Auswahl der wissenschaftlichen Literatur zum Thema „Geographical IT“

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Zeitschriftenartikel zum Thema "Geographical IT"

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Kiptenko, V. „GLOBALIZATION: THE GEOGRAPHICAL NEXUS“. Bulletin of Taras Shevchenko National University of Kyiv. Geography, Nr. 66-67 (2017): 37–41. http://dx.doi.org/10.17721/1728-2721.2017.66.4.

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Geography as both a discipline and wide discourse explicitly aims to conceive the Earth as a whole. Human geography contributed a lot to the critical study of globalization. However, the academic inquiry suggests the lack of conceptualization, which can serve as a readable scholarly framework, teaching and learning in particular. This article scopes the weave of terms related to globalization and geography based on the Dictionary of Human Geography. Acknowledging the reservations of the Dictionary of Human Geography itself and understanding the limitations of the survey based on yet one dictionary this article ponders on the foundations, which can framework the geographical approach to globalization. Focus on detecting the key concepts mentioned in the topical article, clarifying their interpretation and logical context for geographical nexus paves the way for platforming the systemized and generalized conceptualization. The basic concepts of economics and social sciences design the ‘flat-world’ metaphor. The last serves to the vital task of human geography aimed to disclosure of taken-for-granted geographical imaginary and an investigation of its (often unacknowledged) effects, thus, geographical conceptualization of globalization. Geographic arguments serve as an integral part of the logic of the ‘flat-world’ geographic imaginary of globalization debunking. The evolution of academic responses to the ‘political version’ of the world’s general state suggests essence, limitations and further development of skeptical, parameterized, geographically sensitive approaches, and counter-hegemonic critique of neo-liberal globalization. The disciplinary nexus of globalization implicitly refers to economic, industrial and agricultural, population and labor, urban and rural, regional, contrapuntal and feminist geographies. Moreover, the context of the above consideration reinforces the role of human and physical the geographies and the formal theories of location and spatialization, in particular. Notions of spatial organization, place-transcending and place-remaking dynamics deterritalization and reterritorialization, etc. suggest the need for further reverse exploration of over thirty geographical concepts and terms – the space, the place, the territory, etc. – in the context of globalization discourse. The mental map of the conceptual framework of globalization and geographical nexus summarizes the key findings.
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MURAKAMI, Masaki. „Geographic Data Development by the Geographical Survey Institute“. Theory and Applications of GIS 4, Nr. 2 (1996): 29–34. http://dx.doi.org/10.5638/thagis.4.2_29.

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Fighera, Delfina Trinca. „Rediscovering the Geographic Space through the Geographical Space“. GEOUSP: Espaço e Tempo (Online), Nr. 3 (07.12.1998): 13. http://dx.doi.org/10.11606/issn.2179-0892.geousp.1998.123253.

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Este artigo pretende discutir a técnica enquanto expressáo das relações entre o Homem e o espaço por ele ocupado, por ele transformado. Buscando nos aproximar de uma visão geográfica das ações do Homem sobre a Natureza, tentam os entender a construção do "presente" e sua configuração nos tempos atuais
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Sherimmat, Avazov, und Saydamatov Farkhod Rajabovich. „Innovative Geographical Education - A Factor For Effective Formation Of Geographical Culture“. American Journal of Social Science and Education Innovations 02, Nr. 10 (30.10.2020): 279–85. http://dx.doi.org/10.37547/tajssei/volume02issue10-47.

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This article reveals the most common innovative technologies in geography education, the relevance of innovative geographical education, the main objectives of innovative geographical education, the tasks, basic principles (principles) of innovative geographical education and the factors of their effective formation of geographical culture. The teacher is taught to understand innovative geographical education as a method of forming a geocologically cultured (competent) student / student personality. Enlightenment (pedagogical) innovation is mainly covered by the following concepts - innovation, educational innovation, innovation, innovation, innovation process, innovation activity, pedagogical innovation, pedagogical innovation, pedagogical innovation process, pedagogical innovation activity.
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Nugraha, Yudha Agung, und Imam Haryanto. „HAMBATAN PENDAFTARAN INDIKASI GEOGRAFIS TAHU SUMEDANG SEBAGAI ASET POTENSIAL DAERAH“. Keadilan : Jurnal Fakultas Hukum Universitas Tulang Bawang 18, Nr. 1 (08.02.2021): 1–19. http://dx.doi.org/10.37090/keadilan.v18i1.289.

