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Mirrin Rashleigh; Ondine Bradbury; Linda Pfeiffer – Canadian Journal of Science, Mathematics and Technology Education, 2023
This paper reports findings from a study where regional, rural, and remote (RRR) educators were involved in a Queensland Government-funded 3-year Central Queensland (CQ) STEM (science, technology, engineering, and mathematics) Cluster Project designed to enhance student learning opportunities. This project provided STEM professional development,…
Descriptors: STEM Education, Faculty Development, Rural Areas, Geographic Isolation
Michelle M. Neumann; Imogene Calteaux; David Reilly; David L. Neumann – Early Child Development and Care, 2023
Social robots are designed to interact with humans and this technology is entering early childhood classrooms across the world. Research is needed to understand teachers' perspectives on the benefits and barriers of using social robots with children. In this study, 94 teachers working in preschool or the early years of primary school, in…
Descriptors: Early Childhood Education, Robotics, Educational Benefits, Barriers
Mellita Jones; Vince Geiger; Garry Falloon; Sharon Fraser; Kim Beswick; Benjamin Holland-Twining; Vesife Hatisaru – International Journal of Science Education, 2025
STEM education is viewed as being vital for economic prosperity and productivity; and can contribute productively to changing technological, economic, and social demands of the twenty-first Century. However, there is limited consensus on how STEM education is understood and taught, and inadequate discussion around its role in addressing global…
Descriptors: STEM Education, Social Problems, Administrator Attitudes, Principals
Neumann, Michelle M.; Neumann, David L.; Koch, Leigh-Chantelle – European Early Childhood Education Research Journal, 2023
Social robots communicate through human-like behaviours and are being used in preschool settings. However, the ways in which young children interact with social robots and how these impact upon early educational experiences are not fully known. This observational study explored preschoolers' (Mean age = 4.58 years; N = 40) interactions with a…
Descriptors: Foreign Countries, Interpersonal Relationship, Robotics, Preschool Children
Muhammad Tajammal Munir; Prashant K. Jamwal; Bing Li; Susan Carter; Shahid Hussain – Innovations in Education and Teaching International, 2025
This paper presents a comprehensive study on the integration of 3D printing technology in biomedical robotics education with undergraduate students learning about the design of robotic systems. The research investigated the effectiveness of this new teaching strategy in enhancing students' understanding of complex engineering principles by…
Descriptors: Engineering Education, Computer Peripherals, Biomedicine, Robotics
R. Freed; D. H. McKinnon; M. T. Fitzgerald; S. Salimpour – Physical Review Physics Education Research, 2023
This paper presents the results of a confirmatory factor analysis on two self-efficacy scales designed to probe the self-efficacy of college-level introductory astronomy (Astro-101) students (n ¼ 15181) from 22 institutions across the United States of America and Canada. The students undertook a course based on similar curriculum materials, which…
Descriptors: Self Efficacy, Science Instruction, Astronomy, Factor Analysis
Baroutsis, Aspa; White, Sonia L. J.; Ferdinands, Ella; Goldsmith, William; Lambert, Elizabeth – Australian Primary Mathematics Classroom, 2019
Computational thinking can be defined as "solving problems, designing systems, and understanding human behaviour, by drawing on the concepts fundamental to computer science" (Wing, 2006, p. 33). There are strong links between computational thinking associated with coding and mathematical thinking (Wing, 2006). The digital technologies…
Descriptors: Computation, Thinking Skills, Programming, Learner Engagement
McKnight, Lucinda – Changing English: Studies in Culture and Education, 2021
With artificial intelligence (AI) now producing human-quality text in seconds via natural language generation, urgent questions arise about the nature and purpose of the teaching of writing in English. Humans have already been co-composing with digital tools for decades, in the form of spelling and grammar checkers built into word processing…
Descriptors: Robotics, Artificial Intelligence, Writing (Composition), Writing Instruction
Kewalramani, Sarika; Palaiologou, Ioanna; Dardanou, Maria; Allen, Kelly-Ann; Phillipson, Sivanes – Australasian Journal of Early Childhood, 2021
This Australian study examines whether and how technologies such as Artificially Intelligent (AI) toys in a home-based setting might socially and emotionally support children with diverse needs through play. Building on the concept of 'emotional capital', and employing a design-based research approach, parents during the COVID-19 lockdown periods…
Descriptors: Foreign Countries, Robotics, Toys, Social Emotional Learning
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
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
Tinkler, Jacquie – Australian Educational Computing, 2020
This research captured the views of secondary school students in relation to their use of digital technologies for learning, both now and in the future. Four groups of students participated in the production of hand-drawn concept maps, followed by focus group discussions. The ways in which students considered the use of computers for the purposes…
Descriptors: Student Attitudes, Secondary School Students, Educational Technology, Computer Uses in Education
Kewalramani, Sarika; Kidman, Gillian; Palaiologou, Ioanna – European Early Childhood Education Research Journal, 2021
This study explores the use of interactive Artificial Intelligence (AI)-interfaced robotic toys within early childhood (EC) settings to develop children's inquiry literacy. Arguments about the appropriate role of AI in EC education have received much attention when examining the potential of the integration of technology into children's play and…
Descriptors: Artificial Intelligence, Robotics, Toys, Play
Wu, Ting; Albion, Peter – Educational Technology & Society, 2019
Facing calls for greater emphasis on STEM education in primary school classrooms, teachers may be anxious because of limited exposure to STEM in their own education. The Australian Curriculum: Technologies is new and many teachers are not familiar with its content. Hence both in-service and pre-service teachers (PSTs) require preparation. This…
Descriptors: Preservice Teachers, STEM Education, Elementary School Science, Foreign Countries
Keane, Therese; Chalmers, Christina; Boden, Marie; Williams, Monica – Technology, Pedagogy and Education, 2019
This research is part of a larger three-year study investigating the impact of humanoid robots on students' learning and engagement. In this case study, Aboriginal and non-Aboriginal students worked with a humanoid robot to develop, in parallel, both their programming skills and their understanding of the traditional Narungga language and culture.…
Descriptors: Programming Languages, Indigenous Populations, Learner Engagement, Robotics