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McCord, Rachel E.; Matusovich, Holly M. – Journal of Engineering Education, 2019
Background: The use of metacognition is critical to learning, especially in fields such as engineering that involve problem-solving and difficult conceptual material. Due to limitations with current methodological approaches, new methods are needed to investigate engineering students' metacognitive engagement in learning situations that are…
Descriptors: Metacognition, Engineering Education, Problem Solving, Learning Processes
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Du, Xiangyun; Ebead, Usama; Sabah, Saed; Ma, Jianping; Naji, Khalid Kamal – EURASIA Journal of Mathematics, Science and Technology Education, 2019
Background: This study investigated the development of engineering students' approaches to learning and views on collaboration in a PBL environment. Material and methods: An explanatory mixed research approach was employed with participants from four PBL-implementing engineering courses in Qatar and China. 197 students responded to two surveys,…
Descriptors: Engineering Education, Student Attitudes, Undergraduate Students, Cooperative Learning
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Decker, Adrienne; McGill, Monica M. – Education Sciences, 2019
There has been considerable investment in pre-college educational interventions for all areas of STEM (including computer science). The goal of many of these initiatives is to engage and interest students early in their educational career. In this study, a systematic literature review was undertaken to determine the demographic and program data…
Descriptors: Literature Reviews, Differences, Engineering Education, STEM Education
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Malheiro, Benedita; Guedes, Pedro; Silva, Manuel F.; Ferreira, Paulo – Education Sciences, 2019
Engineering education addresses the development of professional competencies in undergraduates. In this context, the core set of professional competencies includes critical thinking and problem solving, effective communication, collaboration and team building, and creativity and innovation--also known as the four Cs--as well as socio-professional…
Descriptors: Engineering Education, Undergraduate Students, Problem Solving, Professional Development
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Trevelyan, James; Williams, Bill – European Journal of Engineering Education, 2019
This position paper sets out to examine value creation in the engineering enterprise, a process that has mostly been associated with innovation and entrepreneurs. An analysis of the literature on engineering value creation in business studies, engineering and engineering education publications shows that there has been surprisingly little…
Descriptors: Engineering Education, Values, Work Environment, Engineering
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Ozkan, Desen S.; McNair, Lisa D.; Bairaktarova, Diana – IEEE Transactions on Education, 2019
Contribution: This paper analyzes reflective thinking within organizational structures in higher education and draws parallels between the challenges faced by educators developing interdisciplinary courses and their students working in ill-structured projects. Background: Interdisciplinarity as a learning goal is prevalent across engineering…
Descriptors: Administrative Organization, Interdisciplinary Approach, Reflection, Campuses
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Burrow, Lauren; Cross, Chrissy – Science and Children, 2019
Created by Tufts University through a National Science Foundation (NSF)-funded project, the Novel Engineering website explains that "Novel Engineering is an integrated approach to teaching engineering and literacy" (2018) that asks teachers to support students' engagement in a project-based endeavor of problem-and-solution processes and…
Descriptors: Teaching Methods, Engineering Education, Student Projects, Problem Based Learning
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LaMeres, Brock J.; Burns, Maxwell S.; Thoman, Dustin B.; Smith, Jessi L. – IEEE Transactions on Education, 2019
Contribution: Prior studies on goal congruity show that students are more motivated to pursue careers that allow them to work with and help others and give back to their community (i.e., careers that afford prosocial value). This paper discovers this same pattern in electrical engineering (EE) and discovers that prosocial affordance beliefs are…
Descriptors: Goal Orientation, Careers, Occupational Aspiration, Engineering
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Weltman, Heather Richelle; Timchenko, Victoria; Sofios, Haritos Emanuel; Ayres, Paul; Marcus, Nadine – European Journal of Engineering Education, 2019
Adaptive tutorials enable engaged, personalised and interactive online learning that includes instant adaptive feedback. By integrating an adaptive tutorial into a large and diverse engineering mathematics course, we explored its potential to support and guide students' learning from afar. The aim of this study was to assess whether students…
Descriptors: Intelligent Tutoring Systems, Mathematics Instruction, Instructional Effectiveness, Engineering Education
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Kotze, H.; Spangenberg, E. D. – Perspectives in Education, 2019
Many engineering subjects rely on the interpretation of symbolic, numeric and graphic representations. Engineering students have challenges pertaining to their mathematical understanding of their actions with a computer algebra system (CAS). We investigated how a mathematical modelling task could mediate varied levels of mathematical…
Descriptors: Foreign Countries, Computer Uses in Education, Algebra, Educational Technology
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Knight, David B.; Davis, Kirsten A.; Kinoshita, Timothy J.; Twyman, Catherine; Ogilvie, Andrea M. – Advances in Engineering Education, 2019
Multiple reports suggest that future engineering work will be conducted by globally diverse teams for globally diverse customers. Despite the demonstrated benefits of study abroad opportunities to develop such global competencies, undergraduate engineers participate at low rates. The Rising Sophomore Abroad Program presented in this paper…
Descriptors: Engineering Education, Study Abroad, Experiential Learning, Global Approach
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Burks, Gabriel; Clancy, Kathryn B. H.; Hunter, Carla D.; Amos, Jennifer R. – Education Sciences, 2019
A national need exists to effectively engage women and people categorized as minorities in science, technology, engineering, and mathematics (STEM) fields and career paths. Given the minimal existence of standards and accreditation boards for engineering design and holistic engineering practice in K-12 contexts, we must better understand how said…
Descriptors: STEM Education, Females, High School Students, Ethics
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Sung, Euisuk; Kelley, Todd R. – International Journal of Technology and Design Education, 2019
Design is a key element of both the teaching and learning of engineering and technology. However, the process of engineering design has yielded limited research results. This study explored the iterative design process by searching for sequential design thinking patterns. The researchers collected nine concurrent think-aloud protocols from…
Descriptors: Sequential Approach, Design, Thinking Skills, Engineering Education
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Hirshfield, Laura J.; Chachra, Debbie – International Journal of Research in Education and Science, 2019
Project-based learning can be beneficial for engineering students, giving students the opportunity to complete mastery experiences that improve their engineering self-efficacy or academic self-confidence. However, despite the many potential benefits of projects, there can be issues with project-based learning: students may take on different tasks…
Descriptors: Active Learning, Student Projects, Engineering Education, Outcomes of Education
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Perry, Anthony; Estabrooks, Leigh – Science Teacher, 2019
The "Next Generation Science Standards" ("NGSS") emphasize integrating engineering design into the science classroom (NGSS Lead States 2013). Inventing is an authentic and relevant classroom approach, regardless of content area, located at one end of a design continuum opposite from routine problem solving. Invention, at the…
Descriptors: Intellectual Property, Problem Solving, Learner Engagement, Natural Disasters
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