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The purpose of this paper is to examine the barriers to registering geographic indications of Sumedang as potential regional assets. The research method used in the research is normative juridical research which means that it is carried out by examining library materials or secondary materials, then analyzing issues concerning Geographical Indications and their benefits to the area of ​​origin. The results of the analysis raise 2 themes discussed here, barriers to registering geographical indications of Sumedang tofu, as well as the impact on product listing as geographic indications. A study of these two themes is very useful in understanding the importance of registering geographic indications as well as the benefits generated by protecting Geographical Indications. Keywords : Geographical Indications, Sumedang, Benefits of Geographical Indications
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Williams, Yvette M., Stephen E. Williams, Ross A. Alford, Michelle Waycott und Christopher N. Johnson. „Niche breadth and geographical range: ecological compensation for geographical rarity in rainforest frogs“. Biology Letters 2, Nr. 4 (19.09.2006): 532–35. http://dx.doi.org/10.1098/rsbl.2006.0541.

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Abstract We investigated the relationship between diet specialization and geographical range in Cophixalus , a genus of microhylid frogs from the Wet Tropics of northern Queensland, Australia. The geographical ranges of these species vary from a few square kilometres in species restricted to a single mountain top to the entire region for the widespread species. Although macroecological theory predicts that species with broad niches should have the largest geographical ranges, we found the opposite: geographically rare species were diet generalists and widespread species were diet specialists. We argue that this pattern is a product of extinction filtering, whereby geographically rare and therefore extinction-prone species are more likely to persist if they are diet generalists.
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Çukur, Tayfun, Nuray Kızılaslan, Figen Çukur und Halil Kızılaslan. „Tüketicilerin Coğrafi İşaretli Ürünler İçin Ödeme İstekliliğine Etki Eden Faktörler: Niksar Cevizi Örneği“. Turkish Journal of Agriculture - Food Science and Technology 8, Nr. 11 (28.11.2020): 2476–81. http://dx.doi.org/10.24925/turjaf.v8i11.2476-2481.3898.

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Undoubtedly, supply demand balance must be ensured for the development of geographically indications products. In order to increase the demand for geographically indications products, firstly, consumers should be aware of the geographically indications products and have information about the benefits and advantages of these products. Undoubtedly, as with other agricultural products, price is also an important issue for purchases in geographical indications products. Therefore, it was aimed to determine the factors affecting consumers' willingness to pay for geographical indications products in the Tokat province. For this purpose, face to face survey was conducted with 382 consumers. It was determined that 49,21% of the consumers who participated in the research wanted to pay more price for a product with a geographical indications label. According to the results of the probit analysis, a positive relation was found between awering that Niksar walnut is a geographical indications product and the willingness to pay for geographical indications products. However, a negative correlation was found between monthly food expenditure and tendency to pay for geographical indications products.
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Hsiao, Pai-Hsiang. „Geographical Region Summary Service for geographical routing“. ACM SIGMOBILE Mobile Computing and Communications Review 5, Nr. 4 (Oktober 2001): 25–39. http://dx.doi.org/10.1145/509506.509515.

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Yang, Kong-qing, Lei Yang, Bai-hua Gong, Zhong-cai Lin, Hong-sheng He und Liang Huang. „Geographical networks: geographical effects on network properties“. Frontiers of Physics in China 3, Nr. 1 (Februar 2008): 105–11. http://dx.doi.org/10.1007/s11467-008-0012-4.

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Nishi, Hayato, und Yasushi Asami. „Bayesian Geographical Multi-Dimensional Scaling“. Abstracts of the ICA 1 (15.07.2019): 1–2. http://dx.doi.org/10.5194/ica-abs-1-271-2019.

