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Dana Kube; Sebastian Gombert; Brigitte Suter; Joshua Weidlich; Karel Kreijns; Hendrik Drachsler – Journal of Computer Assisted Learning, 2024
Background: Gender stereotypes about women and men are prevalent in computer science (CS). The study's goal was to investigate the role of gender bias in computer-supported collaborative learning (CSCL) in a CS context by elaborating on gendered experiences in the perception of individual and team performance in mixed-gender teams in a hackathon.…
Descriptors: Cooperative Learning, Computer Assisted Instruction, Gender Issues, Learning Activities
Debora Lui; Deborah A. Fields; Yasmin B. Kafai – Cognition and Instruction, 2024
Debugging (or troubleshooting) provides a rich context to foster problem-solving. Yet, while we know much about some problems and strategies that novices face in programming on-screen, we know far less about debugging and troubleshooting in the context of physical computing, where coding issues may overlap with materially embedded problems. In…
Descriptors: Grade 9, STEM Education, Troubleshooting, Public Schools
Kunye Chen; Raghav Mahalingam; Neal Ormsbee; Rachel Schlossman; Luis Sentis – IEEE Transactions on Education, 2024
University laboratories deliver unique hands-on experimentation opportunities for STEM students, but often lack state-of-the-art equipment and provide limited access to their equipment. The University of Texas Cloud Laboratory (CLAB) provides remote access to cutting-edge series elastic actuators for student experimentation regarding…
Descriptors: STEM Education, Laboratory Experiments, Laboratory Equipment, Robotics
Zhadyra Akhatayeva; Kakim Sagindykov; Bazarbek Mukushev; Nurgul Kurmangaliyeva; Ardak Karipzhanova – Education and Information Technologies, 2024
The goal of the study is to create Visual Basic and MATHCAD apps to create programs that show the core force using physical forces as an example. The research subjects are high school teachers and students; the inherent context is high school STEM courses. Programs for computer visualization have been developed, and theoretical investigations have…
Descriptors: High School Teachers, High School Students, STEM Education, Computer Uses in Education
Murat Adnan Tamer; Nesrin Özdener – Online Submission, 2023
Physical programming (PP) is defined as the design of interactive physical systems between the real and virtual worlds using a combination of software and hardware. A physical programming platform (PPP) defines a structure that includes hardware and software where such applications can be made. The aim of this study is to introduce the MIDEP…
Descriptors: Programming, Computer Science Education, Kindergarten, Elementary Secondary Education
Asfaw, Abraham; Blais, Alexandre; Brown, Kenneth R.; Candelaria, Jonathan; Cantwell, Christopher; Carr, Lincoln D.; Combes, Joshua; Debroy, Dripto M.; Donohue, John M.; Economou, Sophia E.; Edwards, Emily; Fox, Michael F. J.; Girvin, Steven M.; Ho, Alan; Hurst, Hilary M.; Jacob, Zubin; Johnson, Blake R.; Johnston-Halperin, Ezekiel; Joynt, Robert; Kapit, Eliot; Klein-Seetharaman, Judith; Laforest, Martin; Lewandowski, H. J.; Lynn, Theresa W.; McRae, Corey Rae H.; Merzbacher, Celia; Michalakis, Spyridon; Narang, Prineha; Oliver, William D.; Palsberg, Jens; Pappas, David P.; Raymer, Michael G.; Reilly, David J.; Saffman, Mark; Searles, Thomas A.; Shapiro, Jeffrey H.; Singh, Chandralekha – IEEE Transactions on Education, 2022
Contribution: A roadmap is provided for building a quantum engineering education program to satisfy U.S. national and international workforce needs. Background: The rapidly growing quantum information science and engineering (QISE) industry will require both quantum-aware and quantum-proficient engineers at the bachelor's level. Research Question:…
Descriptors: Program Development, Engineering Education, Labor Needs, Quantum Mechanics
Kanaki, Kalliopi; Kalogiannakis, Michail – Educational Process: International Journal, 2022
Background/purpose: In terms of computational thinking core facets, algorithmic thinking is a key competency applicable not only in Computer Science but also in aspects of daily life. Considering the global phenomenon of gender stereotypes with regards to the academic and professional orientation in STEM fields, we focused on investigating the…
