Innovative Learning Activities for Ethnically Diverse Students in Macedonian Science Education

  • Katerina Rusevska Faculty of Natural Sciences and Mathematics, Ss. Cyril and Methodius University in Skopje, Macedonia
  • Lambe Barandovski Faculty of Natural Sciences and Mathematics, Ss. Cyril and Methodius University in Skopje, Macedonia
  • Vladimir PetruÅ¡evski Faculty of Natural Sciences and Mathematics, Ss. Cyril and Methodius University in Skopje, Macedonia
  • Aleksandra Naumoska Faculty of Natural Sciences and Mathematics, Ss. Cyril and Methodius University in Skopje, Macedonia
  • Slavica Tofilovska Faculty of Natural Sciences and Mathematics, Ss. Cyril and Methodius University in Skopje, Macedonia
  • Marina Stojanovska Faculty of Natural Sciences and Mathematics, Ss. Cyril and Methodius University in Skopje, Macedonia https://orcid.org/0000-0001-7071-9473
Keywords: game-based activities, ecology, escape room, ethnically diverse classroom, science education

Abstract

A game-based approach is widely used to increase students’ motivation through their active participation, whereby research is interwoven with fun and competition is incorporated with cooperation. Working in teams or groups encourages students to exchange their opinions, to try to find solutions together or to win a game. In this way, they learn and improve skills such as collaboration and responsibility. Several activities involving the 5E model as part of inquiry-based science education and an escape room as part of game-based learning were used in science classes (chemistry, biology and physics). The activities were designed on three different topics – gases, ecology and electrical circuits – within the project “Diversity in Science towards Social Inclusion – Non-formal Education in Science for Students’ Diversityâ€. The activities focused on the students’ self-concept towards science, interest in the subject, motivation and career aspirations in STEM, as well as the effectiveness of the implemented activities. The study aimed to assess the potential advantages of implementing activities in an ethnically diverse environment, benefiting both students and teachers. Pre- and post-questionnaires were designed and distributed to 190 students from various primary and secondary schools in Macedonia. The present paper provides an overview of game-based activities as well as a brief analysis of the pre- and post-questionnaire responses from students, focusing on the topic of ecology.

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References

Annetta, L. A., Minogue, J., Holmes, S. Y., & Cheng, M. T. (2009). Investigating the impact of video games on high school students’ engagement and learning about genetics. Computers & Education, 53(1), 74–85. https://doi.org/10.1016/j.compedu.2008.12.020

Archer, L., DeWitt, J., Osborne, J., Dillon, J., Willis, B., & Wong, B. (2010). “Doing†science versus “being†a scientist: Examining 10/11-year-old schoolchildren’s constructions of science through the lens of identity. Science Education, 94(4), 617–639. https://doi.org/10.1002/sce.20399

Barab, S. A., Sadler, T. D., Heiselt, C., Hickey, D., & Zuiker, S. (2007). Relating narrative, inquiry, and inscriptions: Supporting consequential play. Journal of Science Education and Technology, 16(1), 59–82. https://doi.org/10.1007/s10956-006-9033-3

Bartlett, K., & Anderson, J. (2019). Using an Escape Room to Support the Learning of Science Content. Proceedings of Society for Information Technology & Teacher Education International Conference, Association for the Advancement of Computing in Education (AACE), Las Vegas, NV, USA, 710–715. https://www.learntechlib.org/primary/p/207719

Chen, A., Darst, P.W., & Pangrazi, R. P. (1999). What constitutes situational interest? Validating a construct in physical education. Measurement in Physical Education and Exercise Science, 3. https://doi.org/10.1207/S15327841MPEE0303_3

Chen, A., Darst, P. W., & Pangrazi, R. P. (2001). An examination of situational interest and its sources. British Journal of Educational Psychology, 71, 383–400. https://doi.org/10.1348/000709901158578

Cohen, L., Manion, L., & Morrison, K. (2000). Research methods in education (5th ed.). Routledge. https://doi.org/10.4324/9780203224342

Connolly, T. M., Boyle, E. A., MacArthur, E., Hainey, T., & Boyle, J. M. (2012). A systematic literature review of empirical evidence on computer games and serious games. Computers & Education, 59(2), 661–686. https://doi.org/10.1016/j.compedu.2012.03.004

Dichev, C., & Dicheva, D. (2017). Gamifying education: What is known, what is believed and what remains uncertain: A critical review. International Journal of Educational Technology in Higher Education, 14(1), 1–36. https://doi.org/10.1186/s41239-017-0042-5

Dietrich, N. (2018). Escape classroom: The Leblanc process – An educational “escape gameâ€. Journal of Chemical Education, 95(6), 996–999. https://doi.org/10.1021/acs.jchemed. 7b00690

Dondlinger, M. J. (2007). Educational video game design: A review of the literature. Journal of Applied Educational Technology, 4(1), 21–31

