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Charles John MacRobert – Journal of Civil Engineering Education, 2024
This study presents a practical developed for an undergraduate geotechnical engineering course. The practical was designed to reduce systematic issues so that students could focus on cognitive and conceptual issues rather than practical minutiae. Compression tests were carried out on dry halite, enabling consistent specimen densities to be…
Descriptors: Undergraduate Students, Mineralogy, Engineering Education, Engineering Technology
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Elena Sereiviene; Xiaotong Ding; Rundong Jiang; Juan Zheng; Andriy Kashyrskyy; Dylan Bulseco; Charles Xie – Journal of College Science Teaching, 2024
First-year engineering students are often introduced to the engineering design process through project-based learning situated in a concrete design context. Design contexts like mechanical engineering are commonly used, but students and teachers may need more options. In this article, we show how sustainable building design can serve as an…
Descriptors: College Freshmen, Engineering Education, Engineering Technology, Computer Assisted Design
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Garces, Sebastian; Vieira, Camilo; Ravai, Guity; Magana, Alejandra J. – Education and Information Technologies, 2023
Worked examples can help novice learners develop early schemata from an expert's solution to a problem. Nonetheless, the worked examples themselves are no guarantee that students will explore these experts' solutions effectively. This study explores two different approaches to supporting engineering technology students' learning in an…
Descriptors: Learner Engagement, Active Learning, Programming, Engineering Education
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Margaret Phillips; Erin M. Rowley; Paul McPherson – Issues in Science and Technology Librarianship, 2024
Technical standards are resources that are important for engineering and engineering technology students due to ABET accreditation requirements and future professional use of the documents. Previous studies have surveyed librarians at Association of Research Libraries (ARL) institutions with engineering programs and librarians at universities with…
Descriptors: Librarians, Academic Libraries, Librarian Attitudes, Standards
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Destenie Nock; Laura Pottmeyer; Alexana Cranmer – INFORMS Transactions on Education, 2025
Multiple studies call for engineering education to integrate social justice into classroom instruction. Yet, there is uncertainty regarding whether integrating these social topics into engineering curriculum will support or detract from the learning of technical concepts. This study focuses on evaluating how reframing technical assessments to…
Descriptors: Graduate Students, Engineering Education, Social Justice, Instructional Development
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Taleyarkhan, Meher R.; Lucietto, Anne M.; Hobson, Natalie L. F.; Azevedo, Therese M. – Journal of Global Education and Research, 2023
Engineering technology students often forgo a methodical approach of solving or answering questions on assignments or exams in favor of an intuition-based approach, emphasizing educated guessing (Broberg et al., 2008). Faculty observations have noted these student solutions often provide explanations, usually sans calculations, to support answers…
Descriptors: Engineering Education, Mathematics Anxiety, Intuition, College Students
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Nicholas O. Awuor; Cathy Weng; Isaac M. Matere; Jeng-Hu Chen; Dani Puspitasari; Khanh Nguyen Phuong Tran – Interactive Learning Environments, 2024
Engineering drawing is valuable in capturing geometric features, conveying engineering ideas, and creating a blueprint of the intended product. Engineering students usually perform orthographic projections, imagining a 3D situation and sketching its 2D representation. That requires imagination and mental visualization, determined by the learner's…
Descriptors: Foreign Countries, Vocational High Schools, High School Students, Engineering Education
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Vimal K. Viswanathan; Nikhitha Reddy Nukala; John Solomon – Journal of STEM Education: Innovations and Research, 2024
This paper describes applying a new brain-based instructional approach called "Tailored Instructions and Engineered Delivery using Protocols" (TIED UP) in an engineering classroom. Brain-based strategies leverage our knowledge about the functioning of the human brain to deliver the course information effectively. Although brain-based…
Descriptors: College Students, Engineering Education, Engineering Technology, College Faculty
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Yunze He; Meiyou Ding; Min Liu; Leyang Wu; Zheyuan Liu; Haiyan Guo; Hongjin Wang – International Review of Research in Open and Distributed Learning, 2024
Sensing and Detection Technology is a core course in engineering specialties. Traditional sensor teaching methods have obvious deficiencies in cultivating students' ability. To better foster students' comprehensive qualities, this study explored a 4D1P (Four Dimensions and One Penetration) teaching mode. We independently developed an industrial…
Descriptors: Engineering Education, Engineering Technology, Teaching Methods, Student Centered Learning
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Katsioloudis, Petros; Jones, Mildred – Engineering Design Graphics Journal, 2018
Results from a number of studies indicate that the type of light generated by the reflection on the surface of different types of surfaces can influence the spatial visualization ability; however, research provides inconsistent results. Considering this, a quasi-experimental study was conducted to identify the existence of statistically…
Descriptors: Light, Spatial Ability, Visualization, Engineering Technology
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Devine, Kevin; Chang, Yi-hsiang Isaac; Klitzing, Gunnar – Engineering Design Graphics Journal, 2019
Recent developments in Virtual Reality (VR) technology has prompted the manufacturing industry and software vendors to investigate VR's potential for process enhancement. In this paper, we present a study to investigate whether using VR could reduce an individual's cognitive workload during the process of programming an industrial robot. The…
Descriptors: Computer Simulation, Cognitive Processes, Difficulty Level, Programming
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Tretko, Vitaliy; Vashkurak, Yuriy – Comparative Professional Pedagogy, 2017
Conceptual bases of globalization influence onto engineer education in the field of nanoelectronics as well as formation of global skills necessary for life and work in a globalized society have been considered. Modern state of incorporating the global dimension into the process of future nanoelectronics engineers' learning has been analyzed. Key…
Descriptors: Global Approach, Professional Training, Engineering Education, Engineering Technology
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Phillips, Margaret; Zwicky, Dave – Issues in Science and Technology Librarianship, 2017
How might engineering technology students make use of patent information in the engineering design process? Librarians analyzed team project reports and personal reflections created by students in an undergraduate mechanical engineering technology design course, revealing that the students used patents to consider the patentability of their ideas,…
Descriptors: Intellectual Property, Engineering Education, Engineering Technology, Design
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Taleyarkhan, Manaz; Dasgupta, Chandan; Garcia, John Mendoza; Magana, Alejandra J. – Journal of Science Education and Technology, 2018
Engineering design thinking is hard to teach and still harder to learn by novices primarily due to the undetermined nature of engineering problems that often results in multiple solutions. In this paper, we investigate the effect of teaching engineering design thinking to freshmen students by using a computer-aided Design (CAD) simulation…
Descriptors: Design, Educational Technology, Engineering Education, Engineering Technology
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Van den Broeck, L.; De Laet, T.; Lacante, M.; Pinxten, M.; Van Soom, C.; Langie, G. – European Journal of Engineering Education, 2018
To stimulate a flexible lifelong learning system students can enter university via lateral entry. Unlike traditional first-year students, lateral entrance students are not well-studied. Therefore this study focuses on comparing first-year students with a specific group of lateral entrants, namely bridging students at the Faculty of Engineering…
Descriptors: Comparative Analysis, College Freshmen, Engineering, Engineering Education
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