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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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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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Eder, Wolfgang Ernst – Universal Journal of Educational Research, 2016
Hubka's theory of technical systems (TTS) is briefly outlined. It describes commonalities in all engineering devices, whatever their physical principles of action. This theory is based on a general transformation system (TrfS), which can be used to show engineering in the contexts of society, economics and historic developments. The life cycle of…
Descriptors: Theories, Engineering Technology, Engineering Education, Systems Approach
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Dailey, Debbie – Gifted Child Today, 2017
With the release of the Next Generation Science Standards and the adoption of the standards by many states, teachers are encouraged to use the engineering design process (EDP) as an instructional approach to teaching science. However, teachers have limited time to teach science and will often neglect science in favor of mathematics and literacy…
Descriptors: Elementary School Students, Engineering Technology, Gifted, Talent
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Llewellyn, Douglas; Pray, Sandra; DeRose, Rob; Ottman, William – Science and Children, 2016
This column presents ideas and techniques to enhance science teaching. In this month's issue an upper elementary Science, technology, engineering, and math (STEM) challenge brings an engineer into the classroom while emphasizing cooperation, communication, and creativity. STEM activities come in various shapes and sizes. Some are quite involved…
Descriptors: Science Instruction, Teaching Methods, Elementary School Science, Engineering Technology
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Katz-Buonincontro, Jen; Davis, Orin; Aghayere, Abi; Rosen, Dave – Journal of Cognitive Education and Psychology, 2016
We report on the findings from an exploratory pilot study using the experience-sampling method (ESM) and interviews to examine learning in two undergraduate engineering technology courses designed to promote creativity. Results of the ESM analysis showed that students' positive experience decreased slightly in the first course and increased…
Descriptors: Pilot Projects, Learning Experience, Engineering Technology, Creativity
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Ward, Lauren; Lyden, Sarah; Fitzallen, Noleine – Australian Mathematics Teacher, 2016
Context based learning (CBL) is a powerful tool that utilises areas of student interest framed in meaningful contexts to foster development of new skills and understanding. For middle school students, engineering activities that relate to real-world problems provide suitable CBL contexts for acquiring conceptual scientific and mathematical…
Descriptors: Engineering Education, Engineering Technology, Middle School Students, Teaching Methods
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Cook, Kristin Leigh; Bush, Sarah B.; Cox, Richard – Science and Children, 2015
The power of 3D printing technology has grown exponentially in just the past few years--people around the world are using 3D printers to prepare food, create tailored clothing, build cars and homes, and advance the medical field in ways that never seemed possible. In classrooms across the nation, 3D printers have become increasingly common because…
Descriptors: Elementary School Science, Engineering Technology, Printing, Grade 4
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Rehmat, Abeera P.; Owens, Marissa C. – Science and Children, 2016
This column presents ideas and techniques to enhance your science teaching. This month's issue shares information about a unit promoting scientific literacy and the engineering design process. The integration of engineering with scientific practices in K-12 education can promote creativity, hands-on learning, and an improvement in students'…
Descriptors: Science Instruction, Scientific Literacy, Engineering Technology, Integrated Activities
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Turner, Mathew J.; Webster, Rustin D. – American Journal of Engineering Education, 2017
This paper describes a student-centered approach to a power engineering technology course using the flipped or inverted classroom as well as active learning in the form of group discussions and team problem solving. The study compares student performance and perceptions of a traditional, teaching-centered classroom to two different flipped…
Descriptors: Comparative Analysis, Student Centered Learning, Engineering Technology, Power Technology
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Zhan, Wei – Journal of STEM Education: Innovations and Research, 2014
Research experience has been proven to be effective in enhancing the overall educational experience for undergraduate students. In this article, two engineering research projects with undergraduate students involvement are discussed. The projects provided the undergraduate student researchers with motivation for independent research work and…
Descriptors: STEM Education, Undergraduate Students, Student Research, Engineering Education
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Mentzer, Nathan; Fosmire, Michael J. – Journal of Pre-College Engineering Education Research, 2015
This study measured the information gathering behaviors of high school students who had taken engineering design courses as they solved a design problem. The authors investigated what types of information students accessed, its quality, when it was accessed during the students' process, and if it impacted their thinking during the activity.…
Descriptors: High School Students, User Needs (Information), Engineering Technology, Design
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Roman, Harry T. – Technology and Engineering Teacher, 2013
This article encourages students to think multidimensionally and in a multidisciplinary fashion with this challenge, and choose a team that can support this kind of thinking. Presented is a challenge in which a major home improvement company makes tools and accessories for use by experienced and new homeowners. This company would like to provide…
Descriptors: Creative Thinking, Creative Activities, Creativity, Teamwork
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Apedoe, Xornam S.; Schunn, Christian D. – Instructional Science: An International Journal of the Learning Sciences, 2013
While the purposes of design and science are often different, they share some key practices and processes. Design-based science learning, which combines the processes of engineering design with scientific inquiry, is one attempt to engage students in scientific reasoning via solving practical problems. Although research suggests that engaging…
Descriptors: Success, Design, Learning, Problem Solving
Baele, Loren C. – ProQuest LLC, 2017
This multiple methods (Denzin, 1978) study investigated two instructional approaches, traditional module and electronic Problem-Based Learning instruction (e-PBL), used within a middle school engineering classroom focused on the variables of engagement, content knowledge, student self-assessment and teacher assessment of problem solving solutions.…
Descriptors: Middle School Students, Engineering Technology, Problem Solving, Teaching Methods
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