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Koch, Douglas – Journal of Technology Education, 2011
The purpose of this study was to determine whether or not the use of solid modeling software increases participants' success in solving a specified technical problem and how visualization affects their ability to solve a technical problem. Specifically, the study sought to determine if (a) students' visualization skills affect their problem…
Descriptors: Engineering Technology, Spatial Ability, Visualization, Perception Tests
Lassen, Astrid Heidemann; Nielsen, Suna Lowe – Research in Science & Technological Education, 2011
Background: Globalization, technological advancement, environmental problems, etc. challenge organizations not just to consider cost-effectiveness, but also to develop new ideas in order to build competitive advantages. Hence, methods to deliberately enhance creativity and facilitate its processes of development must also play a central role in…
Descriptors: Foreign Countries, Engineering Education, Creativity, Global Approach
Gleason, Jim; Boykin, Karen; Johnson, Pauline; Bowen, Larry; Whitaker, Kevin W.; Micu, Celina; Raju, Dheeraj; Slappey, Carter – Advances in Engineering Education, 2010
In an effort to reduce the engineering student withdrawal rate due to mathematics, The University of Alabama developed a unique, informal, interactive, and interdisciplinary five-week summer residence program called the Engineering Math Advancement Program (E-MAP). The program aims to increase retention by preparing students to be successful in…
Descriptors: Summer Programs, Engineering Education, Mathematics Instruction, Interdisciplinary Approach
Peer reviewedKoen, Billy V. – European Journal of Engineering Education, 1988
Describes a preliminary definition of engineering method as well as a definition and examples of engineering heuristics. After discussing some alternative definitions of the engineering method, a simplified definition of the engineering method is suggested. (YP)
Descriptors: College Science, Definitions, Engineering, Engineering Education
Hazelrigg, George A. – Engineering Education, 1985
A simple problem (counting beans in a jar) is used to demonstrate an approach to organizing and quantifying decision making. The example shows that a willingness to go beyond ordinary engineering analysis may be needed to provide answers to many engineering problems. (Author/JN)
Descriptors: Decision Making, Engineering, Engineering Education, Higher Education
Koen, Billy Vaughn – Engineering Education, 1984
Defines the engineering method by: (1) giving a preliminary definition and examples of its essential term (heuristics); (2) comparing the definition to a popular alternative; and (3) presenting a simple form of the definition. This definition states that the engineering method is the use of engineering heuristics. (JN)
Descriptors: Definitions, Engineering, Engineering Education, Heuristics
Sharp, James J. – Vocational Aspect of Education, 1991
Engineering students are taught to approach the identification and solution of problems through design education, systems analysis, and other methods. These methodologies are applicable to other disciplines in relating problem solving to real world situations. (SK)
Descriptors: Engineering, Engineering Education, Higher Education, Problem Solving
Sampson, Demetrios G., Ed.; Ifenthaler, Dirk, Ed.; Isaías, Pedro, Ed. – International Association for Development of the Information Society, 2021
These proceedings contain the papers of the 18th International Conference on Cognition and Exploratory Learning in the Digital Age (CELDA 2021), held virtually, due to an exceptional situation caused by the COVID-19 pandemic, from October 13-15, 2021, and organized by the International Association for Development of the Information Society…
Descriptors: Computer Simulation, Open Educational Resources, Telecommunications, Handheld Devices
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
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
Becker, Martin – Engineering Education, 1986
Experiences at Rensselaer Polytechnic Institute in teaching with interactive spreadsheet computing are described. Advantages of using this software in engineering classes are noted. (JN)
Descriptors: Computer Software, Engineering, Engineering Education, Higher Education
Staiger, Eugene H. – Engineering Education, 1984
Methods for evaluating divergent thinking are presented and discussed. These include Shavelson's word lists and unique diagrams and Buzan's brain pattern. Each technique, which can be used in examinations, provides a partial representation of how subject matter is stored and highlights the flexible yet structured way the mind organizes…
Descriptors: Divergent Thinking, Engineering, Engineering Education, Higher Education
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
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
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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