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López, Clara Isabel; Bautista, Luis Eduardo; Mantilla, Carlos – Education and Information Technologies, 2020
Currently, the use of computer-based technologies has increased to support the design process of biomedical products. However, the limited capacity of undergraduates to work with the technologies used in the development process negatively influences the research execution for biomedical product design. For this reason, we design a framework for…
Descriptors: Undergraduate Students, Engineering, Biomedicine, Equipment
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Deniz, Hasan; Kaya, Erdogan; Yesilyurt, Ezgi; Trabia, Mohamed – International Journal of Technology and Design Education, 2020
The Next Generation Science Standards in the United States placed a special emphasis on engineering unlike previous national science education policy documents. Some studies attempted to examine students' and teachers' nature of engineering (NOE) views, but NOE views should be better conceptualized before further exploration of students' and…
Descriptors: Elementary School Teachers, Teacher Attitudes, Knowledge Level, Engineering
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Ranscombe, Charlie; Bissett-Johnson, Katherine; Mathias, David; Eisenbart, Boris; Hicks, Ben – International Journal of Technology and Design Education, 2020
Novice design students struggle to engage with early stage design visualization tools such as sketching and prototyping. Instead students have a preference for designing with digital tools such as CAD modelling, motivated by inhibitions around sketching skill, which in turn leads to fixation and sunk cost effects. These behaviors present a barrier…
Descriptors: Toys, Design, Fidelity, Visualization
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Reeping, David – International Journal for Academic Development, 2020
The framework of threshold concepts has been used across several disciplines in higher education. Although the literature surrounding the identification of threshold concepts and their nature has flourished, their conceptualization has seemingly diverged across disciplinary lines, which should be recognized by educational developers who work with…
Descriptors: Fundamental Concepts, College Curriculum, Engineering, Writing (Composition)
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Ruayruay, Ekarut; Kirtikara, Krissanapong; Nopharatana, Montira; Chomsuwan, Komkrit; Suwannathep, Sasitorn – International Journal of Instruction, 2020
There is increasing pressure on higher education to include work-integrated learning (WiL) in its programs in order to prepare graduates for the workplace. However, there is a lack of detailed competencies required for this type of learning. The purpose of this study was to identify competencies needed for work-integrated learning (WiL). The case…
Descriptors: Foreign Countries, Work Experience Programs, Engineering Education, Foods Instruction
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Fonseca, Cecilia S.; Rosa, Clarissa H.; Lopes, Toni J.; Rosa, Gilber R. – Journal of Chemical Education, 2020
This report presents a miniproject for teaching sustainability through the production of adsorbents from sewage sludge. The activity was tested during the Physical Chemistry II portion of an Agro-Industrial Engineering Course and lasted 4 weeks. The activities developed by the students included preparing the adsorbents ("in natura,"…
Descriptors: Sustainability, Chemistry, Science Instruction, Industry
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Derrick, Jay – Journal of Workplace Learning, 2020
Purpose: This paper argues that the informal dimensions of practice are critical for understanding workplace learning and innovation, but have been under-theorised and under-researched. This paper aims to build on the thinking of Ellström (2010), Billett (2012) and Guile (2014) to account for the emergence of innovation through practice, and…
Descriptors: Workplace Learning, Educational Theories, Cooperative Learning, Engineering
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Quan, Gina M.; Gupta, Ayush – Journal of Engineering Education, 2020
Background: Tinkering, an ad hoc approach to solving a problem, involves manipulating objects to characterize and build knowledge about a particular system in an exploratory way, often with the goal of getting some product/idea to produce desired behavior. Tinkering contrasts more deliberate activity toward understanding how a phenomenon works.…
Descriptors: Design, Problem Solving, Object Manipulation, Productivity
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Liu, Qin; Reeve, Doug; Rottmann, Cindy; Moore, Emily – Canadian Journal of Science, Mathematics and Technology Education, 2020
Co-ops and internships complement students' classroom learning and constitute important contributors to the quality of engineering education. In light of Stephen Billett's affordance-engagement framework, we reviewed 30 selected empirical studies on undergraduate engineering students' co-op and internship experiences. From these studies, we…
Descriptors: Undergraduate Students, Engineering Education, Internship Programs, Cooperative Education
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Poor, C. J.; Dillon, H. E.; Chabert, A.; Bastida De Jesus, J. – Journal of Civil Engineering Education, 2020
This paper describes a laboratory experiment that was designed to improve engineering education in fluids and hydrology courses. The laboratory module is part of a broader effort to enhance the undergraduate engineering laboratory curriculum to incorporate modern pedagogical methods and to improve a defined set of student outcomes. The…
Descriptors: Laboratory Experiments, Earth Science, Engineering Education, Undergraduate Students
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Espino, Alejandro Ecos; Núñez, Joffré Huamán; Moscoso, Braulio Barzola; Chávez, Zoraida Manrique; Alvitez, Alejandro Rumaja; Cajo, Oscar García – International Association for Development of the Information Society, 2020
The study of the variational behavior of functions constitutes an important element in the understanding of the change of phenomena in real life. His understanding is an essential axis in the mathematical training of university students, especially those who pursue engineering careers. This article presents the results of a study whose objective…
Descriptors: Engineering Education, College Students, Error Patterns, Mathematics
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Kari N. Jurgenson; Ashley R. Delaney – Mathematics Teacher: Learning and Teaching PK-12, 2020
The Three Little Pigs launched a lesson in which kindergarten students were challenged with designing a house out of materials such as marshmallows and toothpicks that could withstand the Big Bad Wolf. Students engaged in the engineering design process and geometry standards while building and testing their models.
Descriptors: Kindergarten, Engineering, Design, Geometry
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Quelhas, Osvaldo Luiz Gonçalves; Lima, Gilson Brito Alves; Ludolf, Nicholas Van-Erven; Meiriño, Marcelo Jasmim; Abreu, Chrystyane; Anholon, Rosley; Vieira Neto, Julio; Rodrigues, Leandro Silva Goulart – International Journal of Sustainability in Higher Education, 2019
Purpose: This paper aims to deal with the skills for sustainable development in engineering courses. The main objective is to identify which competences should be developed in these courses to contribute to the resolution of conflicts related to sustainability, as well as the means used by universities for their development.…
Descriptors: Engineering Education, Sustainability, Competency Based Education, Specialists
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Pais-Montes, Carlos; Freire-Seoane, Maria Jesus; López-Bermúdez, Beatriz – Industry and Higher Education, 2019
Examination of the transition of successful students from university into the labour market reveals a significant gap between the competencies acquired during higher education and those needed in the workplace. In this article, the authors discuss a research study undertaken to analyse the employability traits of engineers who had recently…
Descriptors: Employment Potential, Engineering, Technical Occupations, Competency Based Education
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Hinkle, Christopher M.; Koretsky, Milo D. – European Journal of Engineering Education, 2019
Clubs constitute a prominant co-curricular activity to prepare students for effective professional careers, yet the role of engineering clubs in students' professional formation is poorly understood. This qualitative, comparative case study investigated three student engineering clubs at a large American public university. The clubs included a…
Descriptors: Clubs, Engineering Education, Service Learning, Student Attitudes
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