Related Studies
Employment and Training Services > Training and Education > Science, Technology, Engineering, and Math (STEM) programs
Displaying 61 - 70 of 93
Employment and Training Services > Training and Education > Science, Technology, Engineering, and Math (STEM) programs
The Improve Group. (2017). RITA consortium final evaluation report. Saint Paul, MN: The Improve Group.
Topic Area: Community College
Study Type: Causal Impact Analysis
- Earnings and wages-Low-No impactsEarnings and wages
- Education and skills gains-Low-Mixed impactsEducation and skills gains
- Employment-Low-No impactsEmployment
Heaverlo, C. (2011). STEM development: A study of 6th-12th grade girls’ interest and confidence in mathematics and science (Doctoral dissertation, Iowa State University). Retrieved from http://lib.dr.iastate.edu/cgi/viewcontent.cgi?article=1035&context=etd
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
Mohammadi, A. (2018). STEM education for workforce development through online contextualized training. (Unpublished doctoral dissertation). University of Nebraska, Lincoln, Nebraska.
Topic Area: Community College
Study Type: Causal Impact Analysis
- Education and skills gains-Low-No impactsEducation and skills gains
Afterschool Alliance. (2011). STEM learning in afterschool: An analysis of impact and outcomes. Washington, DC.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
Farrell, R., Harris, D., Meyers, H., & Ratmeyer, S. (2017). STEM-Connect at the University of Vermont, College of Engineering and Mathematical Sciences: Program evaluation final report. Swanton, VT: Core Research and Evaluation.
Topic Area: Community College
Study Type: Causal Impact Analysis
- Earnings and wages-Low-No impactsEarnings and wages
- Employment-Low-No impactsEmployment
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
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
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
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