Academic literature on the topic 'Prospecting – Geophysical methods'

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Journal articles on the topic "Prospecting – Geophysical methods"

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RAO, M. B. Ramachandra. "Geophysical prospecting methods." MAUSAM 1, no. 2 (2022): 93–104. http://dx.doi.org/10.54302/mausam.v1i2.4467.

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Fenta, Mulugeta C., David K. Potter, and János Szanyi. "Fibre Optic Methods of Prospecting: A Comprehensive and Modern Branch of Geophysics." Surveys in Geophysics 42, no. 3 (2021): 551–84. http://dx.doi.org/10.1007/s10712-021-09634-8.

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AbstractOver the past decades, the development of fibre optic cables, which pass light waves carrying data guided by total internal reflection, has led to advances in high-speed and long-distance communication, large data transmission, optical imaging, and sensing applications. Thus far, fibre optic sensors (FOSs) have primarily been employed in engineering, biomedicine, and basic sciences, with few reports of their usage in geophysics as point and distributed sensors. This work aimed at reviewing the studies on the use of FOSs in geophysical applications with their fundamental principles and
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Kulikov, V. A., A. G. Yakovlev, and V. A. Polikarpova. "SOME PROBLEMS OF ELECTRICAL GEOPHYSICAL PROSPECTING METHODS USED FOR EXPLORATION OF ORE DEPOSITS." Geodynamics & Tectonophysics 12, no. 3S (2021): 731–47. http://dx.doi.org/10.5800/gt-2021-12-3s-0550.

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Electrical geophysical prospecting methods are widely used at different stages of geological exploration. In the last two decades, new computer technologies and satellite navigation systems were successfully introduced in the geophysical industry. As a result, exploration technologies have improved, and new geophysical methods have been developed, such as electrical resistivity tomography (ERT) and spectral induced polarization (SIP) methods. An important role in ore geophysics is played by magnetotelluric (MT) methods. In this article, we focus on the issues of methodology and interpretation
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Zhao, Chuanting, Jiantao Ran, Lijun Xue, Kaifei Wang, and Yangang Cui. "Application of Geophysical Technology in Engineering Investigation." E3S Web of Conferences 338 (2022): 01003. http://dx.doi.org/10.1051/e3sconf/202233801003.

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With the development of science and technology and the progress of society, various high and new technologies have increasingly shown their respective advantages. Among them, geophysical prospecting technology is a typical representative. Because it can greatly improve the speed and efficiency of engineering, and at the same time, it also plays an important role in engineering safety and prevention. Therefore, it is widely promoted and applied, especially in engineering survey work. This article studies the importance of geophysical prospecting in engineering exploration, the methods of geophy
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Gan, Jie, Hui Li, Zhengwei He, et al. "Application and Significance of Geological, Geochemical, and Geophysical Methods in the Nanpo Gold Field in Laos." Minerals 12, no. 1 (2022): 96. http://dx.doi.org/10.3390/min12010096.

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As the main part of the Indosinian metallogenic province in the eastern part of the Tethys metallogenic domain, Southeast Asia has experienced multiple stages of tectonic magnetic activities accompanied by the formation of rich mineral resources. However, due to the undeveloped economy, low degree of geological work, dense vegetation cover, and lack of obvious prospecting marks, traditional geological prospecting work in the area is not optimal. Consequently, the combination of high-precision geophysics and geochemistry has become an important method of looking for ore bodies deep underground
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V. M., Tretyak, and Govorov O. F. "On the possibility of using the methods of geophysical electrical exploration for current control of the quality of soil processing." MECHANICS and AUTOMATICS of AGROINDUSTRIAL PRODUCTION, no. 2(116) (2023): 187–93. http://dx.doi.org/10.37204/2786-7775-2023-2-20.

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Purpose. Improving the quality of tillage by creating an indicator of current control to be installed at the machine-tractor unit. Methods. Based on the analysis of methods of geophysical research of the earth’s crust, a method of current control of soil cultivation during technological operations is proposed. Results. Variants of block diagrams of integral indicators of the quality of execution of technological processes of soil cultivation using methods of geophysical electrical prospecting are proposed. Conclusions 1. To ensure the quality of soil cultivation, it is necessary to use continu
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Song, Mingchun, Guoqiang Xue, Hongbo Liu, et al. "A Geological-Geophysical Prospecting Model for Deep-Seated Gold Deposits in the Jiaodong Peninsula, China." Minerals 11, no. 12 (2021): 1393. http://dx.doi.org/10.3390/min11121393.