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<p><strong>Abstract.</strong> Multi-dimensional scaling (MDS) is a popular method of visualizing the similarity of individuals in a dataset. When dissimilarities between individuals in a dataset are measured, MDS projects these individuals into the (typically two- or three-dimensional) map. In this map, because similar individuals are projected to be close to one another, distances between individuals correspond to their dissimilarities. In other words, MDS makes a similarity map of a dataset.</p><p>Some of the dissimilarities and distances have a strong relation to the geographical location. For example, time distances are similar to geographical distances, and regional features will be similar if the regions are close together. Therefore, it will be useful to compare the MDS projection and geographical locations. However, because MDS projection is not concerned with the rotation, parallel translation, and similarity expansion, it might be difficult to compare the projection to the actual geographical locations. When geographically related similarities are visualized, projected locations should be bound to the geographical locations.</p><p>In this article, we propose Bayesian Geographical Multidimensional Scaling (BGMDS), in which geographical restrictions of projections are given from a statistical point of view. BGMDS gives not only geographically bound projections, but also incorporates the uncertainty of the projections.</p>
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Dissertationen zum Thema "Geographical IT"

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Lakey, John Christopher. „HIERARCHICAL GEOGRAPHICAL IDENTIFIERS AS AN INDEXING TECHNIQUE FOR GEOGRAPHIC INFORMATION RETRIEVAL“. MSSTATE, 2008. http://sun.library.msstate.edu/ETD-db/theses/available/etd-11062008-195327/.

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Location plays an ever increasing role in modern web-based applications. Many of these applications leverage off-the-shelf search engine technology to provide interactive access to large collections of data. Unfortunately, these commodity search engines do not provide special support for location-based indexing and retrieval. Many applications overcome this constraint by applying geographic bounding boxes in conjunction with range queries. We propose an alternative technique based on geographic identifiers and suggest it will yield faster query evaluation and provide higher search precision. Our experiment compared the two approaches by executing thousands of unique queries on a dataset with 1.8 million records. Based on the quantitative results obtained, our technique yielded drastic performance improvements in both query execution time and precision.
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Denz, Rebekka, und Grazyna Jurewicz. „Geographical turn : editorial“. Universität Potsdam, 2010. http://opus.kobv.de/ubp/volltexte/2010/4354/.

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Hammam, Yasser, und n/a. „Geographical vector agents“. University of Otago. Department of Information Science, 2008. http://adt.otago.ac.nz./public/adt-NZDU20080404.150839.

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Simulating geographic phenomena in a realistic and plausible way requires real-world entities to be abstracted based on the dynamic physical characteristics they exhibit, and treated as individuals in a simulation domain. These processes cannot be adequately supported by the traditional spatial model based on cellular-space such as Cellular Automata (CA). Although this approach has received a great attention as a most favoured technique for simulating the geographic phenomena from different aspects, the need for a generic spatial model to overcome the limitations encountered in such an approach has been raised. This applies particularly to the way real-world entities are represented in a simulation domain regarding their physical characteristics and temporal aspects. In this thesis, a new computational approach for a spatial model suitable for simulating geographic phenomena is presented: the vector agents model. The vector agent is goal-oriented, adaptable, physically defined by an Euclidean geometry and able to change its own geometric characteristics while interacting with other agents in its neighbourhood using a set of rules. The agent is modelled with sensor, state, and strategies. The successful implementation of the model�s architecture allows the representation of the physical characteristics of real-world entities and to observe their complex and dynamic behaviour in a simulation domain. Vector agents have developed out of a need to create a systematic basis for the geometric components of Geographic Automata Systems (GAS), as outlined by Torrens and Benenson (2005). A generic vector agents model was built, then tested and validated from different aspects, from which results demonstrated the model�s efficiency. It is confirmed that vector agents are flexible in producing different complex shapes and patterns for recreating real geographic phenomena through the generic use of three algorithms of geometric manipulation: midpoint displacement by using the relaxed Brownian Motion (fractal-like) algorithm, edge displacement and vertex displacement. The effectiveness of this was initially ascertained visually. A simple heuristic to govern shape growth rate and complexity was derived based on the interplay of the three algorithms. There was a further abstract model comparison against the cellular-agents environment, with the result that vector agents have the ability to emerge patterns similar to what can be produced by cellular-agents with the advantage of representing entities as individuals with their own attributes with realistic geometric boundaries. On the other hand, the city as a complex geographic phenomenon was used as a specific domain for validating the model with a real-world system. The results of the urban land use simulations (driven by simple rules based on three classical urban theories) confirmed that: (a) the model is flexible enough to incorporate various external rules based on real-world systems and (b) the model has a sufficient capability in emerging a variety of patterns under several environments close to actual patterns. The agent environment also proved to be an effective way of easily combining the rules associated with each urban theory (different agents behaved according to different theories). Finally, limitations raised through the development of this work are addressed leading to outline possible extensions of both model computation and the domain of applications.
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Hayes, Emily Jane Eleanor Rhydderch. „Geographical projections : lantern-slides and the making of geographical knowledge at the Royal Geographical Society c.1885-1924“. Thesis, University of Exeter, 2016. http://hdl.handle.net/10871/23096.

