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Aoun, Joseph E. – MIT Press, 2018
Driverless cars are hitting the road, powered by artificial intelligence. Robots can climb stairs, open doors, win "Jeopardy," analyze stocks, work in factories, find parking spaces, advise oncologists. In the past, automation was considered a threat to low-skilled labor. Now, many high-skilled functions, including interpreting medical…
Descriptors: Robotics, Educational Technology, Technology Uses in Education, Employment Qualifications
Aliane, N. – IEEE Transactions on Education, 2010
This paper presents an interactive module for learning both the fundamental and practical issues of servo systems. This module, developed using Simulink in conjunction with the Matlab graphical user interface (Matlab-GUI) tool, is used to supplement conventional lectures in control engineering and robotics subjects. First, the paper introduces the…
Descriptors: Foreign Countries, Engineering Education, Learning Modules, Robotics

Tzafestas, Spyros – European Journal of Engineering Education, 1989
Presented is an overview of the status of robotics education with information about activities and curricula for several European institutions. Some thoughts concerning the structure of a separate robotics curriculum at the university level are included. (Author/YP)
Descriptors: College Science, Electromechanical Technology, Electronic Control, Electronics
Pittsburg State Univ., KS. Kansas Vocational Curriculum Dissemination Center. – 1984
This document is a teacher's guide for teaching a course on robot service and repair. The guide is organized in four units covering the following topics: introduction to robots, power supply, robot control systems, and service and repair. Each unit contains several lesson plans on the unit topic. Lesson plans consist of objectives, tools and…
Descriptors: Behavioral Objectives, Classroom Techniques, Course Content, Electronic Control