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Keating, Jennifer – Liberal Education, 2019
As artificial intelligence (AI) continues to develop in its sophistication and integration into contemporary society, how well are educators preparing students to navigate this reality? Carnegie Mellon University (CMU) is harnessing the expertise of faculty members across campus to create innovative curricular offerings that expose students,…
Descriptors: Robotics, Artificial Intelligence, Teaching Methods, Universities
Cappelleri, D. J.; Vitoroulis, N. – IEEE Transactions on Education, 2013
This paper presents a series of novel project-based learning labs for an introductory robotics course that are developed into a semester-long Robotic Decathlon. The last three events of the Robotic Decathlon are used as three final one-week-long project tasks; these replace a previous course project that was a semester-long robotics competition.…
Descriptors: Robotics, Introductory Courses, Student Projects, Active Learning
Touretzky, David S. – Computer Science Education, 2013
Modern robots, like today's smartphones, are complex devices with intricate software systems. Introductory robot programming courses must evolve to reflect this reality, by teaching students to make use of the sophisticated tools their robots provide rather than reimplementing basic algorithms. This paper focuses on teaching with Tekkotsu, an open…
Descriptors: Robotics, Computer Science Education, Programming, Science Curriculum
Correll, N.; Wing, R.; Coleman, D. – IEEE Transactions on Education, 2013
This paper describes a one-year introductory robotics course sequence focusing on computational aspects of robotics for third- and fourth-year students. The key challenges this curriculum addresses are "scalability," i.e., how to teach a robotics class with a limited amount of hardware to a large audience, "student assessment,"…
Descriptors: Introductory Courses, Robotics, Course Descriptions, Simulation
Kim, Seung Han; Jeon, Jae Wook – IEEE Transactions on Education, 2009
The purpose of the course presented here is to introduce freshmen to embedded systems using LEGO Mindstorms, under an ANSI-C programming environment. The students build their own LEGO robots, make programs for them using ANSI-C, and operate them. By creating these LEGO robots, the students become more motivated, learning the basic concepts of…
Descriptors: Foreign Countries, Instructional Effectiveness, Learning Strategies, Teaching Methods
Shahinpoor, Mohsen; Singer, Neal – Technological Horizons in Education, 1985
An instructional robotics laboratory that is unique in the United States was created in 1984 at the University of New Mexico. Descriptions of the laboratory, course work offered, student projects, and other areas are provided. (JN)
Descriptors: Course Descriptions, Engineering, Engineering Education, Higher Education
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

Friedman, Madeleine – TechTrends, 1986
Describes a robotics literacy course offered for elementary age children at Broward Community College (Florida) and discusses the motivation for offering such a course, the course philosophy and objectives, and participant reactions. A sampling of robots and robotics devices and some of their teaching applications are included. (MBR)
Descriptors: Course Content, Course Descriptions, Course Objectives, Electronic Control
Goldman, Steven L. – Science, Technology and Society, 1985
Describes and outlines the general syllabus of a philosophy course entitled, "Minds and Robots." Lists the assigned readings and explains the issues addressed in the 14-week course. Essay questions that are used for the mid-term and final exams are also included. (ML)
Descriptors: Artificial Intelligence, Cognitive Development, Course Content, Course Descriptions
Cohen, Karen C.; Meyer, Carol D. – Technological Horizons in Education, 1984
Discusses the development of industrial robotics training materials, considering the need for such materials, preliminary curriculum design, the Piagetian approach followed, and the uses of computer assisted instruction. A list of robotics curriculum courses (with content and audience indicated) is included. (JN)
Descriptors: Computer Assisted Instruction, Computer Oriented Programs, Course Descriptions, Curriculum Development
Bers, Marina U.; Ponte, Iris; Juelich, Catherine; Viera, Alison; Schenker, Jonathan – Information Technology in Childhood Education Annual, 2002
This article presents a constructionist approach to introducing technology, in particular robotics, in the early childhood classroom. The authors demonstrate how this approach is well suited, since the four basic tenets of constructionism have a long-standing tradition in early childhood education: (a) learning by designing meaningful projects to…
Descriptors: Early Childhood Education, Robotics, Technology Integration, Constructivism (Learning)
Hull, Daniel M.; Lovett, James E. – 1985
This task analysis report for the Robotics/Automated Systems Technician (RAST) curriculum project first provides a RAST job description. It then discusses the task analysis, including the identification of tasks, the grouping of tasks according to major areas of specialty, and the comparison of the competencies to existing or new courses to…
Descriptors: Automation, Core Curriculum, Course Descriptions, Curriculum Development
Besancon, Francis E. – 1984
A curriculum was developed to provide the electromechanical skills necessary to operate and repair industrial robots to students at the secondary and adult vocational levels. To determine requirements for entry-level positions in the robotics industry, manufacturers and employers of industrial robots were contacted. No particular entry-level…
Descriptors: Adult Vocational Education, Behavioral Objectives, Computer Science, Course Descriptions