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Ga-Young Kelly Suh; Siavash Ahrar – Biomedical Engineering Education, 2024
Many authentic BME projects require system integration. This year, before the start of the open-ended Capstone projects, three connected modules were used as an initiative to practice systems integration and thus promote readiness. To this aim, a Do-It-Yourself spectrophotometer/colorimeter was used as the interconnecting theme. In the first two…
Descriptors: Capstone Experiences, Readiness, Learning Modules, Outcomes of Education
Yijia Hao; Yushi Liu; Bo Liu; George Amarantidis; Rami Ghannam – IEEE Transactions on Education, 2025
Contribution: The integration of artificial intelligence (AI) in engineering higher education is becoming increasingly important nowadays. This article contributes to the Scholarship of Integration by providing a comprehensive review of current research on AI integration in engineering higher education and presenting a pilot AI introductory module…
Descriptors: Foreign Countries, Undergraduate Students, Engineering Education, Artificial Intelligence
Tamrongkunanan, Tanapon; Tanitteerapan, Tanes – International Journal of Instruction, 2020
The purpose of this study is to design a set of learning modules for developing the knowledge and skills of 34 students. The set includes 3 modules: Module 1: Monitoring; Module 2: Circuit Design; and Module 3: Transformer Development. The Four-D model is employed, and the study results are divided into 2 parts: 1. an evaluation of the…
Descriptors: Foreign Countries, Learning Modules, Vocational Education, Student Needs
Ibrahim Aydin; Vahide Bulut – Journal of Educational Technology and Online Learning, 2024
The purpose of this study is to provide students with a 21st century training that can be easily applied to industrial automation training, both online and in person, and that goes beyond traditional learning methods. It involves creating and programming a training package that is compatible with the Ministry of National Education (MEB)…
Descriptors: Active Learning, Student Projects, Industrial Education, Manufacturing Industry
Getuno, Daniel M.; Kiboss, Joel K.; Changeiywo, Johnson M.; Ogola, Leo B. – Journal of Education and Practice, 2015
Research has shown that students exhibit negative attitudes towards Electronics especially when they are taught using the conventional method. This is in addition to poor instructional methods that do not promote individualization of instruction or make learning interesting. The purpose of this study was to design an e-learning module in…
Descriptors: Learning Modules, Student Attitudes, Electronics, Electronic Learning
Anand, S.; Farswan, R. S.; Fernandes, B. G. – IEEE Transactions on Education, 2012
Experimentation is important for learning and research in the field of power electronics and drives. However, a great deal of equipment is required to study the various topologies, controllers, and functionalities. Thus, the cost of establishing good laboratories and research centers is high. To address this problem, the authors have developed a…
Descriptors: Electronics, Learning Modules, Man Machine Systems, Computer System Design
Thomas, Jeff – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2011
This study addresses preservice teachers' perceptions toward online experiences, specifically, their perceptions about utilizing an online science methods curriculum versus a traditional methods curriculum. Thirty-eight senior level preservice teachers at a midwestern U.S. university completed surveys about their experiences during their methods…
Descriptors: Preservice Teacher Education, Preservice Teachers, Methods Courses, Curriculum Implementation
Chief of Naval Education and Training Support, Pensacola, FL. – 1977
This document contains student progress checks designed for use with individualized modules 1-14 in the military-developed course on basic electricity and electronics. The course is one of a number of military-developed curriculum packages selected for adaptation to vocational instructional and curriculum development in a civilian setting. One…
Descriptors: Electricity, Electronics, Individualized Instruction, Learning Modules
Chief of Naval Education and Training Support, Pensacola, FL. – 1977
This individualized learning module on induction is one in a series of modules for a course in basic electricity and electronics. The course is one of a number of military-developed curriculum packages selected for adaptation to vocational instructional and curriculum development in a civilian setting. Four lessons are included in the module: (1)…
Descriptors: Electricity, Electronics, Individualized Instruction, Learning Activities
Chief of Naval Education and Training Support, Pensacola, FL. – 1977
This individualized learning module on capacitance is one in a series of modules for a course in basic electricity and electronics. The course is one of a number of military-developed curriculum packages selected for adaptation to vocational instructional and curriculum development in a civilian setting. Seven lessons are included in the module:…
Descriptors: Electricity, Electronics, Individualized Instruction, Learning Activities
Chief of Naval Education and Training Support, Pensacola, FL. – 1977
This individualized learning module on multivibrators is one in a series of modules for a course in basic electricity and electronics. The course is one of a number of military-developed curriculum packages selected for adaptation to vocational instructional and curriculum development in a civilian setting. Three lessons are included in the…
Descriptors: Electricity, Electronics, Individualized Instruction, Learning Activities
Chief of Naval Education and Training Support, Pensacola, FL. – 1980
This individualized learning module on intermediate oscillators is one in a series of modules for a course in basic electricity and electronics. The course is one of a number of military-developed curriculum packages selected for adaptation to vocational instructional and curriculum development in a civilian setting. Five lessons are included in…
Descriptors: Electricity, Electronics, Individualized Instruction, Learning Activities
Chief of Naval Education and Training Support, Pensacola, FL. – 1977
This individualized learning module on voltage is one in a series of modules for a course in basic electricity and electronics. The course is one of a number of military-developed curriculum packages selected for adaptation to vocational instructional and curriculum development in a civilian setting. Six lessons are included in the module: (1)…
Descriptors: Electricity, Electronics, Individualized Instruction, Learning Activities
Chief of Naval Education and Training Support, Pensacola, FL. – 1977
This set of individualized learning modules on transistor theory is one in a series of modules for a course in basic electricity and electronics. The course is one of a number of military-developed curriculum packages selected for adaptation to vocational instructional and curriculum development in a civilian setting. Two modules are included in…
Descriptors: Electricity, Electronics, Individualized Instruction, Learning Activities
Chief of Naval Education and Training Support, Pensacola, FL. – 1977
This individualized learning module on resistance is one in a series of modules for a course in basic electricity and electronics. The course is one of a number of military-developed curriculum packages solicted for adaptation to vocational instructional and curriculum development in a civilian setting. Four lessons are included in the module: (1)…
Descriptors: Electric Circuits, Electricity, Electronics, Individualized Instruction