Insights on the Role of Scratch in Fostering Computational and Mathematical Thinking: The Case of Prime Factorization

Author:

Kurt GamzeORCID,Çakıoğlu ÖzgeORCID

Publisher

Springer Science and Business Media LLC

Reference58 articles.

1. Angeli, C., Voogt, J., Fluck, A., Webb, M., Cox, M., Malyn-Smith, J., & Zagami, J. (2016). A K–6 computational thinking curriculum framework: Implications for teacher knowledge. Educational Technology & Society, 19(3), 47–57.

2. Benton, L., Hoyles, C., Kalas, I., & Noss, R. (2017). Bridging primary programming and mathematics: Some findings of design research in England. Digital Experiences in Mathematics Education, 3(2), 115–138.

3. Bocconi, S., Chioccariello, A., & Earp, J. (2018). The Nordic approach to introducing computational thinking and programming in compulsory education. Report prepared for the Nordic@BETT2018 Steering Group. https://doi.org/10.17471/54007

4. Booth, W. (2013). Mixed-methods study of the impact of a computational thinking course on student attitudes about technology and computation. Unpublished doctoral dissertation. Baylor University, Texas, USA.

5. Bråting, K., & Kilhamn, C. (2021). Exploring the intersection of algebraic and computational thinking. Mathematical Thinking and Learning, 23(2), 170–185.

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