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Herrero-de Lucas, L. C.; Martinez-Rodrigo, Fernando; de Pablo, Santiago; Ramirez-Prieto, Dionisio; Rey-Boue, Alexis B. – IEEE Transactions on Education, 2022
Contribution: In the research presented in this article, a procedure for determining student workload has been designed, tested, and validated. This procedure also makes it possible to analyze how different teaching variables are affected by workload and to visualize the learning environment generated in the course. Background: When the…
Descriptors: Electronics, Teaching Methods, Engineering Education, Student Projects
Chaijum, Natawee; Hiranyachattada, Tiantada – European Journal of Science and Mathematics Education, 2020
Using integrated learning and project-based learning can make correlation of knowledge and skills in order to make students apply the knowledge to become a new knowledge for creating project to be prepared for Thailand 4.0 with the topic electrical measuring instrumentation project with the Internet of thing. The research process divided into 3…
Descriptors: Active Learning, Student Projects, Engineering Education, Internet
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
Roll, Ido; Butler, Deborah; Yee, Nikki; Welsh, Ashley; Perez, Sarah; Briseno, Adriana; Perkins, Katherine; Bonn, Doug – Instructional Science: An International Journal of the Learning Sciences, 2018
Guiding inquiry learning has been shown to increase knowledge gains. Yet, little is known about the effect of guidance on attitudes and behaviours, its interaction with student attributes, and transfer of impact once guidance is removed. We address these gaps in the context of an interactive Physics simulation on electric circuits…
Descriptors: Inquiry, Active Learning, Discovery Learning, Physics
Quesada, Jeronimo; Calvo, Isidro; Sancho, Javier; Sebastian, Rafael; Castro, Manuel – IEEE Transactions on Education, 2020
Contribution: A novel project-based learning (PBL) approach applicable to diverse design-oriented engineering courses. This article reports the application results during six academic years (2012/13 to 2017/18) for electronic instrumentation (EI) course for third-year Industrial Electronic and Automation Engineering majors. Background: Engineering…
Descriptors: Design, Engineering Education, Student Projects, Active Learning
Secules, Stephen; Lawson, Wesley – Advances in Engineering Education, 2019
This paper compares an innovative approach to teaching a required introductory C programming course to a traditional C programming course for electrical engineering (EE) students. The novel course utilizes hardware-based projects to motivate students to master language syntax and implement key programming concepts and best practices. In a mixed…
Descriptors: Programming, Introductory Courses, Required Courses, Engineering Education
Li, Li – European Journal of Engineering Education, 2015
A case study of project-based learning (PBL) implemented in Tianjin University of Technology and Education is presented. This multidiscipline project is innovated to meet the novel requirements of industry while keeping its traditional effectiveness in driving students to apply knowledge to practice and problem-solving. The implementation of PBL…
Descriptors: Foreign Countries, Active Learning, Student Projects, Case Studies
Basjaruddin, Noor Cholis; Rakhman, Edi – International Journal of Evaluation and Research in Education, 2016
Mechatronics is a multidisciplinary that includes a combination of mechanics, electronics, control systems, and computer science. The main objective of mechatronics learning is to establish a comprehensive mindset in the development of mechatronic systems. Project Based Learning (PBL) is an appropriate method for use in the learning process of…
Descriptors: Program Implementation, Active Learning, Student Projects, Mechanics (Physics)
Becker, James P.; Plumb, Carolyn; Revia, Richard A. – IEEE Transactions on Education, 2014
The use of project circuits (a photoplethysmograph circuit and a simple audio amplifier), introduced in a sophomore-level electric circuits course utilizing active learning and inquiry-based methods, is described. The development of the project circuits was initiated to promote enhanced engagement and deeper understanding of course content among…
Descriptors: Electronics, Student Projects, Active Learning, Inquiry
O'Connell, Robert M. – IEEE Transactions on Education, 2015
Team-based learning (TBL) is a form of student-centered active learning in which students independently study new conceptual material before it is treated in the classroom, and then subsequently spend considerable classroom time working in groups on increasingly challenging problems and applications based on that new material. TBL provides…
Descriptors: Teamwork, Teaching Methods, Engineering Education, Transfer of Training
Yelamarthi, Kumar; Drake, Eron – IEEE Transactions on Education, 2015
This paper describes a flipped and improved first-year digital circuits (DC) course that incorporates several active learning strategies. With the primary objective of increasing student interest and learning, an integrated instructional design framework is proposed to provide first-year engineering and technology students with practical knowledge…
Descriptors: Engineering Education, Active Learning, Teaching Methods, Undergraduate Students
González-Fernández, María Jesús; Sáiz-Manzanares, María Consuelo; Alaoui, Fatima E. M.; Aguilar, Fernando; Meneses, Jesús; Montero, Eduardo – Journal of Technology and Science Education, 2013
The learning and development of teamwork skill is only possible if its achievement is a self-building process of the student. In turn, the teachers must become guides in the process of a learning which is not limited only to the topic of their own course, but which must be imbedded with a good dose of this skill. Promotion of teamwork is not…
Descriptors: Self Management, Teamwork, Active Learning, Learning Strategies
Ribaric, Samo; Kordas, Marjan – Advances in Physiology Education, 2011
Here, we report on a new tool for teaching cardiovascular physiology and pathophysiology that promotes qualitative as well as quantitative thinking about time-dependent physiological phenomena. Quantification of steady and presteady-state (transient) cardiovascular phenomena is traditionally done by differential equations, but this is time…
Descriptors: Physiology, Electronics, Active Learning, Computer Simulation
Chasteen, Stephanie V.; Pollock, Steven J.; Pepper, Rachel E.; Perkins, Katherine K. – Physical Review Special Topics - Physics Education Research, 2012
Over the course of four years, we have researched and transformed a key course in the career of an undergraduate physics major--junior-level electricity and magnetism. With the aim of educating our majors based on a more complete understanding of the cognitive and conceptual challenges of upper-division courses, we used principles of active…
Descriptors: Electronics, College Science, Advanced Courses, Curriculum Development
Sabag, N.; Kosolapov, S. – American Journal of Engineering Education, 2012
This paper presents the outcomes of the preliminary survey in which the method of IFS was used to integrate motivating questions into the lecture presentations in order to increase the students' involvement. Instant Feedback System (IFS) enables the educators to improve their own teaching by getting instant and real-time feedback about how clear…
Descriptors: Foreign Countries, Engineering, Engineering Education, Feedback (Response)
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