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Showing 1 to 15 of 31 results Save | Export
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Ardito, Gerald; Czerkawski, Betül; Scollins, Lauren – TechTrends: Linking Research and Practice to Improve Learning, 2020
Problem-solving and critical thinking are considered important skills to be developed by students, and are supported by the development of Computational Thinking (CT) skills. This study investigated the collaborative development of CT skills in sixth grade students via a six week LEGO robotics program. This robotics program focused on the…
Descriptors: Problem Solving, Thinking Skills, Middle School Students, Robotics
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Easter, Jaclyn; Hollister, Erin; Wilcox, Jesse – Science and Children, 2019
Although science, technology, engineering, and mathematics (STEM) initiatives have received increased attention in recent years (Bybee 2011), the focus is often on science and mathematics (Thornburg 2009). Yet, engineering has been referred to as "the glue that holds the other STEM subjects together" (Thornburg 2009). With the release of…
Descriptors: STEM Education, Problem Solving, Elementary School Students, Grade 3
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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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Gutiérrez Ortiz, Francisco Javier; Fitzpatrick, John J.; Byrne, Edmond P. – European Journal of Engineering Education, 2021
The engineering graduate of today will engage in a career which will span the middle of the twenty-first century, and beyond. They will work in a world which is increasingly more complex and uncertain than at any time before. This will require an integrated combination of technical knowledge and transferable skills and values, to a greater extent…
Descriptors: Engineering Education, Chemical Engineering, Foreign Countries, Teaching Methods
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Zapata-Ramos, Mari Luz; Lugo, José E. – Advances in Engineering Education, 2020
Students are attracted to innovation and entrepreneurship. However, it is challenging for them to take courses in I&E due to their already busy curriculums. This paper describes the "New Venture Design Experience," a one-year interdisciplinary program that pairs core and elective courses between the colleges of Engineering and…
Descriptors: Design, Entrepreneurship, Teaching Methods, Engineering Education
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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
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Zhang, Xiaoyan; Ye, Ruifang; Hu, Fengxian; Zheng, Yitao; Gao, Shuhong; Wang, Qiyao; Bai, Yunpeng – American Biology Teacher, 2019
In recent years, accreditation standards for international engineering education have led to a dramatic rise in the use of outcome-based education at universities. In this system, enticing new undergraduate students to science and engineering, although challenging, is the first important step toward building students' career competencies. An…
Descriptors: Biotechnology, Undergraduate Students, Acceleration (Education), International Education
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Cloutier, Aimee; Yew, Guo Zheng; Gupta, Siddhartha; Dissanayake, Kalpani; Monaco, Paula – Journal of Pre-College Engineering Education Research, 2018
The importance of reducing the gender gap in engineering programs by recruiting and retaining female students is well recognized. Although women hold roughly half of all jobs in the United States, only 24% of STEM jobs are occupied by women. The problem is even more pronounced for engineering, where women held about 12% of jobs as of 2013 (Corbett…
Descriptors: Females, High School Students, STEM Education, Summer Programs
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de Melo Bezerra, Juliana; Martins, Cristiane Aparecida; Teles, Lara Kühl; de Oliveira, Neusa Maria Franco; da Silva, Maria Margareth; dos Santos, Leila Ribeiro; Piani, Raquel Caratti – International Association for Development of the Information Society, 2018
The development of transversal competences is essential for the success of engineers, who need to have the ability to adapt to the new and changing demands posed by modern society and scientific advances. It is a challenge for professors to teach and evaluate transversal competences, since such competences are related to attitudes and values. We…
Descriptors: Engineering Education, Competence, STEM Education, Student Motivation
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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
Digital Promise, 2017
As they prepared for the 2016-2017 school year, administrators and teachers at Design Tech High School ("d.tech"), a public charter school in Northern California, decided they needed a deeper understanding of how students learn. According to Nicole Cerra, Director of Learning, "Obviously you need to get to know students…
Descriptors: Brainstorming, Problem Solving, Public Schools, Charter Schools
Smith, Brian Eugene – ProQuest LLC, 2017
Within the confines of this study, the researcher investigated Project Lead the Way (PLTW) Engineering curriculum goals within Missouri high schools. The study measured Missouri PLTW teachers' perceptions of various elements of the curriculum as well as state and national PLTW End of Course student assessment data to determine if a relationship…
Descriptors: Engineering Education, High School Students, Program Descriptions, Course Descriptions
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Malheiro, Benedita; Silva, Manuel; Ribeiro, Maria Cristina; Guedes, Pedro; Ferreira, Paulo – European Journal of Engineering Education, 2015
Current engineering education challenges require approaches that promote scientific, technical, design and complementary skills while fostering autonomy, innovation and responsibility. The European Project Semester (EPS) at Instituto Superior de Engenharia do Porto (ISEP) (EPS@ISEP) is a one semester project-based learning programme (30 European…
Descriptors: Engineering Education, Problem Solving, Interdisciplinary Approach, Cultural Pluralism
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Mehta, Khanjan; Zappe, Sarah; Brannon, Mary Lynn; Zhao, Yu – Advances in Engineering Education, 2016
The Humanitarian Engineering and Social Entrepreneurship (HESE) Program engages students and faculty across Penn State in the rigorous research, design, field-testing, and launch of technology-based social enterprises that address global development challenges. HESE ventures are embedded in a series of five courses that integrate learning,…
Descriptors: Entrepreneurship, Educational Philosophy, Outcomes of Education, Interdisciplinary Approach
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Pratt, Kyle – Tech Directions, 2011
In Mr. Wood's technology class, students learned about many aspects of engineering, including design of a product, teamwork, testing hypotheses, and testing the final product. In this article, the author describes how his class, particularly his team, applied everything they learned about the process to their kayak design challenge using the IDEAL…
Descriptors: Problem Solving, Teamwork, Program Descriptions, Program Design
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