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Butler, Blaine R. – Engineering Education, 1979
A course developed at Purdue University for freshmen engineering students includes lectures on topics of national concern to engineers, basic engineering laboratory experience, and career planning. (BB)
Descriptors: Career Education, Course Content, Course Descriptions, Engineering Education
Defore, Jesse J. – Engineering Education, 1974
Presents the results of a survey to determine the nature of physics for technology. Urges a compromise between an extensive, rigorous content structuring and one of reduced content with a technology emphasis. (GS)
Descriptors: College Science, Course Content, Curriculum, Higher Education
Hansen, James G. R.; Fisher, Cary A. – Engineering Education, 1986
Reports results of a nationwide survey on undergraduate mechanics education. These results are compared with previous surveys to document trends in mechanics education. Areas addressed include degrees granted, courses required, teaching responsibility, quality of teachers and students, subject matter taught, evaluation methods, and teaching…
Descriptors: Course Content, Educational Trends, Engineering Education, Higher Education
Woolston, Donald C. – Engineering Education, 1984
Microcomputers are used in a technical writing course to enhance instructor and student productivity, improve the quality of student writing performance, and prepare young engineers for future on-the-job communication tasks. Describes the microcomputer facility, software, and activities included in the course. Also provides information on the…
Descriptors: Computer Oriented Programs, Course Content, Engineering Education, Higher Education
Short, K. L.; Carleton, H. R. – Engineering Education, 1974
Describes the structure and content of the laboratory course sequence of the Engineering College of the State University of New York at Stony Brook. The multidisciplinary laboratory sequence is a core requisite take n in the junior year, and instructs students in experimental methodology, including measurement and instrumentation theory. (JR)
Descriptors: College Instruction, Course Content, Course Descriptions, Curriculum
Long, R. L.; And Others – Engineering Education, 1975
Describes a course in the technology of nuclear energy which responds to the immediate concerns of students in areas such as environmental effects, weapons effects, national energy needs, and medical and forensic applications. Includes a course outline and description of appropriate textbooks, (GS)
Descriptors: College Science, Course Content, Course Descriptions, Energy
Lindauer, George; Hagerty, Joseph – Engineering Education, 1984
Describes the objectives, content, organization, and evaluation of an eight-module course focusing on such areas as the historical development of technology, impact of new technologies on the fabric of society, issues faced by modern society, dynamics of technological change and "future shock," and ethical problems faced by engineers.…
Descriptors: Course Content, Course Objectives, Engineering Education, Higher Education
Gourley, Frank A., Jr. – Engineering Education, 1990
Reports the results of a survey of graduates, employers, and instructors of engineering technology programs for the essential topics in mechanical engineering technology, mechanical drafting/design technology, manufacturing engineering technology, and industrial engineering technology. Identifies the proficiency level suggested for classwork and…
Descriptors: College Science, Course Content, Course Objectives, Engineering Education
Plants, Helen L.; And Others – Engineering Education, 1973
Discusses the characteristics, especially the commonalities, of four innovative educational methods: audio-tutorial systems, guided design, programed instruction, and the Keller method. Indicates that content materials still play the major role in student learning at present. (CC)
Descriptors: Behavioral Objectives, Course Content, Engineering Education, Higher Education
Gurau, Yolanda; Bartelme, Joe – Engineering Education, 1991
Described is a senior project course that is intended to prepare graduates for solving problems in a real engineering environment. Students in electronics engineering technology may choose between an independent study option and a structured course in which they design and implement a project in a specified field. The scheduling, evaluation, and…
Descriptors: Course Content, Electronics, Engineering Education, Higher Education
Bagaria, William J. – Engineering Education, 1991
The aerospace engineering curriculum at the U.S. Naval Academy which includes an astronautical and an aeronautical track is described. The objective of the program is to give students the necessary astronautical engineering background to perform a preliminary spacecraft design during the last semester of the program. (KR)
Descriptors: Aerospace Education, Aerospace Technology, Course Content, Course Descriptions
Bardes, Bruce P. – Engineering Education, 1975
Describes a course designed to demonstrate the relationship between design, manufacturing technology, and materials engineering. The course uses a lecture-discussion and laboratory-workshop approach including an analysis of engineering case histories and several service failures. (GS)
Descriptors: Case Studies, Course Content, Course Descriptions, Curriculum
Seigel, Arnold E.; Davis, Cynthia – Engineering Education, 1991
The results of survey that found out how many of 269 engineering schools deliver accredited programs via television are discussed. Information about the technologies employed, the use of tutors in conjunction with videotaped courses, and logistics of exam monitoring and exam security is provided. A list of colleges offering televised engineering…
Descriptors: Course Content, Educational Television, Educational Testing, Engineering Education
Anand, Vera B. – Engineering Education, 1985
Describes a two-semester-hour freshman course in engineering graphics which uses both traditional and computerized instruction. Includes course description, computer graphics topics, and recommendations. Indicates that combining interactive graphics software with development of simple programs gave students a better foundation for upper-division…
Descriptors: Computer Graphics, Computer Oriented Programs, Conventional Instruction, Course Content
Rao, K. R. – Engineering Education, 1973
Descriptors: Course Content, Curriculum Development, Educational Programs, Engineering Education
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