Добірка наукової літератури з теми "Geographical Information System"

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Статті в журналах з теми "Geographical Information System"

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Hernández, J., J. Herrera, and H. Ramirez. "The Catatumbo geographical information system." Journal of Physics: Conference Series 1126 (November 2018): 012015. http://dx.doi.org/10.1088/1742-6596/1126/1/012015.

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Reddy, Dr M. Anji, Uma Devi Randhi, Dr K. Santosh kumar, and Dr T. Vijaya Lakshmi. "Land Resources Action Plan in Guntur District Using Geographical Information System." Indian Journal of Applied Research 3, no. 3 (October 1, 2011): 146–48. http://dx.doi.org/10.15373/2249555x/mar2013/46.

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Abou-Shaara, Hossam F. "Geographical Information System for Beekeeping Development." Journal of Apicultural Science 63, no. 1 (June 1, 2019): 5–16. http://dx.doi.org/10.2478/jas-2019-0015.

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AbstractGeographical Information System (GIS) is a computer-based system that can perform analysis for various datasets in relation to specific geographical locations and has been widely applied in agriculture. So far, GIS has been used in relatively few studies related to honey bees and beekeeping, but this article aims to review those previously performed and to present trends to apply GIS in beekeeping and then to help and guide researchers to perform more studies utilizing it. GIS can clearly be utilized to select suitable locations for apiaries, to map bee plants, to study bee behavior, diseases and pests, and to predict the effects of climate change on honey bees beside other benefits for beekeeping. Many obstacles and problems facing beekeeping can be mapped and analyzed using GIS, and other techniques can be used with it to perform the required tasks as presented in this review.
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Fisher, Peter F. "Geographical information system software for teaching." Journal of Geography in Higher Education 13, no. 1 (January 1989): 69–80. http://dx.doi.org/10.1080/03098268908709059.

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Tang, Chao, Li Da Xu, and Shan Feng. "An agent-based geographical information system." Knowledge-Based Systems 14, no. 5-6 (August 2001): 233–42. http://dx.doi.org/10.1016/s0950-7051(01)00101-0.

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van der Meulen, George G. "Geographical information and decision support system." Computers, Environment and Urban Systems 16, no. 3 (May 1992): 187–93. http://dx.doi.org/10.1016/0198-9715(92)90030-u.

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Rutten, B. J. C. M., B. v. d. Haspel, and A. v. Beek. "GISWA: Geographical information system wind resource." Journal of Wind Engineering and Industrial Aerodynamics 27, no. 1-3 (January 1988): 103–12. http://dx.doi.org/10.1016/0167-6105(88)90027-x.

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Crissman, Lawrence W. "The China Geographical information system project." Asian Studies Association of Australia. Review 13, no. 3 (April 1990): 83–85. http://dx.doi.org/10.1080/03147539008712642.

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He, Shaofu, and Fei Li. "Artificial Neural Network Model in Spatial Analysis of Geographic Information System." Mobile Information Systems 2021 (October 15, 2021): 1–12. http://dx.doi.org/10.1155/2021/1166877.

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In the past two decades, the computer technology industry has developed rapidly, and the geological prospecting industry is also undergoing a computerized and electronic revolution. The application technology of new geological information systems is gradually adding us to the spatial information system of geological prospecting projects. In order to deeply study the current situation of the artificial neural network model in the spatial analysis of our country’s geographic information system, this paper uses the traditional classification analysis method; database analysis and neural network analysis method of compensating samples were collected, an artificial model of the network is established, and the algorithm is simplified. And a neural network model is created. In the research of A and B counties’ geographic information system, using a new network model, 61 geological disasters were found in County A, of which 47 were landslides, 4 collapses, and 10 unstable slopes. There were 19 geographical disasters in County B, including 9 unstable slopes, 6 landslides and 4 collapses. In terms of geographic prediction combined with the network model, the comparison with the actual situation shows that the geographical distribution is 99.7% in the geographical and geological disaster-prone areas, and the geographical distribution is less in the nonprone areas, with a proportion of 0.3%. Geological disaster-prone areas of low points accounted for 76.9%, and the number of disaster-affected points in the low-prone areas accounted for 22.8%. The geographical and geological grades divided by the evaluation model are basically consistent with the actual grades, which can meet the needs of geographic evaluation. It is basically realized that starting from the model’s geographic information system, a more comprehensive and practical artificial neural network model is designed.
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Zorzano Santamaría, P. J., A. Falces de Andrés, L. A. Fernández Jiménez, E. García Garrido, E. Zorzano Alba, M. Mendoza Villena, and P. Lara Santillán. "Hybrid Power Systems Planning with Geographical Information System Models." Renewable Energy and Power Quality Journal 1, no. 08 (April 2010): 1180–85. http://dx.doi.org/10.24084/repqj08.618.

