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Cyert, Richard M. – Issues in Science and Technology, 1985
Proposes that full automation is the best current option for the United States' manufacturing industries. Advocates increased use of electronics, robotics, and computers in the establishment of unmanned factories. Implications of this movement are examined in terms of labor, management, and the structure of the economy. (ML)
Descriptors: Automation, Computers, Electronics, Labor Economics
Bainter, Jack J. – Technological Horizons in Education, 1986
A boom in industrial robotics has led numerous vocational institutions to launch extensive training programs in this specialty. ITT Educational Services offers two curriculum programs to train future manufacturing engineers. The firm's national director describes this model curriculum for meeting the needs of today's workforce. (JN)
Descriptors: Computer Oriented Programs, Electronics, Engineering, Engineering Education

Ebel, Karl-H. – International Labour Review, 1985
The flexible manufacturing system (FMS), a new way of organizing the production process by means of numerical control machines, robots, and computerized workstations, is described. The author examines some of the implications of FMS and the challenges it poses. (Author/CT)
Descriptors: Computers, Labor Force, Manufacturing, Metal Working
Instructor, 1984
Using robots in the classroom can motivate students to learn basic skills. Suggestions are offered for adding excitement to the class with multidisciplinary activities, games, and a song. (DF)
Descriptors: Basic Skills, Elementary Education, Futures (of Society), Learning Activities
Tunnicliffe, Sue Dale; Reiss, Michael J. – 1999
This study examines what children learn about animals. The mental models that children reveal through their talk when they are faced with several different types of representations are reviewed. These representations are provided by robotic models in a museum, preserved animals in a museum, and preserved animals borrowed from a museum and…
Descriptors: Animals, Concept Formation, Elementary Education, Foreign Countries

Braun, Charlotte – School Arts, 1974
Discusses a scrap sculpture project involving five sixth grade classes in making robots. (GB)
Descriptors: Art Activities, Art Education, Art Expression, Art Materials
Classroom Computer Learning, 1983
Offers such teaching activities as a one-line program contest, field trips, examining job openings in newspapers, and a writing activity speculating what would happen if robots did not follow Isaac Asimov's "Three Laws of Robotics." Includes "Logo Goes to High School" by E. Paul Goldenberg, discussing problem-solving tasks…
Descriptors: Computer Programs, Computer Science Education, High Schools, Learning Activities

Tomek, Ivan – Computers and Education, 1982
Describes "Josef," a robot programing language similar to the LOGO turtle language, which has been designed as an instructional system through which the algorithmic problem-solving skills required in computer programing can be developed and tested in a controlled learning environment. Four figures and a reference list are included. (JL)
Descriptors: Algorithms, Computer Assisted Instruction, Computer Science Education, Higher Education

Tahta, Dick – For the Learning of Mathematics, 1996
Reviews M.B. DeBevoise's "Conversations on Mind, Matter, and Mathematics," (a book of translated conversations between Jean-Pierre Changeux and Alain Connes), which explores the question of whether a machine could reproduce the activity of the human brain. Explains how mathematics might be able to mediate between mind and matter. (DDR)
Descriptors: Biology, Computer Science, Cybernetics, Epistemology

Turbak, Franklyn; Berg, Robbie – Journal of Science Education and Technology, 2002
Suggests that it is important to introduce liberal arts students to the essence of engineering. Describes Robotic Design Studio, a course in which students learn how to design, assemble, and program robots made out of LEGO parts, sensors, motors, and small embedded computers. Represents an alternative vision of how robot design can be used to…
Descriptors: Constructivism (Learning), Design, Engineering Education, Higher Education

Strimaitis, Janet R. – Journal of Chemical Education, 1990
Discussed are applications of robotics in the chemistry laboratory. Highlighted are issues of precision, accuracy, and system integration. Emphasized are the potential benefits of the use of robots to automate laboratory procedures. (CW)
Descriptors: Automation, Chemistry, College Science, Higher Education
Dillon, Richard W. – Computing Teacher, 1993
Describes a four-part curriculum that can serve as a model for incorporating artificial intelligence (AI) into the high school computer curriculum. The model includes examining questions fundamental to AI, creating and designing an expert system, language processing, and creating programs that integrate machine vision with robotics and…
Descriptors: Artificial Intelligence, Computer Science Education, Curriculum Design, Curriculum Development
Berry, Julia; And Others – 1983
A framework for educational computer usage in grades K-12 is outlined. For each grade level, objectives are shown for the following knowledge areas: computer-related terminology and use; history and development of computers; the use of the computer as a tool; communicating instructions to the computer; social implications; and robotics. Suggested…
Descriptors: Computer Literacy, Computers, Elementary Secondary Education, History
Tilmann, Martha J. – 1984
Artificial intelligence, or the study of ideas that enable computers to be intelligent, is discussed in terms of what it is, what it has done, what it can do, and how it may affect the teaching of tomorrow. An extensive overview of artificial intelligence examines its goals and applications and types of artificial intelligence including (1) expert…
Descriptors: Artificial Intelligence, Clinical Diagnosis, Cognitive Processes, Computer Assisted Instruction
Reed, Dean; Harden, Thomas K. – 1986
Robots are mechanical devices that can be programmed to perform some task of manipulation or locomotion under automatic control. This paper discusses: (1) early developments of the robotics industry in the United States; (2) the present structure of the industry; (3) noneconomic factors related to the use of robots; (4) labor considerations…
Descriptors: Capital, Economic Factors, Financial Support, Industry