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Emine Turhal; Oktay Bektas – International Journal of Education in Mathematics, Science and Technology, 2025
This research will analyze the issues encountered by two science teachers implementing Arduino-based robotic coding projects. This research employed a case study design. This research has used a criterion sampling group. This study used semi-structured observation, interviews, and video observations as data collection tools. The teachers conducted…
Descriptors: Science Teachers, Teacher Attitudes, Science Instruction, Robotics
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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
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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
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Cielniak, G.; Bellotto, N.; Duckett, T. – IEEE Transactions on Education, 2013
This paper describes the integration of robotics education into an undergraduate Computer Science curriculum. The proposed approach delivers mobile robotics as well as covering the closely related field of Computer Vision and is directly linked to the research conducted at the authors' institution. The paper describes the most relevant details of…
Descriptors: Robotics, Computer Science Education, College Curriculum, Integrated Curriculum
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Riek, L. D. – IEEE Transactions on Education, 2013
This paper describes a newly designed upper-level undergraduate and graduate course, Autonomous Mobile Robots. The course employs active, cooperative, problem-based learning and is grounded in the fundamental computational problems in mobile robotics defined by Dudek and Jenkin. Students receive a broad survey of robotics through lectures, weekly…
Descriptors: Robotics, Active Learning, Cooperative Learning, Problem Based Learning
Skala, Helen – Collegiate Microcomputer, 1988
Outlines a course in artificial intelligence for liberal arts students that has no programing prerequisites. Topics and projects included in the course are described, including problem solving; natural language; expert systems; image understanding, or character recognition; and robotic systems. (28 references) (Author/LRW)
Descriptors: Artificial Intelligence, Character Recognition, Computer Science Education, Course Content