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Дисертації з теми "Geographical Information System"

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Germain, Richard James. "Drought management using a geographical information system." Ohio : Ohio University, 1996. http://www.ohiolink.edu/etd/view.cgi?ohiou1178651687.

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Ayhan, Saglam. "Developing A Geographical Information System For The Gallipoli Campaign." Master's thesis, METU, 2005. http://etd.lib.metu.edu.tr/upload/12606263/index.pdf.

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Geographical Information System (GIS) is a very powerful technique which is used in solving different problems in various fields dealing with spatial information. It can also be used for analyzing wars and campaign. Today&
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s modern armies use GIS effectively for different purposes such as determining strategic points and planning attack and defense. GIS can also be used for past wars, and historical GIS includes these kinds of applications. In this study, GIS have been used for analyzing Gallipoli Campaign in the First World War. This campaign started in February on 1915 and Allied troops left the Gallipoli Peninsula on 9th January 1916. Gallipoli Campaign have very important role in Turkish and World history. This study includes two different parts about Gallipoli Campaign. In the first part, selected battles of the campaign are analyzed with different GIS functions. Selected battles are Naval, Ariburnu, Conkbayiri, and 2nd Kirte Battles, and they are selected based on the availability of graphic and attribute data. In the second part, relationship between martyrs and locations are studied. Distributions of the number of soldiers for different criteria, such as province, district, soldier rank, death location and age are shown on maps and pie charts.
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Bae, Sanghoon. "Development of a real-time and geographical information system-based transit management information system." Thesis, This resource online, 1993. http://scholar.lib.vt.edu/theses/available/etd-11242009-020226/.

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Duffy, Timothy Richard. "An environmental information system for planners." Thesis, University of Edinburgh, 2011. http://hdl.handle.net/1842/8750.

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This research proposes an on-line Environmental Information System for Planners (EISP). The Environmental Information System for Planners has been developed in collaboration with five local authorities as a web-based system designed to support decision making within the UK planning framework. It has been built as a ‘proof-of-concept’ system to demonstrate the value to urban planning of making information on environmental issues more widely accessible. The EISP has been designed to support three principal planning functions carried out by Local Authorities: Pre-planning enquiries; Development control decisions; and Strategic planning. The system incorporates 12 environmental themes: Air quality (PM10); Shallow undermining; Landslide susceptibility; Groundwater protection; Flood risk; Drainage; Land contamination; Proximity to landfill; Biodiversity; Natural heritage designations; Man-made heritage; and Natural Ground Stability (Geohazards). The design framework is based upon a series of decision flow diagrams, each covering one of the above themes. These decision flows take account of current planning procedures in the UK. Industry-standard web technologies have been employed to integrate the flows and develop the functionality that will allow the planner access to the system through secure web pages. Underpinning the system is an environmental Geographical Information System (GIS) that contains the most up-to-date data, information and models relevant to each of the environmental themes listed. The planning regulations are subject to change and so the system has been designed in a modular way so that new legislation can be accommodated without the need for a complete system rewrite. This modular approach also means that the system can be readily adapted to reflect local priorities and to draw on local datasets. The EISP was successfully tested and the thesis concludes with a costed business case study for commercial implementation and rollout of a production EISP system populated with appropriate environmental data within UK local authorities.
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Gulden, Birsen. "A Geographical Information System Application For Ambulance Routing Services:a Prototype." Master's thesis, METU, 2004. http://etd.lib.metu.edu.tr/upload/2/12605085/index.pdf.

