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ACM Transactions on Computing…417
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Showing 181 to 195 of 417 results Save | Export
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Lai, Rina P. Y. – ACM Transactions on Computing Education, 2022
Computational Thinking (CT), entailing both domain-general and domain-specific skills, is a competency fundamental to computing education and beyond. However, as a cross-domain competency, appropriate assessment design and method remain equivocal. Indeed, the majority of the existing assessments have a predominant focus on measuring programming…
Descriptors: Computer Assisted Testing, Computation, Thinking Skills, Computer Science Education
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Haldeman, Georgiana; Babes-Vroman Monica; Tjang, Andrew; Nguyen, Thu D. – ACM Transactions on Computing Education, 2021
Autograding systems are being increasingly deployed to meet the challenges of teaching programming at scale. Studies show that formative feedback can greatly help novices learn programming. This work extends an autograder, enabling it to provide formative feedback on programming assignment submissions. Our methodology starts with the design of a…
Descriptors: Student Evaluation, Feedback (Response), Grading, Automation
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Jones, Keith S.; Namin, Akbar Siami; Armstrong, Miriam E. – ACM Transactions on Computing Education, 2018
Our cybersecurity workforce needs surpass our ability to meet them. These needs could be mitigated by developing relevant curricula that prioritize the knowledge, skills, and abilities (KSAs) most important to cybersecurity jobs. To identify the KSAs needed for performing cybersecurity jobs, we administered survey interviews to 44 cyber…
Descriptors: Computer Security, Job Skills, Computer Science Education, Professional Personnel
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Daleiden, Patrick; Stefik, Andreas; Uesbeck, P. Merlin; Pedersen, Jan – ACM Transactions on Computing Education, 2020
There are many paradigms available to address the unique and complex problems introduced with parallel programming. These complexities have implications for computer science education as ubiquitous multi-core computers drive the need for programmers to understand parallelism. One major obstacle to student learning of parallel programming is that…
Descriptors: Randomized Controlled Trials, Performance Factors, Programming, Computer Science Education
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Umar Shehzad; Jody Clarke-Midura; Mimi Recker – ACM Transactions on Computing Education, 2024
Objectives: The increasing demand for computing skills has led to a rapid rise in the development of new computer science (CS) curricula, many with the goal of equitably broadening the participation of underrepresented students in CS. While such initiatives are vital, factors outside of the school environment also play a role in influencing…
Descriptors: Parent Child Relationship, Computer Science Education, Programming, Equal Education
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Veeragoudar, Sneha; Sullivan, Florence R. – ACM Transactions on Computing Education, 2022
Here, we present the results of a study of in-service teachers' responses to equity-based case study vignettes focused on racialized classroom incidents. This study was conducted in the context of an ongoing research practice partnership aimed at integrating computer science concepts in elementary grades. Our work took place in a public school…
Descriptors: Teacher Attitudes, Racial Attitudes, Computer Science, Elementary Education
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Fujiko Robledo Yamamoto; Lecia Barker; Amy Voida – ACM Transactions on Computing Education, 2024
Service learning, a high-impact pedagogy, involves integrating academic outcomes with service to the community. The success of service learning experiences depends on the development of mutually reciprocal relationships between students, instructors, and community partners, ensuring equitable benefits for all stakeholders. To explore how…
Descriptors: Service Learning, Computer Science Education, Information Science Education, Partnerships in Education
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Celis Rangel, Jakeline G.; King, Melissa; Muldner, Kasia – ACM Transactions on Computing Education, 2020
Learning to program requires perseverance, practice, and the mindset that programming skills are improved through these activities (i.e., that everyone has the potential to become good at programming). In contrast to an entity mindset, individuals with an incremental mindset believe that ability is malleable and can be improved with effort. Prior…
Descriptors: Intervention, Cognitive Structures, Programming, Learning Activities
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McCall, Davin; Kölling, Michael – ACM Transactions on Computing Education, 2019
The types of programming errors that novice programmers make and struggle to resolve have long been of interest to researchers. Various past studies have analyzed the frequency of compiler diagnostic messages. This information, however, does not have a direct correlation to the types of errors students make, due to the inaccuracy and imprecision…
Descriptors: Computer Software, Programming, Error Patterns, Novices
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Tshukudu, Ethel; Sentance, Sue; Adelakun-Adeyemo, Oluwatoyin; Nyaringita, Brenda; Quille, Keith; Zhong, Ziling – ACM Transactions on Computing Education, 2023
Motivation: As K-12 computing education becomes more established throughout the world, there is an increasing focus on accessibility for all, whether in a particular country or setting or in areas of the world that may not yet have computing established. This is primarily articulated as an equity issue. The recently developed "capacity…
Descriptors: Foreign Countries, Elementary Secondary Education, Computer Science Education, Geographic Regions
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El-Hamamsy, Laila; Pellet, Jean-Philippe; Roberts, Matthew; Kovacs, Helena; Bruno, Barbara; Zufferey, Jessica Dehler; Mondada, Francesco – ACM Transactions on Computing Education, 2023
Context: Introducing Computer Science (CS) into formal education can be challenging, notably when considering the numerous stakeholders involved which include the students, teachers, schools, and policy makers. We believe these perspectives should be considered conjointly, which is possible within Research Practice Partnerships (RPPs). RPPs look…
Descriptors: Theory Practice Relationship, Research and Development, Partnerships in Education, Computer Science Education
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Marie-Monique Schaper; Mariana Aki Tamashiro; Rachel Charlotte Smith; Ole Sejer Iversen – ACM Transactions on Computing Education, 2025
As emerging technologies are rapidly advancing as part of our societies and everyday life, it is crucial to include and empower all students in learning about computing and advanced technologies. These include technical capabilities of algorithms, such as the use of AI, that enable novel interactions between humans and their environment and give…
Descriptors: Inclusion, Artificial Intelligence, Student Empowerment, Algorithms
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Maral Kargarmoakhar; Monique Ross; Zahra Hazari; Stephen Secules; Mark Allen Weiss; Michael Georgiopoulos; Kenneth Christensen; Tiana Solis – ACM Transactions on Computing Education, 2024
While computing programs in the U.S. are experiencing growth in enrollment trends, they are still grappling with matters related to retention and persistence of computing undergraduates. One construct identified by scholars as having an impact on persistence in computing is computing identity, which is shaped by constructs such as recognition,…
Descriptors: Communities of Practice, Scholarships, Computer Science Education, Self Concept
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Yin-Chan Liao; Jiyoung Kim; Anne T. Ottenbreit-Leftwich; Michael Karlin; Meize Guo – ACM Transactions on Computing Education, 2024
Objectives: Computer Science (CS) education has become increasingly prevalent in elementary schools because of multiple rationales, such as the importance of computational literacy and the growing demand for CS-related workforce preparation. As elementary CS standards continue to be adopted by many states, more examples and voices from the field…
Descriptors: Elementary School Teachers, Computer Science Education, Teacher Attitudes, Computer Literacy
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Minnes, Mia; Serslev, Sheena Ghanbari; Padilla, Omar – ACM Transactions on Computing Education, 2021
Summer internships present an opportunity for Computer Science (CS) students to expand and test their skills in "the real world." These multi-faceted experiences call on students to use technical tools and critical thinking in collaboration with others to solve problems. There are many opportunities for learning and growth: which of…
Descriptors: Computer Science Education, Student Satisfaction, Undergraduate Students, Value Judgment
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