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Showing 1 to 15 of 48 results Save | Export
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Yasmany García-Ramírez – Advances in Engineering Education, 2024
Due to its positive results, active learning has spread to most areas of knowledge of Civil Engineering. Many of these studies used only one technique, which is limiting given the diverse learning styles that the students may have. The road geometric design is the area that has been the least explored in Civil engineering. Therefore, the objective…
Descriptors: Engineering Education, Active Learning, Design, Civil Engineering
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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
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Ellis, Brett D.; Graveson, Jeff – Advances in Engineering Education, 2022
Graduating approximately 150,000 engineering and engineering technology students per year, the engineering education system seeks to teach students to solve problems via analysis and design. Unfortunately, many curricula emphasize analysis at the expense of design, often relegating design activities to cornerstone and capstone design courses and…
Descriptors: Engineering Education, Capstone Experiences, Class Activities, Active Learning
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Cook, Jacob; Ekstedt, Thomas; Self, Brian; Koretsky, Milo – Advances in Engineering Education, 2022
Based on the pedagogical principle of cognitive conflict, Inquiry-Based Laboratory Activities (IBLAs) have been shown to improve conceptual understanding of challenging science and engineering topics. Yet, providing students physical apparatuses to complete an IBLA is not tenable in every instructional setting. This paper reports design,…
Descriptors: Computer Simulation, Video Technology, Distance Education, Inquiry
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Ford, Matthew J.; Fatehiboroujeni, Soheil; Fisher, Elizabeth M.; Ritz, Hadas – Advances in Engineering Education, 2023
Under the new ABET accreditation framework, students are expected to demonstrate "an ability to develop and conduct appropriate experimentation, analyze and interpret data, and use engineering judgment to draw conclusions." Traditional, recipe-based labs provide few opportunities for students to engage in realistic experimental design or…
Descriptors: Hands on Science, Laboratory Experiments, Personal Autonomy, Learner Engagement
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Lydia Ross; Stephen Krause; Eugene Judson; Keith D. Hjelmstad; Robert Culbertson; James A. Middleton; Lindy Mayled; Sara Hoyt; Kara L. Hjelmstad – Advances in Engineering Education, 2024
Active learning pedagogical practices are more effective than instructor-centered teaching in building students' knowledge, skills, and understanding of engineering content and concepts. As such, a large-scale professional development (PD) program was created to move faculty toward the use of active learning. The project aimed to engage faculty in…
Descriptors: Faculty Development, Active Learning, Teaching Methods, Engineering Education
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Miller, Callie – Advances in Engineering Education, 2020
Students in the Department of Engineering at James Madison University choose the program for opportunities to build close relationships and experience high impact teaching. The shift to online learning due to COVID-19 resulted in a potential loss of these opportunities and a decrease in student motivation. In my Statics and Dynamics course I…
Descriptors: Mentors, Student Motivation, Active Learning, Student Projects
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Wu, Liang Li; Zhu, Edward; Callaghan, Caitlin; Irwin, Derek; Reinsdorf, Dylan; Swanson, Veronica; Zwirn, Austin; Reinkensmeyer, David – Advances in Engineering Education, 2020
To provide a project-based learning experience during the COVID-19 outbreak, we mailed experimental kits to 285 undergraduate students and developed curriculum for a multi-player online robot simulation game. Students successfully achieved cognitive objectives and rated the remote learning experience comparably to the prior-year in-person…
Descriptors: Educational Change, Active Learning, Student Projects, Engineering Education
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Leung, Jac K. L.; Chu, Samuel K. W. – Advances in Engineering Education, 2020
The First-Year Cornerstone Engineering Design Project Course (ENGG1100) aims to maintain practicality and excitement of experiential learning by enabling students to create an authentic artifact, despite the unexpected shift to emergency remote teaching due to COVID-19. The main challenge is to teach a course that usually takes place in a…
Descriptors: College Freshmen, Engineering Education, Emergency Programs, Distance Education
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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
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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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Maxworth, Ashanthi – Advances in Engineering Education, 2021
This paper presents the implementation of a case study analysis in an introductory level electrical circuits course. According to the author's knowledge, this is the first time hybrid implementation of a case study analysis with problem-based learning (PBL) and virtual experimentation (VE) was used in an introductory level electrical circuits…
Descriptors: Engineering Education, Problem Based Learning, Feedback (Response), Introductory Courses
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Walker, Erica; DesJardins, John; Przestrzelski, Bre – Advances in Engineering Education, 2020
Historically, classroom content delivery has relied on lecture, but recently there has been a call for educators to use active learning to promote student engagement and a deeper understanding of the material (Bonwell and Eison 1991; Erickson 1984; Cross 1987; Prince 2004; Bodnar and Clark 2014). According to Prince (2004) active learning is any…
Descriptors: Game Based Learning, Educational Change, Active Learning, 21st Century Skills
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Mahmud, Apel – Advances in Engineering Education, 2020
This paper discusses the experience of online studio activities for a second year project project-oriented design-based learning (PODBL) unit. The experience of delivering campus-based studio activities through an online platform, to a design a small power system, is shared due to COVID-19 restrictions. The student experience is benchmarked with…
Descriptors: Undergraduate Students, Engineering Education, Student Projects, Active Learning
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Constans, Eric; Bhatia, Krishan; Kadlowec, Jennifer; Merrill, Thomas; Zhang, Hong; Angelone, Bonnie – Advances in Engineering Education, 2019
This paper describes the use of a large-scale, multi-semester design project as a means of integrating six courses in the mechanical engineering curriculum. The project, a bench-scale hybrid powertrain, is built up -- component by component -- as students advance through the curriculum. The authors used the project to test two research hypotheses:…
Descriptors: Engineering Education, Design, Student Projects, Problem Solving
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