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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
Engel, Joseph H.; And Others – Engineering Education, 1976
Describes a combination of lectures, experiments, and analysis with the aid of remote computer terminals that helps the engineering student grasp the fundamentals and implications of a mathematical model applied to a particular job situation. (MLH)
Descriptors: Computer Assisted Instruction, Course Descriptions, Engineering, Engineering Education
Stathopoulos, Theodore – Engineering Education, 1989
Models which demonstrate the concept of moment of force in two- and three-dimensional cases and have been well received by students are described. Photographs and instructions for each model are provided. (MVL)
Descriptors: College Science, Demonstrations (Educational), Display Aids, Engineering
Lindenlaub, John C.; Russell, James D. – Engineering Education, 1980
Provides a model with which to view the instructional process and the teaching activities within it. Presents a flow chart to aid information on improvement of instruction. Stresses the importance of viewing improvement as a continuous process and utilizing feedback. (SMB)
Descriptors: Annotated Bibliographies, Educational Research, Engineering Education, Flow Charts
Culver, Richard S.; And Others – Engineering Education, 1990
Described are the rationales for the Engineering Practices Introductory Course Sequence (EPICS) program at the Colorado School of Mines, and the McMaster Problem-Solving (MPS) program at McMaster University. The professional development model used in these programs is discussed. (CW)
Descriptors: College Science, Educational Objectives, Engineering Education, Higher Education
Thomson, Robert A. – Engineering Education, 1981
Describes the author's experience with a model structure used to demonstrate the difference between the idealized behavior predicted by theory and the actual behavior of a real structure. The model is a truss bridge with a span of 1.5 meters. (Author/SK)
Descriptors: College Science, Demonstrations (Educational), Engineering Education, Force
Bethea, R. M.; And Others – Engineering Education, 1979
The authors describe a career-enhancement program, at Texas Tech University, for students in chemistry or biology who want to enter the field of chemical engineering. (SA)
Descriptors: Biology, Career Change, Career Exploration, Chemistry
Meador, C. L. – Engineering Education, 1973
Describes the respective problem solving procedures, namely, the rule-formula application oriented and the strategy oriented in engineering and science as preconceived notions of each profession. Concludes that the fundamental paradigm is a unified model fitting many apparently unrelated bodies of knowledge. (CC)
Descriptors: Engineering Education, Instruction, Integrated Curriculum, Interdisciplinary Approach
Stefurak, A. L.; Brillhart, Lia V. – Engineering Education, 1980
Presented is an outline of how to write a proposal for funding for engineering education research. Describes the five basic components of the prospective problem statement, objectives, procedures, evaluation, and budget. Information on public and private funding agencies and the three types of grants available, and projects, research, and…
Descriptors: Annotated Bibliographies, Budgets, Educational Research, Educational Resources
Barr, Ronald E.; Juricic, Davor – Engineering Education, 1991
A course curriculum model that shows how modern engineering design graphics can be used to conceptualize, develop, analyze, and communicate engineering designs is presented. Background studies, early investigations, and a weekly curriculum outline of the course are provided. (KR)
Descriptors: College Science, Computer Assisted Design, Computer Graphics, Course Content
Bloom, Robert S.; Levin, Jack – Engineering Education, 1987
Offers a model for a performance-based training system based on job task analysis methodology that has been successfully implemented at a nuclear utility. Presents a flow chart of the training needs system and explains the steps involved in the process. (ML)
Descriptors: Engineering Education, Industrial Training, Job Analysis, Models