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Cultivating Diversity and Competency in STEM: Challenges and Remedies for Removing Virtual Barriers to Constructing Diverse Higher Education Communities of Success

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Date 2013 Mar 16
PMID 23493445
Citations 19
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Abstract

The need to increase the number of college graduates in Science, Technology, Engineering, and Mathematics (STEM) disciplines is a national issue. As the demographics of the United States' population grow increasingly more diverse, the recognition that students of color are disproportionately under-represented among those individuals successful at completing STEM degrees requires exigent and sustained intervention. Although a range of efforts and funding have been committed to increasing the success of under-represented minority (URM) students at primarily white, or majority, institutions, widespread progress has been slow. Simultaneously, Historically Black Colleges and Universities and Minority Serving Institutions have demonstrated disproportionate successes in graduating URM students with STEM degrees and those that proceed to completing graduate-level degrees in the sciences. The differential successes of particular institutions with promoting the achievement of diverse individuals in obtaining academic STEM degrees suggest that with committed and strategic leadership, advancements in creating academic communities that promote the success of a diverse range of students in STEM can be achieved in part through assessing and mitigating environmental barriers that impede success at majority institutions. In this paper, we address issues related to the engagement of URM students in majority settings and describe some efforts that have shown success for promoting diversity in STEM and highlight continuing issues and factors associated with cultivating diversity in academic STEM disciplines at majority institutions. Recommended efforts include addressing academic assistance, professional and cultural socialization issues and institutional environmental factors that are associated with success or lack thereof for URMs in STEM.

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References
1.
Byars-Winston A, Gutierrez B, Topp S, Carnes M . Integrating theory and practice to increase scientific workforce diversity: a framework for career development in graduate research training. CBE Life Sci Educ. 2011; 10(4):357-67. PMC: 3228654. DOI: 10.1187/cbe.10-12-0145. View

2.
Koenig R . U.S. higher education. Minority retention rates in science are sore spot for most universities. Science. 2009; 324(5933):1386-7. DOI: 10.1126/science.324_1386a. View

3.
Ramirez J, Tonidandel S . SOMAS-URM: The Evolution of a Mentoring and Summer Research Program. J Undergrad Neurosci Educ. 2013; 8(1):A69-72. PMC: 3592711. View

4.
Dirks C, Cunningham M . Enhancing diversity in science: is teaching science process skills the answer?. CBE Life Sci Educ. 2006; 5(3):218-26. PMC: 1618688. DOI: 10.1187/cbe.05-10-0121. View

5.
Crowley S, Fuller D, Law W, McKeon D, Ramirez J, Trujillo K . Improving the climate in research and scientific training environments for members of underrepresented minorities. Neuroscientist. 2004; 10(1):26-30. DOI: 10.1177/1073858403260304. View