*, and Dianne S. Edwards. "Middle Cambrian Chemostratigraphy and Biostratigraphy in the Southern Georgina Basin: Correlating the Arthur Creek “Hot Shale”." In International Conference and Exhibition, Melbourne, Australia 13-16 September 2015. Society of Exploration Geophysicists and American Association of Petroleum Geologists, 2015. http://dx.doi.org/10.1190/ice2015-2210560.

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Waters-Tormey*, Cheryl, Eloise Beyer, Anett Weisheit, Barry Reno, Jo A. Whelan, Dorothy Close, and Nick Direen. "Using Basement Exposures to Constrain the Structural Evolution of the Southeastern Georgina Basin, Northern Territory, Australia." In International Conference and Exhibition, Melbourne, Australia 13-16 September 2015. Society of Exploration Geophysicists and American Association of Petroleum Geologists, 2015. http://dx.doi.org/10.1190/ice2015-2211464.

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Ayling*, Bridget, Dianne S. Edwards, Jon Huntington, and Belinda Smith. "Evaluation of Spectral Proxies in Unconventional Hydrocarbon Plays: A Case Study From the Southern Georgina Basin, Australia." In International Conference and Exhibition, Melbourne, Australia 13-16 September 2015. Society of Exploration Geophysicists and American Association of Petroleum Geologists, 2015. http://dx.doi.org/10.1190/ice2015-2210739.

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4

Radlinski, Andrzej P., Tomasz Blach*, Dianne S. Edwards, and Christopher J. Boreham. "Pore Structure and Mobility of Pore Fluids Within Source Rocks of an Unconventional Middle Cambrian Petroleum System, Southern Georgina Basin, Central Australia." In International Conference and Exhibition, Melbourne, Australia 13-16 September 2015. Society of Exploration Geophysicists and American Association of Petroleum Geologists, 2015. http://dx.doi.org/10.1190/ice2015-2210947.

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5

Churchelauri, Mariam. "Maritime Transport Cluster Development in Georgia." In Challenges in Economics and Business in the Post-COVID Times. University of Maribor Press, 2022. http://dx.doi.org/10.18690/um.epf.5.2022.22.

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The geopolitical location in Georgia creates opportunities for maritime cluster development. The functioning of the international transport corridor depends on the ports and maritime transport. The country’s strategic location on the ‘One Belt One Road’ (OBOR) route, positioned along the shortest route between China and Europe. The development of maritime cluster gives Georgia the function of international importanceand provides more opportunities for sustainable development. The purpose of this paper relates to the possibilities of establishing maritime clusters in Georgia. Creating a cluster provides new opportunities for innovative handling of technological operations in port logistics. Creation of a maritime cluster on the basis of the Port of Batumi and the port of Poti, should increase the competitiveness of both the ports and other companies – as a cluster member. There are advantages of creating marine clusters in Georgia, such as it's: geopolitical location, attractive investment environment, regulated transportation infrastructure, vast seaport. The need to find solutions to the ongoing effects of the COVID-19 pandemic, strengthening Georgia’s transit function and transformation of the country’s ports into a maritime transport cluster will improve the competitiveness of the Georgian economy after the pandemic.
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6

Simmons, Michael S. C., Elizabeth Fisher, Daniel G. Ziegler, and Carlos L. V. Aiken. "Integrated geophysical study of the Hawkinsville Triassic basin, Georgia: Problems in geophysical data interpretation in the South Georgia rift." In SEG Technical Program Expanded Abstracts 1988. Society of Exploration Geophysicists, 1988. http://dx.doi.org/10.1190/1.1892518.

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7

Mtsariashvili, Lela. "RADON IN NATURALWATER SOURCES IN THE TERRITORY OF KARTLI ARTESIAN BASIN (GEORGIA)." In 18th International Multidisciplinary Scientific GeoConference SGEM2018. STEF92 Technology, 2018. http://dx.doi.org/10.5593/sgem2018v/1.5/s02.051.

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8

Mtsariashvili, Lela. "RADON IN NATURALWATER SOURCES IN THE TERRITORY OF KARTLI ARTESIAN BASIN (GEORGIA)." In 18th International Multidisciplinary Scientific GeoConference SGEM2018. STEF92 Technology, 2018. http://dx.doi.org/10.5593//sgem2018v/1.5/s02.051.