Dugnol-Menéndez, J., Jiménez-Arberas, E., Ruiz-Fernández, M. L, Valera-Fernández, D., Mok, A., & Marayo Lloves J. (2021). A collaborative escape room as gamification strategy to increase learning motivation and develop curricular skills of occupational therapy students. BMC Med Educ, 21(544). https://doi.org/10.1186/s12909-021-02973-5

Eccles, J. S., & Wigfield, A. (2002). Motivational beliefs, values, and goals. Annual Review of Psychology, 53(1), 109–132. https://doi.org/10.1146/annurev.psych.53.100901.135153

Gee, J. P. (2005). Learning by design: Good video games as learning machines. E-Learning and Digital Media, 2(1), 5–16. https://doi.org/10.2304/elea.2005.2.1.5

Gentry, S. V., Gauthier, A., Ehrstrom, B. L., Wortley, D., Lilienthal, A., Car, L. T., Dauwels-Okutsu, S., Nikolaou, C. K., Zary, N., & Campbell, J. (2019). Serious gaming and gamification education in health professions: Systematic review. Journal of Medical Internet Research, 21(3). https://doi.org/10.2196/12994

Gordillo, A., López-Fernández, D., López-Pernas S., & Quemada, J. (2020). Evaluating an educational escape room conducted remotely for teaching software engineering, IEEE Access, 8, 225032–225051. https://doi.org/10.1109/ACCESS.2020.3044380

Hakulinen, L., & Auvinen, T. (2014). The effect of gamification on students with different achievement goal orientations. 2014 International Conference on Teaching and Learning in Computing and Engineering (LaTiCE), IEEE, Kuching, Malaysia, 9–16. https://ieeexplore.ieee.org/document/6821820

Hidi, S., & Anderson, V. (1992). Situational interest and its impact on reading and expository writing. In K. A. Renninger, S. Hidi, & A. Krapp (Eds.), The role of interest in learning and development (pp. 215–238). LEA.

Hidi, S., & Renninger, K. A. (2006). The four-phase model of interest development. Educational Psychologist, 41(2), 111–127. https://doi.org/10.1207/s15326985ep4102_4

Karageorgiou, Z., Mavrommati, E., Fotaris P., & Christopoulou, E. (2020). Escape room in education: Evaluating using Experience Pyramid Model. 5th South-East Europe Design Automation, Computer Engineering, Computer Networks and Social Media Conference (SEEDA-CECNSM), Corfu, Greece, 1–8. https://doi.org/10.1109/SEEDA-CECNSM49515.2020.9221798

Kier, M.W., Blanchard, M.R., Osborne, J. W., & Albert, J. L. (2014). The development of the STEM Career Interest Survey (STEM-CIS), Research in Science Education, 44, 461–481. https://doi.org/10.1007/s11165-013-9389-3

Klopfer, E., Osterweil, S., & Salen, K. (2009). Moving learning games forward, MIT Press.

Korkmaz, Ö. Ç. R., & Erdoğmuş, F. U. (2020). A validity and reliability study of the Basic STEM Skill Levels Perception Scale. International Journal of Psychology and Educational Studies, 7(2), 111–121. https://doi.org/10.17220/ijpes.2020.02.010

Lathwesen, C., & Belova, N. (2021). Escape rooms in STEM teaching and learning – Prospective field or declining trend? A literature review. Education Sciences, 11(6), 308. https://doi.org/10.3390/educsci11060308

Lee, Y., Capraro M. M., & Viruru. R. (2018). The factors motivating students’ STEM career aspirations: Personal and societal contexts. International Journal of Innovation in Science and Mathematics Education, 26(5), 36–48.

Luttenberger, S., Paechter, M., & Ertl, B. (2019). Self-concept and support experienced in school as key variables for the motivation of women enrolled in STEM subjects with a low and moderate proportion of females. Frontiers in Psychology, 26(10), 1242. https://doi.org: 10.3389/fpsyg.2019.01242

Marín, S., de Atauri, P. R., Moreno, E., Pérez-Torras, S., Farràs, J., Imperial, S., Cascante, M., & Centelles, J. J. (2021). An escape-room about Krebs cycle prepared for chemical students. International Journal on Engineering, Science and Technology (IJonEST), 3(2), 155–164. https://doi.org/10.46328/ijonest.59

Marsh, H. W. (1990). Causal ordering of academic self-concept and academic achievement: A multiwave, longitudinal panel analysis. Journal of Educational Psychology, 82(4), 646–656. https://doi.org/10.1037//0022-0663.82.4.646

Naumovska, A., Dimeski, H., & Stojanovska, M. (2023). Using the Escape Room game-based approach in chemistry teaching. Journal of the Serbian Chemical Society, 88(5), 563–575. https://doi.org/10.2298/JSC211228088N

OECD (2009). PISA 2006: Technical report. http://www.oecd.org/pisa/pisaproducts/42025182.pdf

Plump, C. M., & Meisel, S. I. (2020). Escape the traditional classroom: Using live-action games to engage students and strengthen concept retention. Management Teaching Review, 5(3), 202–217. https://doi.org/10.1177/2379298119837615

Renninger, K. A., Hidi, S., & Krapp, A. (Eds.). (1992). The role of interest in learning and development. Lawrence Erlbaum Associates, Inc.