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This thesis is about the mobilities of geographical knowledge in the material form of lantern-slides and the forces exerted on these by technological and human factors. Owing to its concern with matter, human- and non-human, and its circulation, the thesis addresses the physics of geographical knowledge. The chapters below investigate the Royal Geographical Society’s (RGS) ongoing tradition of telling stories of science and exploration through words, objects and pictures in the final quarter of the nineteenth century and as geography professionalized and geographical science developed. These processes occurred within the context of a plethora of technological innovations, including the combination of the older medium of the magic lantern and photographic lantern-slides, integral to a wide range of entertainment, scientific and educational performances across Britain. In 1886 the RGS began to engage with the magic lantern. Via this technology and the interactive lecture performances in which it featured, I argue that the Society embraced the medium of photography, thereby engendering transformations in methods of knowledge making and to the RGS collections. I study how these transformations influenced the discipline of Geography as it was re-established at the University of Oxford in 1887. I demonstrate the evolution of the RGS’s Evening, Technical and Young Persons’ lectures, their contingent lantern-slide practices and, consequently, how these moulded, and were moulded by, the RGS Fellowship between c. 1885 and 1924. The chapters below explore how these innovations in visual technologies and practices arose, how they circulated knowledge and their effect on geographies of geographical knowledge making. By harnessing the lantern the RGS attracted an expanding and diversifying audience demographic. The thesis demonstrates the interactive nature of RGS lantern-slide lectures and audiences' important role in shaping the Society’s practices and geographical knowledge. The chapters below argue that it was via the use of the lantern that geography was disseminated to new places. The thesis therefore brings additional perspectives and dimensions to understandings of the circulation of geographical knowledge.
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Nelson, Paul David. „Geographical epidemiology of hypospadias“. Thesis, Imperial College London, 2003. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.401813.

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Gangjee, Dev. „(Re)locating geographical indications“. Thesis, University of Oxford, 2008. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.491398.

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This project is organised around the response to a single Thesis Question; If a product bears the place name "X" but does not in fact originate there, when does and when should this contravene principles of intellectual property law? Effectively, when does and when should this branch of the law prohibit the use of 'Californian Champagne'? Responses to this question have emerged over the course of a century of contentious international debates concerning the protection of Geographical Indications (GIs). The project first seeks to locate historical responses to this question within their broader context. The principal set of responses is provided by the law of unfair competition, with its prohibition of conduct which either misleads consumers or results In the misappropriation goodwill.
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Lepawsky, Josh. „Cyberspace in literary, popular, and geographical discourse, building a meaningful definition for geographic research“. Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1999. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape8/PQDD_0003/MQ42650.pdf.

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Tolmacheva, Marina. „Essays in Swahili geographical thought“. Universitätsbibliothek Leipzig, 2012. http://nbn-resolving.de/urn:nbn:de:bsz:15-qucosa-95207.

