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Digital educational games and mathematics. Results of a case study in primary school settings

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Abstract

The study presents the results of a project in which a series of digital games were used for teaching Mathematics to first, fourth, and sixth-grade primary school students (ages 6–7, 8–9, and 11–12). Mathematics was selected as the teaching subject because of the difficulties students face in understanding basic math concepts. Although digital games are used quite extensively for educational purposes, they are scarcely used for teaching Mathematics. The games were developed by the classes' teachers using Microsoft's Kodu Game Lab. The learning outcomes were compared to two other groups of students. The first was taught using the model proposed by Driver and Oldham while the second was taught conventionally. Data was collected using questionnaires and evaluation sheets. A total of 201 students participated in the study coming from three schools in Athens, Greece. Results indicated that students in the games group outperformed, in most cases, students in the other groups. Students' views for the games were highly positive. The implications for software engineers and education administrators are also discussed.

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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, 74–85. doi:10.1016/j.compedu.2008.12.020.

    Article  Google Scholar 

  • Bai, H., Pan, W., Hirumi, A., & Kebritchi, M. (2012). Assessing the effectiveness of a 3-D instructional game on improving mathematics achievement and motivation of middle school students. British Journal of Educational Technology, 43, 993–1003. doi:10.1111/j.1467-8535.2011.01269.x.

    Article  Google Scholar 

  • Barlett, C. P., Anderson, C. A., & Swing, E. L. (2009). Video game effects-confirmed, suspected, and speculative. A review of the evidence. Simulation & Gaming, 40(3), 377–403. doi:10.1177/1046878108327539.

    Article  Google Scholar 

  • Binsubaih, A., Maddock, S., & Romano, D. (2006). A serious game for traffic accident investigators. Interactive Technology and Smart Education, 3(4), 39–346. doi:10.1108/17415650680000071.

    Article  Google Scholar 

  • Bottino, R. M., Ferlino, L., Ott, M., & Tavella, M. (2007). Developing strategic and reasoning abilities with computer games at primary school level. Computers & Education, 49(4), 1272–1286. doi:10.1016/j.compedu.2006.02.003.

    Article  Google Scholar 

  • Boyle, E. A., Hainey, T., Connolly, T. M., Gray, G., Earp, J., Ott, M., et al. (2016). An update to the systematic literature review of empirical evidence of the impacts and outcomes of computer games and serious games. Computers & Education, 94, 178–192. doi:10.1016/j.compedu.2015.11.003.

    Article  Google Scholar 

  • Brom, C., Preuss, M., & Klement, D. (2011). Are educational computer micro-games engaging and effective for knowledge acquisition at high-schools? A quasi-experimental study. Computers & Education, 57(3), 1971–1988. doi:10.1016/j.compedu.2011.04.007.

    Article  Google Scholar 

  • Brown, J. S., Collins, A., & Duguid, P. (1989). Situated cognition and the culture of learning. Educational Researcher, 18(1), 32–42. doi:10.3102/0013189X018001032.

    Article  Google Scholar 

  • 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. doi:10.1016/j.compedu.2012.03.004.

    Article  Google Scholar 

  • Cummins, J. (2005). Negotiating identities: Education for empowerment in a diverse society. Los Angeles: California Association for Bilingual Education and Stoke on Trent.

  • Driver, R., & Oldham, V. (1986). A constructivist approach to curriculum development. Studies in Science Education, 13, 105–122. doi:10.1080/03057268608559933.

    Article  Google Scholar 

  • Egenfeldt-Nielsen, S. (2005). Beyond edutainment. Exploring the educational potential of computer games (doctoral dissertation). IT-University of Copenhagen, Denmark.

  • Ertmer, P. A., & Newby, T. J. (2013). Behaviorism, cognitivism, constructivism: Comparing critical features from an instructional design perspective. Performance Improvement Quarterly, 26(2), 43–71. doi:10.1002/piq.21143.