Ryan, R. M., & Deci, E. L. (2000). Self-determination theory and the facilitation of intrinsic motivation, social development, and well-being. American Psychologist, 55(1), 68–78. https://doi.org/10.1037/0003-066X.55.1.68

Sellami, A., Santhosh, M., Bhadra, J., & Ahmad, Z. (2023). High school students’ STEM interests and career aspirations in Qatar: An exploratory study. Heliyon, 9(3). https://doi.org/10.1016/j.heliyon.2023.e13898

Siregar, N. C., Rosli, R., & Nite, S. (2023). Students’ interest in science, technology, engineering, and mathematics (STEM) based on parental education and gender factors. International Electronic Journal of Mathematics Education, 18(2). https://doi.org/10.29333/iejme/13060

Smiderle, R., Rigo, S. J., Marques, L. B., Coelho, J. A. P. M., & Jaques, P. A. (2020). The impact of gamification on students’ learning, engagement and behavior based on their personality traits. Smart Learn. Environ, 7, 3. https://doi.org/10.1186/s40561-019-0098-x

Squire, K. (2006). From content to context: Videogames as designed experience. Educational Researcher, 35(8), 19–29. https://doi.org/10.3102/0013189X035008019

Stojanovska, M. (2021). Celebrating the International Year of Periodic Table with chemistry educational games and puzzles. Chemistry Teacher International, 3(1). https://doi.org/10.1515/cti-2019-0012

Stojanovska, M., Barandovski, L., Rusevska, K., & Petrusevski, V. (2022). Science through research and fun. Diversity in Science towards Social Inclusion – Non-Formal Education in Science for Students’ Diversity. Activity Book. Faculty of Natural Sciences and Mathematics – Skopje.

Stojanovska, M., Mijić, I., & Petruševski, V. M. (2020a). Challenges and recommendations for improving chemistry education and teaching in the Republic of North Macedonia, Center for Educational Policy Studies Journal, 10(1), 145–166. https://doi.org/10.26529/cepsj.732

Stojanovska, M., Milanović, V., & Trivić, D. (2020b). Escape room – teachers approved! Chemistry in Action, 116(49), 49–53. https://www.chemistryireland.org/wp-content/uploads/2020/12/Chemistryin-Action-Autumn-2020-Issue-116.pdf

Taber, K. S. (2018). The use of Cronbach’s Alpha when developing and reporting research instruments in science education. Research in Science Education, 48, 1273–1296. https://doi.org/10.1007/s11165-016-9602-2

Tvarozek, J., & Brza, T. (2014). Engaging students in online courses through interactive badges. International Conference on e-Learning, Spain, 89–95. https://pdfs.semanticscholar.org/fe68/5176c8d4bf7f6507f3870815f56a65097c89.pdf

Veldkamp, A., Knippels, M-C. P. J., & van Joolingen, W. R. (2021). Beyond the early adopters: Escape rooms in science education. Frontiers in Education, 6. https://doi.org/10.3389/feduc.2021.622860

Wouters, P., van Nimwegen, C., van Oostendorp, H., & van der Spek, E. D. (2013). A meta-analysis of the cognitive and motivational effects of serious games. Journal of Educational Psychology, 105(2), 249–265. https://doi.org/10.1037/a0031311

Young, M. F., Slota, S., Cutter, A. B., Jalette, G., Mullin, G., Lai, B., Simeoni, Z., Tran, M., & Yukhymenko, M. (2012). Our princess is in another castle: A review of trends in serious gaming for education. Review of Educational Research, 82(1), 61–89. https://doi.org/10.3102/0034654312436980

Yu, Z., Gao, M. & Wang, L. (2020). The effect of educational games on learning outcomes, student motivation, engagement and satisfaction. Journal of Educational Computing Research. 1–25. https://doi.org/10.1177/0735633120969214

Zakariya, Y. F. (2022). Cronbach’s alpha in mathematics education research: Its appropriateness, overuse, and alternatives in estimating scale reliability. Frontiers in Psychology, 13. https://doi.org/10.3389/fpsyg.2022.1074430

Published
2024-03-29
How to Cite
Rusevska, K., Barandovski, L., Petruševski, V., Naumoska, A., Tofilovska, S., & Stojanovska, M. (2024). Innovative Learning Activities for Ethnically Diverse Students in Macedonian Science Education. Center for Educational Policy Studies Journal, 14(1), 55-77. https://doi.org/10.26529/cepsj.1692