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Niño, David – New Directions for Student Leadership, 2022
The case summarises 14 years of experiences with undergraduate and graduate programmes in engineering leadership at Massachusetts Institute of Technology.
Descriptors: Undergraduate Study, Graduate Study, Engineering Education, Leadership Training
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Lang, Dena; Park, John Jongho; Handley, Meg – New Directions for Student Leadership, 2022
Pennsylvania State University is globally engaged, technically broad and culturally aware; and has been blazing the trail in Engineering Leadership Development with one of the first engineering leadership development programs in the United States.
Descriptors: State Universities, Engineering Education, Leadership Training, Case Studies
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Schell, William J.; Hughes, Bryce E. – New Directions for Student Leadership, 2022
This article posits the importance of viewing leadership development in engineering through an identity lens. The model presented shows the development of an engineering leadership identity at the intersection of engineering and leadership identities and explores that development through the findings from two national surveys with additional…
Descriptors: Leadership Training, Management Development, Engineering, Self Concept
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Pollock, Meagan; Holly, James, Jr.; Leggett-Robinson, Pamela – New Directions for Student Leadership, 2022
This article presents a standards-aligned, strategy-driven leadership development model for equipping engineering students with skills to appreciate differences in the workplace and to collaborate and lead inclusively.
Descriptors: Leadership Training, Models, Engineering, Students
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Hadley, Kevin; Oyetunji, Wasiu – Journal of Engineering Education, 2022
Background: While students possess procedural knowledge associated with engineering calculations and calculus, they often exhibit a disconnect between the conceptual meaning of mathematics and the problem being solved. This conceptual understanding of what mathematics "says" is defined by the theoretical framework of numeracy. Many…
Descriptors: Engineering Education, Numeracy, Mathematics Skills, Definitions
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Chen, Dyi-Cheng; You, Ci-Syong; Su, Ming-Shang – Interactive Learning Environments, 2022
This study identified the competency requirement for artificial intelligence in finite element analysis. The 10 Delphi group members included 5 field engineers in mechanical fields and 5 scholars from a technology institute. Next, 10 field experts were invited to participate. Using the Delphi technique and analytic hierarchy process,…
Descriptors: Engineering, Technical Occupations, Competence, Artificial Intelligence
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Bunt, Stephanie; Berdanier, Catherine G. P.; Brown, Nathan C. – Journal of Civil Engineering Education, 2023
Parametric optimization techniques allow building designers to pursue multiple performance objectives, which can benefit the overall design. However, the strategies used by architecture and engineering graduate students when working with optimization tools are unclear, and ineffective computational design procedures may limit their success as…
Descriptors: Architecture, Engineering Education, Building Design, Student Behavior
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Zerbe, Ellen; Sallai, Gabriella; Berdanier, Catherine G. P. – Journal of Engineering Education, 2023
Background: While researchers in graduate engineering education are beginning to study facets of student experiences as they relate to attrition and persistence, theoretical applications of thriving theory have not been applied to graduate education contexts. Literature addresses students who persist and those who depart, inherently making…
Descriptors: Engineering Education, Academic Persistence, School Holding Power, Well Being
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Marbouti, Farshid; Rodgers, Kelsey J.; Thompson, Angela K.; Verleger, Matthew; Hawkins, Nicholas – IEEE Transactions on Education, 2023
Contribution: This study assesses more than 800 students' awareness of engineering model types before and after taking two first-year engineering courses across two semesters and evaluates the effect of each course. Background: All engineers must be able to apply and create models to be effective problem solvers, critical thinkers, and innovative…
Descriptors: Engineering Education, College Students, Models, Knowledge Level
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Ghosh, Somik; Bigelow, Ben; Johnston, Jonathan – Journal of Civil Engineering Education, 2023
Ranking systems are readily available and offer a simplistic way to differentiate among universities. However, end-users are not informed about the criteria and methods used to develop the ranking systems. Whereas ranking systems are used by prospective students, their lack of reliability and transparency outweigh their benefits. There are a few…
Descriptors: Models, Construction (Process), Civil Engineering, Administrator Attitudes
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Cumber, Peter – International Journal of Mathematical Education in Science and Technology, 2023
The dynamics of a simple pendulum are often presented to undergraduate engineering students in introductory courses in dynamics. It is usually the first dynamic system considered by students that is modelled by a differential equation. This paper presents the standard material given to students. It is fair to say that students are accepting this…
Descriptors: Motion, Scientific Concepts, Undergraduate Students, Engineering Education
Joel A. Sloan; Timothy E. Frank – Intersection: A Journal at the Intersection of Assessment and Learning, 2023
The ability to assess oneself is important in higher education, on the job, and throughout all aspects of life. Knowledge surveys (KS) are a self-assessment tool where students rate their ability to answer a knowledge question or perform a skills task. Previous research has shown that students are accurate self-assessors compared to instructor…
Descriptors: Self Evaluation (Individuals), Undergraduate Students, Civil Engineering, Program Evaluation
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Zhu, Qin; Clancy, Rockwell – Ethics and Education, 2023
This paper is concerned with the gap between the ideology of 'autonomous individualism' deeply embedded in Western-centric engineering ethics education and the social and relational nature of engineering practice. The so-called 'individualistic approach' to engineering ethics often treats students as fully rational and autonomous individual…
Descriptors: Role, Ethics, Engineering Education, Confucianism
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Clegorne, Nicholas A.; Gruss, Amy B.; Jimenez, Albert M. – Educational Planning, 2023
Teamwork has been described as a leadership-coupled professional competency in postsecondary engineering education. It has been listed among the most critical professional skills by engineering industries and professional organizations. Here, a mixed-method case study is reported, which used Visual Thinking Strategies alongside a group project in…
Descriptors: Engineering Education, Teamwork, Learning Activities, Undergraduate Students
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S. H. Christiansen; C. Juebei; D. Xiangyun – European Journal of Engineering Education, 2023
To uncover and analyze conceptualizations of cross-institutional collaboration in engineering education, a systematic review study was conducted, identifying commonalities in frameworks, assessments and evaluations, and challenges across prior studies. 74 papers were reviewed, revealing "study descriptors," "theoretically applied…
Descriptors: Intercollegiate Cooperation, Engineering Education, Literature Reviews, Outcome Based Education
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