    Article  Google Scholar 

  • Forlizzi, J., McLaren, B. M., Ganoe, C., McLaren, P. B., Kihumba, G., & Lister, K. (2014). Decimal point: Designing and developing an educational game to teach decimals to middle school students. Proceedings of the 8th European Conference on Games-Based Learning: ECGBL2014, 128-135).

  • Frazer, A., Argles, D., & Wills, G. (2007, September). Assessing the usefulness of mini-games as educational resources. Proceedings of the of the Association for Learning Technology Conference. Nottingham, UK.

  • Garris, R., Ahlers, R., & Driskell, J. E. (2002). Games, motivation, and learning: A research and practice model. Simulation & Gaming, 33, 441–467. doi:10.1177/1046878102238607.

    Article  Google Scholar 

  • Gee, J. P. (2005). Good video games and good learning. In Phi Kappa Phi Forum (Vol. 85, no. 2, pp. 33-37). The honor Society of phi Kappa phi.

  • Gee, J. P. (2008). Learning and games. The Ecology of Games: Connecting Youth, Games, and Learning, 3, 21–40.

    Google Scholar 

  • Gee, J. P. (2009). Deep learning properties of good digital games. In Serious games: Mechanisms and effects. Routledge Taylor & Francis Group.

  • Glass, G. V., Peckham, P. D., & Sanders, J. R. (1972). Consequences of failure to meet assumptions underlying fixed effects analyses of variance and covariance. Review of Educational Research, 42, 237–288. doi:10.3102/00346543042003237.

    Article  Google Scholar 

  • Goodwin, K. (2012). Use of tablet technology in the classroom. NSW Department of Education and Communities.

  • Hainey, T., Connolly, T. M., Boyle, E. A., Wilson, A., & Razak, A. (2016). A systematic literature review of games-based learning empirical evidence in primary education. Computers & Education, 102, 202–223. doi:10.1016/j.compedu.2016.09.001.

    Article  Google Scholar 

  • Heinrich, P. (2012). The iPad as a tool for education: A study of the introduction of iPads at Longfield Academy, Kent. Nottingham: NAACE: The ICT association.

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

    Article  Google Scholar 

  • Hong, N. S., McGee, S., & Howard, B. C. (2000). The effect of multimedia learning environments on well-structured and ill-structured problem-solving skills. Proceedings of the American Educational Research Association Annual Meeting (Vol. 2000, no. 1).

  • Institute of Education Sciences & National Science Foundation. (2013). Common guidelines for education research and development. Washington, DC: Authors.

  • Johnson, L., Adams, S., Cummins, M., Estrada, V., Freeman, A., & Ludgate, H. (2012). The NMC horizon report: 2012 K-12. Austin: The New Media Consortium.

  • Jonker, V., Wijers, M., & Van Galen, F. (2009). The motivational power of mini-games for the learning of mathematics. Proceedings of the European Conference on Game Based Learning. Graz, Austria.

  • Ke, F. (2008). A case study of computer gaming for math: Engaged learning from gameplay? Computers & Education, 51(4), 1609–1620. doi:10.1016/j.compedu.2008.03.003.

    Article  Google Scholar 

  • Kebritchi, M. (2010). Factors affecting teachers' adoption of educational computer games: A case study. British Journal of Educational Technology, 41, 256–270. doi:10.1111/j.1467-8535.2008.00921.x.

    Article  Google Scholar 

  • Kebritchi, M., Hirumi, A., & Bai, H. (2010). The effects of modern mathematics computer games on mathematics achievement and class motivation. Computers & Education, 55(2), 427–443. doi:10.1016/j.compedu.2010.02.007.

    Article  Google Scholar 

  • Kirriemuir, J. (2002). The relevance of video games and gaming consoles to the higher and further education learning experience. Techwatch report. Retrieved from http://tecnologiaedu.us.es/nweb/htm/pdf/301.pdf.

