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APPROACHES TO BUILDING A SYSTEM FOR EVALUATING LEARNING OUTCOMES BASED ON THE USE OF AUGMENTED VIRTUALITY TECHNOLOGY

Didactic Aspects of Informatization of Education , UDC: 372.862 DOI: 10.25688/2072-9014.2022.61.3.01

Authors

  • Zaslavskaya Olga Yuryevna Doctor of Pedagogy, Full Professor
  • Buerakova Svetlana N.

Annotation

The article is devoted to the rationale for the use of augmented virtuality technology in the process of assessing the achievements of primary school students. The relevance of this study lies in taking into account the factor of active introduction of innovative digital technologies in education. In the conditions of increasing competition in the production of digital teaching aids, modern trends in their use make it necessary for the pedagogical community to find effective ways to use them not only in organizing the learning process itself, but also in the conditions of use in the evaluation of the results obtained. The participation of Russian schools in international studies on the assessment of subject and meta-subject learning outcomes implies an expansion of the possibility of using digital technologies to assess the effectiveness of education, including in the primary education system. In this regard, this article is aimed at identifying the impact of the introduction of augmented virtuality technologies in the design of an assessment system. Purpose of the study: to assess the possibility of augmented virtuality technology to influence the effectiveness of control and evaluation activities among elementary school students by increasing visibility and interactivity, creating more realistic ways of interacting with virtual space. The article theoretically substantiates the position on the possibility and effectiveness of the use of augmented virtuality technology in the evaluation of learning outcomes (on the example of the discipline «Mathematics» and «World around»). The conclusion is made about the quality and effectiveness of the educational technologies used. The article demonstrates the use of augmented virtuality technology in assessing the effectiveness of training using specific examples.

How to link insert

Zaslavskaya, O. Y. & Buerakova, S. N. (2022). APPROACHES TO BUILDING A SYSTEM FOR EVALUATING LEARNING OUTCOMES BASED ON THE USE OF AUGMENTED VIRTUALITY TECHNOLOGY Bulletin of the Moscow City Pedagogical University. Series "Pedagogy and Psychology", 2022, №3 (61), 7. https://doi.org/10.25688/2072-9014.2022.61.3.01
References
1. 1. Zaslavskaya, O. Y. (2020). Transformation of education in the conditions of digital technologies development. In Vorovshchikov, S. G. (Responsible Ed.). Horizons and risks of education development in the conditions of systemic changes and digitalization. Сollection of scientific papers of the XII International scientific and practical conference “Shamov pedagogical readings of the Scientific School of Educational Systems Management”, 2020, January 25 (in 2 parts, part 1, pp. 70–74). Moscow. (In Russ.).
2. 2. Abakumova, I. V. et al. (2020). Pedagogical education in modern Russia: strategic development guidelines. Сollective monograph. Rostov-on-Don – Taganrog. 456 p. (In Russ.).
3. 3. Krasnoborodova, A. A. (2010). Criterion assessment as a technology for the formation of educational and cognitive competence of students. D.Sc. (Pedagogy) Dissertation. Perm. 217 p. (In Russ.).
4. 4. Pinskaya, M. A., & Ivanov, A. V. (2010). Criterion assessment at school. School technologies, 3, 177–184. (In Russ.).
5. 5. Amonashvili, S. A. (2007). The essence of assessment and marks. The world of science, culture, education, 2 (5), 77–79. (In Russ.).
6. 6. Kazakova, I. A. (2011). System of knowledge assessment in historical aspect. Higher education in Russia, 6, 153–157. (In Russ.).
7. 7. Piaget, J. (1999). Speech and thinking of a child. Moscow: Pedagogy-Press. 526 p. (In Russ.).
8. 8. Churakova, R. G. (2011). Technology and aspect analysis of the modern lesson in primary school. Moscow: Academkniga. 112 p. (In Russ.).
9. 9. Yatsenko, O. Yu. (2015). Development of a model of a system for evaluating learning outcomes. Management of a modern school, 1, 62. (In Russ.).
10. 10. Zinchenko, Yu. P., Menshikova, G. Ya., Bayakovsky, Yu. M., Chernorizov, A. M., & Voiskunsky, A. E. (2010). Virtual reality technologies: methodological aspects, achievements and prospects. National Psychological Journal, 2 (4), 64–71. (In Russ.).
11. 11. Lubkov, R. V. (2007). Didactic potential of the virtual educational environment. PhD (Pedagogy) Thesis of the dissertation. Samara. 22 p. (In Russ.).
12. 12. Grinshkun, A. V. (2009). Computer BD-models as a means of teaching schoolchildren. In Experience and prospects of using information and communication technologies in education. Collection of materials of the International scientific and practical conference “ITO–Tomsk–2009” (pp. 463–464). Tomsk: NOU “Leading Institute of Developing Technologies”. (In Russ.).
13. 13. Zaslavskaya, O. Yu. (2020). Analysis of approaches to the transformation of education in the context of the development of immersive and other digital technologies. MCU of Jornal of Informatics and Informatization of Education, 3 (53), 16–20. (In Russ.).
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