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The North China Craton is one of China’s major gold-producing areas. Breakthroughs have been continually made in deep prospecting at depths of 500–2000 m in the Jiaodong Peninsula, and geophysical methods have played an important role. Given that the geophysical signals of deep-seated gold deposits are difficult to detect, due to their thick overburden layers, conventional geophysical methods are not suitable for deep prospecting. Therefore, this study upgrades the geological-geophysical prospecting model, which is based on the deep metallogenic model and geophysical method of large exploratio
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Yue, Lei. "Application of Geophysical Technique in the Coal Mining." International Journal of Online Engineering (iJOE) 11, no. 7 (2015): 11. http://dx.doi.org/10.3991/ijoe.v11i7.4759.

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Although coal is one of the most prevalent energy resources in the world, coal production has been a high risk industry due to its frequent accidents, especially in the developing nations. As well known, the main reason for that problem is that the potential disaster sources are not prospected before coal mining. Hence, it is very necessary to be advanced prospecting before the coal mining. Usually, the work of advanced prospecting can be done by the geophysical methods. According to the difference of disasters source physical characters, different geophysical methods can be employed. Because
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Ruslan Malikov, Gulam Babayev, Ruslan Malikov, Gulam Babayev. "THE ROLE OF ARTIFICIAL INTELLIGENCE IN GEOSCIENCES: CONCEPTUAL REVIEW." PAHTEI-Procedings of Azerbaijan High Technical Educational Institutions 43, no. 08-01 (2024): 500–512. http://dx.doi.org/10.36962/pahtei4308012024-56.

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Geophysics is the branch of Earth science that applies the principles and methods of physics to the study of the Earth. Recent advances in artificial intelligence (AI), particularly machine learning (ML) and deep learning (DL), are transforming the field by providing powerful tools for data processing, analysis, and prediction. Traditional geophysical methods are often challenged by data complexity, non-unique solutions, and human interpretation limitations. AI algorithms trained on large datasets can identify intricate patterns and relationships within the data, leading to improved accuracy a
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Kasyanova, N. A. "Ways to improve the reliability of interpreting the results of geophysical surveys performed for the local forecast and prospecting for solid minerals: a geodynamic approach." Proceedings of higher educational establishments. Geology and Exploration 63, no. 4 (2021): 73–79. http://dx.doi.org/10.32454/0016-7762-2020-63-4-73-79.

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Background. The geodynamic approach is effectively used in regional forecasting and prospecting works. However, its application for local forecasting and prospecting for solid minerals is limited and sometimes impossible. One of the key problems of local forecasting and prospecting for minerals (solid, liquid, gaseous) is the presence of non-standard (flickering) geophysical anomalies, which complicates the interpretation of the results of geophysical surveys performed at different times at different stages of geological exploration. The article is devoted to clarifying the possibility of usin
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Dissertations / Theses on the topic "Prospecting – Geophysical methods"

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Persson, Kjell. "Integrated geophysical-geochemical methods for archaeological prospecting." Doctoral thesis, Stockholm, 2005. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-279.

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Hawke, Philip James. "The geophysical signatures and exploration potential of Australia's meteorite impact structures." University of Western Australia. School of Earth and Geographical Sciences, 2004. http://theses.library.uwa.edu.au/adt-WU2005.0053.

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[Truncated abstract. Please see the pdf version of the abstract for the complete text.] Thirty impact structures of confirmed or possible status are currently identified in Australia. Twenty-two of these structures are confirmed by the presence of meteorite fragments or shock metamorphic features that are diagnostic of meteorite impact. The remainder have an impact origin supported by strong secondary evidence. New impact structures are being discovered in Australia at a rate of about one every year, with geophysics a key tool in the identification of candidate structures for further investi
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Tsang, Wing-shing, and 曾永成. "Borehole geophysics limitations of natural gamma and gamma-gamma density logging methods." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2003. http://hub.hku.hk/bib/B42577238.

