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Didiano, Teresa J.; Simpson, Annie E.; Bayless, David – New Directions for Student Leadership, 2022
This article describes transformative, impactful pedagogical practices that engage students in the process of leadership development. We share practical examples of instructional strategies and facilitation techniques from curricular and co-curricular initiatives.
Descriptors: Leadership Training, Teaching Methods, Student Participation, Engineering Education
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Svihla, Vanessa; Chen, Yan; Kang, Sung – Journal of Engineering Education, 2022
Background: Engineering programs have increasingly incorporated design challenges into courses. These design challenges vary in the degree to which they present complex, ill-structured, and relevant problems, and therefore may vary in the degree to which they support students to learn to frame design problems. Purpose/Hypothesis: We characterized…
Descriptors: College Freshmen, Engineering Education, Design, Problem Solving
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Reynante, Brandon – Journal of Engineering Education, 2022
Background: Community-engaged learning initiatives in engineering often struggle to achieve equitable outcomes for community partners because students in such programs often possess a design-for-charity mindset, which is characterized by an uncritical desire to help and the design of solutions that address symptoms of inequity without meaningful…
Descriptors: Social Justice, Community Involvement, Engineering Education, Undergraduate Students
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Barner, Matthew S.; Brown, Shane Adam; Bornasal, Floraliza; Linton, David – Journal of Engineering Education, 2022
Background: Situated cognition theory suggests that representations of concepts are products of the environment wherein we learn and apply concepts. This research builds on situated cognition by investigating how concepts are tangible to a professional engineering environment. Purpose/Hypothesis: The tangibility of concepts in relation to social…
Descriptors: Engineering Education, Undergraduate Study, Engineering, Technical Occupations
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Docherty, Paul D.; Zaka, Pinelopi A.; Fox-Turnbull, Wendy – Research Papers in Education, 2022
The flipped classroom is an emerging strategy for the delivery of technical threshold content within tertiary engineering programs. In this study, we measure the effect that the approach has on the immediate and ongoing academic success of four cohorts of engineering dynamics students in New Zealand. Two cohorts (N = 865) received traditional…
Descriptors: Foreign Countries, Flipped Classroom, Engineering Education, Academic Achievement
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Bui, Thi Thuy Hang; Kaur, Amrita; Hung, Tran Van – International Journal of Learning Technology, 2022
Flipped classrooms, also known as reversed or inverted classroom, has attracted widespread attention in higher education for active engagement and enhanced learning outcomes. It is proposed in the literature that flipped classroom promotes self-directed learning and can facilitate a personalised learning experience for students. The current study…
Descriptors: Flipped Classroom, Individualized Instruction, Engineering Education, College Students
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Meng, Jie; He, Gaofa; Li, Xiang; Ren, Liancheng; Dong, Chaoqun; Liu, Min – Innovations in Education and Teaching International, 2022
This paper regards the mechanical curriculum teaching as a design problem and uses environment-based design (EBD) method to solve it. First, environment components and their relations of the mechanical curriculum are found out by recursive object model (ROM). Then, conflicts in the teaching process are identified by analysing the above relations.…
Descriptors: Engineering, Manufacturing, Engineering Education, Foreign Countries
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Hanson, James H. – Journal of Civil Engineering Education, 2022
Junior engineers are increasingly placing blind trust in computer generated structural analysis results, but the evaluation skills used by experienced engineers must have been learned at some point. Therefore, this study investigated whether evaluation skills in the categories of fundamental principles, features of the solution, and approximations…
Descriptors: Engineering Education, Structural Analysis (Science), Skill Development, Evaluation
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Jackson, David W.; Cheng, Yihong – Computer Science Education, 2022
Background and Context: Computational thinking and practices (CT|P) are key competencies for learners in science and engineering. For studies with young adolescents as participants, manifested research philosophies are sometimes inconsistent with societal pluralisms. Objective: Based on research literature from 2016 to early 2019 for CT|P in…
Descriptors: Adolescents, Science Instruction, Engineering Education, Computation
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Botejara-Antúnez, Manuel; Sánchez-Barroso, Gonzalo; González-Domínguez, Jaime; García-Sanz-Calcedo, Justo – Education Sciences, 2022
Engineering courses usually have a low success rate, and students that take them often consider them difficult and show little motivation towards them. In this context, it is essential to obtain information about the profile of the students so that the teaching can be adapted to their perceived needs and motivations as well to provide support to…
Descriptors: Engineering Education, Student Motivation, Cognitive Style, College Students
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Karahanoglu, Armagan – International Journal of Technology and Design Education, 2022
Experience design is a growing field that attracts many designers' attention. One of the challenges of experience design is to be emphatic with the users and be critical about evaluating the results of the design process. This challenge requires several skills and knowledge, which the designers could gain during their higher education. While…
Descriptors: Peer Evaluation, Usability, Foreign Countries, Undergraduate Students
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Nguyen, Ursula; Russo-Tait, Tatiane; Riegle-Crumb, Catherine; Doerr, Katherine – Science Education, 2022
Young women remain underrepresented among engineering bachelor's degree holders. While there is a relatively large body of extant research on the many factors that curtail young women's interest in pursuing engineering, less is known about high school girls who are on an engineering pathway. Therefore, this study focuses on a select group of…
Descriptors: Gender Issues, Engineering Education, Student Experience, Females
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Iqbal, Arif; Singh, Girish Kumar – Journal on School Educational Technology, 2022
The educational system is presently undergoing a substantial change to improve the teaching-learning process of all engineering domains. This includes the utilization of user-friendly simulation tools as part of the laboratory for an enhanced practical experience on a virtual platform. Owing to the advantages of virtual experimentation,…
Descriptors: Laboratories, Computer Simulation, Engineering Education, Undergraduate Study
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Camperos, July Andrea Gomez; Jaramillo, Haidee Yulady; Castrillón, Alexci Suárez – Journal of Language and Linguistic Studies, 2022
With the rapid growth of the technology era, the conventional teaching approach is not sufficient for students of the millennial generation. With this in mind, this article presents the justification for incorporating Kolb's experiential learning, based on laboratory practices with an environment supported by simulation software, combined with…
Descriptors: Experiential Learning, Problem Based Learning, Automation, Foreign Countries
Erik Michael Ward – ProQuest LLC, 2022
This study sought to develop and validate an instrument to test the self-efficacy of teaching engineering design. This study is part of a larger effort to develop an instrument for both pre-service and in-service teachers of Science, Technology, and Engineering education. The focus of this study is on the initial instrument creation process and…
Descriptors: Self Efficacy, Design, Measures (Individuals), Validity
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