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Showing 1 to 15 of 31 results Save | Export
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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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Davis Krumins; Sandra Schumann; Veiko Vunder; Rauno Põlluäär; Kristjan Laht; Renno Raudmäe; Alvo Aabloo; Karl Kruusamäe – IEEE Transactions on Learning Technologies, 2024
Teaching robotics with the robot operating system (ROS) is valuable for instating good programming practices but requires significant setup steps from the learner. Providing a ready-made ROS learning environment over the web can make robotics more accessible; however, most of the previous remote labs have abstracted the authentic ROS developer…
Descriptors: Teaching Methods, Robotics, Programming, Computer Science Education
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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
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Tang, Anne L. L.; Tung, Vincent Wing Sun; Cheng, Tiffany O. – Education and Information Technologies, 2020
This conceptual paper explores the pedagogical implications of educational robotics (ER) in management education. Premised on Vygotsky's social constructivism, this paper conceptualizes ER as a stimulus for serving dual roles, as a pedagogical means and as a learning outcome, by presenting a number of justifications and viable approaches. This…
Descriptors: Robotics, Management Development, Teaching Methods, Constructivism (Learning)
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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
Collado, Ericka – Learning Languages, 2017
Robots are machines that resemble different forms, usually those of humans or animals, that can perform preprogrammed or autonomous tasks (Robot, n.d.). With the emergence of STEM programs, there has been a rise in the use of robots in educational settings. STEM programs are those where students study science, technology, engineering and…
Descriptors: Robotics, STEM Education, Art Education, Early Childhood Education
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Gil, Arturo; Peidró, Adrián; Reinoso, Óscar; Marín, José María – IEEE Transactions on Education, 2017
This paper presents a tool, LABEL, oriented to the teaching of parallel robotics. The application, organized as a set of tools developed using Easy Java Simulations, enables the study of the kinematics of parallel robotics. A set of classical parallel structures was implemented such that LABEL can solve the inverse and direct kinematic problem of…
Descriptors: Virtual Classrooms, Laboratory Experiments, Laboratory Equipment, Robotics
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Elbeck, Matt – e-Journal of Business Education and Scholarship of Teaching, 2018
This paper explores the likely influence of the rapidly evolving market disruptors of cognitive computing (to mimic the human brain) and robotics to the marketing educator. A review of the literature suggests inroads in the K-12 area, though sparse when higher education is addressed. This is followed with insights on whether students grasp the…
Descriptors: Marketing, Business Administration Education, Employment Opportunities, Artificial Intelligence
Selwyn, Neil – John Wiley & Sons, Inc, 2019
Developments in AI, robotics and big data are changing the nature of education. Yet the implications of these technologies for the teaching profession are uncertain. While most educators remain convinced of the need for human teachers, outside the profession there is growing anticipation of a technological reinvention of the ways in which teaching…
Descriptors: Educational Technology, Technology Uses in Education, Robotics, Artificial Intelligence
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Fagan, Bryan J.; Payne, Bryson R. – Proceedings of the Interdisciplinary STEM Teaching and Learning Conference, 2017
The US Bureau of Labor Statistics predicts over 8 million job openings in IT and computing, including 1 million cybersecurity postings, over the current five-year period. This paper presents lessons learned in preparing middle-school students in rural Georgia for future careers in computer science/ IT by teaching computer programming in the free,…
Descriptors: Programming Languages, Teaching Methods, Computer Science Education, Open Source Technology
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McCleery, Joseph P. – Journal of Autism and Developmental Disorders, 2015
The purpose of this letter to the editor is to comment on several review papers recently published in the current "Journal of Autism and Developmental Disorders, Special Issue on Technology: Software, Robotics, and Translational Science." These reviews address a variety of aspects relating to technology-aided intervention and instruction…
Descriptors: Autism, Pervasive Developmental Disorders, Assistive Technology, Intervention
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Johnson, W. Lewis; Lester, James C. – International Journal of Artificial Intelligence in Education, 2016
Johnson et al. ("International Journal of Artificial Intelligence in Education," 11, 47-78, 2000) introduced and surveyed a new paradigm for interactive learning environments: animated pedagogical agents. The article argued for combining animated interface agent technologies with intelligent learning environments, yielding intelligent…
Descriptors: Teaching Methods, Intelligent Tutoring Systems, Outcomes of Education, Computer Assisted Instruction
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Mitnik, Ruben; Recabarren, Matias; Nussbaum, Miguel; Soto, Alvaro – Computers & Education, 2009
Graphing is a key skill in the study of Physics. Drawing and interpreting graphs play a key role in the understanding of science, while the lack of these has proved to be a handicap and a limiting factor in the learning of scientific concepts. It has been observed that despite the amount of previous graph-working experience, students of all ages…
Descriptors: Graphs, Physics, Scientific Concepts, Robotics
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Sullivan, Florence R. – Journal of Research in Science Teaching, 2008
This paper reports the results of a study of the relationship of robotics activity to the use of science literacy skills and the development of systems understanding in middle school students. Twenty-six 11-12-year-olds (22 males and 4 females) attending an intensive robotics course offered at a summer camp for academically advanced students…
Descriptors: Advanced Students, Science Process Skills, Scientific Literacy, Robotics
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Galeriu, Calin; Edwards, Scott; Esper, Geoffrey – Physics Teacher, 2014
We cannot hope for a new generation of scientists and engineers if we don't let our young students take ownership of their scientific and engineering explorations, if we don't let them enjoy the hands-on cycle of design and production, and if we don't let them implant their creativity into a technologically friendly environment.…
Descriptors: Science Instruction, Scientific Principles, Motion, Hands on Science
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