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Employment and Training Services > Training and Education > Science, Technology, Engineering, and Math (STEM) programs
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Employment and Training Services > Training and Education > Science, Technology, Engineering, and Math (STEM) programs
Stout, J., Dasgupta, N., Hunsinger, M., & McManus, M. (2011). STEMing the tide: Using in-group experts to inoculate women’s self-concept in science, technology, engineering, and mathematics (STEM). Journal of Personality and Social Psychology, 100, 255-270. [one of three studies described in a single report]
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Causal Impact Analysis
- Attitudes-Mod/high-Favorable impactsAttitudes
Oh, S., & Lewis, G. (2011). Stemming inequality? Employment and pay of female and minority scientists and engineers in the federal and private sectors. Social Science Journal, 48(2), 397-403.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
Student enrollment in high school AP sciences and calculus: how does it correlate with STEM careers?
Robinson, M. (2003). Student enrollment in high school AP sciences and calculus: how does it correlate with STEM careers? Bulletin of Science, Technology & Society, 23, 265–273.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Causal Impact Analysis
- Education and skills gains-Low-Favorable impactsEducation and skills gains
Drane, D., Micari, M., & Light, G. (2014). Students as teachers: Effectiveness of a peer-led STEM learning programme over 10 years. Educational Research & Evaluation, 20(3), 210-230.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Causal Impact Analysis
- Education and skills gains-Low-No impactsEducation and skills gains
Krudysz, M., Walser, A., & Alting, A. (2012). Success of joint programs between junior and senior colleges. American Society for Engineering Education.
Topic Area: Community College
Study Type: Causal Impact Analysis
- Education and skills gains-Low-Favorable impactsEducation and skills gains
Demetry, C., Hubelbank, J., Blaisdell, S., Sontgerath, S., Nicholson, M.E., Rosenthal, E., & Quinn, P. (2009). Supporting young women to enter engineering: Long-term effects of a middle school engineering outreach program for girls. Journal of Women and Minorities in Science and Engineering 15, 119-142.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Causal Impact Analysis
- Education and skills gains-Low-Favorable impactsEducation and skills gains
Forssen, A., Lauriski-Karriker, T., Harriger, A., & Moskal, B. (2011). Surprising possibilities imagined and realized through information technology: Encouraging high school girls’ interests in information technology. Journal of STEM Education: Innovations and Research, 12(5-6), 46-57.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
The New Growth Group. (2018). TAACCCT building Illinois' bio-economy (BIB) consortium final evaluation report. Cleveland, OH: New Growth Group.
Topic Area: Community College
Study Type: Causal Impact Analysis
- Education and skills gains-Low-Favorable impactsEducation and skills gains
Smith, L., Gregg, A., Roth, L., Stoeklen, P., Krueger, B., Lawton, G., & Knaeble, B. (2017). TAACCCT3 INTERFACE project: Final evaluation report. Menomonie, WI: University of Wisconsin-Stout, Applied Research Center, Wisconsin’s Polytechnic University.
Topic Area: Community College
Study Type: Causal Impact Analysis
- Earnings and wages-Mod/high-No impactsEarnings and wages
- Education and skills gains-Mod/high-Favorable impactsEducation and skills gains
- Employment-Mod/high-Favorable impactsEmployment
Topic Area: Community College
Study Type: Implementation Analysis