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The essays offered here originated in a series of conference papers presented over the years at various professional meetings. In the time elapsed since the first of them was offered at the meeting ofthe UNESCO Commission on the History of Geographical Thought (1988), new important works on Swahili history and language have appeared which demonstrate a variety of productive approaches to the problems of Swahili cultural and ethnic history In a publication such as the Swahili Forum it may be appropriate to recognize the steps made, to acknowledge the advances achieved, and to identify the needs remaining John Middleton`s (1992) well-received book presents a thorough and authmitative analysis of the social, economic, and spatial structures which evolved in the international setting of the East African coast Jarnes de Vere Alien`s posthumously published study (1992) pursues the questions of historic identity of the Swahili and of the political styles developed in the process of interaction of Arab-Islamic and African elements of coastal culture The special role of Islam in the formation and dynamics of Swahili city-states` elites has been analyzed slightly earlier by Randall L Pouwels (1987) Pouwels also has addressed coastal historiography in a series of articles some of which are cited in the following essays The fundamental study of the Swahili language by Derek Nurse and Thomas Hinnebusch (1993) revises and elaborates the possibilities of relating the chronology of the development of Swahili to the history of the Bantu-speaking coastal societies, raised in the earlier works singly or jointly by Derek Nurse and Thomas Spear New editions of Swahili texts make available, sometimes for the first time, to African and Western scholars alike, the synchronic nanatives indispensable for historical accuracy of our interpretations (Omar & Frankl 1990, I olmacheva 1993)
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Panahi, Hossein. „Geographical proximity and economic growth“. Thesis, University of Hull, 2007. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.479145.

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Clegg, Andrew J. „Childhood immunisation uptake : geographical perspectives“. Thesis, University of Portsmouth, 1993. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.332849.

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Efforts to control and eradicate infectious disease have concentrated on the provision of childhood vaccination. Unfortunately, the uptake of childhood vaccination continues to vary and infectious diseases continue to cause differential morbidity and mortality. Limited research has assessed the factors that underlie the uptake of vaccination. The present research undertakes an analysis of the patterns and determinants of vaccination uptake within the Portsmouth and South East Hampshire Health Authority, located in the south of England. In so doing, the research employs different analytical approaches, from the traditional ecological analysis through descriptive mapping and multivariate regression, to the innovative multi-level analyses. The ecological analysis shows a distinct geography to the uptake of vaccination which reflects characteristics of socioeconomic deprivation. Further analysis through multilevel modelling, emphasizes two influences on the uptake of vaccination. First, parental characteristics, which affect their role as decision maker and their ability to overcome certain time-space constraints to attend. Second, the ways in which the service is provided, including the influence of the health professional as adviser and provider of vaccination and the initiatives employed to improve uptake. These findings have implications for the future provision of childhood vaccination. Specifically, the research provides the opportunity to identify and target children unlikely to complete their vaccination schedule and the need to improve and standardise health professional knowledge and advice to parents.
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Bücher zum Thema "Geographical IT"

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Geographical imaginations. Oxford: Blackwell, 1994.

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Pros-Hymna. Geographical analogies. New York: Vantage Press, 1992.

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Institute of Trade Mark Attorneys. Geographical list. Croydon: ITMA, 1999.

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Gregory, Derek. Geographical imaginations. Cambridge, MA: Blackwell, 1994.

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Surveyors, Royal Institution of Chartered. Geographical directory. Basingstoke: Macmillan, 1993.

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Royal Institution of Chartered Surveyors. Geographical directory. Basingstoke: Macmillan, 1992.

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Royal Institution of Chartered Surveyors. Geographical directory. London: Royal Institution of Chartered Surveyors, 1991.

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Murthy, K. L. Narasimha. Geographical research. New Delhi: Concept Pub. Co., 1999.

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Institute of Trade Mark Attorneys. Geographical list. Croydon: ITMA, 2001.

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Royal Institution of Chartered Surveyors. Geographical directory. London: Waterlow, 2000.

