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Jimenez, Bree A.; Croft, Gemma; Twine, Jennifer; Gorey, Jacqueline – Journal of Special Education, 2021
The "Next Generation Science Standards" framework outlines scientific and engineering practices as a key element of student development. Educators are just beginning to discover effective and meaningful ways to teach science content to students with intellectual disability; however, the literature on teaching science practices is still…
Descriptors: Cognitive Processes, Problem Solving, Intellectual Disability, Students with Disabilities
White, Aien Charity Grace; Chaudhari, Apoorv; White, Jonathon David – Physics Education, 2021
Engaging Electrical Engineering (EE) students in a freshman general physics service course is challenging as they see little relationship between the topics and their major. Non-native speakers enrolled in a course taught in English face an additional challenge beyond understanding the basic physics, that is, understanding specialized English.…
Descriptors: Active Learning, Discovery Learning, Engineering Education, Physics
Magana, Alejandra J.; Chiu, Jennifer; Ying Seah, Ying; Bywater, James P.; Schimpf, Corey; Karabiyik, Tugba; Rebello, Sanjay; Xie, Charles – International Journal of Science Education, 2021
This multiple case study focused on the implementation of a computer-aided design (CAD) simulation to help students engage in engineering design to learn science concepts. Our findings describe three case studies that adopted the same learning design and adapted it to three different populations, settings, and classroom contexts: at the…
Descriptors: Case Studies, Computer Simulation, Engineering Education, Design
Yurtseven, M. Kudret; Buchanan, Walter W. – American Journal of Engineering Education, 2016
Decision making in most universities is taught within the conventional OR/MS (Operations Research/Management Science) paradigm. This paradigm is known to be "hard" since it is consisted of mathematical tools, and normally suitable for solving structured problems. In complex situations the conventional OR/MS paradigm proves to be…
Descriptors: Decision Making, Models, Industrial Education, Engineering Education
Swinson, Ronnie; Clark, Aaron C.; Ernst, Jeremy V.; Sutton, Kevin – Technology and Engineering Teacher, 2016
"Employers want individuals who are self-motivated, are driven, and can effectively communicate this to their work groups and supervisors" (Pence & Rowe, 2012, p. 50). Projects assigned by teachers or bosses can seem monumental, but by breaking them down into individual parts they can be managed to completion. There are many jobs…
Descriptors: Technical Occupations, Engineering, Teaching Methods, Technological Literacy
Liang, Dong; Chen, Guanbo; Tian, Hailin; Lu, Qi – Advances in Engineering Education, 2020
This article describes how the Sichuan University - Pittsburgh Institute has embraced new methods and new technologies to ensure high-quality laboratory teaching during the COVID-19 pandemic. Taking Mechanical Measurements 1 course as an example, this paper introduces two lab projects that were successfully transferred into online experiments…
Descriptors: Foreign Countries, Educational Technology, Technology Uses in Education, COVID-19
Suvannatsiri, Ratchasak; Santichaianant, Kitidech; Murphy, Elizabeth – European Journal of Engineering Education, 2015
This paper reports on a project in which students designed, constructed and tested a model of an existing early warning system with simulation of debris flow in a context of a landslide. Students also assessed rural community members' knowledge of this system and subsequently taught them to estimate the time needed for evacuation of the community…
Descriptors: Undergraduate Students, Engineering Education, Student Improvement, Emergency Programs
Colston, Nicole; Thomas, Julie; Ley, M. Tyler; Ivey, Toni; Utley, Juliana – Journal of Engineering Education, 2017
Background: Early-age engineering education can enhance preparedness and generate interest in engineering careers prior to college. This article reports on collaboration between a university engineer and science teacher educators to introduce engineering career awareness in elementary classrooms. The resulting elementary school curriculum,…
Descriptors: Elementary School Students, Engineering, Instructional Design, Instructional Effectiveness
Puente, S. M. Gómez; Jansen, J. W. – European Journal of Engineering Education, 2017
This paper aims at presenting the experience of the Power Conversion project in teaching students to design a proof-of-principle contactless energy transfer system for the charging of electrical vehicles. The Power Conversion is a second-year electrical engineering (EE) project in which students are to gather and apply EE knowledge to design and…
Descriptors: Engineering Education, Student Projects, Energy, Motor Vehicles
Ogbuanya, T. C.; Jimoh, Bakare – Journal of Education and Practice, 2015
The study determined dynamic pedagogies for effective training of youths in cell phone maintenance. The study was conducted in Enugu State of Nigeria. Four research questions were developed while four null hypotheses formulated were tested at 0.05 level of significance. A survey research design was adopted for the study. The population for the…
Descriptors: Foreign Countries, College Faculty, Questionnaires, Reliability
Singer, Kerri Patrick; Foutz, Tim; Navarro, Maria; Thompson, Sidney – American Journal of Engineering Education, 2015
Engineers today need both engineering knowledge and social science knowledge to solve complex problems. However, most people have a traditional view of engineering as a field dominated by math and science foci, with little social consequence. This study examined and compared perceptions about engineering from Freshmen taking three different First…
Descriptors: Control Groups, College Freshmen, Engineering Education, Learning Theories
Zou, Tracy X. P.; Mickleborough, Neil C. – Innovations in Education and Teaching International, 2015
The ability to solve problems with people of diverse backgrounds is essential for engineering graduates. A course on engineering grand challenges was designed to promote collaborative problem-solving (CPS) skills. One unique component is that students need to work both within their own team and collaborate with the other team to tackle engineering…
Descriptors: Cooperative Learning, Problem Solving, Engineering, Engineering Education
Ouahada, Khmaies – Education Sciences, 2019
A course evaluation is a process that includes evaluations of lecturers' teaching performances and their course material moderations. These two procedures are usually implemented, whether officially by the faculty of engineering or by lecturers' own initiatives, to help identify lecturers' strengths and weaknesses and the ways forward to improve…
Descriptors: Course Evaluation, Engineering Education, Foreign Countries, Instructional Materials
Bianchini, Barbara Lutaif; de Lima, Gabriel Loureiro; Gomes, Eloiza – ZDM: The International Journal on Mathematics Education, 2019
The relevancy of linear algebra (LA) in different areas and also the difficulties faced by undergraduate engineering students studying this content are well known. Grounded on this premise, we aimed at articulating papers related to the teaching and learning of LA in engineering undergraduate programs through a mapping of the main investigations…
Descriptors: Mathematics Instruction, Advanced Courses, Undergraduate Students, Engineering Education
Tanino, Yukie; Syed, Amer – Education Sciences, 2019
We designed a hands-on laboratory exercise to demonstrate why injecting an aqueous polymer solution into an oil reservoir (commonly known as "polymer flooding") enhances oil production. Students are split into three groups of two to three. Each group is assigned to a packed Hele-Shaw cell pre-saturated with oil, our laboratory model of…
Descriptors: Physics, Science Instruction, Plastics, Fuels

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