The Formation of Methodical Competence of the Prospective Teacher of Science through the Interactive Technologies

Authors

  • Sergey V. Shcherbatykh Federal State Budgetary Educational Institution Author

DOI:

https://doi.org/10.61841/hy7r0c91

Keywords:

Higher Education,, Professional Competence,, Methodological Competence,, Science Teacher,, Interactive Technologies.

Abstract

Annotation. The relevance of the research is determined by the need to identify optimal models for professional training of prospective science teachers in organizing educational activities of schoolchildren in accordance with the requirements of the Federal State Education Standard of the Secondary General Education (FSES SGE). In the context of shortage of class time for studying methodological content in B.Ed. degree programs, there is a need for intensification of educational activities through interactive technologies.

Research objective: theoretically substantiate, develop and experimentally test an organizational and pedagogical model of methodological competence development of prospective science teachers through interactive technologies. The developed model implements methodological guidelines for systemic and integrated, competence-based, activity- based, and technology-based approaches. The peculiarity of this model is that a planned result can be achieved through management of interactive technologies in educational activities. This management is based on correlating interactive technologies with teaching methods implemented in the system of higher education (lecture classes, practical classes, independent work of students, internship), and also with potential of those technologies in developing components of methodological competence of prospective science teachers (personality-centered, cognitive, technological, activity-based).

Research methods: pedagogical experiment, questioning, testing, content analysis of curricula, methods of mathematical statistics (chi-square).

Research results: a set of conditions that allows to intensify development of methodological competence of prospective science teachers by means of interactive technologies has been identified.

Research significance: materials of the article can be useful to administrative and academic staff of educational institutions of higher education.

 

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References

[1] Vasilyeva P.D. Professionalno-metodicheskaya podgotovka uchitelya khimii v vuze kak samoorganizuyushchayasya sistema [Tekst]: avtoreferat dis. doktora pedagogicheskikh nauk: 13.00.02 [Professional and methodical training of undergraduate chemistry teachers as a self-organizing system [Text]: An author's abstract for Ed.D. dissertation: 13.00.02]. St. Petersburg, 2004, 47p.

[2] Vegner E.G. Formirovaniye metodologicheskoy kompetentnosti budushchego uchitelya geografii sredstvami modulnogo obucheniya [Tekst]: avtoreferat dis. kandidata pedagogicheskikh nauk: 13.00.08,

13.00.02 [Development of methodological competence of prospective geography teachers using modular training [Text]: An author's abstract for Ph.D. in Education dissertation]. Moscow, 2007, 24 p.

[3] Vereshchagina, N.O. Metodicheskaya podgotovka bakalavrov i magistrov v oblasti geograficheskogo obrazovaniya [Tekst]: avtoreferat dis. doktora pedagogicheskikh nauk: 13.00.02 [Methodical training of B.Ed. degree students and M.Ed. degree students in geography teaching [Text]: An author's abstract for Ed.D. dissertation: 13.00.08, 13.00.02]. St. Petersburg, 2012. – 46 p.

[4] Kozhevnikova T.A. Formirovaniye professional'noy kompetentnosti bu-dushchego uchitelya geografii v protsesse podgotovki i provedeniya pedagogicheskoy praktiki [Tekst]: avtoreferat dis. kandidata pedagogicheskikh nauk: 13.00.01 [Development of methodological competence of prospective geography teachers in the process of preparation and conduct of pedagogical internships [Text]: An author's abstract for Ph.D. in Education dissertation: 13.00.01]. Murmansk, 2006, 25 p.

[5] Mosin V.V. Polevyye praktiki kak usloviye formirovaniya professional'noy kompetentnosti budushchego uchitelya geografii [Tekst]: avtoreferat dis. kandidata pedagogicheskikh nauk: 13.00.02 [Internships as a condition for formation of professional competence of prospective geography teachers [Text]: An author's abstract for Ph.D. in Education: 13.00.02]. St. Petersburg, 2015, 19 p.

[6] Romanova O.V. Teoreticheskiye i metodicheskiye osnovy sistemy formirovaniya informatsionno- metodicheskoy kompetentnosti uchitelya khimii v pedagogicheskom vuze [Tekst]: avtoreferat dis. kandidata pedagogicheskikh nauk: 13.00.02 [Theoretical and methodical foundations of the informational and methodological competence development system for undergraduate chemistry teachers: An author's abstract for Ph.D. in Education [Text]: 13.00.02.]. Rostov-on-Don, 2007, 25 p.

[7] Sokolova I.I. Teoreticheskiye osnovy konstruirovaniya obrazovatel'nykh professional'nykh programm vysshego pedagogicheskogo obrazovaniya po napravleniyu "yestestvoznaniye" [Tekst]: avtoreferat dis. doktora pedagogicheskikh nauk: 13.00.08 [Theoretical basis for designing educational programs of higher pedagogical education in Science [Text]: An author's abstract for Ed.D. dissertation: 13.00.08]. St. Petersburg, 1999, 41 p.

