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Showing all 13 results Save | Export
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Cynthia Lima; Nikolaos Gatsis – Connected Science Learning, 2024
This article describes the creation of a university-based cross-disciplinary collaboration with elementary schools to address the challenges faced by teacher preparation programs in providing preservice teachers opportunities to design integrated STEM learning environments. The partnership focused on the design of an electric car unit and…
Descriptors: Elementary School Students, Grade 5, Preservice Teachers, Preservice Teacher Education
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Perig, Alexander V.; Golodenko, Nikolai N.; Skyrtach, Violetta M.; Kaikatsishvili, Alexander G. – European Journal of Contemporary Education, 2018
A physical process analogy of the learning process was studied using a hydraulic method. Detailed educational guidance describing applied pedagogical concepts for technical instructors of the civil, mechanical, chemical and materials engineering disciplines was formulated. A unified engineering-friendly formulation of learning processes using a…
Descriptors: Teaching Methods, Engineering Technology, Learning Processes, Engineering Education
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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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Wolff, Karin; Luckett, Kathy – Teaching in Higher Education, 2013
In order to design two distinct engineering qualification levels for an existing University of Technology programme, empirical evidence based on the current diploma is necessary to illuminate the nature of and the relationship between the "contextual" and "conceptual" elements underpinning a multidisciplinary engineering…
Descriptors: Engineering Education, Engineering Technology, Interdisciplinary Approach, Educational Sociology
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Mentzer, Nathan – Journal of STEM Teacher Education, 2011
This study contextualized the use of the engineering design process by providing descriptions of how each element in a design process was integrated in an eleventh grade industry and engineering systems course. The guiding research question for this inquiry was: How do students engage in the engineering design process in a course where technology…
Descriptors: Technology Education, Engineering Education, Instructional Design, Barriers
Ransone, R. K. – 1981
Jargon, when used properly, defines precisely and concisely the concepts peculiar to a profession. Within a profession, it meets the criteria for clear, brief, specific communication. When used outside that profession, however, it tries to impress rather than to express. Engineers and other professionals need to be taught when--and when not--to…
Descriptors: Communication Skills, Engineering Education, Engineering Technology, Higher Education
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Knepler, Henry – Change, 1977
As engineers become increasingly responsive to social issues, technology is no longer the only determinant of what they do. Ecological, social, cultural, psychological, and political influences are important considerations, and the changes are moving engineering schools to reconsider basic changes in both the mode and social content of their…
Descriptors: Accountability, American Culture, Curriculum Evaluation, Engineering Education
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Leon, Benjamin J.; And Others – Telematics and Informatics, 1988
A series of articles describes college programs designed to educate professionals for the telecommunications industry. Topics discussed include strategies for meeting the needs of the telecommunications industry, policy and management programs, interdisciplinary approaches, and telecommunications as taught in engineering technology programs. (CLB)
Descriptors: Administrator Education, College Curriculum, Course Descriptions, Educational Objectives
Rohles, Frederick H., Jr.; Nevins, Ralph G. – Eng Educ, 1969
Descriptors: Biological Sciences, Computer Assisted Instruction, Curriculum Development, Engineering Education
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Morrison, Faith A. – Chemical Engineering Education, 2005
A need has emerged in the curriculum for more teamwork experience, for the development of better communication and critical thinking skills, and for the acquisition of specialized knowledge. A focus on the processes by which problems are solved has served our discipline well and can continue to serve us if in the classroom we make appropriate…
Descriptors: Engineering Education, Engineering Technology, Educational Practices, Educational Change
Wolf, Lawrence J.; And Others – Engineering Education, 1980
Reviews purpose, characteristics, and project results of the Science and Engineering Technology (SET) curriculum project, characterized by an interdisciplinary course of study with a skill focus in electronic instrumentation, leading to an associate degree or to transfer into a baccaulaureate curriculum in science, engineering, or technology. (CS)
Descriptors: Associate Degrees, College Science, Curriculum Development, Electronic Technicians
Coleman, Robert J. – 1989
The University of North Carolina's Electrical Engineering Department developed and delivered a course for undergraduate engineering students. The course integrated technical, social, and ethical perspectives on problems and issues faced in the world of practicing engineers. It achieved this integration by making use of professors in engineering,…
Descriptors: Course Descriptions, Course Evaluation, Curriculum Development, Engineering Education
Cutcliffe, Stephen H., Ed. – 1979
Newsletter issues pertaining to Lehigh University's Humanities Perspectives on Technology (HPT) Program, which was renamed the Science, Technology and Society Program, are presented. Additionally, a newsletter article excerpt entitled "Elements of Technology in a Liberal Education" is included. Two 1977 issues of "HRP News,"…
Descriptors: College Curriculum, Course Descriptions, Cultural Context, Engineering Education