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Craig A. Chin – Advances in Engineering Education, 2025
Differentiated instruction (DI) is a teaching approach in which learning experiences are designed and adapted to meet students' diverse needs to facilitate student success. Advocates of this approach have implemented it in primarily K-12 learning environments with limited investigations into implementing it in college/engineering course…
Descriptors: Individualized Instruction, Readiness, Engineering Education, Learning Modules
Jacob C. Crislip; Esai Lopez; Cameron D. Armstrong; Taylor Petell; Laila Abu-Lail; Andrew R. Teixeira – Advances in Engineering Education, 2023
A chemical engineering student's knowledge of theory, experimental design, and real-world processes is tested and enforced in the Unit Operations laboratory courses. However, instructors are facing challenges of delivering high-quality, hands-on laboratory content with limited resources and increasingly large class sizes. Limited in-lab time is…
Descriptors: College Students, Chemical Engineering, Science Laboratories, Computer Simulation
Strehl, Elizabeth A.; Loweth, Robert P.; Daly, Shanna R. – Advances in Engineering Education, 2022
Design interviews with stakeholders are an important source of information that engineering designers can use to identify stakeholder needs and develop solutions that meet stakeholder requirements. However, engineering students often struggle to conduct effective design interviews. In this study, we investigated changes in engineering students'…
Descriptors: Blended Learning, Engineering Education, Design, Models
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
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
Naveh, Gali; Bakun-Mazor, Dagan; Tavor, Dorith; Shelef, Amit – Advances in Engineering Education, 2022
More than a half century has passed since the first integration of problem-based learning (PBL) in higher education teaching. Despite the extensive investigation focused on this pedagogy, rigorous research on the impact of PBL in civil engineering is limited. Thus, this study aims to provide a thorough evaluation of students' perceptions of PBL in…
Descriptors: Problem Based Learning, Civil Engineering, Higher Education, Student Attitudes
Dodson, Kirsten Heikkinen; Baugh, Daniela; Roland, Avery; Edmonds, Sara; York, Hannah Pinson – Advances in Engineering Education, 2022
At the Peugeot Center for Engineering Service in Developing Communities at Lipscomb University, seventeen years of experience have provided the foundation for a program that creates lasting impact. In comparison to other service learning or humanitarian engineering programs, the Peugeot Center is unique in that it achieves substantial impact on…
Descriptors: Foreign Countries, Engineering Education, Developing Nations, Service Learning
Mollica, Molly Y.; Kajfez, Rachel Louis; Riter, Elizabeth – Advances in Engineering Education, 2021
Community engaged learning has demonstrated educational benefits and is an especially promising method to engage a diverse group of students in engineering. In this work, we present toy adaptation for children with disabilities as a novel community engaged learning tool. According to students surveyed, this process is enjoyable, demonstrates the…
Descriptors: Toys, Children, Disabilities, Engineering Education
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
Mark A. Burns; Valerie N. Johnson; Kellie S. Grasman; Sanaz Habibi; Kaylee A. Smith; Anna I. Kaehr; Malia F. Lacar; Brian F. Yam – Advances in Engineering Education, 2023
Many engineering courses rely on in-person lectures and textbooks for content delivery, with homework sets and exams for evaluating and reinforcing student progress. Yet some research studies have shown that exams--high-pressure, time-limited assessments--are detrimental to the learning process and unnecessarily increase students' stress. We…
Descriptors: Engineering Education, Educational Technology, Student Centered Learning, Scaffolding (Teaching Technique)
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
Simmons, Denise R.; Lord, Susan M. – Advances in Engineering Education, 2019
Supporting diverse students in engineering education is considered a critical unsolved issue facing engineering education. The field continues to suffer from a lack of diversity and struggles to recruit and retain underrepresented students. We argue that structural barriers prevent equitable participation. In this paper, we examine structural…
Descriptors: Engineering Education, Student Diversity, Barriers, Racial Discrimination
Solnosky, Ryan; Fairchild, Joshua – Advances in Engineering Education, 2017
Many engineering faculty have limited skills and/or assessment tools to evaluate team dynamics in multidisciplinary team-based capstone courses. Rapidly deployable tools are needed here to provide proactive feedback to teams to facilitate deeper learning. Two surveys were developed based on industrial and organizational psychology theories around…
Descriptors: Curriculum, Surveys, Engineering, Engineering Education
Orr, Marisa K.; Jordan, Shawn S. – Advances in Engineering Education, 2019
Dynamics of Machine Elements is a junior-level course in mechanical engineering that covers the kinematics (motion) and kinetics (causes of motion) of machine elements such as linkages, cams, and gear trains. This paper describes the results of adding a Rube Goldberg Machine Contest® project to the course to address student concerns over the lack…
Descriptors: Teaching Methods, Motion, Kinetics, Equipment
Boehm, Rodney – Advances in Engineering Education, 2020
Entrepreneurial skills are being sought by companies as they consider college graduates, particularly engineers, for future employment. Technical skills have become the baseline while the ability to apply these skills in a business environment has become a key differentiator in the value of employees in corporate environments. To address this need…
Descriptors: Engineering Education, Entrepreneurship, Design, Extracurricular Activities