Descriptors: Thinking Skills, Gender Differences, STEM Education, Equal Education
Copp, David A.; Isaacs, Jason T.; Hespanha, João P. – Advances in Engineering Education, 2021
Recent changes have been made in Science, Technology, Engineering, and Mathematics (STEM) education in the United States with the goal of increasing the number of students pursuing degrees and careers in STEM. The Next Generation Science Standards (NGSS) integrate new science and engineering standards in an attempt to achieve this goal and are the…
Descriptors: Programming, Robotics, STEM Education, Standards
Yang, Dazhi; Xu, Dianxiang; Yeh, Jyh-haw; Fan, Yibo – Journal of STEM Education: Innovations and Research, 2019
Undergraduate research opportunities have expanded from elite universities in the United States to universities and institutions of all ranks and sizes. Research studies have shown positive outcomes in regards to the research experience for undergraduates (REU), such as enhanced research skills and competencies. However, with the widespread…
Descriptors: Undergraduate Students, Student Research, Computer Security, Information Security
Gutiérrez-Carreón, Gustavo; Daradoumis, Thanasis; Jorba, Josep; Peña-Gomar, Mary-Carmen – Journal of Information Technology Education: Innovations in Practice, 2020
Aim/Purpose: The current study was conducted to investigate the students' perceived satisfaction with the use of a semantic-based online laboratory, which provides students with a search mechanism for laboratory resources, such as instruments and devices. Background: The increasing popularity of using online teaching labs, as an important element…
Descriptors: Semantics, Online Courses, Student Attitudes, Undergraduate Students
Miller, Jodie – ZDM: The International Journal on Mathematics Education, 2019
Cross-curricula opportunities afforded by STEM education (Science, Technology, Engineering and Mathematics education), supports an environment where students can develop twenty-first century competencies. One approach to addressing cross-curricula opportunities in STEM education is the introduction of computer science (computer…
Descriptors: STEM Education, Interdisciplinary Approach, Thinking Skills, Coding
Holbert, Nathan, Ed.; Berland, Matthew, Ed.; Kafai, Yasmin B., Ed. – MIT Press, 2020
Constructionism, first introduced by Seymour Papert in 1980, is a framework for learning to understand something by making an artifact for and with other people. A core goal of constructionists is to respect learners as creators, to enable them to engage in making meaning for themselves through construction, and to do this by democratizing access…
Descriptors: Constructivism (Learning), Educational Philosophy, Educational Research, Teaching Methods
Fagan, Bryan J.; Payne, Bryson R. – Proceedings of the Interdisciplinary STEM Teaching and Learning Conference, 2017
The US Bureau of Labor Statistics predicts over 8 million job openings in IT and computing, including 1 million cybersecurity postings, over the current five-year period. This paper presents lessons learned in preparing middle-school students in rural Georgia for future careers in computer science/ IT by teaching computer programming in the free,…
Descriptors: Programming Languages, Teaching Methods, Computer Science Education, Open Source Technology
John, June Park; Carnoy, Martin – Journal of Education and Work, 2019
We analyse race and gender trends in the Silicon Valley technology industry from 1980 to 2015, with a focus on education, employment and wages in computer science. Racial gaps in representation are more salient among programmers than in the overall technology labour force; in addition, we document a stable or increasing gender gap across all races…
Descriptors: Computer Science Education, Race, Ethnicity, Geographic Regions
Israel, Maya; Wherfel, Quentin M.; Pearson, Jamie; Shehab, Saadeddine; Tapia, Tanya – TEACHING Exceptional Children, 2015
This article's focus is on including computing and computational thinking in K-12 instruction within science, technology, engineering, and mathematics (STEM) education, and to provide that instruction in ways that promote access for students traditionally underrepresented in the STEM fields, such as students with disabilities. Providing computing…
Descriptors: Elementary Secondary Education, Disabilities, Student Empowerment, Computer Science Education
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