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Buchteile zum Thema "Geographical IT"

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Cutchin, Malcolm P., Mark W. Skinner und Gavin J. Andrews. „Geographical gerontology“. In Geographical Gerontology, 313–19. Abingdon, Oxon ; New York : Routledge, 2018. | Series: Routledge studies in human geography ; 74: Routledge, 2017. http://dx.doi.org/10.4324/9781315281216-25.

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Shekhar, Shashi, und Hui Xiong. „Geographical Analysis“. In Encyclopedia of GIS, 364. Boston, MA: Springer US, 2008. http://dx.doi.org/10.1007/978-0-387-35973-1_477.

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Dore, Elizabeth D., und Deborah H. McMurtrie. „Geographical Diversity“. In Our Diverse Middle School Students, 86–88. New York, NY : Routledge, 2021.: Eye on Education, 2020. http://dx.doi.org/10.4324/9781003052371-11.

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Aberth, John. „Geographical Origins“. In The Black Death, 11–22. New York: Palgrave Macmillan US, 2005. http://dx.doi.org/10.1007/978-1-137-10349-9_2.

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Bithell, John F. „Geographical Epidemiology“. In Handbook of Epidemiology, 1413–45. New York, NY: Springer New York, 2014. http://dx.doi.org/10.1007/978-0-387-09834-0_22.

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Cao, Liujuan, Yue Gao, Qiong Liu und Rongrong Ji. „Geographical Retagging“. In Lecture Notes in Computer Science, 47–57. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-35728-2_5.

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Wu, Weiping, und Piper Gaubatz. „Geographical setting“. In The Chinese City, 15–33. Second edition. | Abingdon, Oxon; New York, NY: Routledge, 2021.: Routledge, 2020. http://dx.doi.org/10.4324/9780429829550-3.

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Nalder, L. F. „Geographical“. In A Tribal Survey of Mongalla Province, 3. Routledge, 2018. http://dx.doi.org/10.4324/9780429487279-1.

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„Geographical“. In Understanding World Christianity, 105–34. 1517 Media, 2019. http://dx.doi.org/10.2307/j.ctvd7w7q2.9.

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„Geographical“. In Understanding World Christianity, 159–214. 1517 Media, 2016. http://dx.doi.org/10.2307/j.ctt1b3t6wd.9.

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Konferenzberichte zum Thema "Geographical IT"

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Hsiao, Pai-Hsiang. „Geographical region summary service for geographical routing“. In the 2nd ACM international symposium. New York, New York, USA: ACM Press, 2001. http://dx.doi.org/10.1145/501416.501455.

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Wang, Hao, Huawei Shen, Wentao Ouyang und Xueqi Cheng. „Exploiting POI-Specific Geographical Influence for Point-of-Interest Recommendation“. In Twenty-Seventh International Joint Conference on Artificial Intelligence {IJCAI-18}. California: International Joint Conferences on Artificial Intelligence Organization, 2018. http://dx.doi.org/10.24963/ijcai.2018/539.

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Point-of-interest (POI) recommendation, i.e., recommending unvisited POIs for users, is a fundamental problem for location-based social networks. POI recommendation distinguishes itself from traditional item recommendation, e.g., movie recommendation, via geographical influence among POIs. Existing methods model the geographical influence between two POIs as the probability or propensity that the two POIs are co-visited by the same user given their physical distance. These methods assume that geographical influence between POIs is determined by their physical distance, failing to capture the asymmetry of geographical influence and the high variation of geographical influence across POIs. In this paper, we exploit POI-specific geographical influence to improve POI recommendation. We model the geographical influence between two POIs using three factors: the geo-influence of POI, the geo-susceptibility of POI, and their physical distance. Geo-influence captures POI?s capacity at exerting geographical influence to other POIs, and geo-susceptibility reflects POI?s propensity of being geographically influenced by other POIs. Experimental results on two real-world datasets demonstrate that POI-specific geographical influence significantly improves the performance of POI recommendation.
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Бакланов, П. Я. „GEOGRAPHICAL GRADIENTS - AS A MEASUREMENT OF GEOGRAPHICAL SPACE“. In Геосистемы Северо-Восточной Азии. Crossref, 2021. http://dx.doi.org/10.35735/tig.2021.56.55.002.