[8] Solomin V.P. Teoriya i praktika mnogourovnevogo yestestvennonauchnogo obrazovaniya v sisteme pedagogicheskogo universiteta [Tekst]: dissertatsiya ... doktora pedagogicheskikh nauk v forme nauch. dokl.: 13.00.08. [Theory and practice of multilevel education in Science at Pedagogical Universities: Dissertation of Ed.D. in the form of scientific report: 13.00.08]. St. Petersburg, 2000, 67 p.

[9] Stankevich P.V. Modeli soderzhaniya yestestvennonauchnogo obrazovaniya bakalavrov i magistrov [Tekst]: avtoreferat dis. doktora pedagogicheskikh nauk: 13.00.02 [Models of B.Ed. and M.Ed. degree programs in Science [Text]: An author’s abstract for Ed.D. dissertation: 13.00.02]. St. Petersburg, 2010, 37 p.

[10] Shatalov M.A. Sistema metodicheskoy podgotovki uchitelya khimii na osnove problemno-integrativnogo podkhoda [Tekst]: avtoreferat dis. ... doktora pedagogicheskikh nauk: 13.00.02 [System of methodical

training of the teacher of chemistry on the basis of the problem-integrative approach [Text]: An author’s abstract for Ed.D. dissertation: 13.00.02]. St. Petersburg, 2004, 42 p.

[11] Araujo, R.D., Brant-Ribeiro, T.M., Igor E.S. (2017). Social and collaborative Interactions for Educational Content Enrichment. Educational Technology & Society. 20 (3). 133-144.

[12] Brecka, P., Valentova, M. (2017). Model of the Students' Key Competences Development through Interactive Whiteboard in the Subject of Technology. Informatics in Education. 16 (1). 25-38.

[13] Contu, E.G. (2017). The Role of Intellectual Capital in Higher Education. Proceedings of the 9th European Conference on Intellectual Capital (ECIC 2017). Inst Univ Lisboa, Lisbon, Portugal. 66-70.

[14] Fardoun, H.M., Cipres, A.P., Jambi, K.M. Educational Curriculum Management on Rural Environment (2014). Procedia - Social and Behavioral Sciences, 19 March, 421-427.

[15] Gomez, M., Garcia Aretio, L. (2016). Teacher training as a key factor in the integration of Digital Interactive Whiteboards. Perspectives of teachers and ICT coordinators. Revista Electronica Interuniversitaria de Formacion del Profesorado. 19 (3). 35-51.

[16] Hamada, M., Hassan, M. (2017). An Interactive Learning Environment for Information and Communication Theory. Eurasia Journal of Mathematics Science and Technology Education. 13 (1). 35-59.

[17] Koster, B., & Dengerink, J.J. (2008). Professional standards for teacher educators: How to deal with complexity ownership and function experience from the Netherlands. European Journal of Teacher Education, 31 (2), 135-149

[18] Medvedeva, L., Yushkov, E., Yakovlev, D. (2017). Interactive Forms of Conducting Business and Role Games in Dialogical Training. International Scientific-Practical Conference on Information Technologies in Education of the XXI Century (ITE-XXI). NRNU MEPhI, Moscow, Russia. 1797. UNSP 030012

[19] Park, Y., Jo, I.-H. (2017). Using log variables in a learning management system to evaluate learning activity using the lens of activity theory. Assessment & Evaluation in Higher Education. 42 (4). 531-547.

[20] Sergio Artal-Sevil, J., Romero, E., Manuel Artacho, J. (2016). Multimedia Resources and Tools for Flipped Classroom. Experience in Higher Education. Edulearn16: 8th International Conference on Education and New Learning Technologies. 3902-3911.

[21] Shulska, N.M.; Matviichuk, N.M. (2017). Social Network as an Effective Communication Environment between Teacher and Student in Educational Process. Information Technologies and Learning Tools. 58

(2). 155-168.

[22] Smit, R., Hyry-Beihammer, E.K., Raggl, A. (2015) Teaching and learning in small, rural schools in four European countries: Introduction and synthesis of mixed-/multi-age approaches. International Journal of Educational Research. 97-103.

[23] Stary, C. (2016). Open organizational learning: Stakeholder knowledge for process development.

Knowledge Management & E-Learning-an International Journal. 8 (1). 86-108.

[24] Valbuena-Rodriguez, S., Angel Navarro-Ramirez, M. (2016). Design of didactic multimedia materials of organic chemistry laboratory. Revista Educacion en Ingenieria. 11(22). 78-82.

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Published

30.06.2020

How to Cite

Shcherbatykh , S. V. (2020). The Formation of Methodical Competence of the Prospective Teacher of Science through the Interactive Technologies. International Journal of Psychosocial Rehabilitation, 24(4), 6210-6216. https://doi.org/10.61841/hy7r0c91