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Rebekah R. Ingram; Ryan T. Ransom; Kahente Horn-Miller – Canadian Journal of Applied Linguistics / Revue canadienne de linguistique appliquée, 2024
The Atlas of Kanyen'kehá:ka Space project (Kanyen'kehá:ka Nation, 2020; see www.mohawkatlas.org) launched in 2019 for the purposes of preserving Kanyen'kéha (Mohawk language) place names and related landscape terminology. Built using Nunaliit, a community mapping framework developed by Carleton University's Geomatics and Cartographic Research…
Descriptors: Place Based Education, Eskimo Aleut Languages, American Indian Languages, Atlases
Teppo Jakonen; Heidi Jauni – Computer Assisted Language Learning, 2024
The development of videoconferencing technology has enabled new modes of combining in-person and remote teaching. In this article, we investigate interactional practices in hybrid language classrooms that combine on-site and remote participation by way of telepresence technology. Telepresence robots are videoconferencing tools that can be remotely…
Descriptors: Robotics, Second Language Learning, Second Language Instruction, Videoconferencing
Hsiao, Hsien-Sheng; Lin, Yi-Wei; Lin, Kuen-Yi; Lin, Chien-Yu; Chen, Jheng-Han; Chen, Jyun-Chen – Interactive Learning Environments, 2022
This study used robot-based practices to develop an activity that incorporated the 6E model. The sixth-grade students learned interdisciplinary knowledge about how to use Arduino electronic components, microcontrollers, and hands-on tools to make a "Crab Robot." In addition, the students learned how to use Scratch programming language to…
Descriptors: Robotics, Grade 6, Interdisciplinary Approach, Programming
Murcia, Karen Janette; Tang, Kok-Sing – Australian Educational Computing, 2019
Computational thinking, which includes foundation skills such as matching, sequencing and decomposing, is increasingly becoming an educational focus with young children (Strawhacker, Lee, & Bers, 2018). This research focusses primarily on the nature of young children's play with tangible coding technologies (TCTs) and the role of multimodal…
Descriptors: Programming, Computation, Thinking Skills, Foreign Countries
Alqahtani, Muteb M.; Hall, Jacob A.; Leventhal, Maryssa; Argila, Alyssa N. – Digital Experiences in Mathematics Education, 2022
While programming was introduced to mathematics classrooms in the 1980s, emerging robotic technologies have encouraged more widespread integration of these technologies to support the development of K-12 students' mathematical reasoning. The recent emphasis of programming and computational thinking in K-12 education has highlighted the need to…
Descriptors: Mathematics Instruction, Teaching Methods, Robotics, Pretests Posttests
Nam, Ki Won; Kim, Hye Jeong; Lee, Suyoun – Asia-Pacific Education Researcher, 2019
This study examined the effects of a card-coded robotics curriculum and associated activities on kindergarteners' sequencing and problem-solving skills, which are forms of computational thinking. Kindergarteners participated in card-coded programming using a robot called TurtleBot. A card-coded robot curricular intervention was also designed to…
Descriptors: Kindergarten, Robotics, Problem Solving, Thinking Skills
Kaup, Camilla; Brooks, Eva – Designs for Learning, 2022
Computational thinking (CT) has become central to introducing digital artefacts for educational use. However, little is known about implementing CT in the mathematical school curriculum, and many educational staff members have not been introduced to CT in their initial training. Introducing CT in an educational setting calls for interventions that…
Descriptors: Computation, Thinking Skills, Mathematics Education, Intervention
Blackley, Susan; Howell, Jennifer – Australian Journal of Teacher Education, 2019
In this paper, we use our qualitative research notes and observations to portray a model for integrated STEM education and summarise primary school students' typical and recurring ways in which they engaged with each new robot. The purpose of this paper is two-fold: first, to unpack key elements of the Australian Curriculum: Technologies in order…
Descriptors: STEM Education, Robotics, Teaching Methods, Programming
Dolecheck, Suzann Hagan; Ewers, Timothy – Journal of Extension, 2017
In this article, we explain an organizational system for the new LEGO Education WeDo 2.0 Core Set used in 4-H robotics; in school enrichment, afterschool, and other youth robotics programs; and by hobbyists. The system presented is for organizing WeDo parts into a translucent parts tray that includes part names and numbers. The article provides…
Descriptors: Robotics, Youth Programs, Systems Building, Hands on Science
Açisli Çelik, Sibel; Ergin, Ismet – International Journal of Technology in Education, 2022
In this research, in the "Artvin gets Color with Science and Robotics-2" project, which was supported with the Project number 121B899 within the scope of the 2020/1 call period launched in the 15thyear of the Scientific and Technological Research Council of Turkey (TÜBITAK) 4004-Nature Education and Science Schools Support Program,…
Descriptors: Middle School Students, Student Attitudes, Scientific Concepts, Concept Formation
García-Peñalvo, Francisco José, Ed.; García-Holgado, Alicia, Ed. – Lecture Notes in Educational Technology, 2023
This TEEM 2022 Conference (International Conference on Technological Ecosystems for Enhancing Multiculturality) Proceedings reflects the most outstanding advances, with a multidisciplinary perspective, in the technological ecosystems that support the Knowledge Society building and development. With its learning technology-based focus using a…
Descriptors: Interdisciplinary Approach, Conference Papers, Technology Uses in Education, Information Science
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
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
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
Ching, Yu-Hui; Wang, Sasha; Yang, Dazhi; Baek, Youngkyun; Swanson, Steve; Chittoori, Bhaskar – Journal of Computers in Mathematics and Science Teaching, 2020
This paper presents a case study on six elementary school teachers' perceived learning in a professional development program where teachers facilitated an integrated STEM robotics activity in an afterschool setting. Teacher reflections and interviews data were analyzed for themes. The findings revealed teachers' positive growth in the following…
Descriptors: Elementary School Teachers, Teacher Attitudes, Faculty Development, STEM Education

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