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Tsang, Wing-shing. "Borehole geophysics limitations of natural gamma and gamma-gamma density logging methods." Click to view the E-thesis via HKUTO, 2003. http://sunzi.lib.hku.hk/hkuto/record/B42577238.

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Theodoridis, John Apostolis 1972. "Borehole electromagnetic prospecting for weak conductors." Monash University, School of Geosciences, 2004. http://arrow.monash.edu.au/hdl/1959.1/5225.

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Ahmad, Khalid. "Investigating the source of thermal anomalies in the northern United Arab Emirates (UAE) desert using geophysical methods." Diss., Rolla, Mo. : Missouri University of Science and Technology, 2010. http://scholarsmine.mst.edu/thesis/pdf/Ahmad_09007dcc807ad423.pdf.

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Thesis (Ph. D.)--Missouri University of Science and Technology, 2010.<br>Vita. The entire thesis text is included in file. Title from title screen of thesis/dissertation PDF file (viewed June 30, 2010) Includes bibliographical references (p. 129-135).
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Stevenson, Frederick. "Response of the Black Mountain, South Africa, sulfide deposit to various geophysical techniques and implications for exploration of similar deposits." Thesis, The University of Arizona, 1985. http://hdl.handle.net/10150/558021.

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Rosa, Henrique. "Estudo de caracterização de eletrofacies por meio de perfis geofisicos de poços e de amostras de testemunhos utilizando estatistica multivariada." [s.n.], 2006. http://repositorio.unicamp.br/jspui/handle/REPOSIP/265408.

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Orientadores: Saul Barisnik Suslick, Alexandre Campane Vidal<br>Tese (doutorado) - Universidade Estadual de Campinas, Faculdade de Engenharia Mecanica e Instituto de Geociencias<br>Made available in DSpace on 2018-08-12T08:19:21Z (GMT). No. of bitstreams: 1 Rosa_Henrique_D.pdf: 5323611 bytes, checksum: 9779cc866a624b65a3932fa6ade79e78 (MD5) Previous issue date: 2006<br>Resumo: Este estudo se foca na elaboração de um método de caracterização de eletrofácies, o qual utiliza dados de perfis geofísicos de poços referentes às classes litológicas identificadas nos testemunhos desses poços, por mei
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Vinhas, Maria Cecilia Sodero 1968. "Aplicação de métodos geofísicos aplicados em pontos selecionados do Estuário do Rio Itanhaém." [s.n.], 2014. http://repositorio.unicamp.br/jspui/handle/REPOSIP/286645.

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Orientador: Sueli Yoshinaga Pereira, Rodrigo de Souza Portugal<br>Tese (doutorado) - Universidade Estadual de Campinas, Instituto de Geociências<br>Made available in DSpace on 2018-08-27T02:27:34Z (GMT). No. of bitstreams: 1 Vinhas_MariaCeciliaSodero_D.pdf: 6306176 bytes, checksum: 930cddf48712d9d8f841ea47190c1beb (MD5) Previous issue date: 2014<br>Resumo: Essa pesquisa objetivou a aplicação e o entendimento da relação de três métodos geofísicos: eletrorresistividade, sísmica de refração e sismoelétrica; em pontos selecionados no Estuário do Rio Itanhaém e se eles podem ser validados pelas i
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Ledwaba, Lebogang John. "An overview of energy minerals in the Springbok Flatsbasin, South Africa : implications for geochemical and geophysical exploration." Thesis, Rhodes University, 2015. http://hdl.handle.net/10962/d1019880.

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This study is informed by the rising demand for power needs in South Africa and aims at understanding the geophysical and geochemical characteristics of the energy minerals in the Springbok Flats Basin and relating them to the prevailing geological and structural setting for improved exploration targeting. The Springbok Flats Basin is part of the Karoo sediments and host to uranium, coal and coal bed methane (CBM) resources. The lithology sections in the basin indicate presence of basaltic lavas at the top, underlain by mudrocks, siltstones, sandstones, conglomerates and diamictite, with inter
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Books on the topic "Prospecting – Geophysical methods"

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Dobrin, Milton B. Introduction to geophysical prospecting. 4th ed. McGraw-Hill, 1988.

