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Hess, Justin L.; Strobel, Johannes; Brightman, Andrew O. – Journal of Engineering Education, 2017
Background: Perspective-taking, a key component of engineering, is particularly salient in engineering ethics. Yet practices for promoting its development in engineering students both within and outside of ethics education remain largely underexplored. Purpose: The objective of this investigation was twofold: first, we explored the aspects of an…
Descriptors: Empathy, Perspective Taking, Engineering Education, Consciousness Raising
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Passow, Honor J.; Passow, Christian H. – Journal of Engineering Education, 2017
Background: Under Washington Accord or ABET accreditation requirements, faculty must envision, collectively articulate, and prioritize the competencies that students should gain from their educational program to prepare for life and myriad career paths. Purpose: When faculty create specifications for designing a curriculum, they need to answer…
Descriptors: Competency Based Education, Engineering Education, Undergraduate Study, Teamwork
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Kong, Yi; Douglas, Kerrie A.; Rodgers, Kelsey J.; Diefes-Dux, Heidi; Madhavan, Krishna – Journal of Engineering Education, 2017
Background: The concepts of size and scale in nanotechnology are difficult for most beginning engineering students to grasp. Yet, guidance on the specific aspects of size and scale that should be taught and assessed is limited. Purpose: This research sought to empirically develop a framework for size and scale conceptualization and provide a…
Descriptors: Curriculum Design, Curriculum Evaluation, Curriculum Development, Engineering Education
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Lattuca, Lisa R.; Knight, David B.; Ro, Hyun Kyoung; Novoselich, Brian J. – Journal of Engineering Education, 2017
Background: Although interdisciplinarity has been a subject of interest and debate for decades, few investigations of interdisciplinary education exist. Existing studies examine the effects of interdisciplinary experiences on students' development of generic cognitive skills but not the development of interdisciplinary competencies.…
Descriptors: Interdisciplinary Approach, Competence, Engineering Education, Student Characteristics
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Budajová, Kristína; Komová, Eva; Berežný, Štefan; Glaser-Opitz, Henrich – Acta Didactica Napocensia, 2017
This article describes an educational challenge which was prepared for students at the faculty of Aeronautics, Technical University of Košice. Our goal is to improve the methods of the practical training by introducing modern automation and information technologies to the experiments and to the processing of acquired data. We have updated our…
Descriptors: Instructional Improvement, Technology Integration, Technology Uses in Education, Aviation Education
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Rønning, Frode – Teaching Mathematics and Its Applications, 2017
This paper is based on an on-going project for modernizing the basic education in mathematics for engineers at the Norwegian University of Science and Technology. One of the components in the project is using a computer-aided assessment system (Maple T.A.) for handling students' weekly hand-ins. Successful completion of a certain number of problem…
Descriptors: Foreign Countries, Computer Assisted Testing, Mathematics Tests, Mathematics Education
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Pascal, Jennifer; Tíjaro-Rojas, Rocío; Oyanader, Mario A.; Arce, Pedro E. – European Journal of Engineering Education, 2017
Relevant engineering applications, such as bioseparation of proteins and DNA, soil-cleaning, motion of colloidal particles in different media, electrical field-based cancer treatments, and the cleaning of surfaces and coating flows, belongs to the family of "Applied Field Sensitive Process Technologies" requiring an external field to…
Descriptors: Graduate Study, Introductory Courses, Engineering, Engineering Education
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Strimel, Greg J.; Grubbs, Michael E.; Wells, John G. – Technology and Engineering Teacher, 2017
The core subjects in P-12 education have a common key characteristic that makes them stable over time. That characteristic is a steady content. For example, in the sciences, the basics of biology remain the same--the cell is the basic building block around which organisms are defined, characterized, structured, etc. Similarly, the basics of…
Descriptors: Engineering Education, Technology Education, Educational History, Educational Change
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Canu, Michael; Duque, Mauricio; de Hosson, Cécile – European Journal of Engineering Education, 2017
Engineering students on control courses lack a deep understanding of equilibrium and stability that are crucial concepts in this discipline. Several studies have shown that students find it difficult to understand simple familiar or academic static equilibrium cases as well as dynamic ones from mechanics even if they know the discipline's criteria…
Descriptors: Engineering Education, Active Learning, Concept Formation, Scientific Concepts
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Puente, S. M. Gómez; Jansen, J. W. – European Journal of Engineering Education, 2017
This paper aims at presenting the experience of the Power Conversion project in teaching students to design a proof-of-principle contactless energy transfer system for the charging of electrical vehicles. The Power Conversion is a second-year electrical engineering (EE) project in which students are to gather and apply EE knowledge to design and…
Descriptors: Engineering Education, Student Projects, Energy, Motor Vehicles
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Dyehouse, Melissa; Weber, Nicole; Fang, Jun; Harris, Constance; David, Ray; Hua, Inez; Strobel, Johannes – Studies in Higher Education, 2017
Engineering professional associations identified environmental sustainability as a key responsibility of the educated engineer. Data from national surveys of the general public demonstrate low environmental knowledge levels and a high level of resistance when it comes to environmental behavior. The purpose of this study was to examine the…
Descriptors: Resistance to Change, Undergraduate Students, Engineering Education, Student Attitudes
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Hodgson, Dan; Cloran, Peter; Johnson, Rory – Primary Science, 2017
Engineering Habits of Mind (EHoMs) were first introduced to a target group of Year 9 (age 14) students who the authors felt were disengaged with science, technology, and computing. These students were invited to take part in an engineering challenge with a school in Qatar. This involved making a bridge and rolling a marble over the bridge. The…
Descriptors: Early Adolescents, Competition, Engineering Education, Parent School Relationship
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Holder, Lauren N.; Scherer, Hannah H.; Herbert, Bruce E. – Journal of Geoscience Education, 2017
Engaging students in problem-solving concerning environmental issues in near-surface complex Earth systems involves developing student conceptualization of the Earth as a system and applying that scientific knowledge to the problems using practices that model those used by professionals. In this article, we review geoscience education research…
Descriptors: Earth Science, Science Instruction, Problem Solving, Models
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Bairaktarova, Diana; Eodice, Michele – Advances in Engineering Education, 2017
Thermodynamics is a foundational course in nearly every engineering program. In a traditional classroom, instructors focus on the analysis of thermodynamic energy systems and their application to real world contexts. Because these complex systems can be difficult to understand, some instructors encourage students to tap into their creative side…
Descriptors: Creativity, Thermodynamics, Learner Engagement, Statistical Analysis
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Conradie, Peter; De Marez, Lieven; Saldien, Jelle – International Journal of Technology and Design Education, 2017
In this paper we evaluate the involvement of a partially blind user as lead user in the early stages of a product redesign during an undergraduate product design-engineering course. Throughout the early stages of product design, or fuzzy front end, there is a high level of uncertainty. End users, with their increased contextual knowledge can play…
Descriptors: Outcomes of Education, Design, Undergraduate Students, Visual Impairments
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