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Thomas, Charles R. – Engineering Education, 1985
Discusses programming projects in applied technology courses, examining documentation, formal reports, and implementation. Includes recommendations based on experience with a sophomore machine elements course which provided computers for problem solving exercises. (DH)
Descriptors: Computer Oriented Programs, Curriculum Development, Engineering, Engineering Education
Kellie, Andrew C.; And Others – Engineering Education, 1984
Describes how computers have been integrated into the engineering technology curriculum at Murray State University, focusing on their use in instructional programs, required programming, simulation, and computational projects. Also focuses on computer assisted instructional formats. Indicates no restructuring of course content, expansion of…
Descriptors: Computer Assisted Instruction, Computer Oriented Programs, Curriculum Development, Engineering
Sharples, Kent – Engineering Education, 1977
Briefly reports on the structure and evaluation of an individually-paced, two year civil engineering technology curriculum sponsored by a National Science Foundation grant. The written modules progress linearly with support media presentations. Students in the self-paced program generally outperformed lecture-based students on cognitive…
Descriptors: Civil Engineering, Curriculum Development, Curriculum Evaluation, Engineering Education
Landis, Fred – Engineering Education, 1985
Examines three broad areas related to the formal learning of engineering. These areas focus on: (1) approaches to learning; (2) developing engineering curricula; and (3) curriculum planning for the future. Also considers whether current engineering curricula can accommodate needed changes. (JN)
Descriptors: College Instruction, Curriculum Development, Engineering, Engineering Education
Brodsky, R. F. – Engineering Education, 1985
Argues in favor of establishing an accreditable curriculum in "pure" astronautical engineering (leading to a bachelor of science degree in this field), giving reasons why such reform is needed (including equating "astronautics" with "aeronautics") and why a new curriculum is needed. (JN)
Descriptors: Astronomy, Bachelors Degrees, Curriculum Development, Engineering
Cecere, Joseph J. – Engineering Education, 1985
Questionnaires were sent to 534 contractors in Pennsylvania asking which construction courses best prepare students for careers in construction engineering. Results (based on a response rate of 38 percent, N=104) of the contractors attitudes toward seven subjects and their background are presented and discussed. Implications for the curriculum are…
Descriptors: Construction (Process), Curriculum Development, Educational Research, Engineering
Albertson, Harold; And Others – Engineering Education, 1985
Describes the work of a curriculum committee established to create a "transfer curriculum" for engineering technology students transferring from two-year to four-year programs. The resulting program (which allows flexibility while providing some guidance for engineering technology programs), transfer problems, issues, and public response…
Descriptors: Associate Degrees, Community Colleges, Curriculum Development, Engineering
McDaniel, Ellen – Engineering Education, 1985
PLATO has become a successful method for computer-based education in a statics course since it offers diversified teaching/learning activities as well as alternative ways to teach content and exercise skills. Advantages for student learning are discussed, course guidelines are given, and a description of the course's computer graphics is provided.…
Descriptors: Computer Assisted Instruction, Curriculum Development, Engineering, Engineering Education
Ernst, Edward W. – Engineering Education, 1989
Discusses the Undergraduate Curriculum Development in Engineering program. Provides a short history of the program. Describes 10 curriculum projects ranging from engineering design to industry participation. Each program is encouraged to develop: analytical ability, ability to innovate and synthesize, integrating ability, and contextual…
Descriptors: College Science, Curriculum Design, Curriculum Development, Engineering
Wolf, Lawrence J.; Aldridge, Bill G. – Engineering Education, 1976
Describes a curriculum project aimed at developing a two-year, non-traditional engineering technology program employing the latest instructional materials. Provides a list of descriptive course titles for the program. (MLH)
Descriptors: Associate Degrees, Curriculum, Curriculum Development, Engineering Education
Larsen, William L. – Engineering Education, 1985
Describes: (1) the selection of honors students; (2) components of a superior education; and (3) honors programs at Iowa State University (ISU). Programs at ISU include honors courses, honors seminars, converted courses, independent study, as well as altering requirements. (JN)
Descriptors: College Instruction, College Programs, Curriculum Development, Engineering
Plants, Helen L.; Venable, Wallace S. – Engineering Education, 1985
Mechanics courses at West Virginia University are taught exclusively from programed instructional materials. Presents: (1) descriptions of these courses; (2) data indicating higher achievement by students participating in programed courses compared to students in courses using the lecture method; and (3) reasons for the success of the courses. (DH)
Descriptors: Course Descriptions, Curriculum Development, Engineering, Engineering Education
Hancock, John C. – Engineering Education, 1979
This interim report of the American Society for Engineering Education is intended to keep members informed and encourage them to offer viewpoints on current issues. Recommendations given relate to lifelong education, programs and curricula, accreditation, teaching methods, supply and demand, communication with the public, society, certification,…
Descriptors: Accreditation (Institutions), Career Awareness, Career Planning, Curriculum Development
Rader, Louis T. – Engineering Education, 1970
Engineering faculty and students must have more exposure to business and industry considerations. (IR)
Descriptors: Communication Problems, Curriculum Development, Educational Change, Educational Trends
Andrews, William A. – Engineering Education, 1979
The results are presented of a survey of structural design engineers to determine current attitudes toward existing design specifications, techniques of analysis, and basic fundamentals. (BB)
Descriptors: Civil Engineering, Communications, Curriculum Development, Educational Needs
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