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Gender Differences in STEM Persistence after Graduation

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  • Delaney, Judith M.

    (University of Bath)

  • Devereux, Paul J.

    (University College Dublin)

Abstract

Much attention is focused on finding ways to encourage females to study STEM in school and college but what actually happens once women complete a STEM degree? We use the UK Quarterly Labour Force Survey to trace out gender differences in STEM persistence over the career. We find a continuous process whereby women are more likely to exit STEM than men. Among holders of STEM undergraduate degrees, women are more likely to obtain a non- STEM master's degree. Then, after entering the labour market, there is a gradual outflow of females during the first 15 years post-graduation so that females are about 20 percentage points less likely to work in STEM compared to their male counterparts. Conditional on leaving STEM, we find that females are more likely to enter the education and health sectors while males are more likely to enter the more lucrative business sector and that this can partly explain the gender pay gap for STEM graduates. Overall, our results suggest that policies that aim to increase the proportion of females studying STEM in school and college may have less effect than expected due to the lower attachment of females to STEM after graduation. Such policies may need to be augmented with efforts to tackle the greater propensity of females to exit STEM throughout the career.

Suggested Citation

  • Delaney, Judith M. & Devereux, Paul J., 2022. "Gender Differences in STEM Persistence after Graduation," IZA Discussion Papers 15352, Institute of Labor Economics (IZA).
  • Handle: RePEc:iza:izadps:dp15352
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    References listed on IDEAS

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    1. Anne Ardila Brenøe & Ulf Zölitz, 2020. "Exposure to More Female Peers Widens the Gender Gap in STEM Participation," Journal of Labor Economics, University of Chicago Press, vol. 38(4), pages 1009-1054.
    2. Jennifer Hunt, 2016. "Why do Women Leave Science and Engineering?," ILR Review, Cornell University, ILR School, vol. 69(1), pages 199-226, January.
    3. Judith M. Delaney & Paul J. Devereux, 2020. "How Gender and Prior Disadvantage Predict Performance in College," The Economic and Social Review, Economic and Social Studies, vol. 51(2), pages 189-239.
    4. Joseph G. Altonji & Ling Zhong, 2021. "The Labor Market Returns to Advanced Degrees," Journal of Labor Economics, University of Chicago Press, vol. 39(2), pages 303-360.
    5. Delaney, Judith M. & Devereux, Paul J., 2021. "High School Rank in Math and English and the Gender Gap in STEM," Labour Economics, Elsevier, vol. 69(C).
    6. Pål Schøne & Kristine von Simson & Marte Strøm, 2020. "Peer gender and educational choices," Empirical Economics, Springer, vol. 59(4), pages 1763-1797, October.
    7. David Card & A. Abigail Payne, 2021. "High School Choices And The Gender Gap In Stem," Economic Inquiry, Western Economic Association International, vol. 59(1), pages 9-28, January.
    8. Josh Kinsler & Ronni Pavan, 2015. "The Specificity of General Human Capital: Evidence from College Major Choice," Journal of Labor Economics, University of Chicago Press, vol. 33(4), pages 933-972.
    9. Angela Cools & Raquel Fernandez & Eleonora Patacchini, 2019. "Girls, Boys, and High Achievers," Working Papers 2019-032, Human Capital and Economic Opportunity Working Group.
    10. Kuhn, Andreas & Wolter, Stefan C., 2022. "Things versus People: Gender Differences in Vocational Interests and in Occupational Preferences," Journal of Economic Behavior & Organization, Elsevier, vol. 203(C), pages 210-234.
    11. David J Deming & Kadeem Noray, 2020. "Earnings Dynamics, Changing Job Skills, and STEM Careers," The Quarterly Journal of Economics, President and Fellows of Harvard College, vol. 135(4), pages 1965-2005.
    12. Pierre Mouganie & Yaojing Wang, 2020. "High-Performing Peers and Female STEM Choices in School," Journal of Labor Economics, University of Chicago Press, vol. 38(3), pages 805-841.
    13. Matthew Wiswall & Basit Zafar, 2018. "Preference for the Workplace, Investment in Human Capital, and Gender," The Quarterly Journal of Economics, President and Fellows of Harvard College, vol. 133(1), pages 457-507.
    14. Basit Zafar, 2013. "College Major Choice and the Gender Gap," Journal of Human Resources, University of Wisconsin Press, vol. 48(3), pages 545-595.
    15. Speer, Jamin D., 2017. "The gender gap in college major: Revisiting the role of pre-college factors," Labour Economics, Elsevier, vol. 44(C), pages 69-88.
    16. Mcnally, Sandra, 2020. "Gender differences in tertiary education: what explains STEM participation," LSE Research Online Documents on Economics 108232, London School of Economics and Political Science, LSE Library.
    17. Jiang, Xuan, 2021. "Women in STEM: Ability, preference, and value," Labour Economics, Elsevier, vol. 70(C).
    18. Giovanni Peri & Kevin Shih & Chad Sparber, 2016. "STEM Workers, H-1B Visas, and Productivity in US Cities," World Scientific Book Chapters, in: The Economics of International Migration, chapter 9, pages 277-307, World Scientific Publishing Co. Pte. Ltd..
    19. Samantha M. R. Jelks & Andrew M. Crain, 2020. "Sticking with STEM: Understanding STEM Career Persistence among STEM Bachelor’s Degree Holders," The Journal of Higher Education, Taylor & Francis Journals, vol. 91(5), pages 805-831, July.
    20. Breda, Thomas & Grenet, Julien & Monnet, Marion & Van Effenterre, Clémentine, 2020. "Do Female Role Models Reduce the Gender Gap in Science? Evidence from French High Schools," IZA Discussion Papers 13163, Institute of Labor Economics (IZA).
    21. Erin A. Cech & Mary Blair-Loy, 2019. "The changing career trajectories of new parents in STEM," Proceedings of the National Academy of Sciences, Proceedings of the National Academy of Sciences, vol. 116(10), pages 4182-4187, March.
    22. Chiara Cavaglia & Stephen Machin & Sandra McNally & Jenifer Ruiz-Valenzuela, 2020. "Gender, achievement, and subject choice in English education," CVER Research Papers 032, Centre for Vocational Education Research.
    23. Delaney, Judith M. & Devereux, Paul J., 2019. "Understanding gender differences in STEM: Evidence from college applications✰," Economics of Education Review, Elsevier, vol. 72(C), pages 219-238.
    24. Devereux, Paul J. & Delaney, Judith, 2019. "Understanding Gender Differences in STEM: Evidence from College Applications," CEPR Discussion Papers 13558, C.E.P.R. Discussion Papers.
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    1. Delaney, Judith M. & Devereux, Paul J., 2024. "Gender Differences in Graduate Degree Choices," IZA Discussion Papers 16918, Institute of Labor Economics (IZA).

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    More about this item

    Keywords

    labour market; STEM gender gap; gender; STEM; gender pay gap;
    All these keywords.

    JEL classification:

    • I23 - Health, Education, and Welfare - - Education - - - Higher Education; Research Institutions
    • I26 - Health, Education, and Welfare - - Education - - - Returns to Education
    • J16 - Labor and Demographic Economics - - Demographic Economics - - - Economics of Gender; Non-labor Discrimination
    • J24 - Labor and Demographic Economics - - Demand and Supply of Labor - - - Human Capital; Skills; Occupational Choice; Labor Productivity
    • J31 - Labor and Demographic Economics - - Wages, Compensation, and Labor Costs - - - Wage Level and Structure; Wage Differentials

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