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Theodosios Sapounidis; Sokratis Tselegkaridis; Dimitrios Stamovlasis – Journal of Research on Technology in Education, 2024
Educational Robotics (ER) and Science, Technology, Engineering, Mathematics (STEM) have entered schools and are parts of formal and informal education. Consequently, a wide range of relevant activities and interventions, from kindergarten to high school, are carried out emphasizing their potential benefits, in relation to traditional curriculum,…
Descriptors: Robotics, STEM Education, Research Reports, Databases
Ma, Lili – Journal of STEM Education: Innovations and Research, 2021
This paper summarizes our experience of teaching undergraduate robotic courses in the past ten years. The objective is to introduce students to the fundamental knowledge in robotics. Lecture topics covered subjects in both Autonomous Mobile Robots and Robotic Manipulator. In the lab sessions, students work on physical robots to acquire basic…
Descriptors: Teaching Methods, Robotics, Engineering Education, Computer Science Education
Ng, Davy Tsz Kit; Lee, Min; Tan, Roy Jun Yi; Hu, Xiao; Downie, J. Stephen; Chu, Samuel Kai Wah – Education and Information Technologies, 2023
In recent years, with the popularity of AI technologies in our everyday life, researchers have begun to discuss an emerging term "AI literacy". However, there is a lack of review to understand how AI teaching and learning (AITL) research looks like over the past two decades to provide the research basis for AI literacy education. To…
Descriptors: Artificial Intelligence, Technology Uses in Education, Technological Literacy, Literacy Education
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
Bülbül, Mustafa Sahin – Journal of Science Education for Students with Disabilities, 2017
In this century, technological and educational needs increase drastically. Out of local language, educators need to teach robotic language and use necessary technologies to design robots like with the Arduino set. Users may develop their own robots with this set. It also improves design and implementation skills. However, it is not a suitable…
Descriptors: Robotics, Curriculum Design, Student Centered Learning, Self Efficacy
Baek, Youngkyun; Wang, Sasha; Yang, Dazhi; Ching, Yu-Hui; Swanson, Steve; Chittoori, Bhaskar – European Journal of STEM Education, 2019
This study, a sub-study of a National Science Foundation (NSF) funded research project, applies a modified strategy of the U[superscript 2]MC for an eight-week afterschool robotics curriculum to promote upper elementary students' computational thinking in the second grade. Twenty-one students in second grade participated in a Life on Mars project…
Descriptors: Grade 2, Robotics, Elementary School Students, Elementary School Science
Larke, Laura R. – British Journal of Educational Technology, 2019
The addition of computing to England's National Curriculum was welcomed as a much-needed modernization of the country's digital skills curriculum, replacing a poorly regarded ICT program of study with an industry-supported scheme of computer science, robotics and computational thinking. This paper will demonstrate how teachers have acted as…
Descriptors: Foreign Countries, Curriculum Design, Elementary School Students, Technological Literacy
Chang, Yu-Liang; Wu, Huan-Hung – EURASIA Journal of Mathematics, Science & Technology Education, 2015
The primary objective of this study was to determine how experience in learning to teach scientific inquiry using a practical approach affected teacher's attitudes, evaluations of use of inquiry and their actual design of inquiry based instruction. The methodology included the use an approach incorporating inquiry methodology combined with a…
Descriptors: Vocational High Schools, Secondary School Teachers, Science Teachers, Secondary School Science
Touretzky, David S. – Computer Science Education, 2013
Modern robots, like today's smartphones, are complex devices with intricate software systems. Introductory robot programming courses must evolve to reflect this reality, by teaching students to make use of the sophisticated tools their robots provide rather than reimplementing basic algorithms. This paper focuses on teaching with Tekkotsu, an open…
Descriptors: Robotics, Computer Science Education, Programming, Science Curriculum
Hwang, Kao-Shing; Hsiao, Wen-Hsu; Shing, Gaung-Ting; Chen, Kim-Joan – IEEE Transactions on Education, 2011
For the past several years, a team in the Department of Electrical Engineering (EE), National Chung Cheng University, Taiwan, has been establishing a pedagogical approach to embody embedded systems in the context of robotics. To alleviate the burden on students in the robotics curriculum in their junior and senior years, a training platform on…
Descriptors: Laboratory Manuals, Instructional Materials, Programming, Engineering
Alorda, B.; Suenaga, K.; Pons, P. – Computers & Education, 2011
This paper reports on the design, implementation and assessment of a new approach course structure based on the combination of three cooperative methodologies. The main goal is to reduce the percentage of non-passed students focusing the learning process on students by offering different alternatives and motivational activities based on working in…
Descriptors: Student Projects, Learning Strategies, Foreign Countries, Robotics
Simonson, Michael, Ed. – Association for Educational Communications and Technology, 2016
For the thirty-ninth time, the Research and Theory Division of the Association for Educational Communications and Technology (AECT) is sponsoring the publication of these Proceedings. Papers published in this volume were presented at the annual AECT Convention in Las Vegas, Nevada. The Proceedings of AECT's Convention are published in two volumes.…
Descriptors: Annual Reports, Conference Papers, Conferences (Gatherings), Educational Technology
Maker, C. June – 1988
A framework for curriculum design and a set of guidelines for curriculum development in gifted education are presented. The major dimensions guiding curriculum development for gifted students are: content, process, product, and learning environment. Curriculum content should be developed in such a way that it becomes more abstract, complex,…
Descriptors: Course Content, Curriculum Design, Curriculum Development, Economics Education