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Linus Geewe; Mirela Vinerean; Ala Sarah Alaqra; John Sören Pettersson – International Journal for Technology in Mathematics Education, 2024
First-year engineering students show difficulties in connecting basic vector algebra with manipulations using the graphical representation. Experiencing vectors in real applications can improve the process of learning vectors. Thus, we introduce a unique approach for using digital technologies, namely augmented reality. We utilized a video…
Descriptors: College Freshmen, Engineering Education, Computer Simulation, Algebra
Keita Yasuda; Izuru Senaha – Journal of Chemical Education, 2024
Clathrate hydrates are attractive materials for education because they form from water and familiar compounds, such as carbon dioxide, and are relevant to novel technologies. In this study, an attempt to propose a laboratory experiment was summarized, which used carbon dioxide clathrate hydrate as an educational material with carbon capture…
Descriptors: Chemistry, Science Instruction, Laboratory Experiments, Energy
Meng-Fei Cheng; Yu-Heng Lo; Chi-Ho Cheng – International Journal of Technology and Design Education, 2024
While it has been recognized that science, technology, engineering, and mathematics (STEM) education requires an interdisciplinary approach, integrating multiple subjects in a meaningful way remains challenging for teachers. This study aimed to design a STEM curriculum, emphasizing explicit and continuous scaffolding of students' reflection on…
Descriptors: STEM Education, Student Attitudes, Interdisciplinary Approach, Grade 10
Maria Vittoria Elena; Joshua D. Summers – International Journal of Technology and Design Education, 2024
This study explores the influence that an educational intervention has on students generating requirements for a design task. An experiment was performed in a fourth-year mechanical engineering design course by giving the participants a design problem from which they had to generate a list of requirements. A lecture on requirements was given and…
Descriptors: Engineering Education, Design, Lecture Method, Instructional Effectiveness
Basel Hammoda; Christoph Winkler – European Journal of Engineering Education, 2024
Future engineers are labelled entrepreneurial engineers, possessing business skills that enable them to perform effectively in various contexts. Entrepreneurship education is a key avenue for equipping engineering students with these skills, with a growing propagation in their curricula in recent years. Still, scholarly efforts are limited in this…
Descriptors: Foreign Countries, Engineering Education, Undergraduate Students, Entrepreneurship
Roberth Andres Villazon Montalvan; Annibal Affonso Neto; Clóvis Neumann – Journal of International Education in Business, 2024
Purpose: In today's highly competitive global business environment, there is a growing demand for professionals who possess well-developed soft skills. Such abilities include flexibility, effective communication and other skills. Soft skills are personal attributes and qualities that are more closely related to the emotional side of human beings.…
Descriptors: Soft Skills, Engineering Education, Student Development, Career Readiness
Roberto Duran-Novoa; Felipe Torres – Journal of Technology and Science Education, 2024
Problem-solving is at the core of engineering design, being fundamental for systematic innovation. During their education, students are taught numerous methods and tools, despite that literature shows debatable results regarding their real impact. Consequently, this study aims to quantify the relative impact of design methods on undergraduate…
Descriptors: Problem Solving, Undergraduate Students, STEM Education, Engineering Education
Radhika Kulkarni; Rajat Harne – Journal of Information Technology Education: Innovations in Practice, 2024
Aim/Purpose: The study seeks to utilize Augmented Reality (AR) in creating virtual laboratories for engineering education, focusing on enhancing teaching methodologies to facilitate student understanding of intricate and theoretical engineering principles while also assessing engineering students' acceptance of such laboratories. Background: AR, a…
Descriptors: Computer Simulation, Laboratory Experiments, Engineering Education, Educational Technology
D. O. Oyeka; C. A. Oyeka – Discover Education, 2024
The aim of this work is to explore the relationship between the skills acquired by students of Engineering in the Nigerian university education system and the demographic characteristics of the students, such as gender and age, which could influence the attainment of these skills. A total of 112 students were surveyed to determine which of 24…
Descriptors: Age Differences, Gender Differences, Skill Development, Engineering Education
Paul Taboada-González; Quetzalli Aguilar-Virgen – SAGE Open, 2024
Sustainable education is key to advancing environmental awareness and global responsibility. Institutional procedures can provide pressure points and opportunities to help foster the mainstreaming of sustainable development. This study aims to analyze how higher-level educational institutions influence environmental awareness and global…
Descriptors: Undergraduate Students, Student Attitudes, Sustainability, Engineering Education
Attasit Wiangkham; Rattawut Vongvit – Education and Information Technologies, 2024
The rapid development of metaverse technology provides countless opportunities for social interaction, collaboration, communication, and knowledge-sharing that will significantly impact human life. To ensure widespread adoption and acceptance, however, issues concerning approval, accessibility, privacy, and user behavior must be resolved.…
Descriptors: Technology Integration, Computer Simulation, Engineering Education, Models
Sasha Nikolic; Thomas F. Suesse; Sarah Grundy; Rezwanul Haque; Sarah Lyden; Ghulam M. Hassan; Scott Daniel; Marina Belkina; Sulakshana Lal – European Journal of Engineering Education, 2024
The literature on laboratory objectives in engineering education research is scattered and inconsistent. Systematic literature reviews identified the need for better understanding. This paper ranks the laboratory learning objectives across the cognitive, psychomotor and affective domains to improve scaffolding. It provides an opportunity for…
Descriptors: Engineering Education, Laboratories, Educational Objectives, Cognitive Processes
Michael P. Howard; Symone L. M. Alexander – Chemical Engineering Education, 2024
Chemical engineers must learn to connect concepts across vastly different scales, spanning from molecular structures to industrial processes. Here, we explore the use of a virtual-reality simulation with a companion video of an experiment to help undergraduate students connect nanoscale fundamentals to macroscale engineering observations.
Descriptors: Chemical Engineering, Computer Simulation, Video Technology, Science Experiments
Long Teng; Yuk Ming Tang; Raymond P. H. Wu; Gary C. P. Tsui; Yung Po Tsang; Chak Yin Tang – Smart Learning Environments, 2024
In today's world, remote-controlled robots are widely used across various industries due to their ability to enhance working efficiency in various applications. Learning about robot operation and human-computer interaction has emerged as a popular topic in recent times. Indeed, learning robotics can be challenging for many students as it requires…
Descriptors: Cooperative Learning, Robotics, Teaching Methods, Instructional Effectiveness
Agnieszka Kwapisz; Brock J. LaMeres – IEEE Transactions on Education, 2024
Contribution: This study synthesizes insights into the thematic focuses and linguistic attributes that resonate most in engineering faculty collaborations aimed at fostering entrepreneurial mindsets (EMs). It provides a roadmap for educators and institutions to effectively communicate and encourage entrepreneurial thinking in engineering.…
Descriptors: Engineering Education, Entrepreneurship, College Faculty, Teacher Collaboration