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Kao, Yvonne; Matlen, Bryan; Weintrop, David – ACM Transactions on Computing Education, 2022
The 1980s and 1990s saw a robust connection between computer science education and cognitive psychology as researchers worked to understand how students learn to program. More recently, academic disciplines such as science and engineering have begun drawing on cognitive psychology research and theories of learning to create instructional materials…
Descriptors: Computer Science Education, Cognitive Psychology, Transfer of Training, Programming
Pelánek, Radek; Effenberger, Tomáš – ACM Transactions on Computing Education, 2023
To provide practice and assessment of computational thinking, we need specific problems students can solve. There are many such problems, but they are hard to find. Learning environments and assessments often use only specific types of problems and thus do not cover computational thinking in its whole scope. We provide an extensive catalog of…
Descriptors: Computation, Thinking Skills, Problem Solving, Learning Activities
Robins, Anthony V. – ACM Transactions on Computing Education, 2022
This paper explores a major theoretical framework from psychology, Dual Process Theory (DPT), which has received surprisingly little attention in the computing education literature. DPT postulates the existence of two qualitatively different kinds of cognitive systems, a fast, intuitive "System 1" and a slow, reflective "System…
Descriptors: Learning Theories, Cognitive Processes, Intelligence, Long Term Memory
Michaelis, Joseph E.; Weintrop, David – ACM Transactions on Computing Education, 2022
Computing is rapidly becoming a critical literacy for succeeding in an increasingly technological world. While the proliferation of programs dedicated to broadening participation in computing increases access, computing education research can benefit from more directly drawing on current interest development theory to improve interventions that…
Descriptors: Computer Science Education, Student Interests, Curriculum Design, Intervention
Groeneveld, Wouter; Vennekens, Joost; Aerts, Kris – ACM Transactions on Computing Education, 2022
As the importance of non-technical skills in the software engineering industry increases, the skill sets of graduates match less and less with industry expectations. A growing body of research exists that attempts to identify this skill gap. However, only few so far explicitly compare opinions of the industry with what is currently being taught in…
Descriptors: Engineering Education, Computer Software, Job Skills, College Graduates
Marshall, Linda; Pieterse, Vreda; Thompson, Lisa; Venter, Dina M. – ACM Transactions on Computing Education, 2016
Employers require software engineers to work in teams when developing software systems. It is therefore important for graduates to have experienced teamwork before they enter the job market. We describe an experiential learning exercise that we designed to teach the software engineering process in conjunction with teamwork skills. The underlying…
Descriptors: Student Participation, Teamwork, Computer Software, Programming
Bruegge, Bernd; Krusche, Stephan; Alperowitz, Lukas – ACM Transactions on Computing Education, 2015
There is an acknowledged need for teaching realistic software development in project courses. The design space for such courses is wide, ranging from single-semester to two-semester courses, from single-client to multicustomer courses, from local to globally distributed courses, and from toy projects to projects with real clients. The challenge…
Descriptors: Computer Software, Student Projects, School Business Relationship, Active Learning
Gestwicki, Paul; McNely, Brian – ACM Transactions on Computing Education, 2016
We define and describe the academic studio model for interdisciplinary, undergraduate, project-oriented education. This model brings faculty, students, and community partners together to investigate an openended academic question, and their collaboration yields an original product that represents their inquiry. The academic studio integrates agile…
Descriptors: Interdisciplinary Approach, Student Projects, Undergraduate Students, Teaching Methods
Ott, Claudia; Robins, Anthony; Shephard, Kerry – ACM Transactions on Computing Education, 2016
Learning the first programming language is challenging for many students. High failure rates and bimodally distributed grades lead to a pedagogical interest in supporting students in first-year programming courses (CS1). In higher education, the important role of feedback for guiding the learning process and improving the learning outcome is…
Descriptors: Feedback (Response), Programming, Computer Science Education, Teaching Methods
Crawford, Chris S.; Gilbert, Juan E. – ACM Transactions on Computing Education, 2019
Brain-Computer Interface (BCI) hardware is becoming more affordable and accessible. However, there is limited work investigating ways to design software that broadens participation with BCI technology. In this article, we present a block-based programming environment designed to assist novice programmers with creating BCI applications. We also…
Descriptors: Barriers, Computer Software, Programming, Information Technology
Borstler, Jurgen; Hilburn, Thomas B. – ACM Transactions on Computing Education, 2016
Team projects are a way to expose students to conflicting project objectives, and "[t]here should be a strong real-world element...to ensure that the experience is realistic" [ACM/IEEE-CS 2015b]. Team projects provide an opportunity for students to put their education into practice and prepare them for their professional careers. The aim…
Descriptors: Teamwork, Computer Science Education, Instructional Design, Psychological Patterns
Vasilevskaya, Maria; Broman, David; Sandahl, Kristian – ACM Transactions on Computing Education, 2015
In a modern computing curriculum, large-project courses are essential to give students hands-on experience of working in a realistic software engineering project. Assessing such projects is, however, extremely challenging. There are various aspects and trade-offs of assessments that can affect course quality. Individual assessments may fairly…
Descriptors: Computer Science Education, Student Projects, Models, Active Learning
Börstler, Jürgen; Hilburn, Thomas B. – ACM Transactions on Computing Education, 2015
Team projects are a way to expose students to conflicting project objectives, and "[t]here should be a strong real-world element … to ensure that the experience is realistic" [ACM/IEEE-CS 2015b]. Team projects provide students an opportunity to put their education into practice and prepare them for their professional careers. The aim of…
Descriptors: Teamwork, Computer Science Education, Instructional Design, Teaching Methods
Braught, Grant; MacCormick, John; Bowring, James; Burke, Quinn; Cutler, Barbara; Goldschmidt, David; Krishnamoorthy, Mukkai; Turner, Wesley; Huss-Lederman, Steven; Mackellar, Bonnie; Tucker, Allen – ACM Transactions on Computing Education, 2018
Many computer science programs have capstone experiences or project courses that allow students to integrate knowledge from the full breadth of their major. Such capstone projects may be student-designed, instructor-designed, designed in conjunction with outside companies, or integrated with ongoing free and open source (FOSS) projects. The…
Descriptors: Computer Science Education, Open Source Technology, Computer Software, Social Values
McGill, Tanya; Armarego, Jocelyn; Koppi, Tony – ACM Transactions on Computing Education, 2012
The teaching-research nexus concept has been extensively examined in the higher education literature, and the importance of industry linkages in information and communications technology (ICT) education has also been widely discussed. However, to date there has been little recognition of the full extent of relationships between aspects of…
Descriptors: Teacher Researchers, Information Technology, Technology Education, Industry
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