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Wendy Haw; Adam Crawford – Journal of Learning Development in Higher Education, 2025
This article illustrates the potential for hackathons to serve as an innovative educational tool in addressing the underrepresentation of minority communities in science, technology, engineering, and mathematics (STEM) fields. Using Merced, California--a region recognised for its agricultural economy, socioeconomic disparities, and diverse…
Descriptors: Programming, Computer Science Education, Disproportionate Representation, STEM Education
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Linda J. Sax – Journal of The First-Year Experience & Students in Transition, 2025
Although the process of inquiry is guided by questions, the result is rarely a clear answer. Instead, deep investigation--despite producing data, results, and evidence--ultimately results in a lot more questions. The author, rather than feeling disillusioned by that reality, has come to accept it as the cyclical nature of research. For more than…
Descriptors: College Students, Student Experience, Educational Research, Gender Differences
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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
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David W. Jackson; Helen Zhang; Fahd Abdus-Sabur – TechTrends: Linking Research and Practice to Improve Learning, 2025
During young adolescence, many youth develop strong identities in relation to science, technology, engineering and mathematics with computing (STEM + C). One way to design for student engagement in STEM + C is to create project-based units that leverage students' interests. We created one such unit, called the "smart greenhouse project".…
Descriptors: Instructional Design, Computer Uses in Education, STEM Education, Student Projects
Sengupta, Pratim; Dickes, Amanda; Farris, Amy Voss – MIT Press, 2021
The importance of coding in K-12 classrooms has been taken up by both scholars and educators. "Voicing Code in STEM" offers a new way to think about coding in the classroom--one that goes beyond device-level engagement to consider the interplay between computational abstractions and the fundamentally interpretive nature of human…
Descriptors: Coding, STEM Education, Elementary Secondary Education, Computation
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Joe Anistranski; Karen Harper; Stephanie Zeiger – Learning Professional, 2024
Educators and researchers often think of program design and program evaluation as separate endeavors, even intentionally creating a firewall between them. But what if designers and evaluators worked together, combining their insights to strengthen both the program and the study of it? In the work of evaluating a statewide professional learning…
Descriptors: Program Design, Program Evaluation, Professional Development, State Legislation
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Blaney, Jennifer M.; Barrett, Julia; Choi, Yoon Ha – New Directions for Community Colleges, 2022
This article discusses transfer pathways to Science, Technology, Engineering, and Mathematics (STEM) degrees and highlights ways in which existing literature on equity in STEM fails to represent transfer student experiences, limiting opportunities to support transfer students and diversify STEM programs. More specifically, we synthesize findings…
Descriptors: STEM Education, College Transfer Students, Sense of Community, Computer Science
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Joseph Frusci – Journal of Cybersecurity Education, Research and Practice, 2024
The increasing complexity of cybersecurity challenges necessitates a holistic educational approach that integrates both technical skills and humanistic perspectives. This article examines the importance of infusing humanities disciplines such as history, ethics, political science, sociology, law, and anthropology, into cybersecurity education.…
Descriptors: Humanities, Humanities Instruction, Computer Science Education, Computer Security
Daryl Monear – Washington Student Achievement Council, 2024
Science, technology, engineering, and math (STEM) are vital to Washington's economy. Because of this, it's essential for our state to align education and career training with workforce needs. The STEM Education Innovation Alliance advises the State of Washington's Governor on policies to align and advance STEM education. The STEM Alliance brings…
Descriptors: STEM Education, Educational Innovation, Educational Policy, Postsecondary Education
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Baiyun Chen; Ronald F. DeMara – IEEE Transactions on Education, 2024
The COVID-19 pandemic has introduced challenges to delivering laboratory-based STEM curricula. This study evaluates students' learning experience in a synchronous team design activity within the laboratory component of an undergraduate Computer Engineering course during the pandemic. Using the EduPad digital platform, students collaborated in…
Descriptors: Synchronous Communication, Distance Education, Engineering, STEM Education
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Mariana Alvidrez; Christopher Villa; Elaine M. Hampton – Journal of College Science Teaching, 2024
As ethical issues involving computer technologies and social media become more common, there is increasing interest in what role ethics should play in computer science education. As a result, computer science departments worldwide have ramped up their efforts to examine relevant ethical issues in undergraduate computer science classes to prepare…
Descriptors: Controversial Issues (Course Content), STEM Education, Ethics, Computer Science Education
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Qian, Yingxiao; Choi, Ikseon – Educational Technology Research and Development, 2023
Echoing the increasing emphasis on STEM literacy, computational thinking has become a national priority in K-12 schools. Scholars have acknowledged abstraction as the keystone of computational thinking. To foster K-12 students' computational thinking and STEM literacy, students' ability to think abstractly should be enhanced. However, the existing…
Descriptors: Elementary Secondary Education, Computation, Thinking Skills, Abstract Reasoning
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Jennifer M. Blaney; Sarah L. Rodriguez; Amanda R. Stevens – Community College Review, 2024
Objective: Community college transfer pathways are critical for advancing gender equity in STEM. Yet, community college students are often ignored within studies of women's participation in undergraduate computing. In a first effort to address this gap in the literature, this paper explores the composition of transfer-intending computing students…
Descriptors: Community College Students, Females, Sex Fairness, STEM Education
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Priemer, Burkhard; Eilerts, Katja; Filler, Andreas; Pinkwart, Niels; Rösken-Winter, Bettina; Tiemann, Rüdiger; Zu Belzen, Annette Upmeier – Research in Science & Technological Education, 2020
Background: Recent developments in STEM and computer science education put a strong emphasis on twenty-first-century skills, such as solving authentic problems. These skills typically transcend single disciplines. Thus, problem-solving must be seen as a multidisciplinary challenge, and the corresponding practices and processes need to be described…
Descriptors: Problem Solving, STEM Education, Computer Science Education, Inquiry
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Kammer, Jenna; Hays, Lauren – Education Libraries, 2021
This overview demonstrates the need for school librarians to consider supplementing coding instruction with ethical discussions. School librarians are increasingly incorporating coding into library instruction through play, tutorials, collaboration in content areas, and design thinking projects. To enhance students' ethical decision making and…
Descriptors: School Libraries, Ethical Instruction, Programming, Computer Science Education
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