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Thom Kunkeler; Aletta Nylen – IEEE Transactions on Education, 2024
Contribution: This article applies science capital research to computing education in order to understand why students engage with a programme involving computing, and what they aspire to get out of their education. Background: Capital is a concept which has been used in educational research to study inequality, aspiration and achievement.…
Descriptors: Computer Science Education, Biology, Information Science, Learner Engagement
Henriette Holmegaard; Louise Archer; Spela Godec; Emma Watson; Emily MacLeod; Jennifer Dewitt; Julie Moote – Computer Science Education, 2025
Background and Context: There is a call for more young people to continue into higher education computer science (CS). Objective: To understand young people's choices into and away from CS, by addressing the inequalities their trajectories as shaped over time and in relation to their capital and identities. Method: Ninety-four longitudinal…
Descriptors: Computer Science Education, Young Adults, Longitudinal Studies, Social Capital
Wofford, Annie M.; Sax, Linda J.; George, Kari L.; Ramirez, Daisy; Nhien, Chantra – Journal of Higher Education, 2022
In light of the need to both grow and diversify graduate enrollments in computing fields, this quantitative study examined variables associated with students' initial aspirations for computing graduate school as well as how aspirations were sustained or developed over time. Using a longitudinal sample of undergraduate students who enrolled in…
Descriptors: Computer Science Education, Undergraduate Students, Academic Aspiration, Graduate Study
Annie M. Wofford – AERA Open, 2023
Mentorship is vital to increasing graduate school access in computing; however, mentorship must be structured in power-conscious, developmental ways to ensure equitable access to and support within computing graduate pathways. I engage a critical quantitative lens to examine mentoring support among undergraduates with reported graduate…
Descriptors: Graduate Study, Interaction, Mentors, Computer Science Education
Ann Marie Wofford – ProQuest LLC, 2021
Tensions between enrollment growth, faculty shortages, and persistent inequity characterize the current landscape of postsecondary computing education. As individuals who pursue graduate studies in computing are likely future leaders in the tech industry and academic computing spaces, colleges and universities need to restructure mechanisms of…
Descriptors: Graduate Students, Computer Science Education, Student Attitudes, Individual Development
Sara Genut; Yifat Ben-David Kolikant – Informatics in Education, 2023
Programs in bioinformatics, offered in many academic institutes, are assumed to expand women's representation in computer science (CS). Women's enrolment in these programs is high. Our questions are: Do these programs attract different women from those attracted to CS programs? What factors underlie women's decision to enroll in bioinformatics…
Descriptors: Biology, Information Science, Computer Science Education, Disproportionate Representation
Blaney, Jennifer M.; Wofford, Annie M. – Computer Science Education, 2021
Background: Students who transfer from community colleges in pursuit of four-year degrees (i.e., upward transfer students) represent a diverse and talented group that is critical to advancing gender equity in STEM. However, research has not yet explored factors that promote Ph.D. aspirations among upward transfer computing students, resulting in…
Descriptors: Academic Aspiration, College Transfer Students, Computer Science Education, Community Colleges
Sax, Linda J.; Newhouse, Kaitlin N. S.; Goode, Joanna; Nakajima, Tomoko M.; Skorodinsky, Max; Sendowski, Michelle – ACM Transactions on Computing Education, 2022
The Advanced Placement Computer Science Principles (APCSP) course was introduced in 2016 to address long-standing gender and racial/ethnic disparities in the United States among students taking Advanced Placement Computer Science (APCS) in high school, as well as among those who pursued computing majors in college. Although APCSP has drawn a more…
Descriptors: Advanced Placement Programs, Computer Science Education, Equal Education, High School Students
Sax, Linda J.; Lehman, Kathleen J.; Jacobs, Jerry A.; Kanny, M. Allison; Lim, Gloria; Monje-Paulson, Laura; Zimmerman, Hilary B. – Journal of Higher Education, 2017
Given growing interest in computing fields, as well as a longstanding gender gap in computer science, this study used nationwide survey data on college students during 4 decades to: (a) document trends in aspirations to major in computer science among undergraduate women and men; (b) explore the characteristics of women and men who choose to major…
Descriptors: Computer Science Education, Undergraduate Students, Gender Differences, Majors (Students)
Vrieler, Tina; Salminen-Karlsson, Minna – ACM Transactions on Computing Education, 2022
The aim of this conceptual article is to provide a framework and a lens for educators in diversifying and making CS education more inclusive. In this article, we conceptualize the notion of computer science capital (CSC), which extends Bourdieu's sociological theory of capital and Archer et al.'s work on "science capital." The CSC…
Descriptors: Sociocultural Patterns, Computer Science Education, Teaching Methods, Inclusion
Wong, Billy; Kemp, Peter E. J. – Cambridge Journal of Education, 2018
Digital technology is increasingly central to our lives, particularly among young people. However, there remains a concern from government and businesses of a digital skills gap because many youths, especially girls, tend to be consumers rather than creators of technology. Drawing on 32 semi-structured interviews with digitally skilled teenagers…
Descriptors: Foreign Countries, Secondary School Students, Adolescents, Computer Science Education
Armoni, Michal; Gal-Ezer, Judith – Computer Science Education, 2014
The gap between enrollments in higher education computing programs and the high-tech industry's demands is widely reported, and is especially prominent for women. Increasing the availability of computer science education in high school is one of the strategies suggested in order to address this gap. We look at the connection between exposure to…
Descriptors: Foreign Countries, Computer Science Education, High School Students, College Preparation
Neubauer, Deane; Zhang, Jianxin – Council for Higher Education Accreditation, 2015
The rate and scope of internationalization of Chinese higher education has been unprecedented. Eight sections discuss how: (1) China's internationalization of higher education is on a fast track; (2) The United States is the most favored country destination for Chinese students; (3) There have been recent changes in higher education relations…
Descriptors: Global Approach, Higher Education, Study Abroad, Educational Change
ACT, Inc., 2014
ACT has been a leader in measuring college and career readiness trends for years. Each August, they release "The Condition of College & Career Readiness" (www.act.org/ newsroom/data/2013), their annual report on the progress of the ACT-tested graduating class relative to college readiness. Nationally, 54.3% of the 2013 graduating…
Descriptors: STEM Education, Statistical Data, College Readiness, Science Achievement
Charleston, LaVar Jovan – ProQuest LLC, 2010
As a result of decreasing degree attainment in science, technology, engineering, and mathematics (STEM) fields, the United States is undergoing a shortage in the STEM workforce that it has not encountered since the mid-1950s (ACT, 2006; Gilbert & Jackson, 2007). Moreover, as computer usage cuts across diverse aspects of modern culture, the…
Descriptors: Career Choice, Academic Degrees, Student Educational Objectives, African American Education
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