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Milsom, John. Field geophysics. John Wiley & Sons, 1995.

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Milsom, John. Field geophysics. 3rd ed. J. Wiley, 2003.

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Milsom, John. Field geophysics. 2nd ed. Wiley, 1996.

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Milsom, John. Field geophysics. Open University Press, 1989.

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Nath, Sankar Kumar. Geophysical prospecting for groundwater. Balkema, 2000.

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Sheriff, Robert E. Encyclopedic dictionary of exploration geophysics. 3rd ed. Society of Exploration Geophysicists, 1991.

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M, Brooks, and Hill Ian, eds. An introduction to geophysical exploration. 3rd ed. Blackwell Science, 2002.

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M, Brooks, ed. An introduction to geophysical exploration. 2nd ed. Blackwell Scientific Publications, 1991.

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Hašek, Vladimír. Methodology of geophysical research in archaelogy. Archaeopress, 1999.

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Book chapters on the topic "Prospecting – Geophysical methods"

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Zakirov, Azamat, Ilyas Yanbukhtin, Timur Mamarozikov, Djangar Ilyasos, and Otabek Aripdjanov. "Results of geophysical methods in the study of the ancient settlement Dalvarzintepa (Uzbekistan)." In Advances in On- and Offshore Archaeological Prospection. Universitätsverlag Kiel | Kiel University Publishing, 2023. http://dx.doi.org/10.38072/978-3-928794-83-1/p62.

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The purpose of the study was to use a variety of geophysical techniques to uncover the shape, size, internal structure, and contour of archaeological artifacts buried beneath the surface. Magnetic prospecting, electrical resistivity tomography, and ground penetrating radar were the three main geophysics techniques. Various abnormalities are clearly traced on the maps created from the processing results of all methods in the form of figures with different lengths and forms. Archaeologists were able to identify the most important excavation sites using geophysical study.
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Plageras, Angelos, Dimitrios Oikonomou, Nikos Papadopoulos, and Athanasios Argyriou. "Multidisciplinary shallow underwater geophysical prospecting at Delos island." In Advances in On- and Offshore Archaeological Prospection. Universitätsverlag Kiel | Kiel University Publishing, 2023. http://dx.doi.org/10.38072/978-3-928794-83-1/p11.

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Geophysical imaging methods have been applied to reconstruct the cultural dynamics in the two different submerged sites in Delos island. The geophysical results provided useful information for understanding the complexity of the submerged archaeological sites.
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Herbich, Tomasz. "Geophysical Prospecting in Egypt: An Overview." In One World Archaeology. Springer International Publishing, 2024. http://dx.doi.org/10.1007/978-3-031-57900-4_7.

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AbstractAmong the methods of archaeological geophysics used to the study of Ancient Egypt, magnetometry is the most widely applied. This is due to the dry climate and geological conditions (a large part of the sites are located in a desert environment), which make electrical resistivity measurements difficult and time consuming. GPR and EMI were used sporadically so far, and with no convincing result. The good results provided by magnetometry is due to the magnetic properties of the mud deposited by the river Nile, which is the basic raw material for the production of sundried bricks, the basic building material in the Nile Valley to the present day. The results obtained so far have provided some excellent examples of the effectiveness of magnetometer surveys in revealing city and settlement plans, production sites, cemeteries, and cult places. These investigations have also provided extremely useful observations for the reconstruction of the development of settlement taking place not only on a site, but also on a wider scale (e.g. reconstruction of palaeolandscape).
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Czajlik, Zoltán, Matija Črešnar, Branko Mušič, et al. "The structure of the burial mounds in the Eastern Hallstatt areas: a geophysical approach." In Advances in On- and Offshore Archaeological Prospection. Universitätsverlag Kiel | Kiel University Publishing, 2023. http://dx.doi.org/10.38072/978-3-928794-83-1/p18.

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Prospecting ploughed-out/erased burial mounds is an important part of the Early Iron Age sites research. A complex use of geophysical methods in forested areas is effective also in the case of tracing the construction of burial mounds. Burial mounds that appear similar on the DSM have relevant differences in their construction.
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Verhegge, Jeroen, Philippe De Smedt, Erwin Meylemans, Dominique Bosquet, Lieven Verdonck, and Wim De Clercq. "The Application of Geophysical Survey in Archaeological Research in Belgium: Current State and Future Perspectives." In One World Archaeology. Springer International Publishing, 2024. http://dx.doi.org/10.1007/978-3-031-57900-4_2.

