Abstract
AbstractThere are no conflicts between intentional teaching and play-based learning. However, educators find it challenging to establish the pedagogical relationship between them as they struggle to conceptualise and enact their role in the play-based context. In particular, educators’ confidence level is not enough to teach science and engineering in a play-based context. However, there is an increasing demand to integrate teaching practice for STEM learning in early childhood settings. Play is a pleasure and a leading source for children’s learning and cultural maturation process as part of their social and cultural experiences, and adults’ support can enhance children’s STEM learning process in a play-based context. This paper investigates how educators’ intentional teaching plan can support children’s small science and engineering learning process in culturally valued play. A total of 50 h of video data, representing 64 children aged from 10 months to 5 years, were collected through digital video observation over a period of seven weeks in an early childhood centre in Australia. This paper uses the dialectical interactive approach to analyse a 95-min video clip of children’s (3 to 5 years of age) play in a cultural context. It is argued that educators progress their learning and confidence to teach science and engineering in play-based settings when they could choose the activity from their community culture or centre-based practice. The findings of the study provide a pedagogical model for educators, which provides a conceptual framework for STEM-based learning in a culturally valued play.
Publisher
Springer Science and Business Media LLC
Reference42 articles.
1. Australian Academy of Technology and Engineering. (2019). Deep concerns about maths and science decline. https://www.atse.org.au/news-and-events/article/deep-concerns-about-maths-and-science-decline/
2. Australian Government Department of Education [AGDE]. (2022). Belonging, being and becoming: The early years learning framework for Australia. https://www.acecqa.gov.au/sites/default/files/2023-01/EYLF-2022-V2.0.pdf
3. Australian Industry Group. (2017). Strengthening school – industry stem skills partnerships. Final project report. Australia. https://www.chiefscientist.gov.au/2017/06/report-strengthening-school-industry-stem-skills-partnerships
4. Bagiati, A., & Evangelou, D. (2016). Practicing engineering while building with blocks: Identifying engineering thinking. European Early Childhood Education Research Journal, 24(1), 67–85. https://doi.org/10.1080/1350293X.2015.1120521
5. Bagiati, A., Yoon, S. Y., Evangelou, D., Magana, A., Kaloustian, G., & Zhu, J. (2015). The landscape of PreK-12 engineering online resources for teachers: Global trends. International Journal of STEM Education. https://doi.org/10.1186/s40594-014-0015-3