  • Kluge, S., & Riley, L. (2008). Teaching in virtual worlds: Opportunities and challenges. Issues in Informing Science and Information Technology, 5, 127–135.

    Article  Google Scholar 

  • Lieberman, D. A., Bates, C. H., & So, J. (2009). Young children's learning with digital media. Computers in the Schools, 26, 271–283. doi:10.1080/07380560903360194.

    Article  Google Scholar 

  • Lix, L. M., Keselman, J. C., & Keselman, H. J. (1996). Consequences of assumption violations revisited: A quantitative review of alternatives to the one-way analysis of variance F test. Review of Educational Research, 66, 579–619. doi:10.2307/1170654.

    Google Scholar 

  • Lowrie, T. (2005). Problem solving in technology rich contexts: Mathematics sense making in out-of-school environments. The Journal of Mathematical Behavior, 24(3–4), 275–286. doi:10.1016/j.jmathb.2005.09.008.

    Article  Google Scholar 

  • Mayer, R., & Moreno, R. (2003). Nine ways to reduce cognitive load in multimedia learning. Educational Psychologist, 38(1), 43–52. doi:10.1207/S15326985EP3801_6.

    Article  Google Scholar 

  • Mayo, M. J. (2009). Video games: A route to large-scale STEM education? Science, 323(5910), 79–82. doi:10.1126/science.1166900.

    Article  Google Scholar 

  • Miller, D. J., & Robertson, D. P. (2011). Educational benefits of using game consoles in a primary classroom: A randomised controlled trial. British Journal of Educational Technology, 42, 850–864. doi:10.1111/j.1467-8535.2010.01114.x.

    Article  Google Scholar 

  • Nunes, T., Bryant, P., & Watson, A. (2009). Key understandings in mathematics learning. London: Nuffield Foundation.

    Google Scholar 

  • Panagiotakopoulos, C. T. (2011). Applying a conceptual mini game for supporting simple mathematical calculation skills: Students’ perceptions and considerations. World Journal of Education, 1(1), 3–14. doi:10.5430/wje.v1n1p3.

    Article  Google Scholar 

  • Papastergiou, M. (2009). Digital game-based learning in high school computer science education: Impact on educational effectiveness and student motivation. Computers & Education, 52(1), 1–12. doi:10.1016/j.compedu.2008.06.004.

    Article  Google Scholar 

  • Polycarpou, I., Krausea, J., Rader, C., Kembel, C., Poupore, C., & Chiu, E. (2010). Math-City: An educational game for K-12 mathematics. Procedia-Social and Behavioral Sciences, 9, 845–850. doi:10.1016/j.sbspro.2010.12.246.

    Article  Google Scholar 

  • Prensky, M. (2001a). Digital natives, digital immigrants part 1. On the Horizon, 9(5), 1–6. doi:10.1108/10748120110424816.

    Article  Google Scholar 

  • Prensky, M. (2001b). Digital game-based learning. New York: McGraw-Hill.

    Google Scholar 

  • Prensky, M., & Prensky, M. (2007). Digital game-based learning (Vol. 1). St. Paul: Paragon house.

  • Robertson, D., & Miller, D. (2009). Learning gains from using games consoles in primary classrooms: A randomized controlled study. Procedia - Social & Behavioral Sciences, 1(1), 1641–1644. doi:10.1016/j.sbspro.2009.01.289.

    Article  Google Scholar 

  • Rosas, R., Nussbaum, M., Cumsille, P., Marianov, V., Correa, M., Flores, P., & Rodriguez, P. (2003). Beyond Nintendo: Design and assessment of educational video games for first and second grade students. Computers & Education, 40(1), 71–94. doi:10.1016/S0360-1315(02)00099-4.

    Article  Google Scholar 

  • Ross, K. N. (2005). Quantitative research methods in educational planning. Module 3: Sample design for educational survey research. Paris: International Institute for Educational Planning/UNESCO.

