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Crompton, Helen; Gregory, Kristen; Burke, Diane – British Journal of Educational Technology, 2018
This qualitative study explored the affordances provided by the integration of the NAO humanoid robot in three preschool classrooms. Using the Head Start Early Learning Outcomes Framework as a lens, the researchers qualitatively analyzed data from focus groups, observations, field notes and student artifacts, using grounded coding to uncover…
Descriptors: Robotics, Teaching Methods, Preschool Education, Interaction
Edwards, Chad; Edwards, Autumn; Spence, Patric R.; Lin, Xialing – Communication Education, 2018
Human-machine communication has emerged as a new relational context of education and should become a priority for instructional scholarship in the coming years. With artificial intelligence and robots offering personalized instruction, teachers' roles may shift toward overseers who design and select machine-led instruction, monitor student…
Descriptors: Artificial Intelligence, Robotics, Teaching Methods, Teacher Role
Soboleva, Elena V.; Karavaev, Nikita L. – European Journal of Contemporary Education, 2020
The problem of the research is urgent due to the need to develop a special style of thinking. This type is based on problem cognitive activity, focused on lean production, resource conservation, and supported by an automated system that provides resources for solving socioeconomic problems in the conditions of the fourth industrial revolution and…
Descriptors: Robotics, Engineering Education, Teaching Methods, Thinking Skills
Zviel-Girshin, Rina; Luria, Adi; Shaham, Chait – Journal of Science Education and Technology, 2020
This paper presents findings regarding the addition of robotics education in kindergarten and elementary school as a tool for enhancing technological thinking, increasing children's confidence in using technology, developing essential twenty-first century skills and increasing children's self-confidence. A unique tailored compulsory program for…
Descriptors: Robotics, Teaching Methods, Kindergarten, Elementary School Students
Ugur-Erdogmus, Feray – Participatory Educational Research, 2021
Robotic education is a popular topic in recent years. There are robotic education courses from pre-K to K-12 and these courses claim that they support STEM education. However, the teacher's perception of these activities and needs for this education is the missing part of the chain. The aim of this study to find out the perceptions and suggestions…
Descriptors: Teacher Attitudes, Kindergarten, Preschool Teachers, Teaching Methods
Wong, Wing-Kwong – Interactive Technology and Smart Education, 2018
Purpose: This paper aims to propose a maker's approach to teaching an operating systems (OSs) course in which students apply knowledge of OSs to making a toy robot by focusing on input/outputs, hardware devices and system programming. Design/methodology/approach: Classroom action research is involved in this study. Findings: After the course was…
Descriptors: Computer Science Education, Robotics, Toys, Teaching Methods
Alemi, Minoo; Khatoony, Shiva – Teaching English with Technology, 2020
Technology integration has become increasingly prevalent in language education and technology teaching tools are currently used for English instruction. In line with this trend, it is also believed to be influential in teaching and learning pronunciation. To cast an empirical light on this issue, this study aimed to analyse the influence of…
Descriptors: Pronunciation Instruction, Teaching Methods, Computer Simulation, Robotics
Zhong, Baichang; Li, Tingting – Journal of Educational Computing Research, 2020
In Robotics Education (RE), the hands-on experience with troubleshooting problems is seen as a good catalyst to enhance the participants' problem-solving skills. Based on the pedagogical technique of collaborative learning and pair programming, pair learning is an emerging and potential method in RE, which means that students collaborate in pairs…
Descriptors: Robotics, Troubleshooting, Problem Solving, Teaching Methods
Giang, Christian; Piatti, Alberto; Mondada, Francesco – IEEE Transactions on Education, 2019
Contribution: This paper presents a model for educational robotics tools and a corresponding set of heuristics for their development and evaluation specifically adapted to the needs and expectations in formal education settings. Background: The increased use of educational robots in classrooms, and the steadily growing number of alternatives from…
Descriptors: Robotics, Educational Technology, Technology Uses in Education, Teaching Methods
Bargagna, S.; Castro, E.; Cecchi, F.; Cioni, G.; Dario, P.; Dell'Omo, M.; Di Lieto, M. C.; Inguaggiato, E.; Martinelli, A.; Pecini, C.; Sgandurra, G. – Technology, Knowledge and Learning, 2019
Educational robotics (ER) uses robotic kits as a channel for education and collaborative learning in a play setting. Thanks to adaptability of robots, ER could facilitate inclusion of special-needs children, such as children with Down syndrome (DS), in learning programs. In a previous study, we provided evidence that ER could promote superior…
Descriptors: Robotics, Down Syndrome, Cooperative Learning, Play
Georgiou, Kyriakoula; Angeli, Charoula – International Association for Development of the Information Society, 2019
The development of computational thinking is as important as writing, reading and arithmetic, and, it should start as early as kindergarten (Wing, 2008). However, little has been done in terms of investigating the factors influencing the development of computational thinking in preschool education (Bers et al., 2014; Ching et al., 2018; Kazakoff…
Descriptors: Teaching Methods, Thinking Skills, Scaffolding (Teaching Technique), Preschool Children
Phamduy, Paul; Leou, Mary; Milne, Catherine; Porfiri, Maurizio – IEEE Transactions on Education, 2017
Informal science learning aims to improve public understanding of STEM. Free-choice learners can be engaged in a wide range of experiences, ranging from watching entertaining educational videos to actively participating in hands-on projects. Efforts in informal science learning are often gauged by their ability to elicit interaction, to foster…
Descriptors: STEM Education, Robotics, Informal Education, Science Instruction
Jakonen, Teppo; Jauni, Heidi – Classroom Discourse, 2021
Videoconferencing is increasingly used in education as a way to support distance learning. This article contributes to the emerging interactional literature on video-mediated educational interaction by exploring how a telepresence robot is used to facilitate remote participation in university-level foreign language teaching. A telepresence robot…
Descriptors: Videoconferencing, Distance Education, Educational Technology, Technology Uses in Education
Budiyanto, Cucuk Wawan; Shahbodin, Faaizah; Khoirul Umam, Muhammad Ulin; Isnaini, Ratih; Rahmawati, Anayanti; Widiastuti, Indah – Online Submission, 2021
Technology and smart devices have become ubiquitous staples in every aspect of human life. Given the rise of computation in everyday life, introducing technology to early childhood students requires exposure to logical thinking and problem-solving skills through programming approaches or computational thinking. This research addresses an inquiry…
Descriptors: Technology Uses in Education, Educational Technology, Parent Participation, Student Participation
Reichert, Janice Teresinha; Barone, Dante Augusto Couto; Kist, Milton – EURASIA Journal of Mathematics, Science and Technology Education, 2020
The article highlights and discusses aspects about the initial perceptions of Computational Thinking of a group of Mathematics teachers in K-12, estimates the contributions of a continuing education course on the subject and addresses possible changes in the participants' way of teaching. The case study was conducted through continuing education…
Descriptors: Foreign Countries, Computation, Thinking Skills, Mathematics Teachers

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