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Sutton, Kate – Primary Science, 2020
Making learning relevant and encouraging an interest in STEM [Science, Technology, Engineering, and Math] subjects, as well as introducing and engaging initial thoughts and a wider understanding about future careers, could be pivotal in the endeavour to address the STEM skills gap in the UK [United Kingdom]. On the current trajectory, many females…
Descriptors: STEM Education, Stereotypes, Gender Bias, Foreign Countries
Master, Allison H.; Meltzoff, Andrew N. – Grantee Submission, 2020
There is a need to help more students succeed in science, technology, engineering, and mathematics (STEM) education, with particular interest in reducing current gender gaps in motivation and participation. We propose a new theoretical model, the STEreotypes, Motivation, and Outcomes (STEMO) developmental model, to account for and integrate recent…
Descriptors: STEM Education, Sex Stereotypes, Gender Bias, Gender Differences
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Liane I. Hypolite; Kirk D. Rogers – Theory Into Practice, 2023
This article builds upon prior work by suggesting how public, K-12 education systems across the United States can address longstanding opportunity gaps in STEM education. More specifically, we bring together the work of critical perspectives in education, STEM pathway research, as well as best practices from teaching and learning scholarship. We…
Descriptors: STEM Education, Public Schools, Elementary Secondary Education, African American Students
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Stearns, Elizabeth; Bottia, Martha Cecilia; Giersch, Jason; Mickelson, Roslyn Arlin; Moller, Stephanie; Jha, Nandan; Dancy, Melissa – American Educational Research Journal, 2020
Using a multimethod approach, we investigate whether gender gaps in STEM (science, technology, engineering, and mathematics) major declaration in college are explained by differences in the grades that students earn in STEM versus non-STEM subjects. With quantitative data, we find that relative advantages in college academic performance in STEM…
Descriptors: STEM Education, Grades (Scholastic), Gender Differences, Majors (Students)
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Feng, Shi; Yang, Dazhi – Journal of Technology and Teacher Education, 2022
Nurturing computational thinking (CT) in students is necessary for problem solving and important for bridging the current STEM gap, such as the American K-12 students' lagging behind in math and science standardized testing. To facilitate the integration of CT in students' and teachers' experience and insights on implementing CT into K-12…
Descriptors: Elementary School Teachers, Elementary School Students, Computation, Thinking Skills
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Eamonn Corrigan; Martin Williams; Mary A. Wells – Canadian Journal of Science, Mathematics and Technology Education, 2023
Students' high school decisions will always impact efforts to achieve gender parity in Science, Technology, Engineering, and Mathematics (STEM) at the university level and beyond. Without a comprehensive understanding of gendered disparities in high school course selection, it will be impossible to close completely the gender gap in many STEM…
Descriptors: High School Students, Decision Making, Course Selection (Students), Physics
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Ding, Yanqing; Li, Wei; Li, Xin; Wu, Yinduo; Yang, Jin; Ye, Xiaoyang – Research in Higher Education, 2021
Despite the growing evidence of informational interventions on college and major choices, we know little about how such light-touch interventions affect the gender gap in STEM majors. Linking survey data to administrative records of Chinese college applicants, we conducted a large-scale randomized experiment to examine the STEM gender gap in the…
Descriptors: STEM Education, Majors (Students), Gender Differences, College Students
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Raabe, Isabel J.; Boda, Zsófia; Stadtfeld, Christoph – Sociology of Education, 2019
Individuals' favorite subjects in school can predetermine their educational and occupational careers. If girls develop weaker preferences for science, technology, engineering, and math (STEM), it can contribute to macrolevel gender inequalities in income and status. Relying on large-scale panel data on adolescents from Sweden (218 classrooms,…
Descriptors: Peer Influence, Social Influences, Career Choice, STEM Education
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Weeden, Kim A.; Gelbgiser, Dafna; Morgan, Stephen L. – Sociology of Education, 2020
In the United States, women are more likely than men to enter and complete college, but they remain underrepresented among baccalaureates in science-related majors. We show that in a cohort of college entrants who graduated from high school in 2004, men were more than twice as likely as women to complete baccalaureate degrees in science,…
Descriptors: Gender Differences, STEM Education, Majors (Students), Academic Persistence
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Liu, Jiajun; Barnhardt, Cassie L. – Journal of College Student Development, 2021
Prior research points to the first year of college as a critical time in selecting a college major. Considering the number of studies focusing on the STEM gender gap, surprisingly little research has examined gender differences and the influence of the first college year on the STEM major selection. Using data from the Wabash National Study of…
Descriptors: STEM Education, College Freshmen, Gender Differences, Influences
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Brian Holzman; Bethany Lewis; Hao Ma – Houston Education Research Consortium, 2024
This study examined whether there were gendered patterns in STEM endorsement choice in the Houston Independent School District (HISD) and how those patterns changed over time, in the wake of a policy change to guidance counseling. The first students required to choose high school endorsements were freshmen in 2014-2015 and graduated high school in…
Descriptors: STEM Education, Gender Differences, School Counseling, Grade 9
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White, Patrick; Smith, Emma – Oxford Review of Education, 2022
Increasing the number of women in the STEM labour market has been presented by policymakers and industry representatives as an opportunity to address purported skill shortages in the sector. National governments have spent considerable sums on initiatives aimed at increasing the proportion of girls and women who study science and work in STEM…
Descriptors: College Graduates, Females, STEM Education, Majors (Students)
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Meadows, Monica C.; Robinson, Ann – Gifted Education International, 2023
Gaps in STEM performance have narrowed over the last 50 years (Leaper et al., 2012; National Science Foundation, 2013). Nonetheless, disparities remain in many STEM fields -- with the largest occurring in the physical sciences, computer science, and engineering (UNESCO, 2012). Although gender gaps in science and math performance have been closing,…
Descriptors: STEM Education, Sense of Community, Talent Identification, Gender Differences
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Kayan-Fadlelmula, Fatma; Sellami, Abdellatif; Abdelkader, Nada; Umer, Salman – International Journal of STEM Education, 2022
Abundant research conducted in many countries has underlined the critical role of Science, Technology, Engineering, and Mathematics (STEM) in developing human capital in fields important to a nation's global competiveness and prosperity. In the Gulf Cooperation Council (GCC) States, recent long-term policy plans emphasize the ever-increasing need…
Descriptors: STEM Education, Educational Research, Trend Analysis, Human Capital
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Sevilla, María Paola; Luengo-Aravena, Daniela; Farías, Mauricio – International Journal of STEM Education, 2023
Background: STEM fields are instrumental in increasing the technological and innovative capacity of the economy. As women are underrepresented in the STEM workforce, diverse strategies have been implemented to boost their preparedness and interest in these fields, including early exposure to academic and vocational STEM courses. Using the case of…
Descriptors: Foreign Countries, Secondary School Students, Secondary School Curriculum, Role
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