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Ismail, Ismahani; Zabidi, Muhammad Mun'im Ahmad; Paraman, Norlina; Mohd-Yusof, Khairiyah; Rahman, Nor Farahwahida Abdul – IEEE Transactions on Education, 2023
Contribution: This article describes efforts to improve the teaching and learning process for the digital system design course using active learning (AL) approaches in the classroom and a parallel hands-on project designed based on constructive alignment (CA). Background: The digital systems design course is an important part of Undergraduate…
Descriptors: Active Learning, Student Projects, Curriculum Implementation, Alignment (Education)
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Xolani Nelson Skosana; Khumbulani Mpofu; John Trimble; Etienne A. van Wyk – Interactive Learning Environments, 2023
Higher Education Institutions are introducing Virtual-Reality (VR) development courses and divisions focussing on the development of Virtual Environments which are in high demand. Students without a programming background are not familiar with the processes of developing Virtual Assembly Training Systems (VATS), consequently, they learn through…
Descriptors: Computer Simulation, Educational Technology, Training, Technology Uses in Education
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Berry, Frederick C.; Phillips, Margaret L.; Condron, James; Sanger, Phillip A. – IEEE Transactions on Education, 2021
Contributions: The main contribution is to share a series of practical methods that improve the writing quality of capstone reports. Background: The ability to write well is critical to the success of an engineering technology graduate. However, the evidence points to the fact that industries are disappointed with the quality of writing skills…
Descriptors: Writing Improvement, Capstone Experiences, Student Projects, Engineering Education
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Nazi Homayounnasab; Peter Adam Hoeher; Sandra Hansen – Journal of STEM Education: Innovations and Research, 2024
This paper deals with an integration of STEM education and project-based learning (PBL) by introducing a hybrid hardware/software-based learning platform covering eight learning units. PBL not only bridges the gap between theory and practice, but also focuses on improving students' soft skills, which is important as they prepare for further…
Descriptors: STEM Education, Active Learning, Student Projects, Technology Integration
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Rugh, Michael S.; Beyette, Donald J.; Capraro, Mary Margaret; Capraro, Robert M. – Interactive Technology and Smart Education, 2021
Purpose: The purpose of this study is to examine a week-long science, technology, engineering and mathematics (STEM) project-based learning (PBL) activity that integrates a new educational technology and the engineering design process to teach middle and high school students the concepts involved in rotational physics. The technology and teaching…
Descriptors: Physics, Student Projects, Active Learning, STEM Education
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Magnus, Douglas de Matos; Carbonera, Luis Felipe Bianchi; Pfitscher, Luciano Lopes; Farret, Felix Alberto; Bernardon, Daniel Pinheiro; Tavares, Andre Abelardo – IEEE Transactions on Education, 2020
Contribution: A distinct instructional approach to laboratory activities for power system machines, based on hybrid project-based learning (h-PBL). Students develop their own laboratory procedures and explain their results. This approach creates a positive environment to improve students' problem-solving, and their control design and…
Descriptors: Student Projects, Laboratories, Educational Technology, Technology Uses in Education
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Schulze-Buxloh, Lina; Grob, Rolf; Ulbrich, Michelle – International Society for Technology, Education, and Science, 2021
The worldwide Corona pandemic has severely restricted student projects in the higher semesters of engineering courses. In order not to delay the graduation, a new concept had to be developed for projects under lockdown conditions. Therefore, unused rooms at the university should be digitally recorded in order to develop a new usage concept as…
Descriptors: Computer Simulation, Distance Education, Educational Technology, Models
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Raza, Ali; Hasib, Maheen – IEEE Transactions on Education, 2023
Contribution: This article provides a teaching methodology which combines project-based learning, self-regulated learning (SRL), and design projects (DPs) to improve the preparedness of students for computing science-related internships. The methodology is supported by the implementation of the educational technology that transforms the way…
Descriptors: Educational Change, Distance Education, Equal Education, Internship Programs
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Loukatos, Dimitrios; Arvanitis, Konstantinos G. – Education Sciences, 2019
Inspired by the mobile phone market boost, several low cost credit card-sized computers have made the scene, able to support educational applications with artificial intelligence features, intended for students of various levels. This paper describes the learning experience and highlights the technologies used to improve the function of DIY…
Descriptors: Handheld Devices, Artificial Intelligence, Robotics, Internet
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Liu, Connie – Childhood Education, 2019
STEM education is an easily identified area of innovation in the education field. The most significant innovation for our students' lives, however, is ensuring that these technology-based programs are providing opportunities for students to engage with the world in meaningful ways and to recognize how they can contribute to positive…
Descriptors: STEM Education, Educational Innovation, Educational Technology, Technology Uses in Education
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Vemury, Chandra Mouli; Heidrich, Oliver; Thorpe, Neil; Crosbie, Tracey – International Journal of Sustainability in Higher Education, 2018
Purpose: The purpose of this paper is to present pedagogical approaches developed and implemented to deliver sustainable design education (SDE) to second-year undergraduate students on civil engineering programmes in the (then) School of Civil Engineering and Geosciences at Newcastle University. In doing so, the work presented offers an example of…
Descriptors: Holistic Approach, Sustainability, Design, Engineering Education
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Knight, David B.; Davis, Kirsten A.; Kinoshita, Timothy J.; Twyman, Catherine; Ogilvie, Andrea M. – Advances in Engineering Education, 2019
Multiple reports suggest that future engineering work will be conducted by globally diverse teams for globally diverse customers. Despite the demonstrated benefits of study abroad opportunities to develop such global competencies, undergraduate engineers participate at low rates. The Rising Sophomore Abroad Program presented in this paper…
Descriptors: Engineering Education, Study Abroad, Experiential Learning, Global Approach
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Martin, Lee; Dixon, Colin – Advances in Engineering Education, 2019
There is growing interest in the engineering education community in "making" and the Maker Movement as a context for young people to learn and develop interest around design and early engineering competencies. Although some researchers argue that making has the potential to serve a liberating and anti-oppressive function in education,…
Descriptors: Engineering Education, Workshops, Educational Innovation, High School Students
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Sa Ngiamsunthorn, Parinya – Journal of Research and Advances in Mathematics Education, 2020
Gifted students need a form of special education through extracurricular and learning experiences because they have extraordinary potential in terms of intelligence, creativity, social and mentality, compared to other students. This study aims to investigate various teaching and learning approaches designed for gifted students, and to constitute…
Descriptors: Academically Gifted, Undergraduate Students, College Mathematics, Mathematics Instruction
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Eickholt, Jesse; Jogiparthi, Vikas; Seeling, Patrick; Hinton, Quintrese; Johnson, Matthew – Education Sciences, 2019
Project-based learning often centers learning experiences around projects and is characterized by the application of knowledge, management of resources, and self-directed learning. In recent years, newer classroom designs have been developed to facilitate communication, classroom interaction and active learning but the cost of such spaces can be…
Descriptors: Active Learning, Student Projects, Space Utilization, Cost Effectiveness
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