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Arnold, Ross D.; Wade, Jon P. – Electronic Journal of e-Learning, 2017
The U.S. defense industry spends billions of dollars each year developing defense systems to keep the nation and allies secure. However, the failure rate of system development is notoriously high. Even when development efforts do succeed, they often do so with cost overruns and compromises in system performance. As a result, large amounts of money…
Descriptors: Robotics, Computer Simulation, Computer Software, Systems Approach
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Yoon, Ma-byong; Baek, Je-eun – International Journal of Mobile and Blended Learning, 2018
The purpose of this article was to develop an elementary school robot STEAM program and explore the possibility of field applications. To this end, the authors extracted the contents related to school achievement standards for 5th and 6th grade curricula around the topic of robot soccer, incorporating a relevant curriculum based on the extracted…
Descriptors: Foreign Countries, Elementary School Students, STEM Education, Art Education
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Tweed, Anne; Arndt, Laura – Learning Professional, 2017
In spring 2014, education leaders from across Micronesia came together on the island of Guam to learn about underwater robotics and Marine Advanced Technology Education (MATE), a program based at Monterey Peninsula College in Monterey, California. Participants listened intently as they learned about building and participating in competitions with…
Descriptors: Robotics, STEM Education, Teaching Methods, Competition
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Groome, Meghan; Rodríguez, Linda M. – Afterschool Matters, 2014
You have to stick with it. It takes time, patience, trial and error, failure, and persistence. It is almost never perfect or finished, but, with a good team, you can build something that works. These are the lessons youth learn when building a robot, as many do in the out-of-school time (OST) programs supported by the initiative described in this…
Descriptors: STEM Education, After School Programs, Robotics, Science Course Improvement Projects
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Habib, Maria A. – Journal of Extension, 2012
The current mission mandates of the National 4-H Headquarters are Citizenship, Healthy Living, and Science. Robotics programs are excellent in fulfilling the Science mandate. Robotics engages students in STEM (Science, Engineering, Technology, and Mathematics) fields by providing interactive, hands-on, minds-on, cross-disciplinary learning…
Descriptors: Robotics, Extension Education, STEM Education, Youth Programs
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Karp, T.; Gale, R.; Lowe, L. A.; Medina, V.; Beutlich, E. – IEEE Transactions on Education, 2010
This paper describes key success factors for the implementation and development of a LEGO robotics engineering outreach program for elementary school students in West Texas. The outreach program not only aims at getting young students excited about engineering but at the same time aims at improving retention rates among electrical and computer…
Descriptors: Elementary School Students, Toys, Robotics, Outreach Programs
Arnold, W. F.; Carpenter, C. J. – 1984
This report examines ways of providing technician training in the operating principles of robotic devices. The terms "robotics" and "robotic arms" are first defined. Some background information on the principal features of robotic arms is given, including their geometric arrangement, type of actuator used, control method, and…
Descriptors: Automation, Behavioral Objectives, Core Curriculum, Costs
DeBourcy, Harry C. – Technological Horizons in Education, 1989
A computer assisted technology training program is described. Technological literacy is defined. A course list for the program and a programing model are provided. (CW)
Descriptors: College Science, Computer Uses in Education, Electromechanical Technology, Higher Education
Ascension Parish School Board, Donaldsonville, LA. – 1984
To introduce students to the world of robotics and industrial automation, robotics was introduced to students enrolled in electronics classes in the industrial arts program at St. Amant High School (Louisiana). Three robots, three host microcomputers, and necessary software were purchased. The electronics instructor installed the three robots…
Descriptors: Computer Oriented Programs, Course Content, Curriculum Development, Cybernetics
Hull, Daniel M.; Lovett, James E. – 1985
This task analysis report for the Robotics/Automated Systems Technician (RAST) curriculum project first provides a RAST job description. It then discusses the task analysis, including the identification of tasks, the grouping of tasks according to major areas of specialty, and the comparison of the competencies to existing or new courses to…
Descriptors: Automation, Core Curriculum, Course Descriptions, Curriculum Development