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Showing 1 to 15 of 24 results Save | Export
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Mantawy, Islam M.; Rusch, Conner; Ghimire, Sushil; Lantz, Lucas; Dhamala, Hari; Shrestha, Bipesh; Lampert, Anthony; Khadka, Mohit; Bista, Anima; Soni, Rhytham; Shaik, Abdulu Saleem; Lujan, Eric; Boyd, Mika; Pickings, Richard; Mabrich, Alexander – Education Sciences, 2019
Educational approaches in structural engineering have focused on classical methods for solving problems with manual calculations through assignments, quizzes, and exams. The use of computational software to apply the learned knowledge has been ignored for decades. This paper describes an educational approach to tackle the lack of applicable…
Descriptors: Engineering Education, Active Learning, Student Projects, Construction (Process)
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Burrow, Lauren; Cross, Chrissy – Science and Children, 2019
Created by Tufts University through a National Science Foundation (NSF)-funded project, the Novel Engineering website explains that "Novel Engineering is an integrated approach to teaching engineering and literacy" (2018) that asks teachers to support students' engagement in a project-based endeavor of problem-and-solution processes and…
Descriptors: Teaching Methods, Engineering Education, Student Projects, Problem Based Learning
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Zhan, Wei; Wang, Jyhwen; Vanajakumari, Manoj; Johnson, Michael D. – Advances in Engineering Education, 2018
This paper discusses an initiative called Product Innovation and Development (PID) that was launched at Texas A&M University. The goal of PID is to create a high impact learning environment that focuses on innovative product development. Undergraduate students are hired to develop innovative new products. The student teams generate ideas for…
Descriptors: Engineering Technology, Educational Environment, Undergraduate Students, Innovation
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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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Karkoub, Mansour; Yang, Chun-Lin; Karkoub, Wael; Raslan, Moustafa – Advances in Engineering Education, 2020
For many years, educators have been developing tools and techniques to improve the learning process in higher education; however, the vast majority of these do not focus directly on deep learning. In this work, an innovative teaching/learning tool is presented which focuses on deep learning of some engineering skills and principles. The tool is…
Descriptors: Engineering Education, Learning Processes, Higher Education, Teaching Methods
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Cloutier, Aimee; Yew, Guo Zheng; Gupta, Siddhartha; Dissanayake, Kalpani; Monaco, Paula – Journal of Pre-College Engineering Education Research, 2018
The importance of reducing the gender gap in engineering programs by recruiting and retaining female students is well recognized. Although women hold roughly half of all jobs in the United States, only 24% of STEM jobs are occupied by women. The problem is even more pronounced for engineering, where women held about 12% of jobs as of 2013 (Corbett…
Descriptors: Females, High School Students, STEM Education, Summer Programs
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Weatherton, Yvette Pearson; Sattler, Melanie; Mattingly, Stephen; Chen, Victoria; Rogers, Jamie; Dennis, Brian – Forum on Public Policy Online, 2012
In order to meet the challenges of sustainable development, our approach to education must be modified to equip students to evaluate alternatives and devise solutions that meet multi-faceted requirements. In 2009, faculty in the Departments of Civil, Industrial and Mechanical Engineering at the University of Texas at Arlington began implementation…
Descriptors: Engineering Education, Engineering, Sustainable Development, Educational Experience
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Van Overschelde, James P. – American Journal of Engineering Education, 2013
Project Lead the Way (PLTW) is a hands-on, project-based engineering curriculum for high school and middle school students, which has quadrupled annual enrollment in Texas in five years to over 23,000 students. The diversity of students participating has also increased dramatically. Using six years of longitudinally-linked student data, the…
Descriptors: Engineering, Engineering Education, High School Students, Middle School Students
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Yang, Yonggao; Li, Lin – American Journal of Engineering Education, 2013
Renewable energy is the most rapidly growing discipline in today's business world and is commonly viewed as the main arena for research and development in various fields. This article summarizes the work and efforts of an educational project conducted at Prairie View A&M University (PVAMU). A major goal of the project was to design renewable…
Descriptors: Engineering Education, Energy, Energy Education, Hands on Science
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Zhan, Wei; Porter, Jay R.; Morgan, Joseph A. – IEEE Transactions on Education, 2014
This paper discusses the design and implementation of laboratories and course projects using LabVIEW in an instrumentation course. The pedagogical challenge is to enhance students' learning of digital communication using LabVIEW. LabVIEW was extensively used in the laboratory sessions, which better prepared students for the course projects. Two…
Descriptors: Experiential Learning, Virtual Classrooms, Courseware, Database Management Systems
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Yilmaz, M.; Ozcelik, S.; Yilmazer, N.; Nekovei, R. – IEEE Transactions on Education, 2013
This paper presents an innovative two-course, laboratory-based, and design-oriented robotics educational model. The robotics curriculum exposed senior-level undergraduate students to major robotics concepts, and enhanced the student learning experience in hybrid learning environments by incorporating the IEEE Region-5 annual robotics competition…
Descriptors: Robotics, College Curriculum, College Seniors, Elective Courses
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Davis, Freddie J.; Lockwood-Cooke, Pamela; Hunt, Emily M. – American Journal of Engineering Education, 2011
Over the last few years, WTAMU Mathematics, Engineering and Science faculty has used interdisciplinary projects as the basis for implementation of a linked-class approach to Problem-Based Learning (PBL). A project that has significant relevance to engineering statics, fluid mechanics, and calculus is the Hydrostatic Pressure Project. This project…
Descriptors: Engineering Education, Undergraduate Students, Problem Based Learning, Interdisciplinary Approach
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Garcia, Oscar N.; Varanasi, Murali R.; Acevedo, Miguel F.; Guturu, Parthasarathy – Advances in Engineering Education, 2011
We analyze and study the beginning of a new Electrical Engineering Department, supported by an NSF Departmental Level Reform award, within a new College of Engineering in the 21st Century and also describe the academic approach and influences of an innovative cognitive-based approach to curriculum development. In addition, the approach taken…
Descriptors: Engineering Education, Electrical Occupations, Engineering, Departments
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Vaidyanathan, V. V.; Varanasi, M. R.; Kougianos, E.; Wang, Shuping; Raman, H. – IEEE Transactions on Education, 2009
This paper describes radio frequency identification (RFID) projects, designed and implemented by students in the College of Engineering at the University of North Texas, as part of their senior-design project requirement. The paper also describes an RFID-based project implemented at Rice Middle School in Plano, TX, which went on to win multiple…
Descriptors: Engineering Education, Radio, Student Projects, Middle School Students
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Zhan, Wei; Goulart, Ana; Morgan, Joseph A.; Porter, Jay R. – American Journal of Engineering Education, 2011
This paper discusses the details of the curricular development effort with a focus on the vertical and horizontal integration of laboratory curricula and course projects within the Electronic Engineering Technology (EET) program at Texas A&M University. Both software and hardware aspects are addressed. A common set of software tools are…
Descriptors: Engineering Education, Curriculum Development, Vertical Organization, Organization
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