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  • Item type:Publication,
    Women in Science. Experiences of Academics in Switzerland
    (Transcript, 2025-08-12)
    De Cia Annalisa
    ;
    Hellmüller, Sara
    ;
    Mesok Khan, Elizabeth
    Women in science face particular challenges, such as structural inequalities, highly competitive work environments, and at times toxic cultures. This collection conveys the experiences of women academics in Switzerland, featuring insights from twelve scholars across various universities and disciplines. Each contributor shares their unique journey in pursuit of a professorship, illustrating the rich diversity of the Swiss scientific community. This volume offers hope for those struggling with finding their place in science, emphasizing the joys and privileges that can be found in an academic career and the passion and perseverance of those pursuing it.
  • Item type:Publication,
    Gender differences in performance of top cited scientists by field and country Open PDF 
    (2020)
    Chan, H.F.
    ;
    Torgler, B.
    In this descriptive study, we aim to show the potential gender differences in academic success, focusing on the top (i.e., most frequently cited) scientists by analyzing the work of more than 94,000 scientists in 21 fields across 43 countries. Our results indicate that female representation in the top tier of scientists strongly varies between countries (11.83%; s.d. = 0.046), with the highest proportion of top women scientists in Finland (20.45%) and the lowest in Saudi Arabia (2.08%). Compared with the total share of females in science, women are underrepresented among the top (i.e., most frequently cited) scholars by 28.52 percentage points. The proportions differ by disciplines, with top women authors best represented in Public Health and Services (36.1%), Communication and Textual Studies (33.7%), Psychology and Cognitive Science (27.5%), and Social Sciences (23%); while the lowest share of women scientists are found in Mathematics and Statistics (6.3%), Engineering (7.2%), and Physics and Astronomy (7.7%). However, despite the low female representation, top women scholars in those three fields conduct (on average) more impactful research than their male colleagues, which is contrary to most other research fields. We also show that female scientific success is positively correlated with a nation’s higher gender equity indicators, lower discriminatory values, and less negative attitudes and preferences towards women. Overall, our findings suggest that scientific fields are still struggling with gender inequality that pervades public life. © 2020, Akadémiai Kiadó, Budapest, Hungary.
  • Item type:Publication,
    Gender productivity gap among star performers in STEM and other scientific fields. Open PDF 
    (2018)
    Aguinis, Herman
    ;
    Ji, Young Hun
    ;
    Joo, Harry
    We examined the gender productivity gap in science, technology, engineering, mathematics, and other scientific fields (i.e., applied psychology, mathematical psychology), specifically among star performers. Study 1 included 3,853 researchers who published 3,161 articles in mathematics. Study 2 included 45,007 researchers who published 7,746 articles in genetics. Study 3 included 4,081 researchers who published 2,807 articles in applied psychology and 6,337 researchers who published 3,796 articles in mathematical psychology. Results showed that (a) the power law with exponential cutoff is the best-fitting distribution of research productivity across fields and gender groups and (b) there is a considerable gender productivity gap among stars in favor of men across fields. Specifically, the underrepresentation of women is more extreme as we consider more elite ranges of performance (i.e., top 10%, 5%, and 1% of performers). Conceptually, results suggest that individuals vary in research productivity predominantly because of the generative mechanism of incremental differentiation, which is the mechanism that produces power laws with exponential cutoffs. Also, results suggest that incremental differentiation occurs to a greater degree among men and certain forms of discrimination may disproportionately constrain women's output increments. Practically, results suggest that women may have to accumulate more scientific knowledge, resources, and social capital to achieve the same level of increase in total outputs as their male counterparts. Finally, we offer recommendations on interventions aimed at reducing constraints for incremental differentiation among women that could be useful for narrowing the gender productivity gap specifically among star performers. (PsycINFO Database Record (c) 2018 APA, all rights reserved).