Balram, S., Dragicevic, S., Meredith, T. (2003). Achieving Effectiveness in Stakeholder Participation Using the GIS-Based Collaborative Spatial Delphi Methodology. Journal of Environmental Assessment Policy and Management, 5(3), 365–394, https://doi.org/10.1142/S1464333203001413
Bednarz, S.W. (2019). Geography’s secret powers to save the world. Canadian Geographer, 63(4), 520–529, https://doi.org/10.1111/cag.12539
Bingimlas, K.A. (2009). Barriers to the Successful Integration of ICT in Teaching and Learning Environments: A Review of the Literature. Eurasia Journal of Mathematics, Science and Technology Education, 5(3), 235–245. https://doi.org/10.12973/ejmste/75275
Ciolli, M., Federici, B., Ferrando, I., Marzocchi, R., Sguerso, D., Tattoni, C.. Zatelli, P. (2017). FOSS Tools and Applications for Education in Geospatial Sciences. ISPRS International Journal of Geo-Information, 6(7), 225, https://doi.org/10.3390/ijgi6070225
Dahal, S., Hall, R.H., Morrison, G., Lamble, S.P., Luna, R. (2011). A Web-Based Learning Module for Teaching GIS within the Context of Environmental Engineering. ASEE Annual Conference and Exposition, Conference Proceedings. https://peer.asee.org/a-web-based-learning-module-for-teaching-gis-within-the-context-of-environmental-engineering.pdf
Dias, N.W. (2004). Developing remote sensing and GIS hands-on modules to support UN-affiliated education programmes. Space Policy, 20(1), 55–58. https://doi.org/10.1016/j.spacepol.2003.11.006
DiBiase, D. (2008). Scoping Geographic Information Systems for Education: Making Sense of Academic and Practitioner Perspectives. Geography Compass, 2(5), 1506–1528, https://doi.org/10.1111/j.1749-8198.2008.00138.x
Dronova, O.L., Maruniak, Y.O., Rudenko, L.H., Topchiyev, O.H. (2023). The Image and Mission of Geographical Science in Ukraine. Ukrainian Geographical Journal, 2023(3), 3–11, https://doi.org/10.15407/ugz2023.03.003
Durante, M., Prezado, Y., Patera, V. (2019). The Biophysics Collaboration for research at FAIR and other new accelerator facilities. Europhysics News, 50(4), 27-30. https://doi.org/10.1051/epn/2019403
Gagnier, K.M., Holochwost, S.J., Fisher, K.R. (2022). Spatial thinking in science, technology, engineering, and mathematics: Elementary teachers’ beliefs, perceptions, and self-efficacy. Journal of Research in Science Teaching, 59(1), 95–126. https://doi.org/10.1002/tea.21722
Gilbert, A.M., Osinski, G.R., Harrison, T.N., Mader, M., Nuhn, A., Shankar, B., Tornabene, L.L. (2013). Interactive mapping of the planets using Google Earth platform. 44th Lunar and Planetary Science Conference. https://www.lpi.usra.edu/meetings/lpsc2013/pdf/2045.pdf
Golob, T. (2017). Use of geographic information systems in geography class at a secondary school using the example of the quantum GIS program. Geografija v šoli, 25(3), 28–35,
Green, C.J. (2018). Young children’s spatial autonomy in their home environment and a forest setting. Journal of Pedagogy, 9(1), 65–85 https://doi.org/10.2478/jped-2018-0004
Huynh, N.T., & Sharpe, B. (2009). The Role of Geospatial Reasoning in Effective GIS Problem Solving: K-16 Education Levels. Geomatica, 63(2), 119–128. https://doi.org/10.5623/geomat-2009-0017https://www.sciencedirect.com/science/article/pii/S1195103624001642
Iatsyshyn, A., Iatsyshyn, A., Kovach, V., Zinovieva, I., Artemchuk, V., Popov, O.. Turevych, A. (2020). Application of Open and Specialized Geoinformation Systems for Computer Modelling Studying by Students and PhD Students. O. Sokolov et al. (Eds.), Proceedings of the 16th International Conference on ICT in Education, Research and Industrial Applications. Integration, Harmonization and Knowledge Transfer. Volume II: Workshops, Kharkiv, Ukraine, October 06-10, 2020 (Vol. 2732, pp. 893–908). CEUR-WS.org. https://ceur-ws.org/Vol-2732/20200893.pdf
Jakab, I., Ševčík, M., Grežo, H. (2017). Model of higher GIS education. Electronic Journal of e-Learning, 15(3), 220–234, https://academic-publishing.org/index.php/ejel/article/view/1834
Jo, I., Hong, J.E., Verma, K. (2016). Facilitating spatial thinking in world geography using Web-based GIS. Journal of Geography in Higher Education, 40(3), 442–459. https://doi.org/10.1080/03098265.2016.1150439
Kholoshyn, I.V., Bondarenko, O.V., Hanchuk, O.V., Shmeltser, E.O. (2019). Cloud ArcGIS Online as an innovative tool for developing geoinformation competence with future geography teachers. CTE Workshop Proceedings, 6, 403–412. https://doi.org/10.55056/cte.401
