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Rafique, Muhammad Usman; Mohammed, Aquil Mirza; Li, Shuai; Khan, Ameer Tamoor; Kadry, Seifedine – Advances in Engineering Education, 2019
Consumer electronics are creating huge job markets for graduates with the programming back-ground, and more and more computer science departments are launching embedded software subjects to meet this demand. However, most students majoring computer science do not have the background in electronics, or even circuits. Due to this reason, how to…
Descriptors: Case Studies, Open Source Technology, Electronics, Engineering Education
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Garduño-Aparicio, Mariano; Rodríguez-Reséndiz, Juvenal; Macias-Bobadilla, Gonzalo; Thenozhi, Suresh – IEEE Transactions on Education, 2018
This paper presents a robot prototype for an undergraduate laboratory program designed to fulfill the criteria laid out by ABET. The main objective of the program is for students to learn some basic concepts of embedded systems and robotics, and apply them in practice. For that purpose, various practical laboratory exercises were prepared to teach…
Descriptors: Interdisciplinary Approach, Robotics, Engineering Education, Computer Software
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Gorlewicz, Jenna L.; Kratchman, Louis B.; Webster, Robert J., III – Advances in Engineering Education, 2014
The haptic paddle is a force-feedback joystick used at several universities in teaching System Dynamics, a core mechanical engineering undergraduate course where students learn to model dynamic systems in several domains. A second goal of the haptic paddle is to increase the accessibility of robotics and haptics by providing a low-cost device for…
Descriptors: College Instruction, Laboratory Equipment, Undergraduate Students, Engineering Education
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Saleem, A.; Tutunji, T.; Al-Sharif, L. – European Journal of Engineering Education, 2011
Technology advancement and human needs have led to integration among many engineering disciplines. Mechatronics engineering is an integrated discipline that focuses on the design and analysis of complete engineering systems. These systems include mechanical, electrical, computer and control subsystems. In this paper, the importance of teaching…
Descriptors: Engineering Education, Engineering, Foreign Countries, Undergraduate Students
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Sampson, Demetrios G., Ed.; Ifenthaler, Dirk, Ed.; Isaías, Pedro, Ed.; Mascia, Maria Lidia, Ed. – International Association for Development of the Information Society, 2019
These proceedings contain the papers of the 16th International Conference on Cognition and Exploratory Learning in the Digital Age (CELDA 2019), held during November 7-9, 2019, which has been organized by the International Association for Development of the Information Society (IADIS) and co-organised by University Degli Studi di Cagliari, Italy.…
Descriptors: Teaching Methods, Cooperative Learning, Engineering Education, Critical Thinking
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
Patrick, Dale R. – 1988
This curriculum for a 1-semester or 1-year course in electronics is designed to take students from basic through advanced electronic systems. It covers several electronic areas, such as digital electronics, communication electronics, industrial process control, instrumentation, programmable controllers, and robotics. The guide contains…
Descriptors: Competence, Competency Based Education, Course Content, Electrical Systems
Alberta Dept. of Education, Edmonton. Curriculum Standards Branch. – 1997
With this Career and Technologies Studies (CTS) curriculum guide, secondary students in Alberta can do the following: develop skills that can be applied in their daily lives; refine career-planning skills; develop technology-related skills in electro-technologies; enhance employability skills, especially in electro-technologies industries; and…
Descriptors: Career Development, Competence, Competency Based Education, Course Content
Louisiana State Dept. of Education, Baton Rouge. Div. of Vocational Education. – 1984
This curriculum guide is designed to assist industrial arts teachers, counselors, and administrators in improving instruction in the areas of electricity and basic electronics. Included in the first part of the guide are a course flow chart, a course description, a discussion of target grade levels and prerequisites, course goals and objectives,…
Descriptors: Behavioral Objectives, Classroom Techniques, Computers, Electric Circuits
Dependents Schools (DOD), Washington, DC. – 1984
This guide is designed for use in helping junior and senior high school students explore the field of electricity and electronics as a potential career area. Included in the manual are the following materials: definitions, a key to the organization and numbering code and symbols used in the lists of objectives, lists of general and program…
Descriptors: Behavioral Objectives, Career Exploration, Classroom Techniques, Communications