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Displaying 891 - 900 of 1628 results
Colvin, W., Lyden, S., & León de, l. B. (2013). Attracting girls to civil engineering through hands-on activities that reveal the communal goals and values of the profession. Leadership & Management in Engineering, 13(1), 35-41.
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
Outcome Effectiveness:- Attitudes-Low-Favorable impactsAttitudes
Laugerman, M., Shelley, M., Mickelson, S., & Rover, D. (2013). The Engineering Admissions Partnership Program: A navigation strategy for community college students seeking a pathway into engineering. International Journal of Engineering Education, 29(5), 1260-1269.
Topic Area: Community College
Study Type: Causal Impact Analysis
Outcome Effectiveness:- Education and skills gains-Low-Favorable impactsEducation and skills gains
Kmec, J. (2013a). Why academic STEM mothers feel they have to work harder than others on the job. International Journal of Gender, Science, & Technology, 5(2), 80-101.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
Schimpf, C., Santiago, M., Hoegh, J., Banerjee, D., & Pawley, A. (2013). STEM faculty and parental leave: Understanding an institution’s policy within a national policy context through structuration theory. International Journal of Gender, Science and Technology, 5(2), 103-125.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
Toglia, T. (2013). Gender equity issues in CTE and STEM education. TechDirections, 72, 14-18.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
Wang, M., & Degol, J. (2013). Motivational pathways to STEM career choices: Using expectancy–value perspective to understand individual and gender differences in STEM fields. Developmental Review, 33(4), 1-37
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Descriptive Analysis
Kolenovic, Z., Linderman, D., & Karp, M. (2013). Improving student outcomes via comprehensive supports: Three-year outcomes from CUNY’s Accelerated Study in Associate Programs (ASAP). Community College Review, 41(4), 271-291.
Topic Area: Community College
Study Type: Causal Impact Analysis
Outcome Effectiveness:- Education and skills gains-Low-Favorable impactsEducation and skills gains
Smith, J., Lewis, K., Hawthorne, L., & Hodges, S. (2013). When trying hard isn’t natural: Women’s belonging with and motivation for male-dominated STEM fields as a function of effort expenditure concerns. Personality & Social Psychology Bulletin, 39(2), 131-143. [Study 2]
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Causal Impact Analysis
Outcome Effectiveness:- Attitudes-Low-Unfavorable impactsAttitudes
Rice, K., Lopez, F., Richardson, C., & Stinson, J. (2013). Perfectionism moderates stereotype threat effects on STEM majors’ academic performance. Journal of Counseling Psychology, 60(2), 287-293.
Topic Area: Women in Science, Technology, Engineering, & Math (STEM)
Study Type: Causal Impact Analysis
Outcome Effectiveness:- Education and skills gains-Low-No impactsEducation and skills gains