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Showing 1 to 15 of 24 results Save | Export
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Renato B. Rodrigues; Jillian Seniuk Cicek – European Journal of Engineering Education, 2024
Sociotechnical thinking (STT) has recently emerged in response to technical-social dualism. It is defined as the ability to identify, address, and respond to both social and technical dimensions of engineering. As the number of publications on STT increases, so does the need to map the literature. This paper provides a scoping literature review of…
Descriptors: Engineering Education, Thinking Skills, Problem Solving, Social Problems
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Jonathan Olanrewaju Fatokun; Mishack Thiza Gumbo – Cogent Education, 2024
This paper reports on a narrative review of the criticality of problem-solving and troubleshooting skills for undergraduate Electronics Engineering students and its significance for industry readiness. The review was undertaken to understand the problems and troubleshooting skills learned and possessed by the Electronics Engineering training…
Descriptors: Problem Solving, Troubleshooting, Undergraduate Students, Electronics
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Deesha Chadha; Jerry Y. Y. Heng – Cogent Education, 2024
Engineering students are expected to develop their professional skills throughout the course of their degrees. Yet, there is no clear consensus among educators of which skills are being developed or how this is done effectively. This scoping review has been produced to draw together and disseminate information on effective techniques for…
Descriptors: Professional Education, Engineering Education, Communication Skills, Teamwork
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Henrik Worm Routhe; Jette Egelund Holgaard; Anette Kolmos – European Journal of Engineering Education, 2024
The increasing complexity of societal problems and the need for more interdisciplinary problem-solving in the future raise new demands for future engineering competences. Consequently, competences related to management and leadership must be reconsidered and reflected in both engineering education and engineering education research. This leads to…
Descriptors: Engineering Education, Management Development, Leadership Training, Research Reports
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Mohlin, Alice – Journal of Workplace Learning, 2023
Purpose: The purpose of this paper is twofold: to identify and map contemporary research on advanced technology implementations for problem-solving purposes in the manufacturing industry, and to further understand the organizational learning possibilities of advanced technology problem-solving in the manufacturing industry.…
Descriptors: Manufacturing Industry, Problem Solving, Organizational Learning, Technology Uses in Education
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Hsin-Yu Lee; Ting-Ting Wu; Chia-Ju Lin; Wei-Sheng Wang; Yueh-Min Huang – Journal of Educational Computing Research, 2024
Science, Technology, Engineering, and Mathematics (STEM) education is essential for developing future-ready learners in both secondary and higher education levels. However, as students transition to higher education, many encounter challenges with independent learning and research. This can negatively impact their Higher-Order Thinking Skills…
Descriptors: Experiential Learning, STEM Education, Scaffolding (Teaching Technique), Barriers
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Lu, Chang; Macdonald, Rob; Odell, Bryce; Kokhan, Vasyl; Demmans Epp, Carrie; Cutumisu, Maria – Journal of Computing in Higher Education, 2022
The field of computational thinking (CT) is developing rapidly, reflecting its importance in the global economy. However, most empirical studies have targeted CT in K-12, thus, little attention has been paid to CT in higher education. The present scoping review identifies and summarizes existing empirical studies on CT assessments in…
Descriptors: Computation, Thinking Skills, Higher Education, Educational Trends
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Albeshree, Fouzeh; Al-Manasia, Malik; Lemckert, Charles; Liu, Shuangzhe; Tran, Dat – International Journal of Mathematical Education in Science and Technology, 2022
Improving the mathematical skills of undergraduate Engineering and Information Technology (EIT) students has been an enduring challenge for educators. Lecturers continually implement new strategies that try to overcome the challenges encountered in teaching university students with varying levels of success being encountered. This paper provides…
Descriptors: Mathematics Instruction, Teaching Methods, Engineering Education, Technology Education
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Higuera Martínez, Oscar Iván; Fernández-Samacá, Liliana; Serrano Cárdenas, Lizeth Fernanda – European Journal of Engineering Education, 2021
This article conducts a systematic review of the literature, which seeks to present opportunities and trends in fostering creativity in science and engineering. The literature review is based on four phases: to identify eligible articles, screen and classify the selected documents, analyse the content and the citations, and report the findings and…
Descriptors: Creativity, Engineering Education, Creative Development, Science Education
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Tularam, Gurudeo A.; Machisella, Patrick – International Journal for Mathematics Teaching and Learning, 2018
Traditional teaching approaches are generally teacher-directed, where students are taught in a manner that is conducive to sitting and listening. It is often argued that these approaches may not provide students with valuable learning skills, and rather that non-traditional approaches to teaching and learning might better endow students with such…
Descriptors: Conventional Instruction, Nontraditional Education, Learning Strategies, Foreign Countries
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Passow, Honor J.; Passow, Christian H. – Journal of Engineering Education, 2017
Background: Under Washington Accord or ABET accreditation requirements, faculty must envision, collectively articulate, and prioritize the competencies that students should gain from their educational program to prepare for life and myriad career paths. Purpose: When faculty create specifications for designing a curriculum, they need to answer…
Descriptors: Competency Based Education, Engineering Education, Undergraduate Study, Teamwork
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Holder, Lauren N.; Scherer, Hannah H.; Herbert, Bruce E. – Journal of Geoscience Education, 2017
Engaging students in problem-solving concerning environmental issues in near-surface complex Earth systems involves developing student conceptualization of the Earth as a system and applying that scientific knowledge to the problems using practices that model those used by professionals. In this article, we review geoscience education research…
Descriptors: Earth Science, Science Instruction, Problem Solving, Models
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Lammi, Matthew; Denson, Cameron; Asunda, Paul – Journal of Pre-College Engineering Education Research, 2018
Engineering design activities offer the promise of enhanced learning and teaching in pre-college science, technology, engineering, and mathematics (STEM) settings. The wide variation and lack of coherence in research and practice concerning pre-college engineering design challenges necessitates an investigation of the literature. The overarching…
Descriptors: Secondary School Students, Engineering Education, Design, STEM Education
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Ahern, Aoife; Dominguez, Caroline; McNally, Ciaran; O'Sullivan, John J.; Pedrosa, Daniela – Studies in Higher Education, 2019
Developing optimum solutions to engineering problems typically relies on structured and complex thought processes that require evaluation, interpretation and opinion. Well-developed critical thinking (CT) skills are essential for dealing with the multi-dimensional nature of these problems. CT in an engineering context is well reported in teaching…
Descriptors: Critical Thinking, Engineering Education, Problem Solving, Thinking Skills
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Rodriguez-Andara, Alejandro; Río-Belver, Rosa María; Rodríguez-Salvador, Marisela; Lezama-Nicolás, René – International Journal of Sustainability in Higher Education, 2018
Purpose: The purpose of this paper is to deliver a roadmap that displays pathways to develop sustainability skills in the engineering curricula. Design/methodology/approach: The selected approach to enrich engineering students with sustainability skills was active learning methodologies. First, a survey was carried out on a sample of 189 students…
Descriptors: Sustainability, Engineering Education, Literacy, Active Learning
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