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Students' In-Moment Challenges and Developing Maker Perspectives during Problem-Based Digital Making
Ng, Oi-Lam; Liu, Minnie; Cui, Zhihao – Journal of Research on Technology in Education, 2023
We report on a case study of eight grade 5 to 6 students (ages 12-14) involved in a three-day "digital-making summer camp" focused on mathematical problem-solving through block-based programming combined with programmable electronics. Data analysis focused on the computational thinking (CT), mathematics, and problem-solving challenges…
Descriptors: Grade 5, Grade 6, Summer Programs, Camps
Othman, Mohd Kamal; Jazlan, Syazni; Yamin, Fatin Afiqah; Aman, Shaziti; Mohamad, Fitri Suraya; Anuar, Nurfarahani Norman; Saleh, Abdulrazak Yahya; Abdul Manaf, Ahmad Azaini – Journal of Educational Computing Research, 2023
This study investigates how digital game co-creation promotes Computational Thinking (CT) skills among children in sub-urban primary schools. Understanding how CT skills can be fostered in learning programming concepts through co-creating digital games is crucial to determine instructional strategies that match the young students' interests and…
Descriptors: Computation, Thinking Skills, Video Games, Foreign Countries
Melro, Ana; Tarling, Georgie; Fujita, Taro; Kleine Staarman, Judith – Journal of Educational Computing Research, 2023
Underpinning the teaching of coding with Computational Thinking has proved relevant for diverse learners, particularly given the increasing demand in upskilling for today's labour market. While literature on computing education is vast, it remains unexplored how existing CT conceptualisations relate to the learning opportunities needed for a…
Descriptors: Coding, Computation, Thinking Skills, Learning Processes
Zsoldos-Marchi?, Iuliana; Bálint-Svella, Éva – Acta Didactica Napocensia, 2023
The concept, development and assessment of computational thinking have increasingly become the focus of research in recent years. Most of this type of research focuses on older children or adults. Preschool age is a sensitive period when many skills develop intensively, so the development of computational thinking skills can already begin at this…
Descriptors: Test Construction, Computation, Thinking Skills, Cognitive Tests
Wei Li; Cheng-Ye Liu; Judy C. R. Tseng – British Journal of Educational Technology, 2024
Collaborative programming helps improve students' computational thinking and increases their confidence in solving programming problems. However, the effect of collaborative learning is not ideal because it is difficult for students to mobilize metacognition to regulate learning spontaneously. To guide students to effectively regulate the learning…
Descriptors: Foreign Countries, Junior High School Students, Metacognition, Academic Achievement
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
Dayae Yang – ProQuest LLC, 2024
This dissertation follows a manuscript-style format, beginning with an introduction and literature review, followed by three distinct studies and a concluding section. All three studies use "Lucky Codes," an educational board game designed to foster computational thinking skills in elementary students, as the intervention. The first…
Descriptors: Elementary Secondary Education, Educational Games, Game Based Learning, Computation
Dickson, Brandon A.; Kotsopoulos, Donna; Harris, Lauren – Digital Experiences in Mathematics Education, 2022
In this research, we explore the potential for computational thinking (CT) to benefit the spatial reasoning abilities of thirty-three middle-school students (aged 11-13) in grades 6 and 7. There is an increasing focus on the explicit development of spatial reasoning throughout the mathematics curriculum, such as geometry, as students' success in…
Descriptors: Programming, Clubs, Middle School Students, Spatial Ability
Kilhamn, C.; Bråting, K.; Helenius, O.; Mason, J. – ZDM: Mathematics Education, 2022
In this paper we consider implications of the current world-wide inclusion of computational thinking in relation to children's development of algebraic thinking. Little is known about how newly developed visual programming environments such as Scratch could enhance early algebra learning. The study is based on examples of programming activities…
Descriptors: Computation, Thinking Skills, Preadolescents, Programming
Olaperi Okuboyejo; Sigrid Ewert; Ian Sanders – ACM Transactions on Computing Education, 2025
Regular expressions (REs) are often taught to undergraduate computer science majors in the Formal Languages and Automata (FLA) course; they are widely used to implement different software functionalities such as search mechanisms and data validation in diverse fields. Despite their importance, the difficulty of REs has been asserted many times in…
Descriptors: Automation, Feedback (Response), Error Patterns, Error Correction
Jale Kalemkus; Fatih Kalemkus – Science & Education, 2025
When the studies on the effectiveness of visual programming language are examined, it is seen that studies on coding teaching have been carried out frequently recently. In this study, Scratch was used as a teaching tool in teaching science lessons. In this way, a new perspective has been brought to Scratch applications. In the related study, the…
Descriptors: Design, Science Experiments, Programming Languages, Science Instruction
Steven Higbee; Sharon Miller; Karen Alfrey – Biomedical Engineering Education, 2025
Challenge: The Hodgkin-Huxley membrane conductance model has been featured in biomedical engineering (BME) curricula for decades. A typical BME assignment might require students to apply the relevant equations and parameters to model the generation of action potentials; however, there is opportunity for students to build and explore both…
Descriptors: Scientific Concepts, Biomedicine, Engineering Education, Models
Cynthia Pinheiro Santiago; Antonio Rodrigo dos Santos Silva; José Wally Mendonça Menezes; Francisco José Alves de Aquino – Informatics in Education, 2025
The introductory programming disciplines, which include the teaching of algorithms and computational logic, have high failure and dropout rates. Developing Computational Thinking in students can contribute to learning programming fundamentals by building algorithmic and problem-solving skills. However, keeping students engaged in training such…
Descriptors: Gamification, Self Determination, Computation, Thinking Skills
Chantal Buteau; Eric Muller; Joyce Mgombelo; Ana Isabel Sacristán; Jessica Sardella; Marisol Santacruz-Rodríguez – Canadian Journal of Science, Mathematics and Technology Education, 2025
In this paper, we are interested in the learning outcomes from undergraduate students' digital experiences of conducting multiple pure and applied mathematics investigations supported by programming technology. Our case study encompasses a sequence of three project-based mathematics courses implemented for over 20 years at Brock University. We…
Descriptors: College Mathematics, Student Attitudes, Programming, Investigations
Yildiz Durak, Hatice – Technology, Knowledge and Learning, 2020
The aim of this research is to determine the effects of Scratch and Alice tools and programming teaching practices on student engagement, reflective thinking and problem-solving skills and computational thinking (CT) comparatively. A quasi-experimental design was used in the research and patterns with pretest-posttest control group were chosen for…
Descriptors: Secondary School Students, Computer Science Education, Programming, Programming Languages

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