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Related Studies

Displaying 71 - 80 of 217
68

Morley, E., & Rossman, S. (1997). Helping at-risk youth: Lessons from community-based initiatives. Washington, DC: The Urban Institute.

  • Topic Area: Opportunities for Youth

Study Type: Descriptive Analysis

Outcome Effectiveness:

Mentoring Other training and education Youth programs

1976
Geckeler, C., Betesh, H., Diaz, H., Folsom, L., Kim, H., & Paprocki, A. (2017). Helping dropout youth find education and employment: Final impact report for the evaluation of the Los Angeles Reconnections Career Academy (LARCA) program. Oakland, CA: Social Policy Research Associates.
  • Topic Area: Low-Income Adults

Study Type: Causal Impact Analysis

Causal Evidence Rating: High Causal Evidence

Employment and Training Services Youth programs Training and Education

640

Harackiewicz, J., Rozek, C., Hulleman, C., & Hyde, J. (2012). Helping parents to motivate adolescents in mathematics and science: An experimental test of a utility-value intervention. Psychological Science, 23(8), 899-906.

  • Topic Area: Women in Science, Technology, Engineering, & Math (STEM)

Study Type: Causal Impact Analysis

Causal Evidence Rating: High Causal Evidence

Outcome Effectiveness:

Science, Technology, Engineering, and Math (STEM) programs Youth programs

638

Milgram, D. (2011). How to recruit women and girls to the science, technology, engineering, and math (STEM) classroom. Technology and Engineering Teacher, 71(3), 4-11.

  • Topic Area: Women in Science, Technology, Engineering, & Math (STEM)

Study Type: Descriptive Analysis

Outcome Effectiveness:

Youth programs Science, Technology, Engineering, and Math (STEM) programs

141

Jastrzab, J., Masker, J., Blomquist, J., & Orr, L. (1996). Impacts of service: Final report on the evaluation of American Conservation and Youth Service Corps. Cambridge, MA: Abt Associates Inc.

  • Topic Area: Opportunities for Youth

Study Type: Causal Impact Analysis

Causal Evidence Rating: Moderate Causal Evidence

Job search assistance and supportive services Other training and education Youth programs

729

Wiebush, R., Wagner, D., McNulty, B., Wang, Y., & Le, T. (2005). Implementation and outcome evaluation of the Intensive Aftercare Program: Final report. National Council on Crime and Delinquency. Washington, DC: U.S. Department of Justice, Office of Justice Programs.

  • Topic Area: Justice-Involved Youth

  • Topic Area: Opportunities for Youth

Study Type: Causal Impact Analysis

Causal Evidence Rating: Moderate Causal Evidence

Outcome Effectiveness:

Reentry Youth programs

581

Sullivan, K., & Davis, R. (2007). Increasing retention of women engineering students. American Society for Engineering Education. Proceedings of the 2007 American Society for Engineering Education Annual Conference and Meeting. Washington, DC: American Society for Engineering Education.

  • Topic Area: Women in Science, Technology, Engineering, & Math (STEM)

Study Type: Causal Impact Analysis

Causal Evidence Rating: Low Causal Evidence

Outcome Effectiveness:

Science, Technology, Engineering, and Math (STEM) programs Youth programs

566

Kim, H. (2011). Inquiry-based science and technology enrichment program: Green earth enhanced with inquiry and technology. Journal of Science Education & Technology, 20(6), 803-814.

  • Topic Area: Women in Science, Technology, Engineering, & Math (STEM)

Study Type: Causal Impact Analysis

Causal Evidence Rating: Low Causal Evidence

Outcome Effectiveness:

Science, Technology, Engineering, and Math (STEM) programs Youth programs

578

Ong, M., Wright, C., Espinosa, L., & Orfield, G. (2011). Inside the double bind: A synthesis of empirical research on undergraduate and graduate women of color in science, technology, engineering, and mathematics. Harvard Educational Review, 81(2), 172-208.

  • Topic Area: Women in Science, Technology, Engineering, & Math (STEM)

Study Type: Descriptive Analysis

Outcome Effectiveness:

Youth programs Science, Technology, Engineering, and Math (STEM) programs

671

Koch, M., & Gorges, T. (2012). Inspiring girls and their female after school educators to pursue computer science and other STEM careers. International Journal of Gender, Science and Technology, 4(3), 294-312.

  • Topic Area: Women in Science, Technology, Engineering, & Math (STEM)

Study Type: Causal Impact Analysis

Causal Evidence Rating: Low Causal Evidence

Outcome Effectiveness:

Science, Technology, Engineering, and Math (STEM) programs Youth programs