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Giuseppe Prete; Federica Chiappetta; Piefrancesco Riccardi; Rosanna Tucci; Antonio Bruzzese; Claudio Meringolo – International Society for Technology, Education, and Science, 2023
Recent research emphasizes the need for a more sustained interaction of schools with universities and research institutions. For example, informal after-school programs integrated into the school curriculum can provide opportunities for meaningful interaction with researchers in active learning settings. At the physics department of University of…
Descriptors: Foreign Countries, College School Cooperation, Active Learning, Physics
Oh, Michael; Lawson, Finley – School Science Review, 2020
This article proposes an alternative (or additional) place for the use of robotics within the secondary school curriculum. Robotics provides a unique opportunity to engage students in genuinely multidisciplinary learning that challenges their misperceptions about the nature of science/technology and engages them with 'big questions'. After…
Descriptors: Engineering Education, Robotics, STEM Education, Interdisciplinary Approach
Greca Dufranc, Ileana M.; García Terceño, Eva M.; Fridberg, Marie; Cronquist, Björn; Redfors, Andreas – European Journal of STEM Education, 2020
botSTEM is an ERASMUS+ project aiming to raise the utilisation of inquiry-based collaborative learning and robots-enhanced education. The project outputs are specifically aimed to provide in- and pre-service teachers in Childhood and Primary Education and children four-eight years old, with research-based materials and practices that use…
Descriptors: STEM Education, Robotics, Active Learning, Inquiry
El-Hamamsy, Laila; Chessel-Lazzarotto, Frédérique; Bruno, Barbara; Roy, Didier; Cahlikova, Tereza; Chevalier, Morgane; Parriaux, Gabriel; Pellet, Jean-Philippe; Lanarès, Jacques; Zufferey, Jessica Dehler; Mondada, Francesco – Education and Information Technologies, 2021
Integrating computer science (CS) into school curricula has become a worldwide preoccupation. Therefore, we present a CS and Robotics integration model and its validation through a large-scale pilot study in the administrative region of the Canton Vaud in Switzerland. Approximately 350 primary school teachers followed a mandatory CS continuing…
Descriptors: Computer Science Education, Robotics, Pilot Projects, Faculty Development
Wood, John – School Science Review, 2020
This article looks at how the nature of truth in science is not absolute and in accepting the idea that certain 'laws' are sufficiently true we can unlock the rigidity of discipline-based scientific thinking to make the possibility of tackling many of the grand challenges facing society a reality. The nature of Open Science is focused on the fact…
Descriptors: Ethics, Science Education, Scientific Research, Scientific Principles
Sarah A. Capello; M. Gyimah-Concepcion; B. Buckley-Hughes – American Journal of Distance Education, 2024
Advancements in educational technology have increased opportunity and access for students who wish to pursue doctoral education through a variety of delivery options and have resulted in increased enrollments in doctoral programs over the past decade. However, doctoral retention and graduation rates remain dismal. Online and asynchronous programs…
Descriptors: Robotics, Doctoral Students, Doctoral Programs, Delivery Systems
Ardito, Gerald; Czerkawski, Betül; Scollins, Lauren – TechTrends: Linking Research and Practice to Improve Learning, 2020
Problem-solving and critical thinking are considered important skills to be developed by students, and are supported by the development of Computational Thinking (CT) skills. This study investigated the collaborative development of CT skills in sixth grade students via a six week LEGO robotics program. This robotics program focused on the…
Descriptors: Problem Solving, Thinking Skills, Middle School Students, Robotics
Ronsivalle, G. B.; Boldi, A.; Gusella, V.; Inama, C.; Carta, S. – Technology, Knowledge and Learning, 2019
Nowadays, children and teenagers use technology products in an increasingly passive way. As simple consumers they cannot benefit from the opportunities of designing technology, which has a learning value. Educational Robotics (ER) programs are particularly effective in delivering contents of difficult disciplines: they can re-establish a balance…
Descriptors: Guidelines, Instructional Design, Robotics, Information Technology
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
Lagesen, Vivian Anette; Pettersen, Ivar; Berg, Line – European Journal of Engineering Education, 2022
This paper address how we may understand inclusion strategies designed to reduce the gender gap in higher education in engineering and ICT engineering in particular. Based on a case study of a long-term inclusion effort and statistics on recruitment and retainment, we argue that inclusion initiatives which address important inclusion needs and put…
Descriptors: Females, Engineering Education, Computer Science Education, Inclusion
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
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
Dawson, Hayley; Romero-Fresco, Pablo – Interpreter and Translator Trainer, 2021
Respeaking is an effective way to make live and pre-recorded television, as well as live events, accessible to a wide audience. Respeakers use speech-recognition software to repeat or paraphrase what is heard through a microphone in a robotic voice while enunciating punctuation and adding colours or labels to identify the speakers. Until now, most…
Descriptors: Translation, Robotics, Punctuation, Audio Equipment
Heinsch, Patrick; Handke, Jürgen – Journal on Excellence in College Teaching, 2020
Humanoid robots are gradually becoming part of everyday life as well as education. Virtual agents have demonstrated their benefits for years, and experts expect similar positive effects from the use of humanoid robots in education. Project H.E.A.R.T. (Humanoid Emotional Assistant Robots in Teaching), from Philipps-University Marburg, has developed…
Descriptors: Robotics, Teaching Methods, Higher Education, Universities