Article 2020

Can growth in the availability of STEM technical education improve equality in participation?: evidence from Massachusetts

Journal of Vocational Education and Training
Journal · Vol. 72 · Issue 1 · pp. 47-70
Abstract

In the United States, high school career and technical education (CTE) is the primary source of vocational training at the secondary level, and is similar in goal if not form to vocational education and training (VET) worldwide. CTE has evolved in the past decade to place greater emphasis on programmes in Science, Technology, Engineering, and Mathematics (STEM), mirroring parallel changes in the economy. Little is known, however, about how the rise of STEM CTE programmes have affected participation for students of different backgrounds, and how changes in participation interact with changes in programme offerings. In this paper, we use administrative data from the state of Massachusetts to first document the expansion of CTE and STEM CTE programmes over a decade. We then estimate what student-level factors are associated with participation, including gender, race, socioeconomic status, first language, and disability. We identify important variation in programme participation, particularly among groups historically overrepresented in CTE, and underrepresented in STEM. Leveraging Massachusetts as a case study, we discuss implications for the STEM pipeline and other state and local contexts. Similarly, as VET programmes across many nations consider who has access to what programmes, lessons from Massachusetts may inform policies to ensure equitable access. © 2019, © 2019 The Vocational Aspect of Education Ltd.

Keywords

Author Keywords

STEM Vocational policy Technical Education Labour market

Index Keywords

Author Affiliations
Vanderbilt University, Nashville, TN, United States
John F. Kennedy School of Government, Cambridge, MA, United States
Funding & Acknowledgements
National Science Foundation, NSF
Grant: 1745303
This manuscript was produced, in part, based on support from the National Science Foundation Graduate Fellowship Program Researchunder Grant No. 1745303, and the Laura and John Arnold Foundation (LJAF). Any opinions, findings, and conclusions or recommendations expressed in this material are those of the authors and do not necessarily reflect the views of the National Science Foundation, or the LJAF.
Laura and John Arnold Foundation, LJAF
This manuscript was produced, in part, based on support from the National Science Foundation Graduate Fellowship Program Researchunder Grant No. 1745303, and the Laura and John Arnold Foundation (LJAF). Any opinions, findings, and conclusions or recommendations expressed in this material are those of the authors and do not necessarily reflect the views of the National Science Foundation, or the LJAF.
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