RESEARCH PAPER
Preschool Teachers’ Beliefs and Pedagogical Practices in the Integration of Technology: A Case for Engaging Young Children in Scientific Inquiry
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Monash University, AUSTRALIA
2
University of Eastern Finland, FINLAND
Online publication date: 2019-07-08
Publication date: 2019-07-08
EURASIA J. Math., Sci Tech. Ed 2019;15(12):em1784
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ABSTRACT
This paper presents findings from an on-going international study (Australia and Finland) of preschool teachers’ beliefs and pedagogical practices in the integration of technology to engage young children in learning science. Scarcely used in early childhood education research, this study is framed using Mishra and Koehler’s (2006) Technological Pedagogical and Content Knowledge (TPACK) theory. Case studies presented in this paper are undertaken with data collected from three preschools in Australia. Participant observation of teachers’ (N = 7) and children’s play experiences, and semi-structured interviews, revealed that teachers occasionally used iPads and some apps within their intentionally constructed science investigations, both for teacher-initiated research and for communicating with parents via children’s journals. Teachers were not adverse to, but rather accepting of embedding technology as a pedagogical affordance and keen on planning for multimodal science-based experiences. The findings of this study imply the need for a pedagogical shift, wherein teachers’ technological pedagogical knowledge improves in how and when to sensibly integrate technology for children’s engagement in scientific inquiry, rather than relying on hands-on experiences alone. Implications lie in more closely aligning teachers’ TPK and related practices with science content knowledge by co-researching together with children and foregrounding both teachers’ and children’s perspectives.
REFERENCES (37)
1.
Ailincai, R., & Gabillon, Z. (2018). Analysing teachers’ representations of digital technology using a Grounded Theory approach. Eurasia Journal of Mathematics, Science and Technology Education, 14(10),
https://doi.org/10.29333/ejmst....
2.
Aldhafeeri, F., Palaiologou, I., & Folorunsho, A. (2016). Integration of digital technologies into play-based pedagogy in Kuwaiti early childhood education: Teachers’ views, attitudes and aptitudes. International Journal of Early Years Education, 24(3), 342-360.
https://doi.org/10.1080/096697....
3.
Arnott, L., Palaiologou, I., & Gray, C. (2018). Digital devices, internet‐enabled toys and digital games: The changing nature of young children’s learning ecologies, experiences and pedagogies. British Journal of Educational Technology, 49(5), 803-806.
https://doi.org/10.1111/bjet.1....
4.
Bryman, A. (2012). Social research methods (4th ed.). New York: Oxford University Press.
5.
Campbell, C., & Jobling, W. (2010). Science in early childhood. Port Melbourne, Vic: Cambridge University Press.
7.
Chuang, H., & Ho, C. (2011). An investigation of early childhood teachers’ technological pedagogical content knowledge (TPACK) in Taiwan. Journal of Kirsehir Education Faculty, 12(2), 99–117. Retrieved from
https://www.researchgate.net/p....
8.
Craft, A. (2011). Creativity and Education Futures. Stoke on Trent: Trentham Books.
9.
DeCoito, I., & Richardson, T. (2018). Teachers and technology: Present practice and future directions. Contemporary Issues in Technology and Teacher Education, 18(2), Retrieved from
https://www.citejournal.org/vo....
13.
Early Years Learning Framework (2018, July 8). Learning outcome planning cycle resource: Children are confident and involved learners. Retrieved from
https://www.vcaa.vic.edu.au/Do....
14.
Edwards, S., & Bird, J. (2017). Observing and assessing young children’s digital play in the Early Years: Using the Digital Play Framework. Journal of Early Childhood Research, 15(2), 158-173.
https://doi.org/10.1177/147671....
15.
Edwards, S., Straker, L., & Oakey, H. (2018, September 8). Early Childhood Australia: Statement on young children and digital technologies. Retrieved from
http://www.earlychildhoodaustr....
18.
Fleer, M. (2018). Digital animation: New conditions for children’s development in play‐based setting. British Journal of Educational Technology, 49(5), 943-958.
https://doi.org/10.1111/bjet.1....
19.
