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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
de la Mora, A., Callen, E., Kemis, M., & Abraham, W. (2017). 2016 PETC annual evaluation report, Eastern Iowa Community Colleges. Ames, IA: RISE.
Topic Area: Community College
Study Type: Causal Impact Analysis
- Earnings and wages-Low-Favorable impactsEarnings and wages
- Employment-Low-No impactsEmployment
Erkut, S., Marx, F., & Wellesley College Center for Research on Women. (2005). 4 schools for WIE. Evaluation report. Wellesley, MA: Wellesley Centers for Women.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Causal Impact Analysis
- Attitudes-Low-Mixed impactsAttitudes
Yelamarthi, K., & Mawasha, R. (2010). A Scholarship Model for Student Recruitment and Retention in STEM Disciplines. Journal of STEM Education, 11(5 & 6), 25–32.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Causal Impact Analysis
- Education and skills gains-Low-Favorable impactsEducation and skills gains
Institute for Women’s Policy Research. (2013). Accelerating change for women faculty of color in STEM: Policy, action, and collaboration. Washington, DC: Institute for Women’s Policy Research.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
Leaper, C., Farkas, T., & Brown, C. (2012). Adolescent girls’ experiences and gender-related beliefs in relation to their motivation in math/science and English. Journal of Youth and Adolescence, 41(3), 268-282.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
McIntyre, R., Paulson, R., & Lord, C. (2003). Alleviating women’s mathematics stereotype threat through salience of group achievements. Journal of Experimental Social Psychology, 39, 83-90.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Causal Impact Analysis
- Education and skills gains-Mod/high-Favorable impactsEducation and skills gains
Blake, R., Liou-Mark, J., & Chukuigwe, C. (2013). An effective model for enhancing underrepresented minority participation and success in geoscience undergraduate research. Journal of Geoscience Education, 61(4), 405-414.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
Rivera, M., Davis, M., Feldman, A., & Rachkowski, C. (2013). An outcome evaluation of an adult education and postsecondary alignment program: The Accelerate New Mexico experience. Problems and Perspectives in Management, 11(4), 105-120.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Causal Impact Analysis
- Attitudes-Low-Favorable impactsAttitudes
Hughes, R. (2011). Are the predictors of women’s persistence in STEM painting the full picture? A series of comparative case studies. International Journal of Gender, Science and Technology, 3(3), 548-570.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
Glasser, H. (2011). Arguing separate but equal: A study of argumentation in public single-sex science classes in the United States. International Journal of Gender, Science and Technology, 3(1), 70-92.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis