Improving and Assessing Computational Thinking in Maker Activities: the Integration with Physics and Engineering Learning

Author:

Yin Yue,Hadad Roxana,Tang Xiaodan,Lin Qiao

Funder

National Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Engineering,Education

Reference62 articles.

1. Albert, J. (2016). Adding computational thinking to your science lesson: what should it look like? Reno, Nevada: Paper presented at the Association for Science Teacher Education Conference.

2. Barton, A. C., Tan, E., & Greenberg, D. (2016). The makerspace movement: sites of possibilities for equitable opportunities to engage underrepresented youth in STEM. Teachers College Record.

3. Basu, S., Biswas, G., Sengupta, P., Dickes, A., Kinnebrew, J. S., & Clark, D. (2016). Identifying middle school students' challenges in computational thinking-based science learning. Research and Pratice in Techology Enhanced Learning, 11(13), 1–35.

4. Basu, S., Biswas, G., & Kinnebrew, J. S. (2017). Learninger modeling for adaptive scaffolding in a computational thinking-based science learning environment. User Modeling and User-Adapted Interaction, 27(1), 5–53.

5. Bers, M. U., Flannery, L., Kazakoff, E. R., & Sullivan, A. (2014). Computational thinking and tinkering: exploration of an early childhood robotics curriculum. Computers in Education, 72, 145–157.

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