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Akgunduz, Devrim; Topalsan, Aysegul Kinik; Turk, Zeynep – Journal of Turkish Science Education, 2022
This study aimed to determine the perceptions of academics from different faculties and experts from non-governmental organizations, and Research & Development (R&D) centers of the concepts of STEM, innovation, entrepreneurship, industry 4.0, robotics, coding, maker, artificial intelligence, and their reflections on the daily life. In…
Descriptors: College Faculty, Teacher Attitudes, STEM Education, Entrepreneurship
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Farrell, Lesley; Newman, Trent; Corbel, Christopher – Discourse: Studies in the Cultural Politics of Education, 2021
The Fourth Industrial Revolution is widely acknowledged as a digital technological revolution building on the convergence of Robotics, the Internet of Things, and the Internet of Services. What is less often acknowledged is that it is also a revolution in the social practice of work. Literacy is a core social technology of work and it is changing…
Descriptors: Workplace Literacy, World History, Industry, Job Skills
Carnevale, Anthony P.; Ridley, Neil; Cheah, Ban; Strohl, Jeff; Campbell, Kathryn Peltier – Georgetown University Center on Education and the Workforce, 2019
The manufacturing workforce has been shaped by decades of industry transformation. Modern manufacturing requires workers with a diverse set of skills to perform functions such as research and development (R&D), product and production design, marketing and sales, and customer support. While workers with a high school diploma or less dominated…
Descriptors: Manufacturing Industry, Labor Force, Economic Opportunities, Trend Analysis
Congress of the U.S., Washington, DC. Office of Technology Assessment. – 1982
This report contains a summary of the results of an exploratory workshop to discuss the future of industrial robotics and its likely impact on public policy. Background information is presented, and workshop goals are delineated. Under the general area of robot technology, these topics are covered: the roots of robotics technology, a definition of…
Descriptors: Automation, Industry, Manufacturing Industry, Productivity
Dunne, Maurice J. – 1982
Robots are finally receiving wide-spread attention as a means to realize the goal of automating factories. In the 1960's robot use was limited by unfavorable acquisition and operating costs and the affordable control technology limiting applications to relatively simple jobs. During the 1970's productivity of manufacturing organizations declined…
Descriptors: Automation, Curriculum Development, Industrial Education, Industry
Warnat, Winifred I. – 1983
Robotics (robot usage) is discussed from a historical perspective with regard to its role in employment and education. Part 1 examines the transition from an industrial to an information society and speculates what the future might hold, particularly in terms of employment. Part 2 gives a historical overview of the robotics industry and discusses…
Descriptors: Artificial Intelligence, Automation, Cybernetics, Elementary Secondary Education
Carnegie-Mellon Univ., Pittsburgh, PA. – 1981
Based on a 15-week student project, this paper surveys the impact of current and expected future robotics technology on the workplace and workers. The monograph is organized into seven chapters. The first chapter introduces the issues of robotics and of social displacement as a result of anticipated growth in the use of industrial robots. In the…
Descriptors: Adults, Coal, Educational Needs, Employment Projections
Fraser, Jeannette L.; And Others – 1984
Directed to individuals responsible for program planning in vocational education at the national and state levels, this review and synthesis of technological developments in robotics and office automation identifies the potential demand for skills in these technologies in the next 3 to 5 years. The procedures for the study are described in the…
Descriptors: Automation, Employment Projections, Futures (of Society), Industry
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Ayres, Robert; Miller, Steve – Journal of Epsilon Pi Tau, 1982
Explores the history of robotics and its effects upon the manufacturing industry. Topics include robots' capabilities and limitations, the factory of the future, displacement of the workforce, and implications for management and labor. (SK)
Descriptors: Computer Oriented Programs, Futures (of Society), Industry, Job Layoff
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
International Technology Education Association, Reston, VA. – 1990
This volume of Resources in Technology contains the following eight instructional modules: (1) "Processing Technology"; (2) "Water--A Magic Resource"; (3) "Hazardous Waste Disposal--The NIMBY (Not in My Backyard) Syndrome"; (4) "Processing Fibers and Fabrics"; (5) "Robotics--An Emerging…
Descriptors: Building Trades, Construction (Process), Finishing, Hazardous Materials
Drewes, Donald W. – 1982
This report addresses productivity and technology from the perspective of state vocational education agencies. Chapter 1 explores the meaning and measurement of productivity and the benefits of productivity improvement--profits, a weapon against inflation, success in international trade, increased standard of living, improved quality of life, and…
Descriptors: Agency Role, Human Resources, Industry, Labor Force Development
Texas Advisory Council for Technical - Vocational Education, Austin. – 1983
These proceedings contain 11 papers that focus on how education must change what and how it teaches to keep up with the technological revolution. The presentations address the need for vocational education to produce students with skills in electronics and data communications (including computer-to-computer transmission); office systems and…
Descriptors: Aerospace Industry, Biomedicine, Communications, Computer Oriented Programs
Smalley, Lee, Ed. – 1981
This monograph summarizes 21 presentations from a symposium whose theme was technological literacy--an understanding of the impact of technological descisions. These presentations are divided into five categories. The six presentations in the section, The Context of Technology Education, focus on technological literacy for living in today's…
Descriptors: Comprehension, Computers, Conferences, Demonstration Programs
Pelletier, Alfred W. – 1983
Vocational education must train students in a way that capitalizes on their potential while preparing them with the skills needed for the jobs being created through advances in science and technology. The impact of technological change has been to challenge education to ease the transition of displaced workers and to accommodate entries.…
Descriptors: Adult Vocational Education, Dislocated Workers, Education Work Relationship, Educational Improvement
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