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9

Tsatava, Dalila. "THE STUDY ABOUT GASTRONOMIC TOURISM AND GASTRONOMIC TOURISTS ISSUES." In Proceedings of the XXIX International Scientific and Practical Conference. RS Global Sp. z O.O., 2021. http://dx.doi.org/10.31435/rsglobal_conf/25052021/7564.

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Introduction and Goal. The process of globalization has shifted the world and a lot of things are changing in the tourism field as well, especially in gastronomic tourism. The food is modifying and the trapeze culture, rituals and attitudes that are one of the characteristics of the nation's identity, are facing extinction. The majority of nations are constantly trying to use the natural, historical and cultural resources to maintain their identity. In this context, it is important to successfully develop the gastronomic tourism capabilities. This process is linked to the recent "gastronomic boom". Based on the topic's relevance, we have tried describe the concept of gastronomic tourism and role of gastronomic tourist in the development of country's economy and culture. Theoretical and methodological basis of the research. The theoretical and methodological basis of this research are the contemporary Georgian and foreign scientific works on gastronomic tourism issues, expert evaluations, materials of international conferences dedicated to gastronomic tourism issues, historical and other sources. Results and Implications. Based on the research we have determined the concept of gastronomic tourism with its various forms. The reflexive moment which is one of the most important points in this area, is very evolving, so the scientific part should show more activity towards the topic of tourism, economics and culture. Conclusions. Understanding the gastronomic tourism as an important tourism business and the study of current events in the global world will help to develop gastronomic culture, maintain the identity of the nation, promote gastronomic tourism and enhance the economy of Georgia
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Cao, Ruoshi. "NEW INSIGHTS ON TRANSFER ZONES IN THE SOUTH GEORGIA RIFT BASIN, SOUTHEASTERN U.S." In 65th Annual Southeastern GSA Section Meeting. Geological Society of America, 2016. http://dx.doi.org/10.1130/abs/2016se-271890.

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Звіти організацій з теми "Georgina Basin"

1

Carr, L. K., R. J. Korsch, T. J. Palu, and B. Reese. Onshore basin inventory: the McArthur, South Nicholson, Georgina, Wiso, Amadeus, Warburton, Cooper and Galilee basins, central Australia. Geoscience Australia, 2016. http://dx.doi.org/10.11636/record.2016.004.

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Anderson, J. R., C. J. Lewis, A. J. M. Jarrett, L. K. Carr, P. Henson, C. J. Carson, C. Southby, and T. J. Munson. New SHRIMP U-Pb zircon ages from the South Nicholson Basin, Mount Isa Province and Georgina Basin, Northern Territory and Queensland: July 2017-June 2018. Geoscience Australia, 2019. http://dx.doi.org/10.11636/record.2019.010.

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3

Monger, J. W. H. Georgia Basin Project. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1990. http://dx.doi.org/10.4095/131221.

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Monger, J. W. H. Georgia Basin Project: Scope and Basin Tectonic Setting. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1990. http://dx.doi.org/10.4095/131178.

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5

Hamilton, T. S. Georgia Basin: Submarine Geology and Geophysics. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1990. http://dx.doi.org/10.4095/131179.

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Hamilton, T. S., D. A. Seemann, I. I. Frydecky, G. C. Jewsbury, J. F. Halpenney, D. Flint, B. Posthumus, T. Missiaen, C. Finn, and L. Rhoads. Georgia - Puget Basin Marine Geophysical Survey. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1990. http://dx.doi.org/10.4095/131203.

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Mustard, P. S. The Upper Cretaceous Nanaimo Group, Georgia Basin. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1994. http://dx.doi.org/10.4095/203246.

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8

England, T. D. J. Lithostratigraphy of the Nanaimo Group, Georgia Basin, southwestern British Columbia. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1989. http://dx.doi.org/10.4095/127484.

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9

Mustard, P. S., and G. E. Rouse. Sedimentary Outliers of the eastern Georgia Basin Margin, British Columbia. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1991. http://dx.doi.org/10.4095/132517.

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Monger, J. W. H. Georgia Basin Project - geology of Vancouver map area, British Columbia. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1993. http://dx.doi.org/10.4095/134201.

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