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Displaying results 61 - 63 of 63 in total
Conference Session
Pre-College Engineering Education Division Technical Session 13
Collection
2021 ASEE Virtual Annual Conference Content Access
Authors
Jungsun Kim, Indiana University Bloomington; Soo Hyeon Kim, Indiana University-Purdue University Indianapolis
Tagged Divisions
Pre-College Engineering Education
a learning environment in STEMeducation [1], but less is known about conducting engineering design challenge activities inhome environments. Although many studies highlight the development of STEM concepts andskills, more research is needed to understand how to support this development through caregiver-child interactions at home. This study aims to (a) investigate caregiver-child interactions thatsupport the development of child(ren)’s STEM conceptualizations and skills in engineeringdesign challenge activities within family pedagogical practices, and (b) examine caregivers’pedagogical expectations within family pedagogy. Guided by Vygotsky’s cultural-historicalview, the authors analyze child(ren)’s development of STEM conceptualizations
Conference Session
The Curriculum at Two-year College's Engineering Technology and Engineering Transfer Programs
Collection
2021 ASEE Virtual Annual Conference Content Access
Authors
Kristin Kelly Frady, Clemson University; Christy Brown, Clemson University; Karen A. High, Clemson University; Claretha Hughes Ph.D., University of Arkansas, Fayetteville; Robert M O'Hara, Clemson University; Shuyu Huang
Tagged Topics
Diversity
Tagged Divisions
Two-Year College
%20technology%22&a=1[6] National Science Board, “The skilled technical workforce: Crafting America’s science & engineering enterprise,” Washington, DC, 2019.[7] Bureau of Labor Statistics, “Occupational projections and worker characteristics”, Washington, DC, 2020. [Online]. Available: https://www.bls.gov/emp/tables/occupational- projections-and-characteristics.htm[8] Unfried, A., Faber, M., Stanhope, D.S., & Wiebe, E., “The development and validation of a measure of student attitudes toward science, technology, engineering, and math (S-STEM),” Journal of Psychoeducational Assessment, vol. 33, no. 7, pp. 622-639, 2015.[9] Lent, R.W., & Brown, S.B., “Social cognitive approach to career development: An overview,” Career
Conference Session
Undergraduate Students' Development of Computational and Programming Skills
Collection
2021 ASEE Virtual Annual Conference Content Access
Authors
Kelsey Scalaro, University of Nevada, Reno; Indira Chatterjee, University of Nevada, Reno; Ann-Marie Vollstedt, University of Nevada, Reno; Jeffrey C. LaCombe, University of Nevada, Reno; Adam Kirn, University of Nevada, Reno
Tagged Divisions
Educational Research and Methods
persistence,” Phys. Teach., vol. 55, pp. 96–99, Feb. 2017.[24] L. McAlpine, C. Amundsen, and G. Turner, “Identity-trajectory: Reframing early career academic experience,” Br. Educ. Res. J., vol. 40, no. 6, pp. 952–969, Dec. 2014.[25] H. S. Becker and J. W. Carper, “The Development of identification with an occupation,” 1956.[26] I. Chatterjee, K. Scalaro, A. Kirn, A.-M. Vollstedt, and J. LaCombe, “S-STEM: Creating retention and engagement for academically talented engineers,” in ASEE Annual Conference and Exposition, 2020.[27] J. W. Creswell, Qualitative inquiry & research design: Choosing among five approaches, 2nd ed. SAGE Publications Ltd, 2007.[28] R. Sokolowski, Introduction to Phenomenology