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In public safety, geography plays a significant role. One of the most important front-line elements of public safety is an efficient emergency transport and care system. The capacity to access and process information rapidly and organize resources where needed can be critically important in an emergency situation. Information about the locality of an event or a disaster is often vital in knowing how to respond. A significant operation in handling emergency situations is the routing of ambulances to incident sites and then to the closest appropriate hospitals. One of the important steps to survival in an emergency is quick response time. The aim of this thesis study is to build an immediate, rapid and efficient emergency medical transport system prototype, called Ambulance Routing Service Application Prototype (ARSAP), to be used in Middle East Technical University (METU) Emergency Service, Ankara, Turkey. In the study, geographical information systems (GIS) technology is used in assisting the development and implementation of an emergency medical service (EMS) response system. In this prototype, while choosing a proper facility, the available quantity of beds, respiratory equipments and doctors in a hospital'
s intensive care room and the best traffic routes to the hospital in hand are also considered. The ARSAP is expected to shorten the commuting time and hence to reduce the damage to the patient to the lowest level and allow the ambulance staff to perform their task better. The results generated using the ARSAP are validated and analyzed by comparing with currently practiced emergency call paths data collected with the help of METU Emergency Service ambulance drivers.
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Gardner, Lesley Ann. "Hypermedia for prototyping and system integration in information systems development." Thesis, London School of Economics and Political Science (University of London), 1991. http://etheses.lse.ac.uk/1126/.

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This thesis investigates information systems development with special regard to the area of Geographical Information Systems. It addresses the area through the investigation of the software life-cycle development model and its augmentation by the use of prototyping. Observations are made on empirical experiments conducted to assess the usefulness of the new techniques of hypertext and hypermedia and their suitability within this field of study. This investigation is complemented by a case study, the Norfolk and Suffolk Broads Authority. The Norfolk and Suffolk Broads are designated by statute with similar status to the National Parks of Great Britain, and are managed by the Norfolk and Suffolk Broads Authority. Through cooperation with the Norfolk and Suffolk Broads Authority, a prototype information system was created. This system makes use of geographical data from the Broads Authority. The development stages of this system were used to conduct experiments for this thesis. The tools and techniques used for the development of this system are described. These include a hypertext tool called FIELD (Fully Integrated Environment for Layered Development) which has been especially designed for the complete storage of all information for each stage throughout this development. The use of this tool and hypertext for the development of the geographically based information system for the Norfolk and Suffolk Broads Authority are discussed.
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Shi, Zhennan. "A Web-based Geographical Information System for Low Bandwidth Access." The University of Waikato, 2007. http://hdl.handle.net/10289/2434.

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The Geographic Information Systems (GIS) have become popular tool, used in different fields. The launching of Google Maps offered a new approach of building web based GIS systems; making it possible to integrate external geographically referenced data with the powerful map service supplied by Google. This thesis demonstrates the design and implementation of creating a web based geographic information system. The system is built by adapting the Google Maps API library and building a web server to display and explore agricultural data.
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Yang, Jun Carleton University Dissertation Geography. "TMDS thematic map design advisory system; for geographical information systems and electronic mapping systems." Ottawa, 1993.

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Tecim, Vahap. "A geographical information systems based decision support system for tourism planning and development." Thesis, Lancaster University, 1997. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.387436.

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Baharom, Mohammad Nizam. "Analysing and Presenting Road Traffic Volume Using Geographical Information System (GIS)." Thesis, University of Manchester, 2009. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.508828.

