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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
Karnalim, Oscar; Simon; Chivers, William; Panca, Billy Susanto – ACM Transactions on Computing Education, 2022
To help address programming plagiarism and collusion, students should be informed about acceptable practices and about program similarity, both coincidental and non-coincidental. However, current approaches are usually manual, brief, and delivered well before students are in a situation where they might commit academic misconduct. This article…
Descriptors: Computer Science Education, Programming, Plagiarism, Formative Evaluation
Hanli Geyser – ACM Transactions on Computing Education, 2024
Like digital technologies themselves, programming education is embedded in the colonial matrix of power, and access to programming knowledge demands immersion in the epistemologies of the Global North. While there is a growing body of work exploring ways to decolonise programming education, far more needs to be done. Current research focuses on…
Descriptors: Computer Science Education, Decolonization, Programming, Power Structure
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
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
Drachova, Svetlana V.; Hallstrom, Jason O.; Hollingsworth, Joseph E.; Krone, Joan; Pak, Rich; Sitaraman, Murali – ACM Transactions on Computing Education, 2015
Undergraduate computer science students need to learn analytical reasoning skills to develop high-quality software and to understand why the software they develop works as specified. To accomplish this central educational objective, this article describes a systematic process of introducing reasoning skills into the curriculum and assessing how…
Descriptors: Undergraduate Students, Computer Science Education, Logical Thinking, Thinking Skills
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
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
Maloney, John; Resnick, Mitchel; Rusk, Natalie; Silverman, Brian; Eastmond, Evelyn – ACM Transactions on Computing Education, 2010
Scratch is a visual programming environment that allows users (primarily ages 8 to 16) to learn computer programming while working on personally meaningful projects such as animated stories and games. A key design goal of Scratch is to support self-directed learning through tinkering and collaboration with peers. This article explores how the…
Descriptors: Computer Software, Computer Assisted Instruction, Computer Science Education, Programming Languages
Carro, Manuel; Herranz, Angel; Marino, Julio – ACM Transactions on Computing Education, 2013
We present an undergraduate course on concurrent programming where formal models are used in different stages of the learning process. The main practical difference with other approaches lies in the fact that the ability to develop correct concurrent software relies on a systematic transformation of formal models of inter-process interaction (so…
Descriptors: Computer Science Education, Programming, Models, Teaching Methods
Sondag, Tyler; Pokorny, Kian L.; Rajan, Hridesh – ACM Transactions on Computing Education, 2012
Students in all areas of computing require knowledge of the computing device including software implementation at the machine level. Several courses in computer science curricula address these low-level details such as computer architecture and assembly languages. For such courses, there are advantages to studying real architectures instead of…
Descriptors: Programming Languages, Computer Simulation, Computer Graphics, Computer Interfaces
Fincher, Sally; Utting, Ian – ACM Transactions on Computing Education, 2010
In this article we set a context for three Initial Learning Environments Alice, Greenfoot, and Scratch. We consider historical antecedents, technical comparators and design approaches. (Contains 2 footnotes.)
Descriptors: Computer Science Education, Programming, Educational History, Computer Assisted Instruction
Cooper, Stephen – ACM Transactions on Computing Education, 2010
This article explores the major design characteristics (both pedagogic as well as technical) that helped to shape Alice 2. It identifies several strengths of Alice as well as several weaknesses. An example problem is solved in Alice, covering many of the design characteristics. Finally, the effects and impacts of Alice instruction are presented,…
Descriptors: Computer Software, Computer Assisted Instruction, Computer Science Education, Programming
Paterson, J. H.; Cheng, K. F.; Haddow, J. – ACM Transactions on Computing Education, 2009
PatternCoder is a software tool to aid student understanding of class associations. It has a wizard-based interface which allows students to select an appropriate binary class association or design pattern for a given problem. Java code is then generated which allows students to explore the way in which the class associations are implemented in a…
Descriptors: Programming Languages, Programming, Computer Science Education, Computer Software
Karavirta, Ville – ACM Transactions on Computing Education, 2009
Online learning material that students use by themselves is one of the typical usages of algorithm animation (AA). Thus, the integration of algorithm animations into hypertext is seen as an important topic today to promote the usage of algorithm animation in teaching. This article presents an algorithm animation viewer implemented purely using…
Descriptors: Electronic Learning, Web Based Instruction, Animation, Hypermedia
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