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Josh Tenenberg; Donald Chinn – Computer Science Education, 2025
Background and context: We address the question of what computer science students take the discipline to be. How students conceive the discipline can influence whether a student pursues computer science, what particular area within computer science they focus on and whether they persist in the discipline. In this paper, we examine the epistemic…
Descriptors: Computer Science Education, Epistemology, Student Attitudes, Intellectual Disciplines
Antoni Wilinski; Joanna Olkowicz; Sebastian Agata; Alicja Szostkiewicz; Szymon Guzik; Arkadiusz Wojtak; Pawel Tomkiewicz – Informatics in Education, 2025
This paper presents survey results involving students from three fields of study (computer science, business, and pedagogy), positing that computer science students exhibit distinct patterns in the spectrum of multiple intelligences compared to students in social sciences disciplines. The study involved over 300 students, revealing statistically…
Descriptors: Computer Science Education, Intellectual Disciplines, Majors (Students), Multiple Intelligences
Asiye Toker Gokce; Arzu Deveci Topal; Aynur Kolburan Geçer; Canan Dilek Eren – Education and Information Technologies, 2025
Artificial intelligence (AI) literacy is critical to shaping students' academic experiences and future opportunities inhigher education. This study examines AI literacy among university students, examining variables such as gender, frequency of use of AI applications, completion of AI-related courses, and field of study. The research involved 664…
Descriptors: Artificial Intelligence, Technological Literacy, College Students, Decision Making
Laura Roberts; Joanne Berry – Journal of Learning Development in Higher Education, 2023
The mass shift to Open-Book, Open-Web (OBOW) assessments during the pandemic highlighted new opportunities in Higher Education for developing accessible, authentic assessments that can reduce administrative load. Despite a plethora of research emerging on the effectiveness of OBOW assessments within disciplines, few currently evaluate their…
Descriptors: Test Format, Science Tests, College Science, Student Evaluation
Wagner, Isabel – ACM Transactions on Computing Education, 2016
The term "gender gap" refers to the significant underrepresentation of females in many subjects. In Computer Science, the gender gap exists at all career levels. In this article, we study whether there is a performance gap in addition to the gender gap. To answer this question, we analyzed statistical data on student performance in…
Descriptors: Gender Differences, Academic Achievement, Computer Science Education, College Students
Sax, Linda J.; Kanny, M. Allison; Riggers-Piehl, Tiffani A.; Whang, Hannah; Paulson, Laura N. – Research in Higher Education, 2015
Math self-concept (MSC) is considered an important predictor of the pursuit of science, technology, engineering and math (STEM) fields. Women's underrepresentation in the STEM fields is often attributed to their consistently lower ratings on MSC relative to men. Research in this area typically considers STEM in the aggregate and does not account…
Descriptors: College Students, College Mathematics, Mathematics Skills, Self Concept
Wyatt, Jeff; Jagesic, Sanja; Godfrey, Kelly – College Board, 2018
The Advanced Placement® (AP®) Program offers high school students the opportunity to take rigorous coursework in high school and receive college credit for AP Exam scores that meet or exceed the requirements of their attending institution. Students receiving AP credit are typically exempted from an introductory level course or series of courses…
Descriptors: Advanced Placement Programs, High School Students, Scores, College Credits
Pertegal-Felices, María L.; Castejón-Costa, Juan L.; Jimeno-Morenilla, Antonio – Studies in Higher Education, 2014
The evidence suggests that emotional intelligence and personality traits are important qualities that workers need in order to successfully exercise a profession. This article assumes that the main purpose of universities is to promote employment by providing an education that facilitates the acquisition of abilities, skills, competencies and…
Descriptors: Engineering Education, Computer Science Education, Intellectual Disciplines, Comparative Analysis
Lenox, Terri L.; Jesse, Gayle; Woratschek, Charles R. – Information Systems Education Journal, 2012
Too few students are entering the workforce with the technological skills required due to several factors, including under-enrollment in the computer-related disciplines by college students. Enrollment in these disciplines has made some progress since the precipitous decline of 2000-2007 and steps have been taken to attract more majors. However,…
Descriptors: Decision Making, Majors (Students), Computer Science Education, Technological Literacy
Sondergaard, Harald; Mulder, Raoul A. – Computer Science Education, 2012
We examine student peer review, with an emphasis on formative practice and collaborative learning, rather than peer grading. Opportunities to engage students in such formative peer assessment are growing, as a range of online tools become available to manage and simplify the process of administering student peer review. We consider whether…
Descriptors: Cooperative Learning, Peer Evaluation, Formative Evaluation, Intellectual Disciplines
Battig, Michael; Shariq, Muhammad – Information Systems Education Journal, 2011
Using a previously published study of how students differentiate between computing disciplines, this study attempts to validate the original research and add additional hypotheses regarding the type of institution that the student resides. Using the identical survey instrument from the original study, students in smaller colleges and in different…
Descriptors: Computer Science, Intellectual Disciplines, College Students, Validity
Cohen, Peter A. – 1982
In order to assess faculty and student use of, and attitudes toward, instructional computing at Dartmouth College, faculty members and students were surveyed during the spring of 1981 to determine how computing was being used in Dartmouth courses. Each of the 450 faculty members who taught an on-campus course from summer 1980 through spring 1981…
Descriptors: Attitudes, College Faculty, College Students, Computer Assisted Instruction
Peer reviewedBunderson, Eileen D.; Christensen, Mary Elizabeth – Journal of Research on Computing in Education, 1995
Discusses a survey conducted to understand the gender imbalance and high level of female attrition in computer science. Suggests that factors influencing the rate of attrition are lack of previous experience with computers, gender-biased attitudes and behavior, interactions with other computer science students, and the nature of computer science…
Descriptors: Attitudes, College Students, Computer Science Education, Females
Zikopoulos, Marianthi, Ed. – 1993
This publication presents, in narrative and tabular formats, the findings of a 1991-92 survey of foreign students attending institutions of higher education in the United States, including information on nationalities, academic levels, and fields of study. The first of four chapters describes the survey effort and its relation to a sister project…
Descriptors: Business Education, College Students, Computer Science Education, Engineering Education
Peer reviewedStanisstreet, Martin; And Others – Studies in Higher Education, 1993
A survey of 244 British university undergraduates in biology, computer science, and English investigated attitudes about various uses of animals, including killing animals to make luxury clothing, killing of animals for food, general and medical research using animals, and captivity. Response differences by discipline, gender, and age were also…
Descriptors: Age Differences, Animal Facilities, Animals, Biology

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