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Paige, Myela; Schauer, Anastasia; Klesmith, Zoe; Davis, Alexis; Fu, Katherine – Advances in Engineering Education, 2023
In many mechanical engineering undergraduate curriculums, there are topics that are vital to the students' future careers in the manufacturing and design workforce that are not taught in-depth. As one of those topics, Geometric Dimensioning and Tolerancing, or GD&T, is vital to companies who develop and manufacture products because it allows…
Descriptors: Undergraduate Students, Engineering Education, Experiential Learning, Geometry
Nutwell, Emily; Mokashi, Prasad; Christy, Ann – Advances in Engineering Education, 2023
This paper describes the course design and evaluation results for an online continuing education program designed for working engineers. Engineering educators have long recognized the value of reducing the gap between the classroom and work environments. Implementing experiential learning in the undergraduate classroom brings much needed context…
Descriptors: Instructional Design, Online Courses, Engineering Education, Work Environment
Streveler, Ruth A. – Advances in Engineering Education, 2022
Engineering educators strive to help students understand concepts that may be difficult and counterintuitive. This often entails helping students bring their understanding of how a phenomenon works into alignment with the scientifically-accepted explanation. For the most part, fostering conceptual change has been thought of as a process of…
Descriptors: Misinformation, Concept Formation, Engineering Education, Psychological Patterns
Osgood, Libby; MacIntyre, Rebecca; Pollard-Feehan, Erin – Advances in Engineering Education, 2023
An Engineering Success Centre was formed with the long-term goals of providing targeted first-year support, increasing retention, and developing leaders. The novelty of the Centre is that the priorities and activities were defined by the students that were employed to run it in a shared leadership model. Student leaders were in various years of…
Descriptors: Engineering Education, School Holding Power, Academic Support Services, Student Leadership
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
Faber, Courtney; Ellestad, Rachel; Walsh, Alexis – Advances in Engineering Education, 2022
The abundance of information available to us every day continues to increase, largely because of society's reliance on the internet. While the internet provides access to a wealth of information, information may be inaccurate or irrelevant because anyone can publish content on the internet. As a result, it is critical for individuals to develop…
Descriptors: Information Literacy, College Freshmen, Engineering Education, Units of Study
Roberts, Dustyn; Buckley, Jenni – Advances in Engineering Education, 2020
The Design Studio is an academic makerspace, housed in the Mechanical Engineering Department at University of Delaware, that was co-developed through a multi-year, grassroots effort by the department and its undergraduate study body. It originated in 2012 in a small, under-utilized study room and evolved in stages into its present form as a 5,500…
Descriptors: Undergraduate Students, Engineering Education, Design, Shared Resources and Services
McKenna, Ann F.; Collofello, James; Squires, Kyle – Advances in Engineering Education, 2021
As part of being named one of ten emerging leaders in engineering education, Arizona State University (ASU) was invited to participate in the MIT-Olin Colloquium on the "Global State of the Art in Engineering Education" held in Boston in April 2019. As a group we shared innovations at our respective institutions and identified…
Descriptors: Engineering Education, Conferences (Gatherings), Futures (of Society), Educational History
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
Sochacka, Nicola W.; Delaine, David A.; Shepard, Thomas G.; Walther, Joachim – Advances in Engineering Education, 2021
Prior research indicates that empathy can help engineers achieve better outcomes in team-based, design, entrepreneurial, and humanitarian environments. We describe an educational innovation designed to teach engineering students empathic communication skills. Written in the spirit of a propagation (versus dissemination) paradigm, we focus on how…
Descriptors: Empathy, Teaching Methods, Engineering Education, Teamwork
Sheppard, Sheri – Advances in Engineering Education, 2020
This is the high-level story of the Mechanical Engineering (ME) department at Stanford University in three parts: The abrupt change at the end of our Winter Quarter (March 2020), the transition to a fully online Spring Quarter (April-June 2020), and the overdue confrontation of racial injustice (June 2020-present). Told from the perspective of one…
Descriptors: Undergraduate Students, Engineering Education, Online Courses, Inclusion
Atman, Cynthia J. – Advances in Engineering Education, 2020
This paper presents two reflection activities that supported the creation of community and a sense of caring for students learning in an online environment in the COVID-19 pandemic. In the first activity, students indicated how they were feeling in terms of hope/despair, stress/calm and energy level in a "check-in" slide at the beginning…
Descriptors: Psychological Patterns, Caring, Reflection, Web Based Instruction
van Grunsven, Janna; Marin, Lavinia; Stone, Taylor; Roeser, Sabine; Doorn, Neelke – Advances in Engineering Education, 2021
This paper provides a retrospective and prospective overview of TU Delft's approach to engineering ethics education. For over twenty years, the Ethics and Philosophy of Technology Section at TU Delft has been at the forefront of engineering ethics education, offering education to a wide range of engineering and design students. The approach…
Descriptors: Engineering Education, Ethics, Moral Values, Design
Lavi, Rea; Bathe, Mark; Hosoi, Anette; Mitra, Amitava; Crawley, Ed – Advances in Engineering Education, 2021
In Fall 2016, the School of Engineering at the Massachusetts Institute of Technology (MIT) chartered the New Engineering Education Transformation (NEET) initiative. NEET aims to educate young engineers to build the new machines and systems that will address societal needs of the 21st century. Students enter NEET in their sophomore year and join…
Descriptors: Technical Institutes, Engineering Education, Undergraduate Students, Interdisciplinary Approach
Korte, Russell; Smith, Karl A.; Li, Cheryl Qing – Advances in Engineering Education, 2018
Entrepreneurship education has become an important feature in many programs across higher education--especially in engineering education. A common goal of entrepreneurship education is developing an entrepreneurial mindset in students. Furthermore, a key competency of an entrepreneurial mindset is the ability to empathize with others. Empathy is a…
Descriptors: Entrepreneurship, Empathy, Higher Education, Engineering Education