  • Sandberg, J., Maris, M., & De Geus, K. (2011). Mobile English learning: An evidence-based study with fifth graders. Computers & Education, 47, 1334–1347. doi:10.1016/j.compedu.2011.01.015.

    Article  Google Scholar 

  • Scacchi, W. (2012). The future of research in computer games and virtual world environments. Irvine: University of California.

  • Shaffer, D. (2006). Epistemic frames for epistemic games. Computers & Education, 46(3), 223–234. doi:10.1016/j.compedu.2005.11.003.

    Article  Google Scholar 

  • Shin, N., Sutherland, L. M., Norris, C. A., & Soloway, E. (2012). Effects of game technology on elementary student learning in mathematics. British Journal of Educational Technology, 43, 540–560. doi:10.1111/j.1467-8535.2011.01197.x.

    Article  Google Scholar 

  • Squire, K. and Barab, S. (2004). Replaying history: Engaging urban underserved students in learning world history through computer simulation games. Proceedings the 6th international conference on learning sciences. Santa Monica, CA.

  • Tobias, S., Fletcher, J. D., Dai, D. Y., & Wind, A. P. (2011). Review of research on computer games. In S. Tobias & J. D. Fletcher (Eds.), Computer games and instruction (pp. 127–222). Charlotte: Information Age.

    Google Scholar 

  • Tolmie, A. K., Topping, K. J., Christie, D., Donaldson, C., Howe, C., Jessiman, E., & Thurston, A. (2010). Social effects of collaborative learning in primary schools. Learning and Instruction, 20(3), 177–191. doi:10.1016/j.learninstruc.2009.01.005.

    Article  Google Scholar 

  • Tüzün, H., Yılmaz-Soylu, M., Karakuş, T., İnal, Y., & Kızılkaya, G. (2009). The effects of computer games on primary school students’ achievement and motivation in geography learning. Computers & Education, 52(1), 68–77. doi:10.1016/j.compedu.2008.06.008.

    Article  Google Scholar 

  • Ulicsak, M., & Wright, M. (2010). Games in education: Serious games. FutureLab.

  • Van Galen, F., Jonker, V., & Wijers, M. (2009). Designing educational mini-games. Proceedings of the 5th Annual Conference of the International Society for Design and Development in Education. Cairns, Australia.

  • Vogel, J. J., Vogel, D. S., Cannon-Bowers, J., Bowers, C. A., Muse, K., & Wright, M. (2006). Computer gaming and interactive simulations for learning: A meta-analysis. Journal of Educational Computing Research, 34, 229–243. doi:10.2190/FLHV-K4WA-WPVQ-H0YM.

    Article  Google Scholar 

  • Westera, W., Nadolski, R. J., Hummel, H. G., & Wopereis, I. G. (2008). Serious games for higher education: A framework for reducing design complexity. Journal of Computer Assisted Learning, 24(5), 420–432. doi:10.1111/j.1365-2729.2008.00279.x.

    Article  Google Scholar 

  • Whitton, N. (2007). An investigation into the potential of collaborative computer game-based learning in higher education (Doctoral dissertation, Napier University).

  • Zaranis, N., Kalogiannakis, M., & Papadakis, S. (2013). Using mobile devices for teaching realistic mathematics in kindergarten education. Creative Education, 4, 1–10. doi:10.4236/ce.2013.47A1001.

    Article  Google Scholar 

  • Zhang, X., Liu, C., Wang, L., & Piao, Q. (2010). Effects of violent and non-violent computer video games on explicit and implicit aggression. Journal of Software, 5(9), 1014–1021. doi:10.4304/jsw.5.9.1014-1021.

    Google Scholar 

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Fokides, E. Digital educational games and mathematics. Results of a case study in primary school settings. Educ Inf Technol 23, 851–867 (2018). https://doi.org/10.1007/s10639-017-9639-5

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