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Zhongcheng Lei; Hong Zhou; Wenshan Hu; Guo-Ping Liu – IEEE Transactions on Learning Technologies, 2024
Online laboratories have been widely used in education, research, and industrial applications. For online laboratories, various architectures have been constructed to provide good user experience and powerful capabilities for online experimentation, in which the controller is a crucial part to connect the server with a controlled test rig.…
Descriptors: Online Courses, Laboratories, Distance Education, Computers
Biofabrication of Neural Organoids: An Experiential Learning Approach for Instructional Laboratories
Caroline Cvetkovic; Sarah Lindley; Holly Golecki; Robert Krencik – Biomedical Engineering Education, 2024
Biomedical engineering (BME) is a multidisciplinary, constantly advancing field; as such, undergraduate programs in BME must continually adapt. Elective courses provide opportunities for students to select topic areas relevant to their interests or future careers. Specifically, laboratory courses allow experiential learning in specialized topics…
Descriptors: Experiential Learning, Laboratories, Biomedicine, Engineering Education
White, Douglas W. – Physics Teacher, 2022
Laboratory astrophysics and astrochemistry are emerging fields highlighting the importance of laboratory simulations and experiments to benefit remote observations. In particular, ice mixtures found in the outer solar system may offer insight into the early evolution of organic molecules. H[subscript 2]O-ice mixtures containing other species such…
Descriptors: Astronomy, Physics, Chemistry, Laboratories
Celdran, Alberto Huertas; Clemente, Felix J. Garcia; Saenz, Jacobo; de la Torre, Luis; Salzmann, Christophe; Gillet, Denis – IEEE Transactions on Learning Technologies, 2020
A smart campus provides students who are geographically scattered with online tools to get access to learning resources and laboratories. Although these remote laboratories have the potential and capabilities to implement different learning experiments, most of them are configured in a static fashion, being able to serve only one experiment for a…
Descriptors: Educational Technology, Technology Uses in Education, Virtual Classrooms, Laboratories
Love, Tyler S.; Roy, Ken R.; Marino, Matthew T. – Technology and Engineering Teacher, 2020
A strength of technology and engineering (T&E) education programs is that they provide a unique context for students with varying abilities to apply their knowledge and skills in nontraditional ways. These courses help prepare students with valuable skills needed for college and career readiness. Makerspaces, fab labs, and STEM labs often…
Descriptors: STEM Education, Laboratories, Teaching Methods, Laboratory Experiments
Liang, Dong; Chen, Guanbo; Tian, Hailin; Lu, Qi – Advances in Engineering Education, 2020
This article describes how the Sichuan University - Pittsburgh Institute has embraced new methods and new technologies to ensure high-quality laboratory teaching during the COVID-19 pandemic. Taking Mechanical Measurements 1 course as an example, this paper introduces two lab projects that were successfully transferred into online experiments…
Descriptors: Foreign Countries, Educational Technology, Technology Uses in Education, COVID-19
Kalúz, Martin; García-Zubía, Javier; Fikar, Miroslav; Cirka, Luboš – IEEE Transactions on Learning Technologies, 2015
In this paper, we propose a novel approach in hardware and software architecture design for implementation of remote laboratories for automatic control. In our contribution, we show the solution with flexible connectivity at back-end, providing features of multipurpose usage with different types of experimental devices, and fully configurable…
Descriptors: Computer Uses in Education, Laboratories, Computer System Design, Computer Software
Abdul-Razzaq, Wathiq; Golubovic, Leonardo – Physics Education, 2013
We have developed an exciting non-traditional experiment for our introductory physics laboratories to help students to understand the principle of conservation of angular momentum. We used electric toy cars moving along a long rotating rod. As the cars move towards the centre of the rod, the angular velocity of this system increases.…
Descriptors: Physics, Laboratories, Motion, Laboratory Experiments
Phares, Alain J.; Durnin, John H. – Technology, Instruction, Cognition and Learning, 2016
Dimensional Analysis (DA) is shown to play a pivotal role in the teaching of Science, Technology, Engineering and Mathematics (STEM). This article summarizes the basic rules and corollaries of DA and addresses (1) the importance of using DA with mathematical functions; (2) how to use DA in a science/engineering laboratory based discovery approach;…
Descriptors: STEM Education, Laboratories, Discovery Learning, Teaching Methods
Heil, Caiti S. S.; Manzano-Winkler, Brenda; Hunter, Mika J.; Noor, Juliet K. F.; Noor, Mohamed A. F. – American Biology Teacher, 2013
We present a laboratory exercise that leverages student interest in genetics to observe and understand evolution by natural selection. Students begin with white-eyed fruit fly populations, to which they introduce a single advantageous variant (one male with red eyes). The superior health and vision associated with having the red-eye-color allele…
Descriptors: Genetics, Evolution, Student Interests, Laboratories
Kozyulin, M. V.; Silagadze, Z. K. – European Journal of Physics, 2011
Gravitational light deflection, predicted by general relativity, is a fascinating phenomenon with numerous important applications in astronomy, astrophysics and cosmology. At first sight, there is no analogous effect in electrodynamics because Maxwell's equations are linear and, therefore, a photon does not interact with the electromagnetic field…
Descriptors: Laboratories, Laboratory Experiments, Light, Physics
Achumba, I. E.; Azzi, D.; Dunn, V. L.; Chukwudebe, G. A. – IEEE Transactions on Learning Technologies, 2013
Laboratory work is critical in undergraduate engineering courses. It is used to integrate theory and practice. This demands that laboratory activities are synchronized with lectures to maximize their derivable learning outcomes, which are measurable through assessment. The typical high costs of the traditional engineering laboratory, which often…
Descriptors: Laboratories, Electronics, Engineering Education, Undergraduate Study
Abbas, K.; Leseman, Z. C. – IEEE Transactions on Education, 2012
A laboratory course on the theory, fabrication, and characterization of microelectromechanical systems (MEMS) devices for a multidisciplinary audience of graduate students at the University of New Mexico, Albuquerque, has been developed. Hands-on experience in the cleanroom has attracted graduate students from across the university's engineering…
Descriptors: Graduate Students, Manufacturing, Data Analysis, Laboratory Experiments
Choi, Sanghun; Saeedifard, M. – IEEE Transactions on Education, 2012
This paper describes a new educational power electronics laboratory that was developed primarily to reinforce experimentally the fundamental concepts presented in a power electronics course. The developed laboratory combines theoretical design, simulation studies, digital control, fabrication, and verification of power-electronic circuits based on…
Descriptors: Electronics, Power Technology, Laboratories, Engineering Education
Janssens, Peter; Waldhuber, Megan – Bioscene: Journal of College Biology Teaching, 2012
This laboratory exercise investigates the phenomenon of cytoplasmic streaming in the fresh water alga "Nitella". Students use the fungal toxin cytochalasin D, an inhibitor of actin polymerization, to investigate the mechanism of streaming. Students use simple statistical methods to analyze their data. Typical student data are provided. (Contains 3…
Descriptors: Biology, Science Education, Laboratories, Data Analysis