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Hannemann, Jim; Rice, Thomas R. – Vocational Education Journal, 1991
At the Oakland Technical Center, which provides vocational programs for nine Michigan high schools, a one-semester course in Foundations of Technology Systems uses a computer-simulated manufacturing environment to teach applied math, science, language arts, communication skills, problem solving, and teamwork in the context of technology education.…
Descriptors: Declining Enrollment, High Schools, Robotics, Technological Advancement
Monastersky, Richard – Science News, 1991
Described is a project in which an unmanned aircraft, called Perseus, is used to sample and investigate the atmosphere of the earth. The history of the project, costs, and planned investigations are discussed. (CW)
Descriptors: Aerospace Technology, Earth Science, Program Descriptions, Research Projects
Peer reviewedMoore, Virginia S. – Technology Teacher, 1999
Describes an interdisciplinary unit on robotics that includes teaching parts of a circle, constructing and programming robots, and incorporating language arts. (JOW)
Descriptors: Computers, Elementary Education, Geometry, Language Arts
Liljedahl, Peter, Ed.; Nicol, Cynthia, Ed.; Oesterie, Susan, Ed.; Allan, Darien, Ed. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
The theme of the 38th meeting of the International Group for the Psychology of Mathematics Education (PME 38) and the 36th meeting of the North American Chapter of the Psychology of Mathematics Education (PME-NA 36) was "Mathematics Education at the Edge." Academically, the theme provides opportunities to highlight and examine…
Descriptors: Foreign Countries, Mathematics Education, Educational Psychology, Educational Research
Schultz, Charles P. – 1986
This paper presents the results of a project in robotics education that included: (1) designing a mobile robot--the Personal Instructional Robot-1 (PIR-1); (2) providing a guide to the purchase and assembly of necessary parts; (3) providing a way to interface the robot with common classroom microcomputers; and (4) providing a language by which the…
Descriptors: Computer Science Education, Computer Software, Diagrams, Higher Education
Peer reviewedMinty, Gordon – Journal of Industrial Teacher Education, 1987
The study attempted to determine needs for training robotic technicians in Michigan. The survey had three parts: (1) needed technical specialities, (2) current problems with robot maintenance and repair, and (3) number of robots needed to keep a full-time technician occupied. (CH)
Descriptors: Educational Needs, Labor Needs, Machine Repairers, Postsecondary Education
Peer reviewedWolansky, William D. – Journal of Epsilon Pi Tau, 1986
Discusses factors contributing to the increased urgency for retraining, associated problems of the dislocated workers, barriers to retraining, the inherent potential of America's work force, and new mechanisms and incentives to promote retraining. (CT)
Descriptors: Dislocated Workers, Human Resources, Individual Characteristics, Job Skills
Watt, Molly – Popular Computing, 1984
Describes two robots that can be communicated with in Logo--Topo and Tasman Turtle--and briefly presents merchandise information on Topo II and Turtle Tot. Educational issues and possibilities related to robot use in school classrooms are discussed, and a school visit to introduce students to robots is recounted. (MBR)
Descriptors: Elementary Education, Elementary School Students, Input Output Devices, Merchandise Information
Peer reviewedMandell, Alan – Journal of Computers in Mathematics and Science Teaching, 1985
Presents the listing for a TRS-80 Model III program which illustrates the first law of robotics (all robots must be programed so that none of their actions will be harmful to man). Also discusses the rational for and development of the program. (JN)
Descriptors: Artificial Intelligence, Computer Simulation, Computer Software, Higher Education
Peer reviewedAlbus, James S. – Futurist, 1984
Spectacular advances in microcomputers are forging new technological frontiers in robotics. For example, many factories will be totally automated. Economic implications of the new technology of robotics for the future are examined. (RM)
Descriptors: Automation, Economic Factors, Economics, Employment Problems
Slesnick, Twila – Classroom Computer Learning, 1984
Describes how three different levels of students interacted with three different commercially available robots. Considers the educational value of these devices and provides a list of seven robots (indicating their source, computer compatibility, language, current cost, capabilities, and options). (JN)
Descriptors: Computer Oriented Programs, Computer Science, Elementary Secondary Education, Instructional Innovation
Long, Sandra M.; Long, Winston H. – World Future Society Bulletin, 1984
The implications for society of greater use of robots in home and factory are still unclear. Students must be taught how to understand and utilize these intelligent machines. (Author/RM)
Descriptors: Educational Needs, Elementary Secondary Education, Family Environment, Futures (of Society)
Brand, Judith, Ed. – Exploratorium, 2002
This issue of Exploratorium Magazine focuses on the topic robotics. It explains how to make a vibrating robotic bug and features articles on robots. Contents include: (1) "Where Robot Mice and Robot Men Run Round in Robot Towns" (Ray Bradbury); (2) "Robots at Work" (Jake Widman); (3) "Make a Vibrating Robotic Bug" (Modesto Tamez); (4) "The Robot…
Descriptors: Elementary Secondary Education, Robotics, Science Activities, Science Instruction
Stubbs, Harry C. – Horn Book Magazine, 1982
Reviews five books that deal with astronomy, space travel, computers, and robots. (AEA)
Descriptors: Adolescent Literature, Artificial Intelligence, Astronomy, Books
Andreyewsky, Alexander – Meta, 1981
Examines electronic aids to translation both as ways to automate it and as an approach to solve problems resulting from shortage of qualified translators. Describes the limitations of robotic MT (Machine Translation) systems, viewing MAT (Machine-Aided Translation) as the only practical solution and the best vehicle for further automation. (MES)
Descriptors: Artificial Intelligence, Interaction, Interpreters, Machine Translation

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