Havu-Nuutinen, S., Sporea, D., & Sporea, A. (2017). Inquiry and creativity approaches in early years science education. A comparative analysis of Finland and Romania. In E. Kimonen & R. Nevalainen (Eds.), Reforming teaching and teacher education: Bright prospects for active schools (pp. 89-116). Rotterdam, The Netherlands: Sense Publishers.
https://doi.org/10.1007/978-94....
20.
Highfield, K. (2010). Robotic toys as a catalyst for mathematical problem solving. Australian Primary Mathematics Classroom, 15(2), 22-27. Retrieved from
https://files.eric.ed.gov/full....
21.
Hsu, C. Y., Liang, J. C., Tsai, C. S., & Chai, C. (2014). Exploring preschool teachers’ technological pedagogical content knowledge of educational games. Journal of Educational Computing Research, 49(4), 461-479.
https://doi.org/10.2190/EC.49.....
22.
Jen, T., Yeh, Y., Hsu, Y., Wu, H., & Chen, K. (2016). Science teachers’ TPACK-Practical: Standard-setting using an evidence-based approach. Computers & Education, 95(C), 45-62.
https://doi.org/10.1016/j.comp....
23.
Kärkkäinen, K., & Vincent-Lancrin, S. (2013). Sparking innovation in STEM education with technology and collaboration: A case study of the HP Catalyst Initiative. OECD Education Working Papers, No. 91. OECD Publishing.
https://doi.org/10.1787/5k480s....
24.
Kermani, H., & Aldemir, J. (2015). Preparing children for success: Integrating science, math, and technology in early childhood classroom. Early Child Development and Care, 185(9), pp. 1504–1527.
https://doi.org/10.1080/030044....
25.
Marsh, J., Plowman, L., Yamada‐Rice, D., Bishop, J., Lahmar, J., & Scott, F. (2018). Play and creativity in young children’s use of apps. British Journal of Educational Technology, 49(5), 870-882.
https://doi.org/10.1111/bjet.1....
26.
Milne, I. (2010). A sense of wonder arising from aesthetic experiences should be the starting point for inquiry in primary science. Science Education International, 212, 102-115. Retrieved from
http://www.icaseonline.net/sei....
27.
Mishra, P., & Koehler, M. J. (2006). Technological pedagogical content knowledge: A Framework for Teacher Knowledge. Teachers College Record, 108(6), 1017-1054. Retrieved from
http://one2oneheights.pbworks.....
28.
Palaiologou, I. (2016). Children under five and digital technologies: Implication for early years pedagogy. The European Early Childhood Research Journal, 24(1), 5-24.
https://doi.org/10.1080/135029....
29.
Parette, H. P., Quesenberry, A. C., & Blum, C. (2010). Missing the boat with technology usage in early childhood settings: A 21st century view of developmentally appropriate practice. Early Childhood Education Journal, 37, 335-343.
https://doi.org/10.1007/s10643....
30.
Sandoval, W. A., Sodian, B., Koerber, S., & Wong. J. (2014) Developing children’s early competencies to engage with science. Educational Psychologist, 49(2), 139-152.
https://doi.org/10.1080/004615....
31.
Shulman, L. S. (1986). Paradigms and research programs for the study of teaching. In M.C. Wittrock (Ed.), Handbook of research on teaching (3rd ed.). New York: Macmillan.
33.
Voogt, J., Fisser, P., Roblin Pareja, N., Tondeur, J., & van Braak, J. (2013). Technological pedagogical content knowledge - A review of the Literature. Journal of Computer Assisted Learning, 29(2), 109-121.
https://doi.org/10.1111/j.1365....
34.
Wang, F., Kinzie, M. B., McGuire, P. & Pan, E. (2010). Applying technology to inquiry-based learning in Early Childhood Education. Early Childhood Education, 37(5), 381-389.
https://doi.org/10.1007/s10643....
35.
Yelland, N. (2018). A pedagogy of multiliteracies: Young children and multimodal learning with tablets. British Journal of Educational Technology, 49(5), 847-858.
https://doi.org/10.1111/bjet.1....
36.
Yin, R. K. (2003). Case study research: Design and methods (3rd ed.). Thousand Oaks, CA: Sage.
37.
Yin, R. K. (2014). Case study research: Design and methods (4th ed.). California: Sage Publications.