Maker-Centered Professional Learning for Inservice and Preservice K-12 Educators: A Systematic Literature Review

Author:

Caratachea Matthew X.ORCID,Greene Moe DebbaghORCID,Jones W. MontyORCID

Publisher

Springer Science and Business Media LLC

Subject

Computer Science Applications,Education

Reference54 articles.

1. Ackermann, E. (2001). Piaget’s constructivism, Papert’s constructionism: What’s the difference? Retrieved January 21, 2016 from http://learning.media.mit.edu/content/publications/EA.Piaget_Papert.pdf

2. Berry, R. Q., Bull, G., Browning, C., Thomas, C. D., Starkweather, K., & Aylor, J. H. (2010). Use of digital fabrication to incorporate engineering design principles in elementary mathematics education. Contemporary Issues in Technology and Teacher Education, 10(2), 167–172.

3. Bevan, B., Gutwill, J. P., Petrich, M., & Wilkinson, K. (2015). Learning Through STEM-Rich Tinkering: Findings From a Jointly Negotiated Research Project Taken Up in Practice. Science Education, 99(1), 98–120. https://doi.org/10.1002/sce.21151

4. Blackley, S., Sheffield, R., Maynard, N., Koul, R., & Walker, R. (2017). Makerspace and reflective practice: Advancing pre-service teachers in STEM education. Australian Journal of Teacher Education, 42(3), 22–37. https://doi.org/10.14221/ajte.2017v42n3.2

5. Blikstein, P. (2013). Digital fabrication and ‘making’ in education: The democratization of invention. In J. Walter-Herrmann & C. Büching (Eds.), FabLabs: Of Machines, Makers and Inventors (pp. 1–21). Bielefeld, Germany: Transcript Publishers.

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