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Andrew J. Hughes; Mike Stitzer – Technology and Engineering Teacher, 2022
The intention of this article is to provide Technology and Engineering Educators (T&EEs) with a more thorough understanding of the product realization process (PRP) being implemented during machine design. Machines can be defined as the combination of simple machines and mechanisms for the purpose of doing work (Hughes & Merrill, 2021b).…
Descriptors: Technology Education, Engineering Education, Equipment, Design
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Diego Marques Cavalcante; Lucas Veiga Ávila; Rosley Anholon; Álvaro Luiz Neuenfeldt Júnior; Vitor W. B. Martins – International Journal of Sustainability in Higher Education, 2025
Purpose: This study aims, from the perspective of the recovery of sustainability, to develop a framework on sustainability and innovation in the formation of engineers in the courses of Engineering in the Brazilian Amazon. Design/methodology/approach: For this work, a quantitative approach was adopted in the research process. A survey instrument…
Descriptors: Foreign Countries, Sustainability, Climate, Environmental Education
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D. Kavitha; D. Anitha – Journal of Applied Research in Higher Education, 2025
Purpose: Engineering graduates are expected to have certain attributes in addition to technical expertise that includes development in personal and interpersonal skills with societal concern. Pedagogical strategies have been continuously evolving to improve the graduate attributes. An efficient framework for blended learning that improves the…
Descriptors: Blended Learning, Pedagogical Content Knowledge, Engineering Education, College Graduates
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Michal Balberg; Hen Friman; Heftsi Ragones; Ifaa Baner; Revital Shechter; Gila Kurtz – IEEE Transactions on Education, 2025
Contribution: This study demonstrates the effectiveness of a dedicated soft skills (SSs) course in an electrical engineering (EE) undergraduate program, showing improvements in students' appreciation and satisfaction of expressing most of these skills. Background: SSs, encompassing interpersonal and social competencies, are important for career…
Descriptors: Soft Skills, Engineering Education, Student Attitudes, Undergraduate Students
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Hisao Fukumoto; Tomoki Kamio; Toshihiro Matsuo; Takayuki Nitta; Hideki Shimada; Masashi Ohchi; Hideaki Itoh – IEEE Transactions on Education, 2025
Contribution: A remote laboratory system for induction motors was developed in this study. By creating an original simulated induction motor, the structure of the motor can be observed, and the current and magnetic flux can be measured safely. Background: Electrical machinery has little appeal to young engineers. Such machinery deals with…
Descriptors: Engines, Laboratories, Distance Education, Computer Simulation
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Ernesto Armando Pacheco-Velázquez; Virginia Rodés-Paragarino; Sergio Augusto Ramírez-Echeverri – Smart Learning Environments, 2025
The article discusses the efficacy of game-based learning (GBL) in logistics education, specifically through an empirical evaluation of the "Logistics Simulator LOST." Recognizing the complexities of evaluating serious games--interactive serious games platforms designed for educational, purpose--the article emphasizes the need for games…
Descriptors: Foreign Countries, Undergraduate Students, Engineering Education, Game Based Learning
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Vanessa Serrano; Jordi Cuadros; Laura Fernández-Ruano; Javier García-Zubía; Unai Hernández-Jayo; Francesc Lluch – Technology, Knowledge and Learning, 2025
In science and engineering education, remote laboratories are designed to bring ubiquity to experimental scenarios, by having real laboratories operated through the Internet. Despite that remote laboratories enable the collection of students' work data, the educational use of these data is still underdeveloped. Learning analytics dashboards are…
Descriptors: Learning Analytics, Educational Technology, Distance Education, Science Education
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P. Hariharasakthisudhan; K. Logesh; K. Sathickbasha; Sathish Kannan – Discover Education, 2025
This study presents a structured hybrid framework integrating Design Thinking (DT), the Conceive-Design-Implement-Operate (CDIO) methodology, and Root Assessment (RA) to enhance project-based learning (PBL) in engineering education. The framework addresses limitations in conventional PBL by embedding iterative ideation, structured engineering…
Descriptors: Student Projects, Active Learning, Design, Decision Making
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Kaplar, Marija; Lužanin, Zorana; Verbic, Srdan – International Journal of STEM Education, 2021
Background: In the rapidly changing industrial environment and job market, engineering profession requires a vast body of skills, one of them being decision making under uncertainty. Knowing that misunderstanding of probability concepts can lead to wrong decisions, the main objective of this study is to investigate the presence of probability…
Descriptors: Misconceptions, Probability, Engineering Education, Undergraduate Students
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Serkan Solmaz; Liesbeth Kester; Tom Van Gerven – Education and Information Technologies, 2024
Virtual reality has become a significant asset to diversify the existing toolkit supporting engineering education and training. The cognitive and behavioral advantages of virtual reality (VR) can help lecturers reduce entry barriers to concepts that students struggle with. Computational fluid dynamics (CFD) simulations are imperative tools…
Descriptors: Computer Simulation, Educational Environment, Engineering Education, Technology Uses in Education
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Nick Lux; Rebekah Hammack; Paul Gannon; Sweeney Windchief; Suzi Taylor; Abigail Richards; Douglas J. Hacker – Journal of STEM Outreach, 2024
This multi-methods investigation was conducted to examine the experiences of preservice and in-service elementary teachers (n=11) from rural and American Indian Reservation communities who participated in an NSF-funded Research Experience for Teachers (RET), a summer residential research-focused professional development experience. The primary…
Descriptors: Culturally Relevant Education, Energy, Engineering Education, Rural Education
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A. Martín Erro; S. Nuere Menéndez-Pidal – Journal of Visual Literacy, 2024
This paper aims to analyse to what extent the engineering curricula contribute to the development of visual literacy among engineering students. Communicating and thinking visually is a basic skill for all engineers, being a fundamental part of their educational stage. For this purpose, Engineering Graphics subjects from 30 engineering schools…
Descriptors: Visual Literacy, Engineering Education, Drafting, Foreign Countries
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Steffen Wild; Sebastian Rahn; Thomas Meyer – International Journal of Education in Mathematics, Science and Technology, 2024
Dropout rates in engineering degree programmes at universities are high, and skilled workers are needed. Universities try to prevent dropouts with different offers one of which is attending bridging courses. Research on the effects of these programmes is rare, especially in subject-specific programmes and study formats like cooperative education.…
Descriptors: Foreign Countries, Engineering Education, Undergraduate Students, Dropout Rate
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Katrien Van Poeck; Ellen Vandenplas; Leif Östman – Environmental Education Research, 2024
Knowledge about sustainability problems as it is typically taught does not "per se" lead to action for tackling these problems. Environmental and sustainability education researchers have argued for teaching more action-oriented knowledge. This article addresses the 'didactical work' required for teachers to do so, both in preparing and…
Descriptors: Environmental Education, Sustainability, Teaching Methods, Instructional Development
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Elien Sijmkens; Nico Scheerlinck; Mieke De Cock; Johan Deprez – International Journal of Mathematical Education in Science and Technology, 2024
Differential equations are an important mathematical concept used to model processes in many disciplines. However, the literature shows that students experience many difficulties when studying this topic. We investigate the effect of using context while teaching differential equations on engineering students' ability to construct and interpret…
Descriptors: Teaching Methods, Mathematics Instruction, Mathematical Concepts, Comparative Analysis
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