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Rapid urbanisation in Kuala Lumpur over the past 25 years has brought its share of problems such as traffic congestion, urban sprawl, rise in noise. pollution, flooding and other environmental issues. The increase in population in developing countries has resulted in increased traffic volumes, and traffic congestion has been a serious problem for citizens of Malaysia for many years. Every year the Ministry of Works Malaysia, through its Highway Planning Unit (HPU). has spent considerable amounts of money to collect census data on traffic volume. After processing the data, HPU publishes its Annual Traffic Volume guide. From 1996 to 1998, for example, the total number of motor vehicles registered increased from 7.7 to 9.1 million, a dramatic increase in the volume of traffic. It is therefore vital to have decision support systems that provide information from the latest traffic-volume database systems. The main objective of this study is to research, design and develop a database structure for traffic volume in Selangor, using a Geographical Information System (GIS) to analyse road traffic volumes in certain areas; it will enable calculation of traffic congestion and provide basic information for road pavement work for future road maintenance. The use of GIS and associated techniques can play an important role in decision-making activities for route transportation systems. GIS techniques have a significant role in the storage, analysis and reporting of data sets. In the traffic volume situation, GIS also allows for the integration of different databases relating to traffic congestion, including both traffic-based data and related land use, demographic, topographic and environmental data. This thesis presents research into GIS processes that will enable us to monitor traffic volumes and the condition of the road pavement in Selangor. The research focuses on GIS development and traffic data collection. The principal objective of this thesis is to propose the development of a system that will help to analyse traffic volume, by using GIS to link data sets by area, thus facilitating interdepartmental information sharing and communication. Both traffic volume and the road transportation system have a strong spatial existence; therefore GIS is an obvious system for use in finding a solution. The results demonstrate that GIS has a crucial role in analysing specific areas of traffic volume for future road maintenance planning. The distribution of congestion in a region is important, and the use of GIS software for database integration, data analysis and data display is extremely advantageous. More specifically, the research considers the use of GIS as a means of analysing the location of traffic factors. including congestion and road surface damage. Furthermore, the identification of traffic volume zones can be displayed on GIS and the identification of alternative routes to alleviate traffic congestion can then be made to avoid further damage to road pavement.
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Книги з теми "Geographical Information System"

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Payne, Roger L. Geographic Names Information System. Reston, Va: The Survey, 1986.

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K, Ghosh S., ed. Remote sensing and geographical information system. Oxford: Alpha Science, 2006.

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Guerrero, Romer Altamirano. Aplicación de sistemas de información geográfica en planes de odenamiento territorial: Caso de estudio : Corn Island. Managua: UCA, Universidad Centroamericana, 2005.

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John, Shepherd. UAGIS, a geographical information system in action. London: South-East Regional Research Laboratory, 1988.

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Scott, M. P. A geographical information system to support sign management. Manchester: UMIST, 1994.

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Massachusetts. Bureau of Transportation Planning and Development. Geographical information system map and data products catalog 2004. [Boston, Mass.]: Massachusetts Highway Dept., Bureau of Transportation Planning and Development, 2001.

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Jia, Xudong. Transit route service area study using Geographical Information System. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1993.

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Chouhan, T. S. Geographical information system and remote sensing for sustainable development. Jaipur: Universal Scientific Publishers, 2003.

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International Conference & Exhibition on GIS/GPS/RS (1st 1998 New Delhi, India). Map India '98: 1st Annual International Conference and Exhibition on GIS, GPS, and Remote Sensing, 7-9, October 1998, New Delhi : proceedings. Noida: The Centre, 1998.

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Economia e geografia del turismo: L'occasione dei Geographical information system = Economics and geography of tourism : the opportunities presented by Geographical information systems (GIS). Bologna: Pàtron, 2005.

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Частини книг з теми "Geographical Information System"

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da Cruz Albuquerque, Helena Cláudia, Filomena Maria Cardoso Pedrosa Martins, and Luís Manuel Tomás Galiza Cardoso. "Geographical information system." In Encyclopedia of Tourism, 383–84. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-01384-8_522.

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Sholarin, Ebenezer A., and Joseph L. Awange. "Geographical Information System (GIS)." In Environmental Science and Engineering, 239–48. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-27651-9_12.

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Singhal, B. B. S., and R. P. Gupta. "Geographical Information System (GIS)." In Applied Hydrogeology of Fractured Rocks, 95–113. Dordrecht: Springer Netherlands, 2010. http://dx.doi.org/10.1007/978-90-481-8799-7_6.

