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Merrett, Craig G. – Advances in Engineering Education, 2023
Students should be exposed to open-ended, complex design challenges during their courses to better prepare the students for the design challenges that they will encounter during their careers. This preparation may be achieved by combining flipped classroom instruction, case based learning in an active classroom, and authentic assessments. Between…
Descriptors: Flipped Classroom, Classroom Techniques, Case Method (Teaching Technique), Introductory Courses
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Serna, Jaime Moreno; Chaparro, Teresa Sánchez; Purcell, Wendy Maria; Aldeanueva, Carlos Mataix – Advances in Engineering Education, 2022
Higher education institutions (HEIs) are increasingly engaged in the urgent and important work involved in the global transition towards sustainable development. They are potentially well suited to address key challenges, being as they are knowledge and talent 'factories'. Beyond their educational mission, HEIs are particularly well placed to…
Descriptors: State Universities, Case Studies, Sustainability, Engineering Education
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Karlsson-Bengtsson, Anna; Enelund, Mikael; Bingerud, Mattias – Advances in Engineering Education, 2021
In this contribution we describe and reflect on the organization of Chalmers University of Technology and how it benefits education development and innovation. Chalmer's matrix organization with a buyer-supplier management model for education has proven to be a driving force for change and quality enhancement and promotes the agility necessary for…
Descriptors: Universities, Technology Education, Educational Development, Educational Innovation
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Bertel, Lykke Brogaard; Askehave, Inger; Brohus, Henrik; Geil, Olav; Kolmos, Anette; Ovesen, Nis; Stoustrup, Jakob – Advances in Engineering Education, 2021
Since its establishment in 1974, Aalborg University has aimed to deliver cutting-edge research and innovative practices in engineering education. However, increasing complexity related to rapid developments in digitalization and emerging societal challenges offer new opportunities, requirements, and expectations across disciplines for educational…
Descriptors: Interdisciplinary Approach, Problem Based Learning, Student Projects, Active Learning
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Sheppard, Sheri D.; Anderson, R. Lanier; Kenny, Thomas W. – Advances in Engineering Education, 2021
Stanford has always embraced educational change, but not for its own sake. Instead, we have pursued reforms in response to specific problems or to realize definite possibilities. In that sense, our curricular innovations seek to move purposefully from "what is" to "what might be." Such purposeful change is guided by underlying…
Descriptors: College Faculty, Teacher Attitudes, Engineering Education, Educational Change
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Hailes, Stephen; Jones, Liz; Micheletti, Martina; Mitchell, John E.; Nyamapfene, Abel; Roach, Kate; Tilley, Emanuela; Truscott, Fiona – Advances in Engineering Education, 2021
In 2014, the UCL Faculty of Engineering Sciences introduced the Integrated Engineering Programme -- a revision of eight existing degree programmes across a range of engineering disciplines. Centred on a thread of authentic project-based activities, the programme aimed to enhance the students' understanding of key theoretical concepts and heighten…
Descriptors: Engineering Education, Authentic Learning, Student Projects, Active Learning
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Ulseth, Ron; Johnson, Bart; Kennedy, Christine – Advances in Engineering Education, 2021
In this paper, we address the achievements to date and the learnings from the development and ten-year implementation of the Iron Range Engineering (IRE) program while articulating its future directions. IRE uses research-based instructional strategies to implement a project-based learning (PBL) curriculum where authentic design sits at the heart…
Descriptors: Engineering Education, Curriculum Implementation, Student Projects, Active Learning
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Copp, David A.; Isaacs, Jason T.; Hespanha, João P. – Advances in Engineering Education, 2021
Recent changes have been made in Science, Technology, Engineering, and Mathematics (STEM) education in the United States with the goal of increasing the number of students pursuing degrees and careers in STEM. The Next Generation Science Standards (NGSS) integrate new science and engineering standards in an attempt to achieve this goal and are the…
Descriptors: Programming, Robotics, STEM Education, Standards
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Long, Leroy L., III – Advances in Engineering Education, 2021
Engineering education classrooms are transforming into spaces focused on advancing critical and ethical skills in addition to technical skills (Ceylan & Lee, 2003; Gunnink & Bernhardt, 2002; Siller, 2001). Yet, as countless Black people continue to be murdered by White police officers and vigilante citizens, many engineering classrooms…
Descriptors: Teaching Methods, Racial Bias, Engineering Education, Critical Theory
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Chambers, Benjamin D.; Reid, Kenneth J. – Advances in Engineering Education, 2021
In response to COVID-19, students in a first-year general engineering program rapidly transitioned from a highly interactive, hands-on model with large remote-controlled cars in the lobby to an asynchronous, online model without face-to-face student interaction. The instructors designed an assignment to encourage students to creatively express how…
Descriptors: College Freshmen, Engineering Education, Educational Change, COVID-19
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Hitt, Sarah Jayne; Holles, Cortney E. P.; Lefton, Toni – Advances in Engineering Education, 2020
This article discusses two multidisciplinary courses created at the Colorado School of Mines that were developed to integrate ethics into the first-year engineering curriculum: "Nature and Human Values" (NHV) and "Innovation and Discovery in Engineering, Arts, and Sciences" (IDEAS). In both NHV and IDEAS, our objectives are to…
Descriptors: Design, Ethics, Engineering Education, Interdisciplinary Approach
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Tang, Xiaofeng; Catchmark, Jeffrey M.; Mendieta, Eduardo; Litzinger, Thomas A. – Advances in Engineering Education, 2020
To meet complex ethical challenges in the engineering profession, students need ethics learning experiences that are integrated systematically across the engineering curriculum. Sustaining systematic changes in the engineering curriculum also calls for processes that respect and engage the engineering faculty. This paper reports the work to date…
Descriptors: Ethics, Biology, Engineering Education, Learning Experience
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Katz, Andrew; Reid, Kenneth; Riley, Donna; Van Tyne, Natalie – Advances in Engineering Education, 2020
A review of the First Year Engineering course sequence at Virginia Tech characterized the current state of ethics education in the program, and informed a strategy to enhance the ethical development of first-year engineering students. This paper reports the results of our initial review of the curriculum, our improvement plan, assessment of our…
Descriptors: Ethics, Learning Processes, Class Size, Case Studies
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Arehart, Jay H.; Langenfeld, Kathryn L.; Gingerich, Ethan M. – Advances in Engineering Education, 2020
The Engineers in Action (EIA) Bridge Program provides engineering students with international service-learning opportunities through design-build footbridge projects. The conventional project model relies on an implementation trip as a primary learning activity. Prior to the pandemic-caused cancellations of all implementation trips in 2020, EIA…
Descriptors: Service Learning, Study Abroad, Pandemics, Educational Change
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Leung, Siu Ling; Hargrove, Brianne A.; Marsh, Eric R.; Gregg, Andrea R.; Thole, Karen A. – Advances in Engineering Education, 2020
Today's engineering laboratory education often lacks opportunities for students to practice critical thinking through real-world problems. This particular objective is even harder to achieve through online laboratory experiments. In this article, we summarize our innovation in using a real-world challenge, analyze big data, to empower student data…
Descriptors: COVID-19, Pandemics, Educational Change, Engineering Education
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