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Revisiting Critical STEM Interventions: a Literature Review of STEM Organizational Learning

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Journal Int J STEM Educ
Date 2022 Jun 22
PMID 35729935
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Abstract

There is inconclusive evidence on the ability of scientific research in science, technology, engineering, and mathematics (STEM) education to scale-up from one context to another and ultimately become institutionalized. The dearth of evidence draws focus on how organizations change and evolve or the process of organizational learning. We designed this systematic review of the literature to uncover to what extent and how organizational theory has been leveraged within STEM interventions or as a research tool to inform the policies and practices of STEM education organizations. Unlike previous reviews, we explicitly focused on how organizational learning informs cultural transformation toward the success of racially and ethnically underrepresented minority (URM) students in STEM. The research question was: How has organizational theory and learning informed the potential for STEM education to center the success of URM students? Our results reveal that STEM entities that did not leverage organizational theory consistently fell into either the "decision trap" identified by Langely et al. created by ignoring temporal structures or deemed the innovation threatening, as Kezar suggested. We conclude with practical recommendations for the design of STEM education interventions.

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References
1.
Rew L . The systematic review of literature: synthesizing evidence for practice. J Spec Pediatr Nurs. 2011; 16(1):64-9. DOI: 10.1111/j.1744-6155.2010.00270.x. View

2.
James S, Singer S . From the NSF: The National Science Foundation's Investments in Broadening Participation in Science, Technology, Engineering, and Mathematics Education through Research and Capacity Building. CBE Life Sci Educ. 2016; 15(3). PMC: 5008905. DOI: 10.1187/cbe.16-01-0059. View

3.
Reinholz D, Apkarian N . Four frames for systemic change in STEM departments. Int J STEM Educ. 2019; 5(1):3. PMC: 6310387. DOI: 10.1186/s40594-018-0103-x. View

4.
Carlisle D, Weaver G . STEM education centers: catalyzing the improvement of undergraduate STEM education. Int J STEM Educ. 2019; 5(1):47. PMC: 6310466. DOI: 10.1186/s40594-018-0143-2. View