Publication Date
In 2025 | 2 |
Since 2024 | 9 |
Since 2021 (last 5 years) | 21 |
Since 2016 (last 10 years) | 36 |
Since 2006 (last 20 years) | 47 |
Descriptor
Source
Author
Publication Type
Education Level
Elementary Education | 19 |
Secondary Education | 17 |
Middle Schools | 14 |
Higher Education | 13 |
Postsecondary Education | 10 |
Intermediate Grades | 8 |
Junior High Schools | 8 |
High Schools | 7 |
Grade 5 | 6 |
Grade 6 | 5 |
Grade 4 | 4 |
More ▼ |
Audience
Teachers | 2 |
Researchers | 1 |
Location
China | 4 |
California | 2 |
Illinois | 2 |
New Jersey | 2 |
New York | 2 |
Argentina | 1 |
Australia | 1 |
Canada | 1 |
Colorado | 1 |
Europe | 1 |
Florida | 1 |
More ▼ |
Laws, Policies, & Programs
Assessments and Surveys
Program for International… | 1 |
What Works Clearinghouse Rating
Lorien Cafarella; Lucas Vasconcelos – Education and Information Technologies, 2025
Middle school students often enter Computer Science (CS) classes without previous CS or Computational Thinking (CT) instruction. This study evaluated how Code.org's block-based programming curriculum affects middle school students' CT skills and attitudes toward CT and CS. Sixteen students participated in the study. This was a mixed methods action…
Descriptors: Middle School Students, Computation, Thinking Skills, Problem Solving
Huang, Joey; Parker, Miranda C. – Computer Science Education, 2023
Background and Context: Computational thinking (CT) is a critical part of computing education in middle school. The existing practices of collaboration and collaborative design activities at this education level pairs well with CT practices, but this interaction has previously been under-explored in the existing literature. Objective: In this…
Descriptors: Computation, Thinking Skills, Cooperative Learning, Skill Development
Mumcu, Filiz; Kidiman, Esra; Özdinç, Fatih – Journal of Pedagogical Research, 2023
Integrating computational thinking (CT) into various disciplines via computer science (CS) methods such as unplugged, block-based, text-based, and physical programming is a trending topic in educational sciences. This study presents a perspective on implementing an unplugged computer science activity to integrate CT into mathematics education.…
Descriptors: Computation, Thinking Skills, Mathematics Education, Learning Activities
Li, Jiansheng; Liu, Jiao; Yuan, Rui; Shadiev, Rustam – Educational Technology & Society, 2022
This study explores the role of socially shared regulation on computational thinking performance in cooperative learning. Ninety-four middle school students from China aged between 16 and 18 participated in this study. Forty-six students were in the experimental group, and 48 students were in the control group. Students in the experimental group…
Descriptors: Computation, Thinking Skills, Cooperative Learning, Foreign Countries
Jiangyue Liu; Jing Ma; Siran Li – Education and Information Technologies, 2025
This study developed a school-based AI curriculum suitable for senior high school students, with the primary objective of enhancing their mastery of knowledge and proficiency in AI, as well as their computational thinking abilities. The curriculum was designed with an awareness of the practical challenges encountered by the subject school in their…
Descriptors: Artificial Intelligence, Technology Uses in Education, Curriculum Design, Computation
Bayan Masarwa; Hagit Hel-Or; Sharona T. Levy – Journal of Research in Childhood Education, 2024
Computational thinking (CT) activities are increasingly being integrated into early childhood schools. We focus on studying children's learning using an "unplugged" (non-computational) learning unit that considers a teacher's knowledge and classroom space and affords seamless adaptation into the classroom given the objects used in the…
Descriptors: Kindergarten, Computation, Thinking Skills, Educational Games
Katai, Zoltan – Educational Technology Research and Development, 2020
We proposed to investigate whether properly calibrated e-learning environments can efficiently promote computational thinking of both sciences- and humanities-oriented people. We invited two groups of students (sciences- vs. humanities-oriented members) to participate in a six-stage learning session: to watch a folk-dance illustration (s1) and an…
Descriptors: Computation, Thinking Skills, Intellectual Disciplines, Instructional Design
Ying Hu; Gwo-Jen Hwang – Education and Information Technologies, 2024
This study explored the effects of a self-adapted mobile concept mapping-based problem-posing (CMPP) approach applied in a virtual museum context. To investigate the effectiveness of the proposed approach, a quasi-experimental design was applied to compare the critical thinking tendency, meta-cognition tendency, problem-solving tendency,…
Descriptors: Thinking Skills, Concept Mapping, Problem Solving, Museums
Hamid Sanei; Jennifer B. Kahn; Rabia Yalcinkaya; Shiyan Jiang; Changzhao Wang – Journal of Science Education and Technology, 2024
Data and computational literacies empower youth to be active participants and future leaders in our increasingly data-driven society. We conducted a design-based research project in which a small group (n = 5) of high school youth from diverse backgrounds learned how to code and create data visualizations and stories with public data about climate…
Descriptors: Coding, Data Use, Science and Society, Story Telling
Brian P. Katz – PRIMUS, 2024
This paper shares a flexible activity for engaging people in mathematical inquiry that does not depend on fixed prior knowledge built on a famous property of Möbius strips. The discussion includes the implementation of the activity and its extensions, facilitator moves and common participant thinking, suggestions for adaptation and integration…
Descriptors: Mathematics Activities, Inquiry, Active Learning, Mathematics Skills
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
Mantawy, Islam M.; Rusch, Conner; Ghimire, Sushil; Lantz, Lucas; Dhamala, Hari; Shrestha, Bipesh; Lampert, Anthony; Khadka, Mohit; Bista, Anima; Soni, Rhytham; Shaik, Abdulu Saleem; Lujan, Eric; Boyd, Mika; Pickings, Richard; Mabrich, Alexander – Education Sciences, 2019
Educational approaches in structural engineering have focused on classical methods for solving problems with manual calculations through assignments, quizzes, and exams. The use of computational software to apply the learned knowledge has been ignored for decades. This paper describes an educational approach to tackle the lack of applicable…
Descriptors: Engineering Education, Active Learning, Student Projects, Construction (Process)
Lee, Silvia Wen-Yu; Tu, Hsing-Ying; Chen, Guang-Lin; Lin, Hung-Ming – International Journal of STEM Education, 2023
Background: There exist shared competencies between computational thinking (CT) and mathematics, and these two domains also mutually benefit from various teaching approaches. However, the linkages between mathematics and computational thinking lack robust empirical support, particularly from student-centered learning perspectives. Our study aimed…
Descriptors: Grade 8, Middle School Students, High School Students, Mathematics Education
Nursel Ugur; Ünal Çakiroglu – International Journal of Technology in Education and Science, 2024
Facilitating Computer Science Unplugged (CS-unplugged) activities with reflective thinking activities lead students to in-depth reviews of their decisions and think of ways to solve the CS-unplugged problems. This study aims to evaluate the instruction enriched with reflective thinking activities to develop computational thinking skills. The study…
Descriptors: Reflection, Thinking Skills, Computer Science Education, Computation
Conrad, Colin; Bliemel, Michael; Ali-Hassan, Hossam – Journal of Information Systems Education, 2019
The expansion of technical concepts into everyday business practices suggests a need for effectively teaching difficult subjects to non-technical users. This paper describes hands-on analogy, an innovative method for teaching technically difficult concepts using interactive, experiential learning activities and a gamified exercise. We demonstrate…
Descriptors: Experiential Learning, Business Administration Education, Data Processing, Logical Thinking