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Showing 901 to 915 of 1,197 results Save | Export
Liao, T., Ed. – 1971
This newsletter for the Engineering Concepts Curriculum Project includes the educational objectives in the affective domain for the course. The major categories for these sixteen objectives are: (1) Interaction of science, technology and society; (2) Matching technology to people, society and the environment; and (3) Use of technological concepts.…
Descriptors: Course Objectives, Curriculum Development, Engineering Education, Instructional Materials
Nee, John G. – 1973
This paper describes a project designed to: (1) develop a model for determining occupational activity components to be used in any vocational-technical program, (2) produce a list of occupational activity components (tasks) for the occupational roles identified, (3) determine scores, ranks and percentages for each component from each occupational…
Descriptors: Community Colleges, Curriculum Development, Engineering Technicians, Industrial Education
Harrisberger, Lee; And Others – 1975
Worcester Polytechnic Institute (WPI), following two and one half years of intensive study and planning, has developed and begun the implementation of a PLAN for a new and comprehensively different educational program, responsive to the needs of individual students, society, and encouraging sensitivity to the ideas and values of civilization. In…
Descriptors: College Science, Curriculum Development, Educational Assessment, Educational Programs
Peer reviewed Peer reviewed
Bonnema, T. R. C.; Dunworth, A. – Computers and Education, 1978
A flexible, transferable computer assisted instruction (CAI) system has been developed at the Twente University of Technology, Holland, for use in association with a first course in digital engineering. Written in APL, it is designed to be modular in nature, and thus easily extendible. (Author/CMV)
Descriptors: Computer Assisted Instruction, Computer Science Education, Curriculum Development, Developed Nations
Burson, Jack – Technical Education News, 1978
An upper-division two-year program in electrical power engineering technology developed at Oklahoma State University is described. The typical two-plus-two program in mechanical, electronics, electromechanical, or other related technologies consists of two years of study at the associate level followed by two years at the bachelor's level. (MF)
Descriptors: Associate Degrees, Bachelors Degrees, Curriculum Development, Electromechanical Technology
Peer reviewed Peer reviewed
Humo, Emir; Popovic, Mladen – Higher Education in Europe, 1987
The need for adaptive mechanisms in higher education to accommodate rapid technological and scientific advancement and the appearance of a number of new engineering disciplines can be met through institutional structure and the relationship of universities to industrial and research organizations. (MSE)
Descriptors: Curriculum Development, Educational Change, Engineering Education, Epistemology
Peer reviewed Peer reviewed
Cowan, John – European Journal of Engineering Education, 1986
Reviews the background leading to the development and evaluation of problems to examine student ability to do qualitative reasoning, applying concepts rather than algorithms. Describes creation of quantitative and qualitative problem papers, summarizes results, and proposes distinctions based on cognitive difficulty. (JM)
Descriptors: Cognitive Processes, College Science, Concept Teaching, Critical Thinking
Coleman, Samuel K.; Samuels, Richard J. – Science, Technology and Society, 1985
Assesses the state of applied Japanese studies in American universities, offering suggestions for curriculum improvement, providing data on 15 programs, and describing six programs (including one at the Massachusetts Institute of Technology). Indicates that few science/technology majors take Japanese despite strong present and future needs for…
Descriptors: Asian Studies, College Science, Communicative Competence (Languages), Curriculum Development
Missimer, William C., Jr. – Technological Horizons in Education, 1984
Presents a corporate official's 12-point plan for the private sector to provide immediate support for public education in technology. Industry's role in stimulating parents, in curriculum development, and in providing financial support are considered. Other areas/issues considered are upgrading graduation requirements, basic building blocks of…
Descriptors: Computer Literacy, Curriculum Development, Educational Improvement, Engineering Education
Peer reviewed Peer reviewed
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Hancock-Niemic, Mary; Llama, Gloria; Martin, Florence; Mansfield, Jennifer; Klein, James – Association for Educational Communications and Technology, 2004
A suburban high school district in Arizona was recently named as a provider of Technology Assisted Project Based Instruction (TAPBI). The district?s challenge was to create 20 effective, online high school courses in approximately nine months. Successful deployment depended in large measure on the ability of the teachers of those courses to…
Descriptors: Performance Technology, Human Factors Engineering, Online Courses, Secondary Education
Weaver, Kim M. – NASA Educator Resource Center at Marshall Space Flight Center, 2005
In this unit, elementary students design and build a lunar plant growth chamber using the Engineering Design Process. The purpose of the unit is to help students understand and apply the design process as it relates to plant growth on the moon. This guide includes six lessons, which meet a number of national standards and benchmarks in…
Descriptors: Plants (Botany), Lunar Research, National Standards, Astronomy
Lee, Lung-Sheng – 1998
Taiwan's senior high school technology education (TE) is moving from industrial arts (IA) to living technology (LT). However, senior high school LT faces two major challenges. First, LT, a required course, may be changed to an elective. Second, there is only a vague distinction between junior high school LT and senior high school LT. In terms of…
Descriptors: Curriculum Development, Educational Research, Elective Courses, Engineering Technology
Hayward, Pamela A. – 1996
Recently, when employers of entry-level engineers were asked to prioritize the need for further instruction, over 60% of these employers identified communication skills as the primary curricular element needing increased emphasis. Two of the top 10 required skills ranked as important to engineering practice related to making oral presentations.…
Descriptors: Communication Skills, Curriculum Development, Engineering Education, Higher Education
McCollom, Kenneth A. – Engineering Education, 1973
Discusses the design principles and operations of a new program with emphases upon integrated curriculum planning, individually paced instruction, and mastery learning. Indicates that students succeed better both in pre-professional courses and in follow-up engineering courses than do those in conventional courses. (CC)
Descriptors: Course Evaluation, Curriculum Development, Educational Objectives, Engineering Education
Babcock, Daniel L. – Engineering Education, 1973
Discusses the purpose and curriculum of interdisciplinary engineering management programs conducted at the University of Missouri-Rolla. Indicates that the development of a proper balance of engineering, science, and management is proved satisfactory by student acceptance, graduate placement, and feedback from both graduates and employers. (CC)
Descriptors: Course Descriptions, Curriculum Development, Educational Programs, Engineering Education
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