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Boehm, Rodney – Advances in Engineering Education, 2020
Entrepreneurial skills are being sought by companies as they consider college graduates, particularly engineers, for future employment. Technical skills have become the baseline while the ability to apply these skills in a business environment has become a key differentiator in the value of employees in corporate environments. To address this need…
Descriptors: Engineering Education, Entrepreneurship, Design, Extracurricular Activities
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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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Martin, Taylor; Peacock, Stephanie Baker; Ko, Pat; Rudolph, Jennifer J. – Journal of Pre-College Engineering Education Research, 2015
Although the consensus seems to be that high-school-level introductory engineering courses should focus on design, this creates a problem for teacher training. Traditionally, math and science teachers are trained to teach and assess factual knowledge and closed-ended problem-solving techniques specific to a particular discipline, which is unsuited…
Descriptors: Teacher Education, Faculty Development, Engineering, Engineering Education
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McLurkin, J.; Rykowski, J.; John, M.; Kaseman, Q.; Lynch, A. J. – IEEE Transactions on Education, 2013
This paper describes the experiences of using an advanced, low-cost robot in science, technology, engineering, and mathematics (STEM) education. It presents three innovations: It is a powerful, cheap, robust, and small advanced personal robot; it forms the foundation of a problem-based learning curriculum; and it enables a novel multi-robot…
Descriptors: Robotics, STEM Education, Engineering Education, Problem Based Learning
Business-Higher Education Forum, 2013
The Business-Higher Education Forum (BHEF) is committed to aligning education and the workforce to create the talent and capacity for innovation necessary to keep regions, states, and the nation economically competitive. As part of that work, BHEF strives to analyze the factors that contribute to effective business and higher education…
Descriptors: Undergraduate Study, Program Descriptions, Fuels, Engineering Education
DeVitis, Joseph L., Ed. – Peter Lang Publishing Group, 2013
Mark Van Doren, the noted literary scholar, once remarked, "The college is meaningless without a curriculum, but it is more so when it has one that is meaningless." Many current critics of undergraduate curricula in America assent to the crucial need for programmatic renewal in our colleges and universities. They bemoan the cookie-cutter…
Descriptors: College Curriculum, Higher Education, Liberal Arts, General Education
Herbert, Doug, Ed. – US Department of Education, 2010
The purpose of the U.S. Department of Education's online newsletter "The Education Innovator" is to promote innovative practices in education; to offer features on promising programs and practices; to provide information on innovative research, schools, policies, and trends; and to keep readers informed of key Department priorities and…
Descriptors: Educational Innovation, Charter Schools, Public Schools, Money Management
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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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Linsey, Julie; Talley, Austin; White, Christina; Jensen, Dan; Wood, Kristin – Advances in Engineering Education, 2009
Active learning enhances engineering education. This paper presents rationale, curriculum supplements, and an approach to active learning that may be seamlessly incorporated into a traditional lecture-based engineering class. A framework of educational theory that structures the active learning experiences and includes consideration of learning…
Descriptors: Engineering Education, Active Learning, Mechanics (Physics), Educational Innovation
US Department of Education, 2008
Magnet schools have developed strong national and local constituencies among parents and educators, who see them as vehicles for bringing equity and academic excellence to all students. Typically, these schools offer innovative programs through a specialized focus or theme. They may emphasize subjects like science or the arts, or they may adopt…
Descriptors: Neighborhood Schools, Magnet Schools, Fine Arts, Research Methodology