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Jennifer Kay Houchins – ProQuest LLC, 2023
Computational thinking (CT) is recognized as an essential and universally applicable skill for all disciplines (Wing, 2006; Bundy, 2007). Proponents of CT acknowledge that it is integral to fostering 21st century skills such as problem-solving and higher-order thinking (Barr & Stephenson, 2011; Wing, 2006). Educational robotics activities have…
Descriptors: Middle School Students, Computation, Thinking Skills, Robotics
Cai, Qijie Vicky; Hong, Huili; McNary, Scot W.; Song, Liyan – TechTrends: Linking Research and Practice to Improve Learning, 2023
To broaden participation in robotics education, a free, after-school robotics program has been designed and developed at a public university. As part of a longitudinal study, this paper reports the first iteration of the program, offered to 12 students from Grades 3 through 7 in spring 2022. Three preservice teachers were trained as…
Descriptors: Program Development, Robotics, Computation, Thinking Skills
Møller, Anders Kalsgaard; Kaup, Camilla Finsterbach – Journal of Pedagogical Research, 2023
In this paper we study how children aged 12-15 years learn together with their parents while solving a series of playful inquiry-based tasks with an educational robot. The purpose of the study is to understand how children and their parents learn mathematics and computational thinking in non-formal out-of-school learning activities. For the study…
Descriptors: Cooperation, Active Learning, Inquiry, Mathematics Education
Güven, Gökhan – Malaysian Online Journal of Educational Technology, 2021
The current study aimed to investigate the relationship between middle school students' science course attitudes and robotics attitudes. To this end, the correlational survey model was used. The study group of the current study is comprised of 220 students attending middle schools in the 2019-2020 school year. In the study, the "Science…
Descriptors: Scientific Attitudes, Robotics, Science Education, Middle School Students
Bernstein, Debra; Puttick, Gillian; Wendell, Kristen; Shaw, Fayette; Danahy, Ethan; Cassidy, Michael – Educational Technology Research and Development, 2022
In most middle schools, learning is segregated by discipline. Yet interdisciplinary approaches have been shown to cultivate creative thinking, support problem solving, and develop interest while supporting knowledge gains (NAE & NRC in STEM Integration in K-12 Education: Status, Prospects, and an Agenda for Research. National Academies Press,…
Descriptors: Robotics, Design, Middle School Students, Problem Based Learning
Effects of Robotics Instructional Methods on Computational Thinking Skills of Middle School Students
Andrew Patrick Cook – ProQuest LLC, 2021
As a tangible and motivating medium for students to engage in computational thinking, robotics has drawn interest from educators and researchers as K-12 schools continue to integrate STEM into curriculum. Through this mixed methods study, the researcher sought to explore the effects of robotics instructional methods (task-based and project-based)…
Descriptors: Computation, Thinking Skills, Robotics, Teaching Methods
Plangg, Simon; Fuchs, Karl Josef – International Journal for Technology in Mathematics Education, 2022
Using robot programming activities for learning in the classroom is one way to drive interest and engagement in the STEM field among students, especially girls. And this is afield that is particularly characterized by an underrepresentation of women. Accordingly, many countries are increasingly integrating activities related to computer science…
Descriptors: Robotics, Programming, STEM Education, Computer Science Education
Merkouris, Alexandros; Chorianopoulos, Konstantinos – ACM Transactions on Computing Education, 2019
Contemporary research has explored educational robotics, but it has not examined the development of computational thinking in the context of programming embodied interactions. Apart from the goal of the robot and how the robot will interact with its environment, another important aspect that should be taken into consideration is whether and how…
Descriptors: Educational Technology, Robotics, Middle School Students, Man Machine Systems
Leonard, Jacqueline; Buss, Alan; Gamboa, Ruben; Mitchell, Monica; Fashola, Olatokunbo S.; Hubert, Tarcia; Almughyirah, Sultan – Journal of Science Education and Technology, 2016
This paper describes the findings of a pilot study that used robotics and game design to develop middle school students' computational thinking strategies. One hundred and twenty-four students engaged in LEGO® EV3 robotics and created games using Scalable Game Design software. The results of the study revealed students' pre-post self-efficacy…
Descriptors: Robotics, Design, Self Efficacy, Student Attitudes
Berland, Matthew; Wilensky, Uri – Journal of Science Education and Technology, 2015
Both complex systems methods (such as agent-based modeling) and computational methods (such as programming) provide powerful ways for students to understand new phenomena. To understand how to effectively teach complex systems and computational content to younger students, we conducted a study in four urban middle school classrooms comparing…
Descriptors: Robotics, Comparative Analysis, Computer Simulation, Systems Approach
Djambong, Takam; Freiman, Viktor – International Association for Development of the Information Society, 2016
While today's schools in several countries, like Canada, are about to bring back programming to their curricula, a new conceptual angle, namely one of computational thinking, draws attention of researchers. In order to understand the articulation between computational thinking tasks in one side, student's targeted skills, and the types of problems…
Descriptors: Foreign Countries, Computer Science Education, Programming, Computation
Alfieri, Louis; Higashi, Ross; Shoop, Robin; Schunn, Christian D. – International Journal of STEM Education, 2015
Background: Robot-math is a term used to describe mathematics instruction centered on engineering, particularly robotics. This type of instruction seeks first to make the mathematics skills useful for robotics-centered challenges, and then to help students extend (transfer) those skills. A robot-math intervention was designed to target the…
Descriptors: Case Studies, Robotics, Mathematics Instruction, Engineering