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Dixon, John R.; Nelson, Carl W. – Engineering Education, 1973
Outlines the academic premises made in traditional engineering education in comparison with the educational objectives of practice-directed curricula. Suggests that the practice-audit-study learning mode should be adopted in place of the lecture-homework-exam-grade system. (CC)
Descriptors: Educational Objectives, Engineering Education, Higher Education, Instruction
Shoemake, R. Glenn – Agricultural Education Magazine, 1972
Descriptors: Agricultural Education, Agricultural Engineering, Disadvantaged Youth, Secondary Education
Brainard, Alan J.; Cullinan, Harry T., Jr. – Journal of Engineering Education, 1972
Descriptors: College Science, Educational Media, Engineering Education, Instruction
Flammer, Gordon H. – Journal of Engineering Education, 1972
Descriptors: Educational Strategies, Engineering Education, Learning Processes, Motivation
Moegenberg, Louis A. – Industrial Arts and Vocational Education, 1971
A method used to teach isometric drawing. (GB)
Descriptors: Drafting, Engineering Drawing, Graphic Arts, Industrial Arts
Berger, Ernest G. – Man/Society/Technology--A Journal of Industrial Arts Education, 1971
Descriptors: Aerospace Technology, Engineering Technology, Industrial Arts, Mathematics Education
Perlberg, Arye – J Eng Educ, 1970
Describes an exploratory study, its findings still tentative, using portable videotape recorders and micro-teaching techniques to motivate university professors to engage in activities to improve instruction, despite the nonrewarding atmosphere. (IR)
Descriptors: Behavior Change, Engineering Education, Experimental Curriculum, Instructional Innovation
Plants, Helen L.; Venable, Wallace S. – J Eng Educ, 1970
This article describes controlled experiment sponsored by Bureau of Research, Office of Education, to determine whether it is better to present a demonstration before or after discussion of the theory involved, with the conclusion that skills were best taught by presenting demonstration before theory. (IR)
Descriptors: Curriculum Evaluation, Engineering Education, Experimental Teaching, Problem Solving
Fiske, Edward B. – Teacher, 1979
The author describes an engineering and architecture course for junior high school students. It is a nonmathematical approach to understanding why buildings and bridges stand up and, basically, covers the same content as that of an architecture course he offers to Columbia University graduate students. (Author/KC)
Descriptors: Architectural Education, Building Design, Concept Formation, Engineering Education
Keedy, Hugh F. – Educational Research and Methods, 1979
Contains ten basic teaching principles formulated from the author's past experiences. Each of the principles is illustrated by relevant observations in order to increase understanding and aid application. The author states that use of these principles will increase teaching success. (SMB)
Descriptors: College Science, Engineering Education, Higher Education, Learning
Peer reviewedMahendran, M. – Journal of Engineering Education, 1995
Analyzes the effectiveness of introducing practical design projects at an early stage within a civil engineering undergraduate program. Traces the success of this strategy at each stage from its introduction to the final evaluation. Findings indicate that the projects were successful in improving the understanding of basic concepts and encouraging…
Descriptors: Civil Engineering, Educational Strategies, Evaluation, Higher Education
Peer reviewedAbbott, David S.; Saul, Jeffery M.; Parker, George W.; Beichner, Robert J. – American Journal of Physics, 2000
Investigates whether replacing a single traditional laboratory activity with a widely-used, non-microcomputer-based laboratory, research-based activity could produce improved conceptual understanding of a topic in electricity. Shows that a single instructional experience utilizing the research-based tutorial materials is superior to a traditional…
Descriptors: Concept Formation, Electricity, Engineering Education, Higher Education
Peer reviewedGomes, Vincent G.; Langrish, Timothy A. G. – Chemical Engineering Education (CEE), 1999
Argues against excessive content fragmentation in engineering courses, particularly in the early stages of engineering education. Discusses attempts to encourage cooperative learning and integrative reconciliation between courses. (WRM)
Descriptors: Chemical Engineering, Cooperation, Cooperative Learning, Course Content
Peer reviewedPerrenet, J. C.; Bouhuijs, P. A. J.; Smits, J. G. M. M. – Teaching in Higher Education, 2000
Describes the characteristics and aims of problem-based learning (PBL) and reports on its application in medical and engineering education at Maastricht University (the Netherlands) and the Technische Universiteit Eindhoven (the Netherlands). Analyzes differences between the medical and engineering applications. Also considers project work and…
Descriptors: College Instruction, Engineering Education, Foreign Countries, Higher Education
Peer reviewedGibson, Ivan S.; O'Reilly, Cathal; Hughes, Michael – European Journal of Engineering Education, 2002
Presents a summary of challenges that information and communication technologies (ICT) present third-level institutions through an examination of the pedagogical issues and solutions that arise from a move from traditional lectures to project-based teaching followed by two case studies. (Contains 13 references.) (Author/YDS)
Descriptors: Computer Software, Educational Technology, Engineering Education, Higher Education


