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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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Breen, Kimberly C.; Dotson, Mary Elizabeth; Madonna, Megan C.; Asturias, Gabriela; Pena, Daniela Mariucci; Springate, Hope; Alvarez, Valentina; Ramanujam, Nimmi – Advances in Engineering Education, 2023
Background: Through the human-centered design process (HCD), students, referred to as learners, can use a personal lens to contextualize engineering concepts and solve real-world problems (Goldman and Kabayadondo 2016). The Ignite program, created by the Center for Global Women's Health Technologies (GWHT) at Duke University, integrates the HCD…
Descriptors: Design, Thinking Skills, STEM Education, Intervention
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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
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Grohman, Magdalena G.; Gans, Nicholas; Lee, Eun Ah; Tacca, Marco; Brown, Matthew J. – Advances in Engineering Education, 2020
Engineering ethics education typically focuses on decisions by individual engineers and case studies of disasters. This does not reflect the everyday decisions that practicing engineers must make, and neglects the fact that most engineers work on teams rather than alone. The focus on safety and disaster prevention leaves little time for discussing…
Descriptors: Ethics, Engineering Education, Decision Making, Safety
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Morelock, John R.; Sochacka, Nicola W.; Lewis, Racheida S.; Walther, Joachim; Culloty, Christian M.; Hopkins, Jacob S.; Vedanarayanan, Shweta; Ofunne, Chukwuemeka K. – Advances in Engineering Education, 2020
This paper describes the use of a novel research platform called SenseMaker® to collect and analyze real-time data in the form of participants' qualitative accounts of COVID-19 along with online learning experiences and participants' own quantitative assessments of those experiences. Participants were faculty, students, and staff in the College of…
Descriptors: COVID-19, Pandemics, Online Courses, Distance Education
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Karkoub, Mansour; Yang, Chun-Lin; Karkoub, Wael; Raslan, Moustafa – Advances in Engineering Education, 2020
For many years, educators have been developing tools and techniques to improve the learning process in higher education; however, the vast majority of these do not focus directly on deep learning. In this work, an innovative teaching/learning tool is presented which focuses on deep learning of some engineering skills and principles. The tool is…
Descriptors: Engineering Education, Learning Processes, Higher Education, Teaching Methods
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Reck, Rebecca M.; Sreenivas, R. S.; Loui, Michael C. – Advances in Engineering Education, 2019
Laboratory kits allow students to take home laboratory equipment to complete experiments on their own time. Because of the lower cost, laboratory kits expand access to hands-on experiences for online courses and to budget-strapped campuses. Although students like laboratory kits, no previous studies compared student learning objectives on…
Descriptors: Laboratory Experiments, Undergraduate Study, Program Effectiveness, Engineering Education
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Ritz, Hadas; Schneider-Bentley, Lisa – Advances in Engineering Education, 2018
Collaborative learning is well-established as a method to improve student learning and retention in engineering classrooms. One problem with collaborative learning is difficulty maximizing engagement of all students during group activities. We tested a change in implementation of collaborative problem solving sessions (Workshops) in a first-year…
Descriptors: Undergraduate Students, Cooperative Learning, Problem Solving, Calculus
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Harichandran, Ronald S.; Erdil, Nadiye O.; Carnasciali, Maria-Isabel; Nocito-Gobel, Jean; Li, Cheryl – Advances in Engineering Education, 2018
An innovative approach to develop an entrepreneurial mindset in all undergraduate engineering and computer science students is being developed and implemented. The approach consists of the development of short e-learning modules on 18 entrepreneurial topics and the integration of these modules into regular courses in programs. A flipped classroom…
Descriptors: Entrepreneurship, Engineering Education, Electronic Learning, Computer Science Education
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Moskovitz, Cary – Advances in Engineering Education, 2017
This paper reports on a 3-year study utilizing a novel approach to providing students in an introductory engineering course with feedback on drafts of course writing projects. In the Volunteer Expert Reader (VER) approach, students are matched with university alumni or employees who have the background to give feedback from the perspective of the…
Descriptors: Undergraduate Students, Engineering Education, Introductory Courses, Feedback (Response)
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Clark, Renee M.; Kaw, Autar; Besterfield-Sacre, Mary – Advances in Engineering Education, 2016
Blended, flipped, and semi-flipped instructional approaches were used in various sections of a numerical methods course for undergraduate mechanical engineers. During the spring of 2014, a blended approach was used; in the summer of 2014, a combination of blended and flipped instruction was used to deliver a semi-flipped course; and in the fall of…
Descriptors: Engineering Education, Undergraduate Students, Blended Learning, Educational Technology
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Mena, Irene B.; Schmitz, Sven; McLaughlin, Dennis – Advances in Engineering Education, 2015
This paper describes the implementation and assessment of an aerospace engineering course in which undergraduate students worked on research projects with graduate research mentors. The course was created using the principles from cooperative learning and project-based learning, and consisted of students working in small groups on a complex,…
Descriptors: Course Evaluation, Engineering Education, Aerospace Education, Mentors
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Yuen-Reed, Gigi; Reed, Kyle B. – Advances in Engineering Education, 2015
A vital aspect of an answer is the confidence that goes along with it. Misstating the level of confidence one has in the answer can have devastating outcomes. However, confidence assessment is rarely emphasized during typical engineering education. The confidence-based scoring method described in this study encourages students to both think about…
Descriptors: Engineering Education, Student Evaluation, Self Evaluation (Individuals), Scoring
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Moore-Russo, Deborah; Cormier, Phillip; Lewis, Kemper; Devendorf, Erich – Advances in Engineering Education, 2013
Historically, the teaching of design theory in an engineering curriculum has been relegated to a senior capstone design experience. Presently, however, engineering design concepts and courses can be found through the entirety of most engineering programs. Educators have recognized that engineering design provides a foundational platform that can…
Descriptors: Engineering Education, Integrated Curriculum, College Curriculum, Archaeology
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Dahm, Kevin; Riddell, William; Merrill, Thomas; Harvey, Roberta; Weiss, Leigh – Advances in Engineering Education, 2013
Many engineering programs stress the importance of technological innovation by offering entrepreneurship electives and programs. Integration of entrepreneurship into the required engineering curriculum has predominantly focused on senior capstone design courses. This paper describes a strategy for integrating entrepreneurship into a…
Descriptors: Entrepreneurship, Engineering Education, Assignments, Surveys
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