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Nagarajan, R. "Spatial Data and Geographical Information System." In Drought Assessment, 265–319. Dordrecht: Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-90-481-2500-5_7.

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Park, Jong Sou, Hong Tae Jin, and Dong Seong Kim. "Intrusion Detection System for Securing Geographical Information System Web Servers." In Web and Wireless Geographical Information Systems, 110–19. Berlin, Heidelberg: Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/11427865_9.

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Arcieri, Franco, Enrico Nardelli, and Maurizio Talamo. "CARTECH: a prototype of geographical information system." In Lecture Notes in Computer Science, 178–91. Berlin, Heidelberg: Springer Berlin Heidelberg, 1994. http://dx.doi.org/10.1007/3-540-58795-0_46.

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Innerebner, Markus, Michael Böhlen, and Johann Gamper. "ISOGA: A System for Geographical Reachability Analysis." In Web and Wireless Geographical Information Systems, 180–89. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-37087-8_13.

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Gardiner, Keith, Junjun Yin, and James D. Carswell. "EgoViz – A Mobile Based Spatial Interaction System." In Web and Wireless Geographical Information Systems, 135–52. Berlin, Heidelberg: Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-642-10601-9_10.

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Tang, Tiffany Y., Pinata Winoto, and Robert Ziqin Ye. "Geographical Information in a Multi-domain Recommender System." In Web-Age Information Management, 315–21. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-11538-2_29.

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Kwon, Yong-Jin, and Do-Hyoung Kim. "Mobile SeoulSearch: A Web-Based Mobile Regional Information Retrieval System Utilizing Location Information." In Web and Wireless Geographical Information Systems, 206–20. Berlin, Heidelberg: Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/11427865_16.

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Тези доповідей конференцій з теми "Geographical Information System"

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Yamamoto, Hiromichi, Kohzo Homma, Hiromi Gomi, Satoru Kitagata, Kazuhiro Kumasaka, and Tetsuya Oikawa. "Geographical information system for flight safety." In International Symposium on Remote Sensing, edited by Manfred Ehlers. SPIE, 2003. http://dx.doi.org/10.1117/12.462122.

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Schöffel, Sebastian, Johannes Schwank, and Achim Ebert. "MuGIS multi-user geographical information system." In the 16th international conference. New York, New York, USA: ACM Press, 2014. http://dx.doi.org/10.1145/2628363.2634219.

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Chu, Wesley W., Hua Yang, Kuorong Chiang, Berthier A. N. Ribeiro, and Gladys Chow. "CoGIS: a cooperative geographical information system." In SPIE's International Symposium on Optical Engineering and Photonics in Aerospace Sensing, edited by Wray Buntine and Doug H. Fisher. SPIE, 1994. http://dx.doi.org/10.1117/12.169407.

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Jacob, Nicole Mary, Keshav, L. H. Jincy, B. S. Abhiram, Aswathy Ravikumar, and Jisha John. "Deforestation Detection using Geographical Information System." In 2022 Second International Conference on Artificial Intelligence and Smart Energy (ICAIS). IEEE, 2022. http://dx.doi.org/10.1109/icais53314.2022.9742962.

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Brooks, Stephen, and Jacqueline L. Whalley. "A 2D/3D hybrid geographical information system." In the 3rd international conference. New York, New York, USA: ACM Press, 2005. http://dx.doi.org/10.1145/1101389.1101455.

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Cheng, Yuhua, Zurinah Yen Puasa, and Ernyza Endot. "Geographical Information System Applications in EP Business." In International Oil and Gas Conference and Exhibition in China. Society of Petroleum Engineers, 2010. http://dx.doi.org/10.2118/131477-ms.

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Tradigo, Giuseppe, Patrizia Vizza, Giuseppe Brescia, Pietro Hiram Guzzi, and Pierangelo Veltri. "A geographical patients based health information system." In 2019 IEEE International Conference on Bioinformatics and Biomedicine (BIBM). IEEE, 2019. http://dx.doi.org/10.1109/bibm47256.2019.8983079.

