Methodical preparation as a means of developing prospective mathematics teachers' ICT competency
DOI:
https://doi.org/10.55056/etq.14Keywords:
course project, degree project, ICT tools, training of would-be teachersAbstract
The purpose of the study is modeling of ICT competence formation of would-be mathematics teachers through the best practice application of effective ICT tools. The objectives of the study are to analyze the possibilities of creating conditions for the formation of competent mathematics teachers using ICT tools. The object of the study is the methodical preparation of students of pedagogical HEIs by means of ICT. The subject of study is the peculiarities of the formation of a competent mathematics teacher in classes on methodological disciplines. The authors of the article analyze, summarize and systematize research on the issue of using ICT tools in the training students’ activities in Universities of Teacher Education. The study determines the role of methodological training in the development of ICT competence of would-be mathematics teachers. The authors of the study developed a model for building competence would-be mathematics teachers, which consists of four components. There is the target, preparatory, procedural, and resulting constituents. The model describes a systematic approach to the organization of students’ training activities in the in teaching the disciplines of professional and practical training. Giving an account of the integration nature of the methodological students’ training, it also considers the organization of distance communication between students and teachers. This paper presents examples of the implementation of the components of the model. The examples describe the implementation by students of course projects and degree projects on teaching mathematics methodologies using ICT tools. A pedagogical experiment was conducted to evaluate the effectiveness of ICT tools in the training of would-be mathematics teachers. The results of the study confirmed the effectiveness of modeling the organization of students’ activities to develop their ICT competency. As the follow-up research directions, we consider summarizing recommendations on the usage of ICT in the preparation of competent socionomic specialists.
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Bykov, V.Y., 2012. Problemy ta perspektyvy informatyzatsii systemy osvity v Ukraini [Problems and prospects of informatization of the education system in Ukraine]. Naukovyi chasopys NPU imeni M.P. Drahomanova. Seriia 2. Kompiuterno-oriientovani systemy navchannia, (13 (20)), p.3–18. Available from: url={https://sj.npu.edu.ua/index.php/kosn/article/view/284}.
Fridman, L., 1984. Naglyadnost i modelirovanie v obuchenii [Visualization and Modeling in Training], Novoe v zhizni, nauke, tekhnike. Ser. “Pedagogika i psikhologiia” 6. Moskva: Znanie.
Karsenti, T., Raby, C., Villeneuve, S. and Gauthier, C., 2007. La formation des maîtres et la manifestation de la compétence professionnelle à intégrer les technologies de l’information et des communications (TIC) aux fins de préparation et de pilotage d’activités d’enseignement-apprentissage, de gestion de l’enseignement et de développement professionnel. Montréal: CRIFPE, Université de Montréal. Available from: https://depot.erudit.org/id/001140dd.
Lodatko, E.A., 2014. Typology of pedagogical models. Science Vector of Togliatti State University. Series: Pedagogy, Psychology, (1(16)), pp.126–128. Available from: https://journal.tltsu.ru/eng/index.php/SVSPP/article/view/4161.
Lovianova, I., 2010. Pro pidhotovku maibutnikh uchyteliv matematyky do vprovadzhennia novykh navchalnykh informatsiinykh tekhnolohii u protsesi formuvannia umin uchniv [On Preparing Future Mathematics Teachers for the Implementation of New Learning Information Technologies in the Process of Students’ Skills Formation]. Profesionalizm pedahoha u konteksti Yevropeiskoho vyboru Ukrainy: Materialy Mizhnarodnoi naukovo-praktychnoi konferentsii “Profesionalizm pedahoha u konteksti Yevropeiskoho vyboru Ukrainy”. Yalta, pp.67–70. Available from: https://doi.org/10.31812/0564/2293. DOI: https://doi.org/10.31812/0564/2293
Lovianova, I., Korolskaya, L. and Shiperko, S., 2010. Kursovi roboty z metodyky navchannia matematyky yak zasib metodychnoi pidhotovky maibutnoho vchytelia matematyky [Courseworks on the Method of Teaching Mathematics as a Means of Methodical Preparation of the Future Mathematics Teacher]. The Thirteenth International Scientific Conference Named after Academician M. Kravchuk. Kyiv. Available from: https://doi.org/10.31812/0564/2290. DOI: https://doi.org/10.31812/0564/2290
Lovianova, I.V., Vlasenko, K.V., Krasnoschok, A.V., Dmytriiev, D.S. and Shponka, R.Y., 2019. Modeling of ICT competence formation of would-be mathematics teacher. Information Technologies and Learning Tools, 74(6), pp.186–200. Available from: https://doi.org/10.33407/itlt.v74i6.2421. DOI: https://doi.org/10.33407/itlt.v74i6.2421
Mahiri, J., 2011. APPENDIX A.: THE ISTE NATIONAL EDUCATIONAL TECHNOLOGY STANDARDS AND PERFORMANCE INDICATORS FOR TEACHERS (NETST). University of Michigan Press, pp.147–150. Available from: https://doi.org/10.2307/j.ctv65swfn.9. DOI: https://doi.org/10.2307/j.ctv65swfn.9
Natsionalna stratehiia rozvytku osvity v Ukraini na period do 2021 roku [National Strategy for Education Development in Ukraine until 2021], 2013. Available from: https://zakon.rada.gov.ua/laws/show/344/2013#Text.
