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dc.contributor.authorMorkun, Vladimir S.-
dc.contributor.authorСемеріков, Сергій Олексійович-
dc.contributor.authorMorkun, Nataliya V.-
dc.contributor.authorHryshchenko, Svitlana M.-
dc.contributor.authorКів, Арнольд Юхимович-
dc.date.accessioned2020-01-01T19:10:28Z-
dc.date.available2020-01-01T19:10:28Z-
dc.date.issued2018-
dc.identifier.citationMorkun V. S. Defining the Structure of Environmental Competence of Future Mining Engineers: ICT Approach / Vladimir S. Morkun, Serhiy O. Semerikov, Nataliya V. Morkun, Svitlana M. Hryshchenko, Arnold E. Kiv // Педагогiка вищої та середньої школи. – 2018. – Випуск 51. – C. 255-262. – DOI : 10.31812/pedag.v51i0.3673uk_UA
dc.identifier.issn2304-4470-
dc.identifier.urihttp://elibrary.kdpu.edu.ua/xmlui/handle/123456789/3595-
dc.identifier.urihttps://doi.org/10.31812/pedag.v51i0.3673-
dc.description1. Barlow, Z., Stone, M. K.: Living Systems and Leadership: Cultivating Conditions for Institutional Change. Journal of Sustainability Education. 2 (March). http://www.jsedimensions.org/wordpress/wpcontent/uploads/2011/03/BarlowStone2011.pdf (2011). Accessed 1 Feb 2018. 2. Bofinger, C.: Comparison of the Australian and South African Mining Engineering Courses to the Competency Requirements for Mine Managers. http://www.qldminingsafety.org.au/_dbase_upl/06_01.pdf (2007). Accessed 1 Feb 2018. 3. Bonham-Carter, G. F.: Geographic Information Systems for Geoscientists: Modelling with GIS. Pergamon, Oxford (1994). 4. Harvey, B. E.: New Competencies in Mining — Rio Tinto’s Experience. In: Council of Mining and Metallurgical Congress. Qld, Cairns, 27–28 May 2002. 5. Hasna, A. M.: Dimensions of sustainability. Journal of Engineering for Sustainable Development: Energy, Environment, and Health. 1 (2), 47–57 (2007). doi: 10.3992/2166-2517-1.2.47 6. Hirnychyi zakon Ukrainy (Mining law of Ukraine). Law 1127–XIV, 6 Oct. 1999. http://zakon0.rada.gov.ua/laws/show/1127-14 (1999). Accessed 1 Feb 2018. 7. Hryshchenko, S., Morkun V.: Using gis-technology in role-play as an effective means of ecological competence formation among the future engineers. Metallurgical and Mining Industry. 4, 139–142. http://www.metaljournal.com.ua/assets/MMI_2014_6/MMI_2015_ 4/020-Grischenko-Morkun.pdf (2015). Accessed 1 Feb 2018. 8. Hryshchenko, S.: Modern approaches in the study of engineering students. Metallurgical and Mining Industry. 12, 144–146. http://www. metaljournal.com.ua/assets/Journal/englishedition/MMI_2015_12/022 Hryshchenko.pdf (2015). Accessed 1 Feb 2018. 9. Hryshchenko, S. M., Morkun, V. S., Semerikov, S. O.: Vykorystannia heoinformatsiinykh tekhnolohii pry pidhotovtsi hirnychoho inzhenera (The use of GIS in the mining engineer training). Publishing center of SIHE “KNU”, Kryvyi Rih (2015). 10. Morkun, V., Semerikov S., Hryshchenko, S.: Environmental competency of future mining engineers. Metallurgical and Mining Industry. 4, 4– 7. http://www.metaljournal.com.ua/assets/Journal/1.2014.pdf (2014). Accessed 1 Feb 2018. 11. Morkun, V., Semerikov, S., Hryshchenko, S., Slovak, K.: Environmental Geo-information Technologies as a Tool of Pre-service Mining Engineer’s Training for Sustainable Development of Mining Industry. In: Ermolayev, V., Bassiliades, N., Fill, H.-G., Yakovyna, V., Mayr, H. C., Kharchenko, V., Peschanenko, V., Shyshkina, M., Nikitchenko, M., Spivakovsky, A. (eds.) ICT in Education, Research and Industrial Applications. Integration, Harmonization and Knowledge Transfer 2017, 13th International Conference on ICT in Education, Research and Industrial Applications. Integration, Harmonization and Knowledge Transfer (ICTERI, 2017), Kyiv, Ukraine, 15–18 May 2017. CEUR Workshop Proceedings (CEUR-WS.org), vol. 1844, pp. 303–310 (2017). 12. Morkun, V., Semerikov, S., Hryshchenko, S., Zelinska, S., Zelinskyi, S.: Environmental Competence of the Future Mining Engineer in the Process of the Training. The Social Sciences. 12 (11), 2034–2039 (2017). doi: 10.3923/sscience.2017.2034.2039 13. Morkun, V. S., Semerikov, S. O., Hryshchenko, S. M.: Content and teaching technology of course “Ecological Geoinformatics” in training of future mining engineers. Information Technologies and Learning Tools. 57 (1), 115– 125. http://journal.iitta.gov.ua/index.php/itlt/article/download /1549/1139 (2017). Accessed 1 Feb 2018. 14. Morkun, V. S., Semerikov, S. O., Hryshchenko, S. M., Slovak, K. I.: System of competencies for mining engineers. Computer science, information technology, automation. 5, 23–31. http://csita.com.ua/wpcontent/uploads/2017/03/Morkun-V.S.-Semer%D1%96kov-S.-O.pdf (2016). Accessed 1 Feb 2018. 15. Morkun, V. S., Semerikov, S. O., Hryshchenko, S. M.: Use of the system Moodle in the formation of ecological competence of future engineers with the use of geoinformation technologies. Computer science, information technology, automation. 4, 30–32. http://csita.com.ua/wpcontent/uploads/doc/CSITA%20%E2%84%964.pdf (2016). Accessed 1 Feb 2018. 16. The Definition and Selection of Key Competencies: Executive Summary. http://www.oecd.org/pisa/35070367.pdf (2005). Accessed 1 Feb 2018.-
dc.description.abstractThe object is to the reasonable selection of the ICT tools for formation of ecological competence. Pressing task is constructive and research approach to preparation of future engineers to performance of professional duties in order to make them capable to develop engineering projects independently and exercise control competently. Subject of research: the theoretical justification of competence system of future mining engineers. Methods: source analysis on the problem of ecological competence formation. Results: defining the structure of environmental competence of future mining engineers. Conclusion: the relevance of the material covered in the article, due to the need to ensure the effectiveness of the educational process in the preparation of the future mining engineers.uk_UA
dc.language.isoenuk_UA
dc.subjectenvironmental competenceuk_UA
dc.subjecteducationuk_UA
dc.subjectfuture mining engineeruk_UA
dc.subjectinformation and communication technologiesuk_UA
dc.titleDefining the Structure of Environmental Competence of Future Mining Engineers: ICT Approachuk_UA
dc.typeArticleuk_UA
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