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Sarah Renkert; Jung Han; Sherylyn Briller; Todd Kelley; Abrar Hammoud – Design and Technology Education, 2024
In design technology education, educators value student outcomes centered on concrete design ideas and a comprehensive understanding of prototyping. However, technology education must consider not only the general technology design process and quality but also human-technology interactions. Inevitably, designs for people are enmeshed in complex…
Descriptors: Design, Human Factors Engineering, Technology Education, Social Environment
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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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Capobianco, Brenda M.; Radloff, Jeffrey; Lehman, James D. – Journal of Science Teacher Education, 2021
As elementary schools across the U.S. continue to adopt new science education reform, attention is needed to understand how teachers make sense of using engineering design to teach science in their classroom settings. This study examined fourth-grade teachers' sense-making with learning to integrate engineering design-based science instruction and…
Descriptors: Elementary School Teachers, Teacher Attitudes, Grade 4, Suburban Schools
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Flowers, Jim; Gorski, Alecia – Technology and Engineering Teacher, 2017
Whether you teach elementary school students, secondary school students, or college students, you can include upcycling activities in your class to promote both design skills and an environmental ethic. This article shares how a teacher at one school is doing just this, providing suggestions for those who have different material processing…
Descriptors: Teaching Methods, Recycling, Wastes, Experiential Learning
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Kelley, Todd R. – Technology and Engineering Teacher, 2016
Precious moments in life for an educator are taking time to reflect upon his or her teaching practices to evaluate effectiveness and overall impact. Often this reflection is a weekly if not a daily process for educators using a reflective practitioner model (SchÖn, 1983). For professors, many universities have opportunities for tenured faculty to…
Descriptors: College Faculty, Sabbatical Leaves, Reflective Teaching, Educational Innovation
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Merwade, Venkatesh; Eichinger, David; Harriger, Bradley; Doherty, Erin; Habben, Ryan – Science and Children, 2014
While the science of sound can be taught by explaining the concept of sound waves and vibrations, the authors of this article focused their efforts on creating a more engaging way to teach the science of sound--through engineering design. In this article they share the experience of teaching sound to third graders through an engineering challenge…
Descriptors: Science Instruction, Acoustics, Scientific Concepts, Grade 3
Daugherty, Jenny – National Center for Engineering and Technology Education, 2012
Engineering has gained considerable traction in many K-12 schools. However, there are several obstacles or challenges to an effective approach that leads to student learning. Questions such as where engineering best fits in the curriculum; how to include it authentically and appropriately; toward what educational end; and how best to prepare…
Descriptors: Engineering, Biological Sciences, Physical Sciences, Elementary Secondary Education
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Livesay, Glen A.; Rogge, Renee D.; Dee, Kay C. – Advances in Engineering Education, 2010
Compared to the learning that occurs in most engineering courses, the learning that occurs in design courses is more dependent on students, and less dependent on instructors. Because typical course evaluations are instructor-centric and do not provide information about students' contributions to their learning, we developed a supplemental…
Descriptors: Engineering, Engineering Education, Design, Student Evaluation
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Radu, M. E.; Cole, C.; Dabacan, M. A.; Harris, J.; Sexton, S. – IEEE Transactions on Education, 2011
This paper presents the benefits and costs of providing students with unlimited access to programmable boards in digital design education, allowing hands-on experiences outside traditional laboratory settings. Studies were conducted at three universities in two different countries--Rose Hulman Institute of Technology, Terre Haute, IN; Washington…
Descriptors: Foreign Countries, Skill Development, Experiential Learning, College Students
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Simoni, M. – IEEE Transactions on Education, 2011
This paper describes an initial study of using tablet PCs and interactive course software in integrated circuit (IC) design courses. A rapidly growing community is demonstrating how this technology can improve learning and retention of material by facilitating interaction between faculty and students via cognitive exercises during lectures. While…
Descriptors: Computer Software, Educational Technology, Handheld Devices, Classroom Techniques
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Hsu, Ming-Chien; Purzer, Senay; Cardella, Monica E. – Journal of Pre-College Engineering Education Research, 2011
While there is a growing interest in infusing engineering into elementary classrooms, very little is known about how well positioned elementary teachers are to teach engineering. This study examined elementary teachers' perceptions of and familiarity with design,engineering, and technology (DET). We collected data from 192 elementary teachers…
Descriptors: Elementary School Teachers, Teacher Attitudes, Engineering Education, Technology Education
Kelley, Todd; Brenner, Daniel C.; Pieper, Jon T. – National Center for Engineering and Technology Education, 2010
A comparative study was conducted to compare two approaches to engineering design curriculum between different schools (inter-school) and between two curricular approaches, "Project Lead the Way" (PLTW) and "Engineering Projects in Community Service" (EPIC High) (inter-curricular). The researchers collected curriculum…
Descriptors: Curriculum Guides, Protocol Analysis, Surveys, Engineering
Lawanto, Oenardi; Stewardson, Gary – National Center for Engineering and Technology Education, 2009
The objective of this study was to evaluate grade 9-12 students' motivation while engaged in two different engineering design projects: marble-sorter and bridge designs. The motivation components measured in this study were focused on students' intrinsic (IGO) and extrinsic (EGO) goal orientations, task value (TV), self-efficacy for learning and…
Descriptors: Student Surveys, Questionnaires, Correlation, Student Motivation
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Hartman, Nathan W. – Engineering Design Graphics Journal, 2006
It has been suggested there is a knowledge base that surrounds the use of 3D modeling within the engineering design process and correspondingly within engineering design graphics education. While solid modeling receives a great deal of attention and discussion relative to curriculum efforts, and rightly so, surface modeling is an equally viable 3D…
Descriptors: Engineering Education, Design, Drafting, College Curriculum
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Hjalmarson, Margret; Diefes-Dux, Heidi A.; Bowman, Keith; Zawojewski, Judith S. – Journal of STEM Education: Innovations and Research, 2006
We have designed model-development sequences using a common context to provide authentic problem-solving experiences for first-year students. The model-development sequence takes a model-eliciting activity a step further by engaging students in the exploration and adaptation of a mathematical model (e.g., procedure, algorithm, method) for solving…
Descriptors: Problem Solving, Learning Experience, College Freshmen, Mathematical Models