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Chase, Darrell – Techniques: Connecting Education and Careers (J1), 2010
Districts face increasing pressure to improve students' mastery of curriculum in the fields of science, technology, engineering and mathematics (STEM). Yet the number of students enrolling in science and math courses drops dramatically in middle and high school. At Sylvester Middle School, Chinook Middle School and Cascade Middle School of the…
Descriptors: Career Exploration, Science Education, Technology Education, Engineering Education
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Sidhu, S. Manjit – Campus-Wide Information Systems, 2008
Purpose: This paper aims to present the development of technology-assisted problem solving (TAPS) packages at University Tenaga Nasional (UNITEN). The project is the further work of the development of interactive multimedia based packages targeted for students having problems in understanding the subject of engineering mechanics dynamics.…
Descriptors: Computer Simulation, Engineering, Geometric Concepts, Problem Solving
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Vanderburg, Willem H. – Bulletin of Science, Technology and Society, 2006
This third part continues the exploration of how we can overcome the limitations of the present knowledge system. In preparation, two aspects of current engineering theory and practice are examined because they are paradigmatic: the concept that engineering is essentially problem-solving, which goes against our understanding of human skill…
Descriptors: Theory Practice Relationship, Skill Development, Engineering Technology, Hidden Curriculum
Hills, Peter – Engineering Education, 1984
The design and construction of models forms the foundation of first-year design teaching (totaling 18 class hours) in the three-year mechanical engineering program at the Royal Military College of Science. Lists the aims of this approach, providing examples of the types of models produced by students while solving engineering problems. (JN)
Descriptors: College Instruction, Creativity, Engineering, Engineering Education
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Yannou, Bernard; Bigand, Michel – European Journal of Engineering Education, 2004
As teachers and researchers belonging to two sister French engineering schools, we are convinced that the processes of value creation and management are essential in today's teaching of industrial engineering and project managers. We believe that such processes may be embedded in a three-part curriculum composed of value management and innovation…
Descriptors: Engineering Education, Innovation, Engineering, Problem Solving
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Ritz, John M. – Journal of Technology Education, 2009
To develop meaningful instructional programs for technology education, goals need to be in place to direct the outcomes of curriculum development and teaching. Goals are program terminal outcomes that focus curriculum writers or teachers who structure content for learners. Goals provide direction so content can be delivered for long-term impact to…
Descriptors: Curriculum Development, Literacy, Technological Literacy, Technology Education
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Capobianco, Brenda M.; Tyrie, Nancy – Science and Children, 2009
In a unique school-university partnership, methods students collaborated with fifth graders to use the engineering design process to build their problem-solving skills. By placing the problem in the context of a client having particular needs, the problem took on a real-world appeal that students found intriguing and inviting. In this article, the…
Descriptors: Problem Solving, Science Instruction, Engineering Education, Science Process Skills
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Barak, Moshe – Innovations in Education and Teaching International, 2009
This paper deals with a course intended to teach individuals a method of convergent thinking, or "idea focusing", in seeking inventive solutions to problems and designing innovative artefacts. The course participants (mathematics, science, or technology teachers) learned a range of "inventive principles" often used for problem-solving in…
Descriptors: Research Methodology, Tests, Problem Solving, Convergent Thinking
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Marshall, Stephanie Pace – Roeper Review, 2010
This article offers a personal vision and conceptual design for reimagining specialized science, technology, engineering, and mathematics (STEM) academies designed to nurture "decidedly different" STEM minds and ignite a new generation of global STEM talent, innovation, and entrepreneurial leadership. This design enables students to engage…
Descriptors: Science Education, Technology Education, Engineering Education, Mathematics Education
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Woods, Donald R. – Chemical Engineering Education, 1977
Discusses definitions of problem solving, various theories related to teaching problem solving, and how they relate to teaching problem solving to engineering students. (MLH)
Descriptors: Educational Theories, Engineering, Engineering Education, Higher Education
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Rahman, Md. Baharuddin Haji Abdul; Daud, Khairul Azhar Mat; Jusoff, Kamaruzaman; Ghani, Nik Azida Abd – International Education Studies, 2009
This study explores the utilization of Project-based Learning module in the subject of project development for the Mechanical Engineering students at Politeknik Kota Bharu. This study focuses on the development of the PjBL module based on socio-constructivist approach. The objective of this study is to explore the influence of the utilization of…
Descriptors: Foreign Countries, Active Learning, Student Projects, Engineering Education
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Mentzer, Nathan; Becker, Kurt – Journal of Technology Education, 2010
The purpose of this study was to determine if a student's academic success, measured by grade point average (GPA) in mathematics, science, and communication courses, is correlated with student change in achievement during an engineering design challenge. Engineering design challenges have been implemented and researched in K-16 environments where…
Descriptors: Design, Grade Point Average, Academic Achievement, Achievement Tests
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Ozogul, G.; Johnson, A. M.; Moreno, R.; Reisslein, M. – IEEE Transactions on Education, 2012
Technological literacy education involves the teaching of basic engineering principles and problem solving, including elementary electrical circuit analysis, to non-engineering students. Learning materials on circuit analysis typically rely on equations and schematic diagrams, which are often unfamiliar to non-engineering students. The goal of…
Descriptors: Multimedia Materials, Comparative Analysis, Equations (Mathematics), Technological Literacy
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Savage, Phillip E. – Chemical Engineering Education, 2008
Students rarely see closed-form analytical rate equations derived from underlying chemical mechanisms that contain more than a few steps unless restrictive simplifying assumptions (e.g., existence of a rate-determining step) are made. Yet, work published decades ago allows closed-form analytical rate equations to be written quickly and easily for…
Descriptors: Equations (Mathematics), Algebra, Teaching Methods, Computation
Morozov, Andrew; Kilgore, Deborah; Atman, Cynthia – Center for the Advancement of Engineering Education (NJ1), 2007
In this study, the authors used two methods for analyzing expert data: verbal protocol analysis (VPA) and narrative analysis. VPA has been effectively used to describe the design processes employed by engineering students, expert designers, and expert-novice comparative research. VPA involves asking participants to "think aloud" while…
Descriptors: Protocol Analysis, Discourse Analysis, Personal Narratives, Engineering
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