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72 E Problem-Solving before Instruction (PS-I) in Engineering Education (Poster) challenges students had encountered. Preliminary results reveal that PS-I led to active in-class engagement, a positive learning experience, and slightly improved final exam scores. Keywords: Problem-Solving before Instruction (PS-I), Engineering education, Learning Design. References Bransford, J. D., & Schwartz, D. L. (1999). Rethinking transfer: A simple proposal with multiple implications. Review of Research in Education , 24 , 61–100. https://doi.org/10.3102/0091732x024001061 Chi, M. T. H., Adams, J., Bogusch, E. B., Bruchok, C., Kang, S., Lancaster, M., Levy, R., Li, N., McEldoon, K. L., Stump, G. S., Wylie, R., Xu, D., & Yaghmourian, D. L. (2018). Translating the ICAP Theory of Cognitive Engagement Into Practice. Cognitive Science , 42 (6), 1777–1832. https://doi.org/10.1111/cogs.12626 Freeman, S., Eddy, S. L., McDonough, M., Smith, M. K., Okoroafor, N., Jordt, H., & Wenderoth, M. P. (2014). Active learning increases student performance in science, engineering, and mathematics. Proceedings of the National Academy of Sciences of the United States of America , 111 (23), 8410–8415. https://doi.org/10.1073/pnas.1319030111 Hattie, J. (2008). Visible learning: A synthesis of over 800 meta-analyses relating to achievement. In Visible Learning: A Synthesis of Over 800 Meta-Analyses Relating to Achievement . https://doi.org/10.4324/9780203887332 Kapur, M. (2014). Productive Failure in Learning Math . 38 , 1008–1022. https://doi.org/10.1111/cogs.12107 Kapur, M., & Walk, N. (2006). Productive Failure . 1995 , 307–313. Kirschner, P., Sweller, J., & Clark, R. E. (2006). Why unguided learnign does not work: An Analysis of the Failure of Discovery Learning, Problem-Based Learning, Experiential Learning and Inquiry-Based Learning. Educational Psychologist , 41(2) , 75–86. Loibl, K., Roll, I., & Rummel, N. (2017). Towards a Theory of When and How Problem Solving Followed by Instruction Supports Learning. Educational Psychology Review , 29 (4), 693– 715. https://doi.org/10.1007/s10648-016-9379-x Schwartz, D. L., & Martin, T. (2004). Inventing to Prepare for Future Learning: The Hidden Efficiency of Encouraging Original Student Production in Statistics Instruction. Cognition and Instruction , 22 (2), 129–184. https://doi.org/10.1207/s1532690xci2202_1 Sinha, T., & Kapur, M. (2021a). Robust effects of the efficacy of explicit failure-driven scaffolding in problem-solving prior to instruction: A replication and extension. Learning and Instruction , 75 (May), 101488. https://doi.org/10.1016/j.learninstruc.2021.101488 Sinha, T., & Kapur, M. (2021b). When Problem Solving Followed by Instruction Works: Evidence for Productive Failure. In Review of Educational Research (Vol. 91, Issue 5). https://doi.org/10.3102/00346543211019105 Smith, M. K., Jones, F. H. M., Gilbert, S. L., &Wieman, C. E. (2013). The classroom observation protocol for undergraduate stem (COPUS): A new instrument to characterize university STEM classroom practices. CBE Life Sciences Education , 12 (4), 618–627. https://doi.org/10.1187/cbe.13-08-0154
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