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Moye, Johnny J. – Technology and Engineering Teacher, 2019
Today's world is shaped by technology and products engineered to serve society's needs and wants. The knowledge and skills required to develop and use these products are changing at an exponential rate (NASE&M, 2017; NRC, 2011). In order to understand and meet future challenges, it is vital that the United States produce technology- and…
Descriptors: Technology Education, Engineering Education, STEM Education, Problem Solving
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Lawrence Angrave; Jiaxi Li; Ninghan Zhong – Grantee Submission, 2022
To efficiently create books and other instructional content from videos and further improve accessibility of our course content we needed to solve the scene detection (SD) problem for engineering educational content. We present the pedagogical applications of extracting video images for the purposes of digital book generation and other shareable…
Descriptors: Instructional Materials, Material Development, Video Technology, Course Content
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Song, Ting; Becker, Kurt; Gero, John; DeBerard, Scott; DeBerard, Oenardi; Reeve, Edward – Journal of Technology Education, 2016
The authors investigated the differences in using problem decomposition and problem recomposition between dyads of engineering experts, engineering seniors, and engineering freshmen. Participants worked in dyads to complete an engineering design challenge within 1 hour. The entire design process was video and audio recorded. After the design…
Descriptors: Engineering, Design, Engineering Education, Cooperation
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Martínez, Yolanda García; Velázquez, Claudia Alvarado; Castillo, Rolando Delgado – Universal Journal of Educational Research, 2016
This paper pursues to define the pillars for designing the specific (SC) and optional curricula (OC) of Unit Operations and Processes (UOP) Discipline in the Chemical Engineering Program. To achieve this objective a methodology was developed, which was characterized by the participation of every member in the educational process: professors,…
Descriptors: Chemical Engineering, Engineering Education, Program Descriptions, Foreign Countries
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McCormick, Mary E.; Hammer, David – Journal of Pre-College Engineering Education Research, 2016
Novel Engineering activities are premised on the integration of engineering and literacy: students identify and engineer solutions to problems that arise for fictional characters in stories they read for class. There are advantages to this integration, for both engineering and literacy goals of instruction: the stories provide ''clients'' to…
Descriptors: Engineering Education, Learner Engagement, Design, Engineering
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Silva, Arlindo; Fontul, Mihail; Henriques, Elsa – European Journal of Engineering Education, 2015
Engineering design is known as an answer to an ill-defined problem. As any answer to an ill-defined problem, it can never be completely right or absolutely wrong. The methods that universities use to teach engineering design, as a consequence of this, suffer from the same fate. However, the accumulated experience with the "chalk and…
Descriptors: Foreign Countries, Engineering, Engineering Education, Design
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Bergsten, Christer; Engelbrecht, Johann; Kågesten, Owe – International Journal of Mathematical Education in Science and Technology, 2015
This study forms part of a collaboration project between universities in South Africa and Sweden in which we investigate whether the emphasis in undergraduate mathematics courses for engineering students would benefit from being more conceptually oriented than a traditional more procedurally oriented way of teaching. In this paper, we report in…
Descriptors: Foreign Countries, Mathematics Instruction, Engineering, Engineering Education
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Long, Nguyen Tien; Yen, Nguyen Thi Hoang; Van Hanh, Nguyen – International Journal of Education and Practice, 2020
The STEM education emphasizes on Science, Technology, Engineering and Mathematics with a major focus on engineering design process that engineers require in solving challenges or problems. Kolb's model provides micro-learning activities such as experiencing, sharing and processing, generalizing and applying. Therefore, both Kolb's model and…
Descriptors: Experiential Learning, Problem Based Learning, Problem Solving, Engineering
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Brijlall, Deonarain; Ally, Noor – EURASIA Journal of Mathematics, Science and Technology Education, 2020
The narrative permeating higher education institutions globally is the assimilation of advancing information and communications technology into mainstream Mathematics Education. In this paper we report on a mixed mode case study which explored possible mathematical gaps that created barrier/s when engineering students (n=162) worked with the…
Descriptors: Introductory Courses, Engineering Education, Mathematics Education, Mathematics Skills
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Sa Ngiamsunthorn, Parinya – Journal of Research and Advances in Mathematics Education, 2020
Gifted students need a form of special education through extracurricular and learning experiences because they have extraordinary potential in terms of intelligence, creativity, social and mentality, compared to other students. This study aims to investigate various teaching and learning approaches designed for gifted students, and to constitute…
Descriptors: Academically Gifted, Undergraduate Students, College Mathematics, Mathematics Instruction
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Gale, Jessica; Koval, Jayma; Ryan, Mike; Usselman, Marion; Wind, Stefanie – Journal of Pre-College Engineering Education Research, 2018
With the inclusion of engineering disciplinary core ideas (DCIs), the Next Generation Science Standards (NGSS) position engineering as a new priority in K-12 science classrooms. This paper reports findings from the implementation of SLIDER, a problem-based learning 8th grade physical science curriculum that integrates engineering and physical…
Descriptors: Engineering, Middle School Students, Problem Based Learning, Grade 8
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Duffy, Gavin; Power, Jason; Sorby, Sheryl; Bowe, Brian – Engineering Design Graphics Journal, 2018
Spearman concluded that performance on any test of mental ability could be explained by several cognitive factors organized hierarchically as one general factor and several subordinate specific factors (Spearman, 1904, 1927). The general factor accounted for the significant amount of inter-correlation between all ability tests for any one…
Descriptors: Spatial Ability, Intelligence, Problem Solving, Word Problems (Mathematics)
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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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Vaino, Katrin; Vaino, Toomas; Ottander, Christina – Science Education International, 2018
In this study, middle school students' (8th grade, n = 24) problem-solving processes were investigated while implementing a design-based science learning (DBSL) approach. DBSL tries to incorporate science learning with the processes of engineering design. A DBSL module was developed by the research team within which students were expected to…
Descriptors: Middle School Students, Secondary School Science, Science Process Skills, Problem Solving
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Bozkurt Altan, Esra; Üçüncüoglu, Irem; Özek, Hüseyincan – Journal of Inquiry Based Activities, 2019
This study aimed to present an example activity in which the engineering design process was used. The activity was carried out in an out-of-school learning environment in 12 periods of 40 minutes. Twenty-four students who were in the 6th, 7th or 8th grade, participated in the activity. Students were presented with a design problem in which moving…
Descriptors: Engineering Education, Design, Learning Activities, Corporations
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