Perogonchuk, N., 2018. Development model of professional competence of future psychologists. Development Trends in Pedagogical and Psychological Sciences: the Experience of Countries of Eastern Europe and Prospects of Ukraine. Riga, Latvia: Baltija Publishing, pp.151–170. Available from: https://doi.org/10.30525/978-9934-571-27-5_39. DOI: https://doi.org/10.30525/978-9934-571-27-5_39
Petrenko, S., 2015. The model of forming the ICT competence of a future teacher of mathematics. Physical and mathematical education, (2(5)), pp.49–57. Available from: https://fmo-journal.fizmatsspu.sumy.ua/journals/2015-v2-5/2015_2-5-Petrenko_Scientific_journal_FMO.pdf.
Porter, L.R., 2004. Developing an Online Curriculum: Technologies and Techniques. IGI Global. DOI: https://doi.org/10.4018/978-1-59140-136-0
Rooney, D. and Nyström, S., 2018. Simulation: A complex pedagogical space. Australasian Journal of Educational Technology, 34(6). Available from: https://doi.org/10.14742/ajet.4470. DOI: https://doi.org/10.14742/ajet.4470
Référentiel des compétences professionnelles des métiers du professorat et de l’éducation, 2013. Available from: https://www.education.gouv.fr/bo/13/Hebdo30/MENE1315928A.htm?cid_bo=73066.
Shishkina, M. and Tataurov, V., 2011. Formuvannia informatsiino-komunikatsiinoi kompetentnosti maibutnikh vchyteliv pochatkovykh klasiv u vyshchomu navchalnomu zakladi [Formation of Information and Communication Competence of Future Primary School Teachers in Higher Education]. Pedagogical Education: Theory and Practice, (8), pp.304–310. Available from: http://nbuv.gov.ua/UJRN/znppo_2011_8_54.
Shtoff, V.A., 1966. Modelirovanie i filosofija. Moscow: Vysshaja shkola.
Vlasenko, K., Rotaneva, N. and Sitak, I., 2016. The Design of the Components of a Computer-Oriented Methodical System of Teaching Differential Equations of Future Information Technology Specialists. International Journal of Engineering Research and Development, 12(12), pp.9–16. Available from: http://www.ijerd.com/paper/vol12-issue12/Version-3/B121230916.pdf.
Vlasenko, K., Sitak, I. and Chumak, O., 2018. Osvitnii sait yak zasib formuvannia informatychnoi kompetentnosti studenta [Educational Site as a Means of Forming Student’s Informational Competence]. Cherkasy University Bulletin: Pedagogical Sciences, (16), pp.3–16. Available from: https://doi.org/10.31651/2524-2660-2018-16-3-16. DOI: https://doi.org/10.31651/2524-2660-2018-16-3-16
Vlasenko, K., Volkov, S. and Sitak, I., 2016. Kompiuterno-oriientovane teoretychne navchannia dyferentsialnykh rivnian maibutnikh bakalavriv z informatsiinykh tekhnolohii [Computer-Oriented Theoretical Learning Differential Equations for the Future Bachelors of Information Technology]. Actual Issues of Natural and Mathematical Education, (7/8), pp.172–179. Available from: http://repository.sspu.sumy.ua/handle/123456789/5700.
Watson, G. and Prestridge, S., 2003. A networked learning community approach to sustain teacher ict professional development. Australasian Journal of Educational Technology, 19(2). Available from: https://doi.org/10.14742/ajet.1713. DOI: https://doi.org/10.14742/ajet.1713
Zakon Ukrainy “Pro vyshchu osvitu” [Law of Ukraine “On Higher Education”], 2015. Available from: https://zakon.rada.gov.ua/laws/show/1556-18/page#Text.
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Copyright (c) 2021 Iryna V. Lovianova, Andriy V. Krasnoschok, Ruslan Yu. Kaluhin; Olena O. Kozhukhar; Denys S. Dmytriyev
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Accepted 2021-04-28
Published 2021-05-06