Kingsley, I., Oliver, C., Van Kranendonk, M. (2017). Space Science Outreach – Are we decreasing public understanding? Proceedings of the International Astronautical Congress, IAC (Vol. 17, pp. 11299–11310). https://www.researchgate.net/publication/327548847
Konstantakatos, G., & Galani, L. (2023). How is the use of GIS in geographical and environmental education evaluated? Findings from a systematic review. International Research in Geographical and Environmental Education, 32(2), 159–175. https://doi.org/10.1080/10382046.2022.2138167
Kravchenko, I., Luhmann, T., Shults, R. (2016). Concept and practice of teaching technical university students to modern technologies of 3D data acquisition and processing: A case study of close-range photogrammetry and terrestrial laser scanning. International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences - ISPRS Archives, 41, 65–69. https://doi.org/10.5194/isprsarchives-XLI-B6-65-2016
Krylova, A.M., Pachev, S.I., Poliakova, L.I., Schkoda, N.A., Zhiryakov, K.O. (2020). Using historical maps in GIS to study local history (Berdyansk forestry maps as an example). International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM, 20(2.2), 461–468. https://doi.org/10.5593/sgem2020/2.2/s11.055
Lacaze, B., Dudek, J., Picard, J. (2018). GRASS GIS Software with QGIS. N. Baghdadi, C. Mallet, and M. Zribi (Eds.), QGIS and Generic Tools (Vol. 1, pp. 67–106). John Wiley & Sons, Ltd. https://doi.org/10.1002/9781119457091.ch3
Li, S. (2023). Spatial thinking and STEM education. R.J. Tierney, F. Rizvi, and K. Ercikan (Eds.), International Encyclopedia of Education (4th ed., p. 76-87). Oxford: Elsevier. https://doi.org/10.1016/B978-0-12-818630-5.13052-0
Luhmann, T. (2021). Development of German-Ukrainian cooperations for education and research in photogrammetry and laser scanning. Geo-Spatial Information Science, 24(1), 152–159, https://doi.org/10.1080/10095020.2020.1831891
Malchykova, D.S., & Mezentsev, K.V. (2022). Public Image of Geography in the Context of Basic Secondary Education Standards Transformation: Ukrainian and World Experience. Ukrainian Geographical Journal, 2022(1), 53–63. https://doi.org/10.15407/ugz2022.01.053
Marascu, V., Mihailescu, M., Barna, V. (2023). Challenges of computational methods towards physics phenomena studies. Romanian Reports in Physics, 75(2), 907, https://rrp.nipne.ro/2023/AN75907.pdf
McNeal, P.M., & Petcovic, H.L. (2020). Spatial thinking and fluid earth science education research. Journal of Geoscience Education, 68(4), 289 – 301. https://doi.org/10.1080/10899995.2020.1768007
Mísařová, D., Svobodová, H., Mašterová, V., Novotná, K. (2024). Czech education system’s conditions for the implementation of GIS in the curriculum in an international context. International Research in Geographical and Environmental Education, 33(4), 284–299,https://doi.org/10.1080/10382046.2023.2299602
Molikevych, R.S., Bohadorova, L.M., Kovalova, K.I., Okhremenko, I.V. (2019). The use of geoinformation systems in educational and professional programs for the training of geographes. International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM, 19(5.4), 355–360, https://doi.org/10.5593/sgem2019/5.4/S22.048
Moorman, L., & Garbutt, K. (2018). Perspectives on Global Understanding in Geography Education in Canada. A. Demirci, R.d. Miguel González, and S.W. Bednarz (Eds.), Geography Education for Global Understanding (pp. 233–243). Cham: Springer International Publishing. https://doi.org/10.1007/978-3-319-77216-5_20
Mulligan, J., Woolcott, G., Mitchelmore, M., Davis, B. (2018). Connecting mathematics learning through spatial reasoning. Mathematics Education Research Journal, 30(1), 77–87. https://doi.org/10.1007/s13394-017-0210-x
Nori, R., Palmiero, M., Bocchi, A., Giannini, A.M., Piccardi, L. (2020). The specific role of spatial orientation skills in predicting driving behaviour. Transportation Research Part F: Traffic Psychology and Behaviour, 71, 259–271. https://doi.org/10.1016/j.trf.2020.04.009
Oda, K., Herman, T., Hasan, A. (2020). Properties and impacts of TPACK-based GIS professional development for in-service teachers. International Research in Geographical and Environmental Education, 29(1), 40–54, https://doi.org/10.1080/10382046.2019.1657675
Patiño, C.E., & Pérez, N.M.P. (2024). Teaching geographic information systems (GIS) for understanding territory in university contexts. Atelie Geografico, 18(1), 304–329. https://doi.org/10.5216/ag.v18i1.79004
