Teaching Engineering Design-Based Integrated STEM in Rural Contexts: Nurturing Future Designers

Bryan, L. A., Moore, T. J., Johnson, C. C., & Roehrig, G. H. (2015). Integrated STEM education. In STEM road map (pp. 23–37). Routledge.

Bybee, R. W. (2011). Scientific and engineering practices in K-12 classrooms. Science Teacher, 78(9), 34–40.

Committee on STEM Education, National Science & Technology Council. (2018). Charting a course for success: America’s strategy for STEM education. Washington, DC. Available at https://www.whitehouse.gov/wp-content/uploads/2018/12/STEM-Education-Strategic-Plan-2018.pdf. Accessed on November 18, 2023.

Cross, N. (1982). Designerly ways of knowing. Design Studies, 3(4), 221–227.

Cross, N. (2001). Designerly ways of knowing: Design discipline versus design science. Design Issues, 17(3), 49–55.

Dorst, K. (2006). Design problems and design paradoxes. Design Issues, 22(3), 4–17.

Dorst, K. (2015). Frame innovation: Create new thinking by design. Cambridge, MA: MIT Press. (pp. 73–98).

Council of Canadian Academies. (2015). Some assembly required: STEM skills and Canada's economic productivity. Ottawa, ON, Canada: Author. Available at https://cca-reports.ca/wp-content/uploads/2018/10/stemfullreporten.pdf. Accessed on November 18, 2023.

Dym, C. L., Agogino, A. M., Eris, O., Frey, D. D., & Leifer, L. J. (2005). Engineering design thinking, teaching, and learning. Journal of Engineering Education, 94(1), 103–120.

Fortus, D., Krajcik, J., Dershimer, R. C., Marx, R. W., & Mamlok‐Naaman, R. (2005). Design‐based science and real‐world problem‐solving. International Journal of Science Education, 27(7), 855–879.

Halfin, H. H. (1973). Technology: A process approach. (Doctoral dissertation, West Virginia University) Dissertation Abstracts International. (1) 1111A.

Han, J., & Kelley, T. R. (2022). STEM Integration through shared practices: examining secondary science and engineering technology students’ concurrent think-aloud protocols. Journal of Engineering Design, 33(5), 343-365.

Harris, R. S., & Hodges, C. B. (2018). STEM education in rural schools: Implications of untapped potential. National Youth-At-Risk Journal, 3(1), 3–12. https://doi.org/10.20429/nyarj.2018.030102

Holt, J. E. (1997). The designer's judgement. Design Studies, 18(1), 113–123.

Hunter, J. (2021). High possibility STEM classrooms: Integrated STEM learning in research and practice. New York, NY: Routledge.

Google Scholar 

International Technology and Engineering Educators Association (ITEEA). (2020). Standards for technological and engineering literacy: The role of technology and engineering in STEM education. Reston, VA.

Jonassen, D., Strobel, J., & Lee, C. B. (2006). Everyday problem solving in engineering: Lessons for engineering educators. Journal of Engineering Education, 95(2), 139–151.

Jonassen, D. H., & Hernandez-Serrano, J. (2002). Case-based reasoning and instructional design: Using stories to support problem solving. Educational Technology Research and Development, 50(2), 65–77.

Kelley, T., Brenner, D. C., & Pieper, J. T. (2010). PLTW and epics‐high: Curriculum comparisons to support problem solving in the context of engineering design. National Center for Engineering and Technology Education.

Kelley, T. R., Capobianco, B. M., & Kaluf, K. J. (2015). Concurrent think-aloud protocols to assess elementary design students. International Journal of Technology and Design Education, 25, 521–540.

Kelley, T. R., and Knowles, J. G. (2016). A conceptual framework for integrated STEM education. International Journal of STEM Education, 3(1), 11.

Kelley, T. R., Knowles, J. G., Han, J., & Sung, E. (2019). Creating a 21st Century Skills Survey Instrument for High School Students. American Journal of Educational Research, 7(8), 583–590.

Kelley, T. R., Knowles, J. G., Han, J., & Trice, A. N. (2021). Integrated STEM Models of Implementation. Journal of STEM Education: Innovations & Research, 22(1).

Kelley, T. R., Knowles, J. G., Holland, J. D., & Han, J. (2020). Increasing high school teachers self-efficacy for integrated STEM instruction through a collaborative community of practice. International Journal of STEM Education, 7, 1–13.

Khalil, N., & Osman, K. (2017). STEM-21CS module: Fostering 21st century skills through integrated STEM. K-12 STEM Education, 3(3), 225–233.

Kolko, J. (2018). The divisiveness of design thinking. Interactions, 25(3), 28–34. https://doi.org/10.1145/3194313

Long, N. T., Yen, N. T. H., & Van Hanh, N. (2020). The role of experiential learning and engineering design process in K-12 STEM education. International Journal of Education and Practice, 8(4), 720–732.

National Academy of Engineering and National Research Council [NAE and NRC]. (2009). Engineering in K-12 education: Understanding the status and improving the prospects. Washington: National Academies Press.

Google Scholar 

National Academies of Sciences, Engineering, and Medicine. (2019). Science and engineering for grades 6–12: Investigation and design at the center. Washington, DC: The National Academies Press. https://doi.org/10.17226/25216

National Academies of Sciences, Engineering, and Medicine. (2020). Building capacity for teaching engineering in K-12 education. Washington, DC: The National Academies Press. https://doi.org/10.17226/25612

National Research Council. (2009). Engineering in K–12 education: Understanding the status and improving the prospects. Washington, DC: National Academies Press.

Google Scholar 

National Research Council. (2012). A Framework for K-12 science education practices crosscutting concepts and core ideas. National Academies Press. Washington, D.C. https://doi.org/10.17226/13165.

National Research Council. (2013). Next generation science standards: For states, by states.

National Research Council. (2014). STEM integration in K-12 education: Status, prospects, and an agenda for research. National Academies Press.

Peterson, B., Bornemann, G., Lydon, C., & West, K. (2015). Rural students in Washington state: STEM as a strategy for building rigor, postsecondary aspirations, and relevant career opportunities. Peabody Journal of Education, 90(2), 280–293. https://doi.org/10.1080/0161956X.2015.1022397

Thibaut, L., Ceuppens, S., De Loof, H., De Meester, J., Goovaerts, L., Struyf, A., & Hellinckx, L. (2018). Integrated STEM education: A systematic review of instructional practices in secondary education. European Journal of STEM Education, 3(1), 2.

Article  Google Scholar 

Wendell, K. B., Wright, C. G., & Paugh, P. (2017). Reflective decision‐making in elementary students' engineering design. Journal of Engineering Education, 106(3), 356–397.

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