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Martin, Taylor; Peacock, Stephanie Baker; Ko, Pat; Rudolph, Jennifer J. – Journal of Pre-College Engineering Education Research, 2015
Although the consensus seems to be that high-school-level introductory engineering courses should focus on design, this creates a problem for teacher training. Traditionally, math and science teachers are trained to teach and assess factual knowledge and closed-ended problem-solving techniques specific to a particular discipline, which is unsuited…
Descriptors: Teacher Education, Faculty Development, Engineering, Engineering Education
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Douglas, Elliot P.; Koro-Ljungberg, Mirka; McNeill, Nathan J.; Malcolm, Zaria T.; Therriault, David J. – European Journal of Engineering Education, 2012
Open-ended problem solving is a central skill in engineering practice; consequently, it is imperative for engineering students to develop expertise in solving these types of problems. The complexity of open-ended problems requires a unique set of skills. The purpose of this qualitative study was to investigate the approaches used by engineering…
Descriptors: Engineering, Problem Solving, Engineering Education, Protocol Analysis
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Duarte, Abel J.; Malheiro, Benedita; Arnó, Elisabet; Perat, Ignasi; Silva, Manuel F.; Fuentes-Durá, Pedro; Guedes, Pedro; Ferreira, Paulo – IEEE Transactions on Education, 2020
Contribution: An analysis of the extent to which sustainability is present in the syllabi, project briefs, report templates, and student final reports of the three Iberian European project semester (EPS) providers, over a five-year period. Background: EPS is a one-semester capstone project framework that adopts project-based learning and…
Descriptors: Engineering Education, Sustainable Development, Problem Solving, Student Projects
Bi, Youyi – ProQuest LLC, 2017
Human-centered design requires thorough understanding of people (e.g. customers, designers, engineers) in order to better satisfy the needs and expectations of all stakeholders in the design process. Designers are able to create better products by incorporating customers' subjective evaluations on products. Engineers can also build better tools…
Descriptors: Eye Movements, Interdisciplinary Approach, Problem Solving, Familiarity
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Khazaal, Hasan F. – Journal of College Teaching & Learning, 2015
Encouraging engineering students to handle advanced technology with multimedia, as well as motivate them to have the skills of solving the problem, are the missions of the teacher in preparing students for a modern professional career. This research proposes a scenario of problem solving in basic electrical circuits based on an e-learning system…
Descriptors: Problem Solving, Electronic Learning, Engineering Education, Video Technology
Lamies Jouries Nazzal – ProQuest LLC, 2015
There is a growing call for enhancing creativity in engineering education. However, research indicates that most higher education institutions still lack the needed criteria for providing students with real-world experience that will hone their creative problem solving skills. Creating such environments requires a deeper understanding of different…
Descriptors: Creativity, Problem Solving, Engineering Education, Student Attitudes
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Cox, Charles; Reynolds, Birdy; Schunn, Christian; Schuchardt, Anita – Journal of STEM Education: Innovations and Research, 2016
There are strong classroom ties between mathematics and the sciences of physics and chemistry, but those ties seem weaker between mathematics and biology. Practicing biologists realize both that there are interesting mathematics problems in biology, and that viewing classroom biology in the context of another discipline could support students'…
Descriptors: Secondary School Science, Biology, Mathematics, Engineering
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Douglass, Helen – Science and Children, 2016
This column presents ideas and techniques to enhance science teaching. In today's classrooms, teachers face numerous challenges. They are preparing students for jobs and careers that are not even conceived of yet. Assessments are being used to address students' college and career readiness and to promote critical thinking and problem solving.…
Descriptors: Teaching Methods, Science Instruction, Critical Thinking, Problem Solving
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Rice, Joshua E.; Rugg, Bradley; Davis, Sharon – Journal of Extension, 2016
Youth involved in 4-H projects have been engaged in science-related endeavors for years. Since 2006, 4-H has invested considerable resources in the advancement of science learning. The new Minnesota 4-H Science of Agriculture Challenge program challenges 4-H youth to work together to identify agriculture-related issues in their communities and to…
Descriptors: Youth Programs, Agriculture, Community Problems, Community Programs
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Oehrli, Robbie – Technology and Engineering Teacher, 2016
Engineering design is a core component of technology and engineering education, and although not every student will become an engineer following high school, all students can profit from having engineering design experiences in high school (Apedoe, Reynolds, Ellefson, & Schunn, 2008; Denson & Lammi, 2014; Grubbs & Strimel, 2015;…
Descriptors: High School Students, Engineering, Design, Critical Thinking
Ansari, Fazel; Seidenberg, Ulrich – International Association for Development of the Information Society, 2016
This paper discusses the complementarity of human and cyber physical production systems (CPPS). The discourse of complementarity is elaborated by defining five criteria for comparing the characteristics of human and CPPS. Finally, a management portfolio matrix is proposed for examining the feasibility of optimal collaboration between them. The…
Descriptors: Problem Solving, Cybernetics, Feasibility Studies, Human Factors Engineering
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Eren-Sisman, E. N.; Cigdemoglu, C.; Geban, O. – Chemistry Education Research and Practice, 2018
This study aims to compare the effectiveness of a Peer-Led Team Learning (PLTL) model with that of traditional college instruction (TCI) in enhancing the conceptual understanding and reducing both the state anxiety and social anxiety of undergraduate engineering students in a general chemistry course in a quasi-experimental design. 128 engineering…
Descriptors: Undergraduate Students, Anxiety, Engineering Education, Quasiexperimental Design
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Grubbs, Michael E.; Strimel, Greg J.; Kim, Eunhye – International Journal of Technology and Design Education, 2018
Cultivating students' design abilities can be highly beneficial for the learning of science, technology, engineering, and mathematics (STEM) concepts, and development of higher-order thinking capabilities (National Academy of Engineering and National Research Council in STEM integration in k-12 education: status, prospects, and an agenda for…
Descriptors: Design, Engineering Education, Technology Education, Developmentally Appropriate Practices
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Yoder, S. Elizabeth; Kurz, M. Elizabeth – Journal of Education for Business, 2015
Linear programming (LP) is taught in different departments across college campuses with engineering and management curricula. Modeling an LP problem is taught in every linear programming class. As faculty teaching in Engineering and Management departments, the depth to which teachers should expect students to master this particular type of…
Descriptors: Programming, Educational Practices, Engineering, Engineering Education
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Geng, Jianming; Chen, Kaiyuan; Wang, Nengxin; Ling, Sihan; Guo, Muqi; Huang, Zuyi – Chemical Engineering Education, 2019
US high school (HS) students are lagging behind their foreign peers in math performance. It is thus necessary to design teaching modules that motivate US HS students to learn more math and to improve their math skills. Our study set out to test two different software programs designed for the development of such skills. MATLAB Simulink provides a…
Descriptors: High School Students, Secondary School Mathematics, Mathematics Education, Computer Software
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