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Uslu, Nilüfer Atman; Yavuz, Gulay Öztüre; Usluel, Yasemin Koçak – Interactive Learning Environments, 2023
This study, which systematically examines educational robotics and robots (ERR), has two purposes. (1) Classifying the research on the ERR to identify research trends and gaps, (2) Summarizing the experimental findings related to ERR and to interpret them according to the claims in the literature. A mixed method combining systematic mapping and…
Descriptors: Literature Reviews, Educational Technology, Robotics, Educational Theories
Jiahong Su; Yuchun Zhong; Xinyu Chen – Interactive Learning Environments, 2024
Technology education has become increasingly important during the last few decades. Previous studies, however, have paid insufficient attention to technology education for young children aged 3-8 years, compared to research in other age groups. This study presented a comprehensive overview of technology education in early childhood education…
Descriptors: Early Childhood Education, Young Children, Literature Reviews, Technology Education
Grajewski, Damian; Hamrol, Adam – Interactive Learning Environments, 2023
The article presents the concept and first results of tests of a Virtual Reality system dedicated for interactive education of manual assembly procedure. The presented solution is based on the use of a Delta robot. The main task of the robot is to simulate the shape of virtual objects as an alternative to haptic devices. The manipulator with…
Descriptors: Computer Simulation, Robotics, Educational Technology, Job Training
Gila Kurtz; Dan Kohen-Vacs – Interactive Learning Environments, 2024
Humanoid robotics is an emerging field striving to deploy technological devices capable of resembling and mimicking the human form. Primarily, the capability of human-like robots to interact with people has proved to be contributory in areas such as education and caretaking, but less so in adult training. In this study, we outline the design and…
Descriptors: Robotics, Technology Uses in Education, Teamwork, Training
Nirit Yuviler-Gavish; Omer Muati; Bar Hodya Gabbay – Interactive Learning Environments, 2024
The fourth industrial revolution and the rise of collaborative robots (cobots) in industrial assembly lines are changing the traditional role of human operators in assembly tasks from following a sequence of operations to working together with a cobot and being able to intervene at different stages of the assembly process. Hence, it is important…
Descriptors: Cognitive Processes, Cooperation, Robotics, Manufacturing
Leroy, Anaïs; Romero, Margarida; Cassone, Laura – Interactive Learning Environments, 2023
Idea generation in interactive learning environments requires the consideration of the interactivity and materiality aspects of creativity. In educational robotics, idea generation is mediated through a technological object in a process allowing us to observe the three main components of divergent thinking: fluency, flexibility, and originality.…
Descriptors: Interaction, Creativity, Robotics, Creative Thinking
Jiahong Su; Weipeng Yang – Interactive Learning Environments, 2024
The issue of Artificial Intelligence (AI) literacy is gaining popularity in the field of education. Most research on AI literacy has focused on primary, secondary, and higher education, and there has been limited examination of AI literacy programs in early childhood education. This study aimed to evaluate the impact of an eight-week AI literacy…
Descriptors: Foreign Countries, Artificial Intelligence, Technological Literacy, Early Childhood Education
Yanghee Kim; Jaejin Hwang; Seongmi Lim; Moon-Heum Cho; Sungchul Lee – Interactive Learning Environments, 2024
This research explored if a social robot would play a role in facilitating the development of friendship between young children while they engage in playful learning. Grounded in child-robot interaction and child development literature, we instantiated four sessions of triadic interaction activities among two children and a robot, where the robot…
Descriptors: Kindergarten, Young Children, After School Programs, Robotics
Zehui Zhan; Yao Tong; Xixin Lan; Baichang Zhong – Interactive Learning Environments, 2024
In recent years, Game-Based Learning (GBL) has been widely adopted in various educational settings. This paper aims to review empirical studies that adopt GBL in the field of AI education and explore its future research perspectives. After a systematic keyword search in the online database and a snowballing approach, a total of 125 empirical…
Descriptors: Game Based Learning, Robotics, Teaching Methods, Artificial Intelligence
Merino-Armero, José Miguel; González-Calero, José Antonio; Cózar-Gutiérrez, Ramón – Interactive Learning Environments, 2023
In modern society technology is widely used and, with the digitization of many services, this is an upward trend. Therefore, computational thinking (CT) is an increasingly important concept; an aspect that is being reflected on educational policies and the extracurricular offer of different countries. This study aims to look at the efficacy of…
Descriptors: Foreign Countries, Extracurricular Activities, Robotics, Elementary School Students
Karademir Coskun, Tugra – Interactive Learning Environments, 2022
In this research, robot training was conducted with teacher candidates in the department of special education, and the effectiveness of robot training was analyzed at the end of the training program. The design of the study is phenomenology. The study has been carried out with 44 teacher candidates from special education, selected by a purposeful…
Descriptors: Robotics, Training, Preservice Teachers, Models
Pusey, Megan; Wong, Kok Wai; Rappa, Natasha Anne – Interactive Learning Environments, 2022
This scoping review summarises the literature on resilience interventions that use interactive technology. Resilience refers to a person's mental ability to adaptively deal with challenging situations and is a key skill for dealing with challenges in life. Types of interactive technology used in resilience interventions included serious video…
Descriptors: Resilience (Psychology), Intervention, Interaction, Technology Uses in Education
Çakiroglu, Ünal; Kiliç, Servet – Interactive Learning Environments, 2023
Recent years have witnessed an increasing emphasis on integrating computational thinking into school curriculums. This study deals with suggesting a course model including data collection tools for evaluating teachers' pedagogical content knowledge in teaching computational thinking via teaching robot programming. Taking the advantages of virtual…
Descriptors: Teachers, Pedagogical Content Knowledge, Computation, Thinking Skills
George Kalmpourtzis; Margarida Romero – Interactive Learning Environments, 2024
Taking into account the profound impact of technology on modern education, especially during the COVID-19 pandemic, increasing academic interest has focused towards the design and application of such tools on different learning contexts. A specific area of Human-Computer Interaction, called affordance theory, focuses on the perception, design and…
Descriptors: Robotics, Artificial Intelligence, Computer Software, Teaching Methods
Noawanit Songkram; Supattraporn Upapong; Heng-Yu Ku; Narongpon Aulpaijidkul; Sarun Chattunyakit; Nutthakorn Songkram – Interactive Learning Environments, 2024
This research proposes the integration of robotic education and scenario-based learning (SBL) paradigm for teaching computational thinking (CT) to enhance the computational abilities of primary school students, based on digital innovation and a teaching assistant robot acceptance model. The sample group consisted of 532 primary school teachers and…
Descriptors: Foreign Countries, Elementary School Students, Elementary School Teachers, Grade 1