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Предлагается более широкий круг градиентных измерений географического пространства. В природной сфере – различия в биоразнообразии и ландшафтном разнообразии. В природно-ресурсной сфере – различия в запасах и продуктивности природных ресурсов, имеющих пространственно непрерывное распределение (лесных, земельных), а также – различия в сочетаниях природных ресурсов. Возможны градиентные оценки различий расчетных величин, например, суммарного природно-ресурсного потенциала. В экологической сфере в виде градиентов можно оценивать различия в загрязнении или нарушенности земельного, растительного покрова. В социально-экономической сфере с помощью градиентов можно оценивать различия ряда расчетных величин: плотности населения, экономической плотности, полей тяготения поселений, поля потенциальных затрат и т.п. Предлагается градиентное измерение различий однородных характеристик поселения-центра и сочетания поселений, входящих в круг с условно единичным радиусом, проведенным из центра. A wider range of gradient dimensions of geographical space is proposed. In the natural sphere these are differences in biodiversity and landscape diversity. In the natural resource sphere these are differences in the reserves and productivity of natural resources, which have a spatially continuous distribution (forest, land), as well as differences in the combinations of natural resources. Gradient estimates of differences in the calculated values, such as the total natural resource potential, are possible. In the environmental sphere, differences in pollution or disturbance of land and vegetation cover can be estimated as gradients. In the socio-economic sphere, the gradients can be used to estimate differences in a number of calculated values: population density, economic density, gravity fields of settlements, potential cost fields, etc. A gradient measurement of differences in the homogeneous characteristics of a settlement-center and a combination of settlements, entering the circle with a conventionally single radius drawn from the center, is proposed.
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Liu, Wei, Zhi-Jie Wang, Bin Yao und Jian Yin. „Geo-ALM: POI Recommendation by Fusing Geographical Information and Adversarial Learning Mechanism“. In Twenty-Eighth International Joint Conference on Artificial Intelligence {IJCAI-19}. California: International Joint Conferences on Artificial Intelligence Organization, 2019. http://dx.doi.org/10.24963/ijcai.2019/250.

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Learning user’s preference from check-in data is important for POI recommendation. Yet, a user usually has visited some POIs while most of POIs are unvisited (i.e., negative samples). To leverage these “no-behavior” POIs, a typical approach is pairwise ranking, which constructs ranking pairs for the user and POIs. Although this approach is generally effective, the negative samples in ranking pairs are obtained randomly, which may fail to leverage “critical” negative samples in the model training. On the other hand, previous studies also utilized geographical feature to improve the recommendation quality. Nevertheless, most of previous works did not exploit geographical information comprehensively, which may also affect the performance. To alleviate these issues, we propose a geographical information based adversarial learning model (Geo-ALM), which can be viewed as a fusion of geographic features and generative adversarial networks. Its core idea is to learn the discriminator and generator interactively, by exploiting two granularity of geographic features (i.e., region and POI features). Experimental results show that Geo- ALM can achieve competitive performance, compared to several state-of-the-arts.
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de León, Alexander, Victor Saquicela, Luis M. Vilches, Boris Villazón-Terrazas, Freddy Priyatna und Oscar Corcho. „Geographical linked data“. In the 6th International Conference. New York, New York, USA: ACM Press, 2010. http://dx.doi.org/10.1145/1839707.1839753.

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Avin, Chen, Yaniv Dvory und Ran Giladi. „Geographical quadtree routing“. In 2011 IEEE Symposium on Computers and Communications (ISCC). IEEE, 2011. http://dx.doi.org/10.1109/iscc.2011.5983794.

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Henriksson, Riikka, Tomi Kauppinen und Eero Hyvönen. „Core geographical concepts“. In the first international workshop. New York, New York, USA: ACM Press, 2008. http://dx.doi.org/10.1145/1367798.1367807.