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AbstractSince its earliest applications in the 1970s, geophysical survey has been applied increasingly in Belgian archaeology. This was particularly the case within Flanders over the past decade. Academic archaeological research has played a fundamental role in disseminating available techniques, such as electrical resistance and magnetometer survey, and in advancing the use of electromagnetic induction- and ground penetrating radar instruments for archaeological prospection specifically. However, the dissemination of this expertise remains in its infancy and adoption in Brussels and Wallonia lingers behind. Although Flanders has seen a strong increase in such surveys over the past decade, the share that geophysical techniques take up in development-led archaeology pales to significantly wider used invasive prospection methods. Both a lack of tradition in archaeological geophysics as well as the dominance of systematic trial trenching as a prospection method underlie this slow uptake of geophysical approaches in development-led archaeology. In contrast, geophysical survey does play a significant role in academic (landscape) archaeological research and in the investigation of archaeological sites for scheduling. Within this general situation, the use of geophysical methods in Belgium is geared primarily towards specific expected types of sites, but, within the heterogeneous geological landscape, spans a wide range of environments.While progress has been made continually over the past decade, much room remains for further optimisation of the use of geophysical methods in Belgian archaeology. Here, improving protocols for the integration of complementary, invasive and non-invasive, survey methods adapted to the diverse geological and archaeological circumstances remains a key challenge. To enable these advances, current efforts to provide such a methodological framework, along with existing expertise across the nation, have to be disseminated beyond academic circles through initiatives, such as dedicated (post-)academic training and inclusion of both archaeologists and archaeological geophysicists. Hereby, the consolidation of a robust legislative framework, adhering to EAC guidelines, is required for implementing geophysics in (development-led) archaeology sustainably, similar to e.g. trial trenching. This should safeguard the quality, archiving, accessibility, and interoperability of resultant data.
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Stamnes, Arne Anderson, Carmen Cuenca-García, Lars Gustavsen, et al. "A Review on the Development and Current Role of Ground-Based Geophysical Methods for Archaeological Prospection in Scandinavia." In One World Archaeology. Springer International Publishing, 2024. http://dx.doi.org/10.1007/978-3-031-57900-4_6.

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AbstractThis chapter provides an extensive overview of the use of geophysics in archaeological research and cultural heritage management in Finland, Sweden, Norway, Denmark and Iceland. It discusses the current status, role and acceptance of geophysical methods in each country, and outlines the state-of-the-art based on a synthesis of existing knowledge and experience. The authors consider the past, present and future of archaeo-geophysics in the individual regions, taking into account the academic, curatorial and commercial aspects of their use. This, in turn, serves as the basis for a discussion of the reasons for the varying degrees of acceptance and integration of the methods in each country, and aid the distribution of knowledge and experience gained across Scandinavia and beyond. The practical experience, application and general acceptance are not similar in the different Scandinavian countries. There is a general lack of integrating geophysical (and by extension non-intrusive methods) within the archaeological practice and guidelines. The case studies presented here show a range of archaeological applications of geophysics in Scandinavia, demonstrating how geophysical methods should by no means be considered “new” or “untested”. While there is a need for targeted research, there has also been a challenge in disseminating the already generated knowledge and experiences to other actors within the archaeological community. Some of this can be explained by a lack of trained personnel, domestic competence and archaeological institutions undertaking research into the applicability of geophysical methods, and data-sharing and making reports accessible.
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Sarris, Apostolos, Kostas Hatzigiannakis, and Diamantis Panagiotopoulos. "The contribution of geophysical and spectral imaging techniques in the archaeological investigations of Minoan Koumasa." In Advances in On- and Offshore Archaeological Prospection. Universitätsverlag Kiel | Kiel University Publishing, 2023. http://dx.doi.org/10.38072/978-3-928794-83-1/p47.

