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Frederick R. Missel; Jeremy V. Ernst; Daniel P. Kelly; Erik Schettig; Aaron C. Clark – Technology and Engineering Teacher, 2023
For students to gain the most out of education, they need to form long-term memories from experiences gained through active learning. The greatest distinction between active learning and traditional approaches involves the types of tasks and problems the students are challenged to solve. Active learning activities should be structured with student…
Descriptors: Active Learning, Engineering Education, Computer Graphics, Design
Cecilia Madero-Gonzalez; Jesus Vazquez-Hernandez; Fernando Gonzalez Aleu – Quality Assurance in Education: An International Perspective, 2025
Purpose: This study aims to examine the impact of gamification on the five dimensions of meaningful learning (i.e. cooperative, active, authentic, constructive and intentional learning) and undergraduate student performance taking online lessons. Design/methodology/approach: Therefore, the authors conducted an experiment among undergraduate…
Descriptors: Gamification, Undergraduate Students, Online Courses, Engineering Education
Bibek Kattel; Winn Elliott Hutchcraft; Elizabeth Norell – Discover Education, 2024
This paper explores the implementation and effectiveness of flipped learning methodology, in an upper-division undergraduate electrical engineering course at a public research university. Given the limited research on flipped learning practices in engineering education, this study highlights the potential of flipped learning while addressing its…
Descriptors: Flipped Classroom, Program Effectiveness, Undergraduate Students, Student Attitudes
Hagvall Svensson, Oskar – European Journal of Engineering Education, 2023
As more entrepreneurial experiences are integrated into engineering programs, students are faced with new challenges they need help in managing. While previous research has identified entrepreneurial activities that engineering students struggle with, the antecedents of these difficulties have not been directly investigated. Drawing on an…
Descriptors: Entrepreneurship, Engineering Education, Active Learning, Student Projects
Susan Bobbitt Nolen; Edward L. Michor; Milo D. Koretsky – Journal of Engineering Education, 2024
Background: Although open-ended projects are common in the first and final years of US engineering programs, middle-year courses tend to utilize simpler highly constrained problems. Such problems can elicit knowledge and social practices typical of school activity ("School World"), with limited applicability in real engineering work…
Descriptors: Engineering Education, Cooperative Learning, Undergraduate Students, Student Projects
Amjad Almusaed; Marisol Rico Cortez; Asaad Almssad – International Society for Technology, Education, and Science, 2024
AI is a rapidly advancing technology, especially in education. "Generative AI" is particularly notable for revolutionizing how we teach and learn, prompting a reevaluation of teacher training. Engineering education is at the forefront of pedagogical innovation, enhancing learning tools, and fostering a new educational mindset. This…
Descriptors: Engineering Education, Artificial Intelligence, Computer Software, Educational Change
Luigia Brandimarte; Alisan Funk; Benjamin Richter – European Journal of Engineering Education, 2024
Our multifaceted society calls for engineers that are not only experts in their domain, but possess the flexibility to understand adjacent disciplines. The inclusion of the performing arts in engineering curricula has shown potential for cultivating creativity and equipping STEM students with problem-solving abilities. However, the literature…
Descriptors: Engineering Education, Mechanics (Physics), Theater Arts, Teaching Methods
Stuart White – International Journal of Designs for Learning, 2024
In 2017 Purdue evGrand Prix hired a K-12 Indiana public educator (the author) to write instructional material that could be implemented into participating teams' high school science and engineering classrooms. The goal was to create science-based integrated STEM learning experiences that complement the construction and racing of a 48-volt electric…
Descriptors: Novices, Decision Making, Instructional Materials, Material Development
Anastasia M. Schauer; Jessie Liu; Christopher Saldaña; Katherine Fu – International Journal of STEM Education, 2025
Background: Even among women who persist in the gender-imbalanced engineering fields, women on engineering design teams tend to take on non-technical roles. Understanding the mechanisms that inform this phenomenon is important for encouraging more women in STEM in order to close the gender gap. Although factors such as self-efficacy, task…
Descriptors: Sex Stereotypes, Engineering Education, Gender Issues, Design
Maisa Mielikäinen; Essi Viippola; Tauno Tepsa – E-Learning and Digital Media, 2024
The increase in remote work in the Information and Communication Technology (ICT) industry has introduced the need for research into team collaboration platforms and education using a project-based blended learning approach. This study investigates the perceptions of ICT engineering students (N = 56) at Lapland University of Applied Sciences in…
Descriptors: Foreign Countries, College Students, Engineering Education, Communities of Practice
Calkins, Susanna C.; Rivnay, Jonathan – Journal of Effective Teaching in Higher Education, 2021
This article highlights an innovative take on the jigsaw format, an inclusive and cooperative active learning strategy, implemented in an upper-level engineering elective course. After students complete the usual two steps of the jigsaw method--first gaining mastery in "expert groups" and then collaboratively teaching their peers in…
Descriptors: Cooperative Learning, Active Learning, Engineering Education, Peer Teaching
Herrera, Rodrigo F.; Muñoz-La Rivera, Felipe; Vielma, Juan C. – Journal of Civil Engineering Education, 2021
Building Information Modeling (BIM) allows the integration of work teams, collaboration, and the generation of intelligent parametric digital models. Therefore, because BIM is a collaborative working methodology, it is not possible to effectively teach BIM without the use of collaborative teamwork. Traditionally, teaching at universities has…
Descriptors: Cooperative Learning, Construction Management, Engineering Education, College Students
Havenga, Marietjie; Swart, Athur James – European Journal of Engineering Education, 2022
Problem-based learning is an active student-centred approach, which requires engineering students to work together in solving real-world problems. This study aims to review the incorporation of cooperative learning principles in an introductory first-year engineering course that aimed to develop students' group skills while working on…
Descriptors: Engineering Education, Problem Based Learning, Student Projects, Undergraduate Students
Michael T. O'Connell; Christian Stöhr; Patric Wallin; Raffaella Negretti – European Journal of Engineering Education, 2024
Engineering education has seen a growing interest in how students regulate their learning as a group in interdisciplinary projects. This study adds to the current literature on social regulation of learning by conducting a comparative case study of three interdisciplinary group projects addressing real-world challenges. Semi-structured qualitative…
Descriptors: Engineering Education, Self Control, Interdisciplinary Approach, Group Dynamics
Krishnakumar, Sandeep; Maier, Torsten; Berdanier, Catherine; Ritter, Sarah; McComb, Christopher; Menold, Jessica – Journal of Engineering Education, 2022
Background: During the onset of the COVID-19 crisis, universities rapidly pivoted to online formats and were often unable to adhere to the best practices of online learning highlighted in prior literature. It is well documented that a variety of barriers impeded "normal" educational practices. Purpose/Hypothesis: The purpose of this…
Descriptors: College Freshmen, Student Attitudes, Engineering Education, Introductory Courses