Ricketts, H.K., Salsbury, A.M., Bevan, D.R., Brown, A.M. (2018). Using Immersive Visualization Environments to Engage Students in Hands-On Learning. Proceedings of the Practice and Experience on Advanced Research Computing: Seamless Creativity (p.74). New York, NY, USA: Association for Computing Machinery. https://doi.org/10.1145/3219104.3229274
Rodríguez-Triana, M.J., Prieto, L.P., Pishtari, G. (2021). What Do Learning Designs Show About Pedagogical Adoption? An Analysis Approach and a Case Study on Inquiry-Based Learning. T. De Laet, R. Klemke, C. Alario-Hoyos, I. Hilliger, and A. Ortega-Arranz (Eds.), Technology-Enhanced Learning for a Free, Safe, and Sustainable World (Vol. 12884 LNCS, pp. 275–288). Cham: Springer International Publishing. https://doi.org/10.1007/978-3-030-86436-1_21
Sandamas, G., & Foreman, N. (2015). Active Versus Passive Acquisition of Spatial Knowledge While Controlling a Vehicle in a Virtual Urban Space in Drivers and Non-Drivers. SAGE Open, 5(3), 2158244015595443, https://doi.org/10.1177/2158244015595443
Spencer, P., Christie, I., Pakakis, M., Rankin, J. (2012). Star search: Teaching astronomy using serious gaming. Proceedings of the International Astronautical Congress, IAC (Vol. 12, pp. 9755–9761). https://iafastro.directory/iac/archive/browse/IAC-12/E1/1/13528/
Steiniger, S., & Hunter, A.J.S. (2013). The 2012 free and open source GIS software map – A guide to facilitate research, development, and adoption. Computers, Environment and Urban Systems, 39, 136-150, https://doi.org/10.1016/j.compenvurbsys.2012.10.003
Stepanyuk, A., Soroka, O., Olendr, T., Mishchuk, N., Hrytsai, N., Yagenska, H.. Symchak, R. (2024). Implementation of modern trends of Ukrainian educational policy in the process of future natural sciences teachers training. Journal of Infrastructure, Policy and Development, 8(11), 9072. https://doi.org/10.24294/jipd.v8i11.9072
Stieff, M. (2011). Improving representational competence using molecular simulations embedded in inquiry activities. Journal of Research in Science Teaching, 48(10), 1137–1158. https://doi.org/10.1002/tea.20438
Tinella, L., Lopez, A., Caffò, A.O., Grattagliano, I., Bosco, A. (2020). Spatial Mental Transformation Skills Discriminate Fitness to Drive in Young and Old Adults. Frontiers in Psychology, 11, 604762, https://doi.org/10.3389/fpsyg.2020.604762
Trautmann, N., & MaKinster, J. (2014). Meeting Teachers Where They Are and Helping Them Achieve Their Geospatial Goals. J. MaKinster, N. Trautmann, and M. Barnett (Eds.), Teaching Science and Investigating Environmental Issues with Geospatial Technology: Designing Effective Professional Development for Teachers (pp. 51–64). Dordrecht: Springer Netherlands. https://doi.org/10.1007/978-90-481-3931-6_4
Trautmann, N.M., & MaKinster, J.G. (2010). Flexibly Adaptive Professional Development in Support of Teaching Science with Geospatial Technology. Journal of Science Teacher Education, 21(3), 351–370, https://doi.org/10.1007/s10972-009-9181-4
Uttal, D.H., McKee, K., Simms, N., Hegarty, M., Newcombe, N.S. (2024). How Can We Best Assess Spatial Skills? Practical and Conceptual Challenges. Journal of Intelligence, 12(1), 8, https://doi.org/10.3390/jintelligence12010008
Uttal, D.H., Miller, D.I., Newcombe, N.S. (2013). Exploring and Enhancing Spatial Thinking: Links to Achievement in Science, Technology, Engineering, and Mathematics? Current Directions in Psychological Science, 22(5), 367–373. https://doi.org/10.1177/0963721413484756
Voithofer, R., & Foley, A. (2007). Digital Dissonances: Structuring Absences in National Discourses on Equity and Educational Technologies. Equity & Excellence in Education, 40(1), 14–25. https://doi.org/10.1080/10665680601088515
Yaki, A.A., Saad, R.M., Renuka V, S., Zulnaidi, H. (2019). Enhancingscience achievement utilising an integrated STEM approach. Malaysian Journal of Learning and Instruction, 16(1), 181–205, https://doi.org/10.32890/mjli2019.16.1.8
Zharinova, A.H., Zharinov, S.S., Rybalko, Y.V. (2024). Ways of Development of the National Electronic Scientific Information System as a Tool for Implementing the State Open Science Policy in Ukraine. University Library at a New Stage of Social Communications Development. Conference Proceedings, 2024(9), 131–139. https://doi.org/10.15802/unilib/2024_314985
Zhu, C., Leung, C.O-Y., Lagoudaki, E., Velho, M., Segura-Caballero, N., Jolles, D.. Klapwijk, R. (2023). Fostering spatial ability development in and for authentic STEM learning. Frontiers in Education, 8, 1138607,https://doi.org/10.3389/feduc.2023.1138607
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