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A manifold geophysical strategy has been carried out for mapping the Minoan cemetery and settlement of Koumasa, S. Crete. Multispectral imaging was used as a complementary method to investigate associations with the geophysical results. The GNVI proved the most effective in this task. Archaeological excavations have verified a number of features suggested by the remote sensing methods.
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Křivánek, Roman, and Eliška Vošvrdová. "Experimental examination of the possibilities of geophysical methods in wooded and rugged terrain: case study of the defunct medieval glasswork Vysoká Jedle in the Ore Mountains." In Advances in On- and Offshore Archaeological Prospection. Universitätsverlag Kiel | Kiel University Publishing, 2023. http://dx.doi.org/10.38072/978-3-928794-83-1/p73.

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Rugged and wooded terrains of mountains limit possibilities of archaeological prospection. Various production or exploitation areas are typical for Czech mountain regions. Magnetometer survey of medieval glass works has been standard geophysical method for decades. The other geophysical methods could be also successful in glass furnaces identification or study. Magnetic susceptibility survey with a Multi Kappa instrument observes the state of production feature.
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Zhao, Wenke, and Bangbing Wang. "Archaeological Geophysics in China – A Historical Perspective." In One World Archaeology. Springer International Publishing, 2024. http://dx.doi.org/10.1007/978-3-031-57900-4_4.

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AbstractGeophysical methods can efficiently identify and map archaeological features or changes in the matrix of a site. They have been extensively used in Chinese archaeological prospection since the survey for the Mausoleum of the Emperor Wanli of Ming Dynasty in mid-1950s. The evolution of archaeo-geophysics in China is closely linked to advances in emerging geophysical technology, the needs of non-destructive detection from the archaeological community and Chinese fast-growing economy. Throughout the past 70 years, researchers and practitioners witnessed the rapid development of geophysics in the field of Chinese Archaeology. In this chapter, we introduce some key archaeo-geophysical events, for example, a multi-geophysical project was performed by China Geological Survey (CGS), to evaluate the applicability and the effectiveness for archaeological characterisation at the Mausoleum of Qinshihuang, i.e. the first Emperor of the Qin Dynasty, during 2002 and 2003, the scale of which has been the largest in Chinese archaeo-geophysics so far. Besides, we divide these events into four periods, i.e. embryonic stage (1950s–1980), initial stage (1980–2000), development stage (2000–2010), and internationalisation stage (2010–present). Moreover, we also provide some significant case studies, namely ancient city sites and ancillary building remains, ancient tombs, cultural heritage protection, urban underground remains, and underwater archaeology. In a word, the development has paved the way to regular use of geophysical methods in almost all types of potential archaeological interests in China.
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Gallistl, Jakob, Hannes Schiel, Ralf Totschnig, et al. "Integrated archaeological and engineering geophysical investigation of the castle ruin Mödling (Austria)." In Advances in On- and Offshore Archaeological Prospection. Universitätsverlag Kiel | Kiel University Publishing, 2023. http://dx.doi.org/10.38072/978-3-928794-83-1/p24.

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An extensive multi-method investigation of a castle ruin has been conducted that extends the spectrum of geophysical methods used in archaeological prospection. For complex sites like a castle ruin, the incorporation of seismic and geoelectrical methods can facilitate the interpretation of ground penetrating radargrams, particularly in the existence of bedrock.
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Conference papers on the topic "Prospecting – Geophysical methods"

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Nikolaev, Alexei V. "Nontraditional methods of geophysical prospecting: Ideas and experimental results." In SEG Technical Program Expanded Abstracts 1990. Society of Exploration Geophysicists, 1990. http://dx.doi.org/10.1190/1.1890388.

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Jata, I., and S. Kasapi. "Application of surface geophysical methods in groundwater prospecting in the Shkodra region." In 5th Congress of Balkan Geophysical Society. European Association of Geoscientists & Engineers, 2009. http://dx.doi.org/10.3997/2214-4609-pdb.126.6264.

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Kutrubes, Doria, and John F. Kick. "Prospecting for a Municipal Water Supply Using Multiple Geophysical Methods, Long Lake, NY." In Symposium on the Application of Geophysics to Engineering and Environmental Problems 2011. Environment and Engineering Geophysical Society, 2011. http://dx.doi.org/10.4133/1.3614055.

