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Payne, James E.; Murphy, Richard M.; Payne, Linda L. – Community College Journal of Research and Practice, 2017
Orangeburg-Calhoun Technical College (OCtech) has been awarded two National Science Foundation Advanced Technological Education (NSF-ATE) grants since 2011 that have the development of module-based hybrid courses in Engineering Technology and Mechatronics as objectives. In this article, the advantages and challenges associated with module-based…
Descriptors: Blended Learning, Educational Objectives, Learning Modules, Technology Education
M? Quyên Lê, Katrina; Butterfield, Anthony; Kelly, Kerry; Gaillardon, Pierre-Emmanuel; Tingey, Kyle; Becnel, Thomas – Chemical Engineering Education, 2018
Using low-cost electronic components and building blocks, we have developed an effective teaching module where students design and test light-scattering, air-quality sensors to introduce them to chemical and environmental engineering research. This module has been successful in engaging the public, developing citizen scientists, and bridging gaps…
Descriptors: Pollution, Electronic Equipment, Teaching Methods, Learning Modules
Dalvi, Tejaswini; Wendell, Kristen – Science and Children, 2015
A team of science teacher educators working in collaboration with local elementary schools explored opportunities for science and engineering "learning by doing" in the particular context of urban elementary school communities. In this article, the authors present design task that helps students identify and find solutions to a…
Descriptors: Teacher Educators, Science Teachers, Teacher Collaboration, Elementary Education
Dahle, Reena; Rasel, Rafiul – IEEE Transactions on Education, 2016
This paper presents a series of course modules developed as a high-impact and cost-effective learning tool for modeling and simulating the microfabrication process and design of microelectromechanical systems (MEMS) devices using three-dimensional (3-D) printing. Microfabrication technology is an established fabrication technique for small and…
Descriptors: Educational Technology, Learning Modules, Electromechanical Technology, Printing
Kyle, Aaron M.; Jangraw, David C.; Bouchard, Matthew B.; Downs, Matthew E. – IEEE Transactions on Education, 2016
This paper presents the development, implementation, and assessment of a project-based Bioinstrumentation course. All course lectures and hands-on laboratory activities are related to a central project theme: a cardiac pacemaker. The students create a benchtop cardiac pacemaker by applying instrumentation knowledge acquired in the course to each…
Descriptors: Active Learning, Student Projects, Engineering Education, Biotechnology
Pozzi, Rossella; Noè, Carlo; Rossi, Tommaso – European Journal of Engineering Education, 2015
According to the literature, in recent years, developing experiential learning has fulfilled the requirement of a deep understanding of lean philosophy by engineering students, demonstrating the advantages and disadvantages of some of the key principles of lean manufacturing. On the other hand, the literature evidences how some kinds of game-based…
Descriptors: Experiential Learning, Engineering Education, Manufacturing, Engineering Technology
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
Kafai, Yasmin B.; Lee, Eunkyoung; Searle, Kristin; Fields, Deborah; Kaplan, Eliot; Lui, Debora – ACM Transactions on Computing Education, 2014
In this article, we examine the use of electronic textiles (e-textiles) for introducing key computational concepts and practices while broadening perceptions about computing. The starting point of our work was the design and implementation of a curriculum module using the LilyPad Arduino in a pre-AP high school computer science class. To…
Descriptors: High School Students, Scientific Concepts, Educational Practices, Curriculum Development
Jalali, M.; Marti, J. J.; Kirchhoff, A. L.; Lawrenz, F.; Campbell, S. A. – IEEE Transactions on Education, 2012
A lithography lab course has been developed that is applicable to students from the middle-school level up to college students. It can also be inserted into electronics technology or similar courses in two- and four-year colleges, or used to demonstrate applications of polymers in chemistry classes. Some of these techniques would enable research…
Descriptors: Technology Education, Research Tools, Concept Teaching, Scientific Concepts
Ngai, Grace; Chan, Stephen C. F.; Leong, Hong Va; Ng, Vincent T. Y. – ACM Transactions on Computing Education, 2013
This article presents the design and development of i*CATch, a construction kit for physical and wearable computing that was designed to be scalable, plug-and-play, and to provide support for iterative and exploratory learning. It consists of a standardized construction interface that can be adapted for a wide range of soft textiles or electronic…
Descriptors: Computer System Design, Engineering Technology, Courseware, Computer Science Education
Awang, Tuan Salwani; Zakaria, Effandi – Turkish Online Journal of Educational Technology - TOJET, 2012
Engineering technology students can attain a meaningful mathematics learning if they are allowed to actively participate in hands-on activities. However, the current dissemination of knowledge in the classroom still focuses on teacher-centered paradigm of teaching. A study to explore lecturers' views regarding a newly developed integral calculus…
Descriptors: Educational Technology, Calculus, Mathematics Education, Lesson Plans
Liu, S.; Tang, J.; Deng, C.; Li, X.-F.; Gaudiot, J.-L. – IEEE Transactions on Education, 2011
Java Virtual Machine (JVM) education has become essential in training embedded software engineers as well as virtual machine researchers and practitioners. However, due to the lack of suitable instructional tools, it is difficult for students to obtain any kind of hands-on experience and to attain any deep understanding of JVM design. To address…
Descriptors: Educational Technology, Courseware, Computer System Design, Science Course Improvement Projects
Verma, Alok K.; Dickerson, Daniel; McKinney, Sue – Technology and Engineering Teacher, 2011
Old Dominion University and Norfolk State University, in collaboration with the marine industry and local school systems, is improving STEM preparation using innovative experiences for students and teachers in the nation's major shipbuilding and repair areas through MarineTech and SBRCD (Shipbuilding Repair and Maritime Career Day) projects. The…
Descriptors: Student Projects, Maintenance, Active Learning, Physical Sciences
Jain, Prashant K.; Gu, Yuxiang; Rizwan-uddin – Advances in Engineering Education, 2008
Internet extends the reach of existing laboratory and training infrastructure to beyond the walls of such facilities. Though nothing can replace the hands-on experience in a laboratory; a carefully developed web-based digital lab may be the next best thing. In some cases, there may be benefits associated with a "distance laboratory" that…
Descriptors: Engineering Technology, Internet, Virtual Classrooms, Science Laboratories
Goldstain, Ofir; Ben-Gal, Irad; Bukchin, Yossi – European Journal of Engineering Education, 2007
This work proposes an approach to remote learning of robotic cells based on internet and simulation tools. The proposed approach, which integrates remote-learning and tele-operation into a generic scheme, is designed to enable students and developers to set-up and manipulate a robotic cell remotely. Its implementation is based on a dedicated…
Descriptors: Learning Laboratories, Robotics, Computer Simulation, Web Sites
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