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Taneri, Grace Ufuk – Center for Studies in Higher Education, 2020
We are living in an era of artificial intelligence (AI). There is wide discussion about and experimentation with the impact of AI on education/higher education. In this paper, we give a discussion of how AI is evolving, explore the ways AI is changing education/higher education, give a concise account of the skills universities need to teach their…
Descriptors: Artificial Intelligence, Higher Education, Electronic Learning, Blended Learning
Leonard, Jacqueline; Djonko-Moore, Cara; Francis, Krista R.; Carey, Aylin S.; Mitchell, Monica B.; Goffney, Imani D. – Canadian Journal of Science, Mathematics and Technology Education, 2023
This paper examines the context for developing computational thinking (CT), computational participation (CP), and spatial reasoning among predominantly Black elementary students in grades 5 and 6, who attended a public school in the urban fringe of a large city in the Eastern United States. A case study is presented as the method to examine two…
Descriptors: Elementary School Students, Grade 5, Grade 6, Blacks
Anthi Karatrantou; Maria-Evangelia Kalamatianou; Christos Panagiotakopoulos – International Society for Technology, Education, and Science, 2023
Educational Robotics in Greece is being used increasingly, while it is hesitantly applied in Special Education as it requires a properly educational trained staff. The present study is a case study aiming to discuss the effects of the utilization of educational robotics in a Special Education School classroom and specifically on students with…
Descriptors: Robotics, Autism Spectrum Disorders, Students with Disabilities, Special Education
Aristawati, Feri Ardiana; Budiyanto, Cucuk; Yuana, Rosihan Ari – Journal of Turkish Science Education, 2018
Computational Thinking (CT) skill, as an essential 21st -century skill, is an important problem-solving and survival abilities in the era of disruption. Universal principles generating a pattern of abstraction develop step-by-step troubleshooting instructions in solving similar problems, perceiving similarities/differences between the patterns,…
Descriptors: Educational Technology, Robotics, Programming, Thinking Skills
Laurie, Maggi; Manches, Andrew; Fletcher-Watson, Sue – Psychology of Education Review, 2018
The development of new technologies for autistic children is outpacing the creation of research evidence for their efficacy. As a result commercially available technologies that are used in practice often have received limited quality research evaluations. If research is to inform the real-world use of technology for user benefit, it must examine…
Descriptors: Educational Technology, Special Education, Students with Disabilities, Autism
Baker, Lewis J.; Hymel, Alicia M.; Levin, Daniel T. – Discourse Processes: A multidisciplinary journal, 2018
Several studies have explored the determinants of anthropomorphism: the tendency to endow nonhuman agents with human features, goals, and intentions. Less is known of the cognitive benefits that may arise from anthropomorphism. Following research in narrative comprehension, we explored how the attribution of human-like features and intentional…
Descriptors: Human Body, Memory, Intention, Behavior
Meacham, Sohyun; Atwood-Blaine, Dana – Science and Children, 2018
Young children are full citizens. They have full rights to use their "hundred languages," hands, and thoughts to contribute to the field of science. The founder of the Reggio Emilia approach, Loris Malaguzzi, emphasizes in his famous poem that every child has a hundred ways of discovering the world and a hundred worlds to invent. Today's…
Descriptors: Robotics, Reggio Emilia Approach, Science Instruction, Early Childhood Education
Neece, Jesse Eligha – ProQuest LLC, 2018
Some of the most dynamic and demanding careers are in the areas of science, technology, engineering, and mathematics (STEM). However, when analyzing gender, there are great disparities among gender in STEM. Statistics indicate females are vastly underrepresented and males are employed double the rate of females. Leading STEM companies are…
Descriptors: STEM Education, Gender Differences, Disproportionate Representation, Competition
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
Ertugrul-Akyol, Buket – International Journal of Educational Methodology, 2019
Computational thinking is a way of thinking that covers 21st century skills and includes new generation concepts such as robotics, coding, informatics and information construction. Computational thinking has reached an important point especially in the field of science in line with the rapid developments in technology. Robotics applications,…
Descriptors: Computation, Thinking Skills, 21st Century Skills, Test Construction
Yuan, Jiangmei; Kim, ChanMin; Hill, Rogers; Kim, Dongho – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2019
This qualitative study examined how preservice elementary teachers integrated robotics into science, technology, engineering, and mathematics (STEM) lesson designs and why they designed their lessons in a particular way. Participants' lesson designs were collected, and semistructured interviews were conducted. The authors analyzed lesson designs…
Descriptors: Educational Technology, Technology Uses in Education, Robotics, STEM Education
Sisman, Burak; Gunay, Devrim; Kucuk, Sevda – Interactive Learning Environments, 2019
Humanoid robots equipped with social skills have come to be used increasingly in the field of education across various subfields such as science education, special education, and foreign language education. In order to enhance the use of humanoid robots in educational settings, and to comprehensively evaluate its impact on the transformation of…
Descriptors: Robotics, Attitude Measures, Secondary School Students, Student Attitudes
Catlin, Dave; Blamires, Mike – Technology, Knowledge and Learning, 2019
In 1969, Seymour Papert invented the first educational robot called a Turtle. It was an addition to the computer language Logo, which he'd designed in 1965 specifically for educating children. Papert did not simply invent some technology, he offered a revolutionary way of educating children. He gave teachers practical tools to realise…
Descriptors: Robotics, Special Needs Students, Teaching Methods, Educational Benefits
Muñoz-Repiso, Ana García-Valcárcel; Caballero-González, Yen-Air – Comunicar: Media Education Research Journal, 2019
The development of programming skills is currently promoting from an early school age, trying to get children to take an active and creative role in the use of technologies. The objective of this article is to verify the repercussion of educational robotics activities on kindergarten students in the acquisition of computational thinking and…
Descriptors: Computation, Thinking Skills, Robotics, Early Childhood Education
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

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