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Peer reviewedWatanabe, Susumu – International Labour Review, 1986
This article argues that the labor-displacement effect of microelectronic machinery, especially numerically controlled machine tools and robots, has been exaggerated and that people tend to confuse the impact of intensified international competition with that of the new technology. (Author/CT)
Descriptors: Automation, Machinery Industry, Numerical Control, Productivity
DiCesare, Frank; And Others – Perspectives in Computing, 1985
A general laboratory course featuring microcomputer interfacing for data acquisition, process control and automation, and robotics was developed at Rensselaer Polytechnic Institute and is now available to all junior engineering students. The development and features of the course are described. (JN)
Descriptors: Automation, Course Descriptions, Curriculum Development, Engineering Education
Fey, Carol – Training, 1986
Looks at some of the realities of life with robots: robots aren't replacing entire shifts of workers; a robot is just a tool; regular plant personnel maintain robots; and job category and seniority dictate who is trained to maintain robots. (CT)
Descriptors: Dislocated Workers, Equipment Maintenance, Robotics, Seniority
Industrial Education, 1986
Flexible manufacturing systems (FMS) are described as a marriage of all of the latest technologies--robotics, numerical control, CAD/CAM (computer-assisted design/computer-assisted manufacturing), etc.--into a cost-efficient, optimized production process yielding the greatest flexibility in making various parts. A typical curriculum to teach FMS…
Descriptors: Computers, Cost Effectiveness, Curriculum Development, Manufacturing
Peer reviewedHamm, Jerry L.; And Others – Catalyst for Change, 1984
Whimsically adopting the first-person viewpoint of a robot, this article describes a four-phase program integrating robotics into the school curriculum in Coffeyville, Kansas: (1) Awareness, (2) Simple Programming, (3) Advanced Programming, and (4) Application of Robotics in Society. (TE)
Descriptors: Computer Oriented Programs, Educational Innovation, Educational Technology, Elementary Secondary Education
Peer reviewedBamford, Paul J.; Vandenberg, Victoria – Tech Directions, 1995
"VICA Skills USA Championships" (Bamford) describes the competitions and events of the 1995 National Vocational Industrial Clubs of America Leadership and Skills Conference. "Student Robotics Contest" (Vandenberg) describes an annual competition that invites students to demonstrate their creativity and knowledge of robotics.…
Descriptors: Competition, Postsecondary Education, Problem Solving, Robotics
Peer reviewedSkena, K. George; Deal, Walter F. – Technology Teacher, 1995
Provides insight into the exciting future of robotics. Includes a student quiz and possible student outcomes. (JOW)
Descriptors: Futures (of Society), Learning Activities, Manufacturing Industry, Robotics
Kimmel, Stacey – Database, 1996
Provides an overview of robots that retrieve World Wide Web documents and index data and then store it in a database. Nine robot-generated databases are described, including record content, services, search features, and sample search results; and sidebars discuss the controversy about Web robots and other resource discovery tools. (LRW)
Descriptors: Comparative Analysis, Databases, Indexing, Information Retrieval
Blank, Douglas; Kumar, Deepak; Meeden, Lisa; Yanco, Holly – Journal on Educational Resources in Computing, 2004
In this article we describe a programming framework called Pyro, which provides a set of abstractions that allows students to write platform-independent robot programs. This project is unique because of its focus on the pedagogical implications of teaching mobile robotics via a top-down approach. We describe the background of the project, its…
Descriptors: Learning Modules, Programming, Robotics, Models
Peer reviewedGeissler, Jason; Knott, Patrick J.; Vazquez, Matthew R.; Wright, John R., Jr. – Technology Teacher, 2004
Robots make a wonderful context for teaching students about many concepts important to technological literacy. They can provide an authentic context and produce high levels of motivation. According to Standards for Technological Literacy: Content for the Study of Technology (STL) (ITEA, 2000, 2002), there are six core concepts that should be…
Descriptors: Robotics, Computer Simulation, Computer Software, Technological Literacy
Baruch, John; Machell, James; Norris, Kath – Primary Science Review, 2005
"Where does the Sun go at night?" or "Why don't the Australians fall off?" are typical of the innocent questions that children ask. A new "Earth and Beyond" primary science learning programme from the University of Bradford is piloting some exciting ways to engage children with these questions and providing…
Descriptors: Astronomy, Science Education, Science Instruction, Children
Lucey, Linda Polhemus; Jennings, Sybillyn; Olson, Peter; Rubenfeld, Lester; Holmes, Aliya E. – Teaching Children Mathematics, 2007
This article describes how Lego robotics, interactive multimedia, and a simple manipulative--string--can be offered to students through coordinated activities to help them build a conceptual foundation for measuring rate. (Contains 5 figures and 3 tables.)
Descriptors: Measurement, Mathematics Instruction, Multimedia Materials, Robotics
Williams, Douglas C.; Ma, Yuxin; Prejean, Louise; Ford, Mary Jane; Lai, Guolin – Journal of Research on Technology in Education, 2008
Despite the growing popularity of robotics competitions such as FIRST LEGO League, robotics activities are typically not found in regular K-12 classrooms. We speculate that, among other reasons, limited adoption is due to the lack of empirical evidence demonstrating the effect of robotics activities on curricular goals. This paper presents a mixed…
Descriptors: Secondary School Science, Middle School Students, Summer Programs, Program Effectiveness
Ma, Yuxin; Lai, Guolin; Williams, Doug; Prejean, Louise; Ford, Mary Jane – Journal of Technology and Teacher Education, 2008
Researchers argue that teachers' beliefs are the final barrier that prevents technology integration. To affect change in teacher candidates' beliefs of technology integration, we created a pedagogical laboratory as well as a field experience program that operates within the pedagogical laboratory. This article presents a qualitative study of…
Descriptors: Student Journals, Interviews, Robotics, Beliefs
Post, Paul E.; And Others – Educational Technology, 1988
Provides an introduction to robotic technology, and describes current robot models. Three ways of using robots in education are discussed--as exemplars of other processes, as objects of instruction, and as prosthetic aids--and selection criteria are outlined. (17 references) (CLB)
Descriptors: Computer Uses in Education, Electromechanical Technology, Evaluation Criteria, Physical Disabilities

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