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Stanton, Ken C.; Bradley, Thomas H. – European Journal of Engineering Education, 2013
Assessment has become a central aspect of engineering education for evaluating student learning, attaining accreditation, and ensuring accountability. However, the final step of the assessment process, which requires assessment results be used to redesign courses and programmes, is appreciably underdeveloped in the literature. As such, this work…
Descriptors: Engineering, Engineering Education, Student Evaluation, Accreditation (Institutions)
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Roca-González, Cristina; Martin-Gutierrez, Jorge; García-Dominguez, Melchor; Carrodeguas, Mª del Carmen Mato – EURASIA Journal of Mathematics, Science & Technology Education, 2017
The present study assessed a short training experiment to improve spatial abilities using two tools based on virtual technologies: one focused on manipulation of specific geometric virtual pieces, and the other consisting of virtual orienteering game. The two tools can help improve spatial abilities required for many engineering problem-solving…
Descriptors: Engineering Education, Spatial Ability, Computer Uses in Education, Computer Simulation
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Wolff, Karin – Journal of Education and Work, 2017
Employer complaints of engineering graduate inability to "apply knowledge" suggests a need to interrogate the complex theory-practice relationship in twenty-first century real world contexts. Focussing specifically on the application of mathematics, physics and logic-based disciplinary knowledge, the research examines engineering…
Descriptors: Engineering Education, Undergraduate Students, Job Skills, Skill Development
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Bartholomew, Scott R.; Nadelson, Louis S.; Goodridge, Wade H.; Reeve, Edward M. – Educational Assessment, 2018
We investigated the use of adaptive comparative judgment to evaluate the middle school student learning, engagement, and experience with the design process in an open-ended problem assigned in a technology and engineering education course. Our results indicate that the adaptive comparative judgment tool effectively facilitated the grading of the…
Descriptors: Middle School Students, Evaluative Thinking, Learner Engagement, Design
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Andalibi, Mehran – International Journal of Higher Education, 2019
In the study herein aimed at incorporating the entrepreneurship mindset early on in the engineering curriculum of undergraduate students via a final project of an introductory programming course with MATLAB. Students were asked to find a need on campus, in the society, or in the market with a business potential and write a standalone application…
Descriptors: Creative Thinking, Engineering Education, Problem Solving, Entrepreneurship
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Masters, Heidi; Hilgendorf, Chelsey; Stundahl, Lisa; Gresl, Megan; Jentsch, Amber – Science and Children, 2019
To support elementary school students in finding a solution to an engineering problem, the authors developed a series of five lessons using the 5E Instructional Model (Bybee 2014). The lessons align with the "Next Generation Science Standards" and the "Common Core State Standards" and integrate the teaching and learning of…
Descriptors: Science Instruction, Teaching Methods, Grade 2, Elementary School Students
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English, Lyn D.; King, Donna T. – Teaching Children Mathematics, 2016
How do cross-bracing, geometry, and base isolation help buildings withstand earthquakes? These important structural design features involve fundamental geometry that elementary school students can readily model and understand. The problem activity, Designing an Earthquake-Resistant Building, was undertaken by several classes of sixth- grade…
Descriptors: Natural Disasters, Architecture, Geometry, Elementary School Students
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Gatling, Anne; Vaughn, Meredith Houle – Science and Children, 2015
Engineering is not a subject that has historically been taught in elementary schools, but with the emphasis on engineering in the "Next Generation Science Standards," curricula are being developed to explicitly teach engineering content and design. However, many of the scientific investigations already conducted with students have…
Descriptors: Engineering Education, Design, Science Instruction, Standards
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Almudi, Jose Manuel; Ceberio, Mikel – International Journal of Science and Mathematics Education, 2015
This study explored the quality of arguments used by first-year engineering university students enrolled in a traditional physics course dealing with electromagnetic induction and related problem solving where they had to assess whether the electromagnetic induction phenomenon would occur. Their conclusions were analyzed for the relevance of the…
Descriptors: Persuasive Discourse, Engineering Education, College Freshmen, Physics
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Hitt, Sarah Jayne; Holles, Cortney E. P.; Lefton, Toni – Advances in Engineering Education, 2020
This article discusses two multidisciplinary courses created at the Colorado School of Mines that were developed to integrate ethics into the first-year engineering curriculum: "Nature and Human Values" (NHV) and "Innovation and Discovery in Engineering, Arts, and Sciences" (IDEAS). In both NHV and IDEAS, our objectives are to…
Descriptors: Design, Ethics, Engineering Education, Interdisciplinary Approach
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Kelley, Todd R.; Knowles, J. Geoffery; Holland, Jeffrey D.; Han, Jung – International Journal of STEM Education, 2020
Background: Teachers can have a significant impact on student interest and learning in science, technology, engineering, and math (STEM) subjects and careers. Teacher self-efficacy can also significantly affect student learning. Researchers investigated the effects of teacher professional development and integrated STEM curriculum development on…
Descriptors: STEM Education, Communities of Practice, Curriculum Development, Faculty Development
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Chyung, Seung Youn; Winiecki, Donald J.; Hunt, Gary; Sevier, Carol M. – American Journal of Engineering Education, 2017
Team projects are increasingly used in engineering courses. Students may develop attitudes toward team projects from prior experience, and their attitudinal responses could influence their performance during team project-based learning in the future. Thus, instructors need to measure students' attitudes toward team projects during their learner…
Descriptors: Engineering Education, Student Attitudes, Teamwork, Student Projects
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Dare, Emily A.; Ellis, Joshua A.; Roehrig, Gillian H. – Journal of Pre-College Engineering Education Research, 2014
It is difficult to ignore the increased use of technological innovations in today's world, which has led to various calls for the integration of engineering into K-12 science standards. The need to understand how engineering is currently being brought to science classrooms is apparent and necessary in order to address these calls for integration.…
Descriptors: Science Teachers, Physics, Engineering, Engineering Education
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Wettstein, Stephanie G. – Advances in Engineering Education, 2018
In-class example problems that students work out on their own using active problem-solving are typically well received and help the students better learn the material; however, they are difficult to enact in large classes with limited resources due to the number of questions received and the speed at which different students work through the…
Descriptors: Pacing, Independent Study, Active Learning, Problem Solving
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Nijdam, Justin J. – Chemical Engineering Education, 2013
A homework assignment is outlined in which students learn Computational Fluid Dynamics (CFD) concepts of discretization, numerical stability and accuracy, and verification in a hands-on manner by solving physically realistic problems of practical interest to engineers. The students solve a transient-diffusion problem numerically using the common…
Descriptors: Homework, Assignments, Computation, Concept Teaching
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