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Panigrahi, Narayan, and Smita Tripathy. "Scientific Learning Patterns in Geographical Information System." In 2017 5th IEEE International Conference on MOOCs, Innovation and Technology in Education (MITE). IEEE, 2017. http://dx.doi.org/10.1109/mite.2017.00013.

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"A GEOGRAPHICAL QUESTION ANSWERING SYSTEM." In 3rd International Conference on Web Information Systems and Technologies. SciTePress - Science and and Technology Publications, 2007. http://dx.doi.org/10.5220/0001287203080314.

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"Providing Context-Aware Information in a Mobile Geographical Information System." In International Workshop on Managing Data with Mobile Devices. SciTePress - Science and and Technology Publications, 2009. http://dx.doi.org/10.5220/0002181401350144.

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Звіти організацій з теми "Geographical Information System"

1

Holm, G. F. Manitoba geographical names information system. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1986. http://dx.doi.org/10.4095/298231.

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2

Demeuov, Аrman, Zhanna Tilekova, Yerkin Tokpanov, Olena Hanchuk, Natalia Panteleeva, and Iryna Varfolomyeyeva. Use of GIS technology in geographical education. EDP Sciences, June 2021. http://dx.doi.org/10.31812/123456789/4619.

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Анотація:
At the present stage, digital information technologies create a new education system focused on the global educational space. In general education schools, in connection with the adoption of the updated program, the section Geoinformatics and cartography provides for the use of developing a map-scheme, modeling and conducting small studies on the topic under study. As a result, digital technology has a place in geographical education. This is due to significant changes in the pedagogical and methodological approach in teaching geography and other disciplines. As a result, the education system has changed, the content of education has been updated, a new approach has appeared, a new attitude to geoinformation technologies in schools. The article discusses the importance of computer technologies in the education system, including the effectiveness and necessity of using geoinformation technologies. The article substantiates the relevance of the use of geoinformation technologies in the teaching of geography.
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3

Brownell, Dorie. Application of a Geographical Information System to Estimate the Magnitude and Frequency of Floods in the Sandy and Clackamas River Basins, Oregon. Portland State University Library, January 2000. http://dx.doi.org/10.15760/etd.6753.

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4

Peek, Dennis W., Donald Alan Helfrich, and Susan Gorman. Environmental geographic information system. Office of Scientific and Technical Information (OSTI), August 2010. http://dx.doi.org/10.2172/1097199.

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5

Bonilla-Mejía, Leonardo, and Erika Londoño-Ortega. Geographic Isolation and Learning in Rural Schools. Banco de la República, August 2021. http://dx.doi.org/10.32468/be.1169.

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Rural schools are usually behind in terms of learning, and part of this could be related to geographical isolation. We explore this hypothesis, assessing the effect of distance between rural schools and local governments on learning in Colombia. We use spatial discontinuous regression models based on detailed administrative records from the education system and granular geographic information. Results indicate that distance to towns and Secretary of Education has significant negative effects on students’ standardized test scores. We evaluated alternative mechanisms, finding that the effect of distance is partly explained by differences in critical educational inputs, such as teachers’ education attainment and contract stability. Finally, we assess the mediating role of a program providing monetary incentives to teachers and principals in remote areas.
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6

Wibbenmeyer, M. J. Geographic information system - data base directory. Alaska Division of Geological & Geophysical Surveys, 1987. http://dx.doi.org/10.14509/1314.

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7

Tzemos, S., and E. S. Overton. The Geographic Information System component of the Hanford Environmental Information System. Office of Scientific and Technical Information (OSTI), January 1992. http://dx.doi.org/10.2172/5878150.

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8

Caldwell, Douglass R., and Linda H. Graff. Directional Regions in Geographic Information Systems (GIS). Fort Belvoir, VA: Defense Technical Information Center, August 1993. http://dx.doi.org/10.21236/ada268536.

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9

Payne, R. L. Geographic Names Information System (GNIS): philosophy and function. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1986. http://dx.doi.org/10.4095/298212.

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10

Gordon, D. E. Savannah River Site Geographic Information System management plan. Office of Scientific and Technical Information (OSTI), February 1992. http://dx.doi.org/10.2172/10159521.

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