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Seydi, Masoumeh, Maxim Romanov und Chiara Palladino. „Premodern Geographical Description“. In GIR'17: 11th Workshop on Geographic Information Retrieval. New York, NY, USA: ACM, 2017. http://dx.doi.org/10.1145/3155902.3155911.

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Zarkova, Natalia N., Leila A. Suleimanova und Natalya Y. Letyarina. „THE PROBLEM OF MOTIVATION IN CONTINUOUS GEOGRAPHICAL EDUCATION“. In Treshnikov readings – 2021 Modern geographical global picture and technology of geographic education. Ulyanovsk State Pedagogical University named after I. N. Ulyanov, 2021. http://dx.doi.org/10.33065/978-5-907216-08-2-2021-110-111.

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Parseliunas, Eimuntas, und Saulius Urbanas. „Features of Flexible E-Learning Modules Within Geographical Information Science for Vocational Training“. In ASME 2008 9th Biennial Conference on Engineering Systems Design and Analysis. ASMEDC, 2008. http://dx.doi.org/10.1115/esda2008-59093.

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The main features and general structures of two distant learning modules within geographical information science for vocational training are presented in this paper. “European Level Developments of Flexible Learning Models within Geographical Information Science (GIS) for Vocational Training (E-GIS)” was a pilot project under the Leonardo de Vinci Community action Programme on vocational training, within Geographical Information Science (GIS), to be implemented over a three year period, 2002–05. The project will be continued in 2008–2009 under the abbreviation eGIS+. The main objectives of the project is to establish co-operation between European Universities and GIS user organisations and to develop modularised courses intended for Internet based learning, establish links of communications between the partners in the project in order to disseminate and share “best practices” in different teaching situations and for different types of students. The course modules to be developed, all together, will constitute a one-year programme within GIS. This project mainly targets full time students, private and civil service employees within the European Union, but also similar categories in non-EU countries. The outcomes of the project is high level content, new net-based pedagogic method suited for accessing target groups of great diversity as regards pedagogic traditions, access to computers and bandwidth. Cooperation between the institutions will, certainly, give higher level courses than the individual institutions could possibly themselves. “Training of Lithuanian Geographic Information Infrastructure managers” is a project supported by European Union Structural Funds and National Land Service under the Ministry of Agriculture of Lithuania Republic. The main objective of the proposed geographic information e-training system is to develop and provide the modularised Spatial Information Infrastructure courses intended for on-line based learning. This mainly will target employees of civil service and private business in Lithuania and European Union. Proposed curriculum is a set of modular courses adding up to 1.5-year part-time studies in the field of Geographic Information Science and Geographic Information Infrastructure.
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Berichte der Organisationen zum Thema "Geographical IT"

1

Rangnekar, Dwijen. Geographical Indications. Geneva, Switzerland: International Centre for Trade and Sustainable Development, 2003. http://dx.doi.org/10.7215/ip_ip_20030601c.

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McEwen, K. Geographical names on Schoolnet. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1995. http://dx.doi.org/10.4095/298491.

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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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O'Brien, K. Geographical names and 1989 anniversaries. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1989. http://dx.doi.org/10.4095/298312.

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Aubrey, M. K. Alberta's Geographical Names Data Base. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1994. http://dx.doi.org/10.4095/298458.

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Kenny, R. Geographical names in PEI today. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1997. http://dx.doi.org/10.4095/298542.

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Farrell, C., M. Schulze, S. Pleitner und D. Baldoni. DNS Encoding of Geographical Location. RFC Editor, November 1994. http://dx.doi.org/10.17487/rfc1712.

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BONDARENKO, EGOR. Creating a geographical mosaic of continents. Science and Innovation Center Publishing House, Juni 2020. http://dx.doi.org/10.12731/bondarenko.

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Rangnekar, Dwijen. The Socio-Economics of Geographical Indications. Geneva, Switzerland: International Centre for Trade and Sustainable Development, 2004. http://dx.doi.org/10.7215/ip_ip_20040501b.

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10

Huddlestone, D. Notes on Gros Morne geographical names. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1985. http://dx.doi.org/10.4095/298175.

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