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Zhang, Yang, XiaoLu Yan, and Lu Yang. "Application of multiple geophysical prospecting methods and high precision survey in expressway construction." In International Conference on Geographic Information and Remote Sensing Technology (GIRST 2022), edited by Yang Wang. SPIE, 2023. http://dx.doi.org/10.1117/12.2667462.

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Yakymchuk, M., S. P. Levashov, I. N. Korchagin, and Y. M. Pischaniy. "Mobile Geophysical Methods Application for the Operative Prospecting Conducting on the Construction Sites." In 73rd EAGE Conference and Exhibition incorporating SPE EUROPEC 2011. EAGE Publications BV, 2011. http://dx.doi.org/10.3997/2214-4609.20149501.

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Varentsov, I., A. Khrapov, and A. Yakovlev. "Land Geophysical Methods for Search and Prospecting of Copper-Nickel Deposits of “Norilskiy Nickel”." In GeoSiberia 2007 - International Exhibition and Scientific Congress. European Association of Geoscientists & Engineers, 2007. http://dx.doi.org/10.3997/2214-4609.201403696.

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Yakymchuk, M., Y. M. Yakymchuk, I. Korchagin, S. Levashov, M. Dravert, and Y. Pyschaniy. "Investigation of Geological-Engineering and Hydrological Conditions in the Prospecting Areas by Geophysical Methods." In 2nd EAGE St Petersburg International Conference and Exhibition on Geosciences. European Association of Geoscientists & Engineers, 2006. http://dx.doi.org/10.3997/2214-4609-pdb.20.p147.

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Raju, P. V. S., and K. S. Kumar. "Application of Geophysical Methods (Gravity and Magnetics) to Chromite Prospecting: An example from Kathpal Area, Sukinda, Orissa." In 1st Indian Near Surface Geophysics Conference & Exhibition. European Association of Geoscientists & Engineers, 2019. http://dx.doi.org/10.3997/2214-4609.201979027.

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Pérez-Cuevas, J., V. Flores-Sasso, E. Prieto-Vicioso, L. Ruiz-Valero, and S. Sandoval. "Application of Geophysical Prospecting Methods for Soil Structure Characterization of the Cathedral of Santo Domingo, Dominican Republic." In 12th International Conference on Structural Analysis of Historical Constructions. CIMNE, 2021. http://dx.doi.org/10.23967/sahc.2021.030.

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A. Meju, Max, and Sergio L. Fontes. "Evaluation Of Combined Tem-Csamt Methods For Gold Prospecting In The Pau-A-Pique Subarea Of The Fazenda Brasileiro Mine, Brazil." In 7th International Congress of the Brazilian Geophysical Society. European Association of Geoscientists & Engineers, 2001. http://dx.doi.org/10.3997/2214-4609-pdb.217.156.

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Reports on the topic "Prospecting – Geophysical methods"

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Harris, Virginia, Gerald C. Nelson, and Steven Stone. Spatial Econometric Analysis and Project Evaluation: Modeling Land Use Change in the Darién. Inter-American Development Bank, 1999. http://dx.doi.org/10.18235/0008801.

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The Program for the Sustainable Development of Darién Province in Panama is a $70 million operation approved in 1998 and a major component of the program involves the resurfacing of the Pan American highway, which runs roughly north south through the province to a point about 70 kilometers from the Colombian border. The paper illustrates the use of spatial analysis techniques to predict the land use changes that would occur after the road is resurfaced and other project interventions completed. The predictions are based on a spatial econometric model relating categories of land use to geophysi
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Corriveau, L., and E. G. Potter. Advancing exploration for iron oxide-copper-gold and affiliated deposits in Canada: context, scientific overview, outcomes, and impacts. Natural Resources Canada/CMSS/Information Management, 2024. http://dx.doi.org/10.4095/332495.

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The Geo-mapping for Energy and Minerals (GEM) and Targeted Geoscience Initiative (TGI) programs conducted extensive collaborative research on mineral systems with iron oxide-copper-gold (IOCG) and affiliated deposits in prospective settings of Canada. Regional alteration mapping as well as geochemical and geophysical modelling undertaken under the GEM program documented the evolution of polymetallic metasomatic systems with iron-oxide and alkali-calcic alteration and led to an increased recognition of the mineral potential of poorly explored areas and historic deposits of the Great Bear magmat
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