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Smith, C. O.; Berman, G. A. – Engineering Education, 1974
Discusses the use of the city of Detroit as a design laboratory to operate Sloan Foundation programs in engineering education. Concludes that the student managed program provides valid and valuable educational experience by finding solutions to real world problems. (CC)
Descriptors: Administrator Education, Educational Programs, Engineering Education, Foundation Programs
Attinger, E. O. – Engineering Education, 1971
Considers definition of biomedical engineering (BME) and how biomedical engineers should be trained. State of the art descriptions of BME and BME education are followed by a brief look at the future of BME. (TS)
Descriptors: Doctoral Programs, Engineering, Health Programs, Medicine
Morgan, Larry B. – Engineering Education, 1974
Describes the development of an annual Engineering Concepts Institute designed for high school graduates beginning studies in engineering or architecture. Major emphasis is on Engineering Problems and related mathematical concepts. (Author/GS)
Descriptors: Behavioral Objectives, College Programs, College Science, Engineering Education
Amazigo, J.; And Others – Engineering Education, 1973
Discusses the conduct of a supplemental services program at Rensselaer Polytechnic Institute with emphases upon academic help in areas identified as major problems. Indicates that the understanding gained from this operation is helpful to evolve educational programs and admissions practices. (CC)
Descriptors: Admission Criteria, College Freshmen, Counseling Services, Educational Programs
Rybak, James P. – Engineering Education, 1984
"Two-plus-two transfer programs" involve teaching lower-division engineering programs at non-engineering institutions, allowing senior institutions to concentrate on upper division courses. The program at Mesa College (Colorado) is described. Suggestions for other institutions are offered. (JN)
Descriptors: Engineering Education, Higher Education, Program Content, Program Descriptions
Zwiebel, Imre; Demetry, James S. – Engineering Education, 1974
Discusses the Environmental Systems Study Program conducted at the Worcester Polytechnic Institute with the support of the Sloan Foundation. Indicates that the activities are to lend valuable pilot experience to the implementation of broad changes in educational programs. Included is a summary of students' real-problem project titles. (CC)
Descriptors: Educational Programs, Engineering Education, Environmental Education, Foundation Programs
Britton, Charles C.; Schweizer, Herbert H. – Engineering Education, 1974
Outlines a program designed to combat the high rate of attrition among engineering students. Problems attacked include the unexpected rigor of the curriculum, misconceptions about engineering, isolation from others studying engineering, and inadequate background in math and science. (GS)
Descriptors: College Programs, Engineering Education, Faculty Advisers, Instruction
Parden, Robert J. – Engineering Education, 1974
Discusses a Sloan Foundation undergraduate project conducted at the University of California at Santa Clara, with emphases upon interdisciplinary design. Indicates that engineering should be seen as a broad education for a technology dependent society, rather than education leading to a specialized, dead-end career. (CC)
Descriptors: Educational Programs, Engineering Education, Foundation Programs, Higher Education
Leppert, George – Engineering Education, 1974
Discusses a creative engineering systems design program developed at the Clarkson College of Technology with the support of the Sloan Foundation. Indicates that the program leads to greater undergraduate use of computational facilities and more faculty research toward design applications. (CC)
Descriptors: Course Descriptions, Educational Programs, Engineering Education, Foundation Programs
Poehlein, Gary – Engineering Education, 1974
Discusses the study of design problems by interdisciplinary student-faculty groups under the sponsorship of the Sloan Foundation and in cooperation with industry, government, and community organizations. Included is a list of design projects. (CC)
Descriptors: Educational Programs, Engineering Education, Group Activities, Higher Education
Fox, Richard L.; And Others – Engineering Education, 1974
Discusses implementation of Sloan Foundation projects at the Case Western School of Engineering, including the development of a computer assisted mechanical structural design course, the establishment of a complex systems laboratory, and personnel views of industry-university design projects. (CC)
Descriptors: Computer Assisted Instruction, Educational Programs, Engineering Education, Foundation Programs
Bevis, Herbert A.; Pyatt, Edwin E. – Engineering Education, 1974
Traces the origin and development of programs that led to the creation of the Department of Environmental Engineering Sciences at the University of Florida. Includes descriptions of degrees offered, type of work required, and facilities available. (GS)
Descriptors: College Programs, Curriculum Development, Degrees (Academic), Engineering Education
Landis, Raymond B. – Engineering Education, 1988
Discusses some of the barriers that impede minority success in college and gives suggestions for overcoming them. Describes the California Minority Engineering Program (MEP) as a successful program that has been replicated at several California universities. Presents the three structural elements and gives suggestions for starting a MEP program.…
Descriptors: Academic Persistence, College Science, Engineering Education, Higher Education
Forman, James D. – Engineering Education, 1975
Describes co-operative programs which provide baccalaureate degrees to electrical, mechanical, and civil engineering technology students who have just completed a two-year associate degree program. The co-operative programs are two or three years in length, with alternating quarters of coursework and job assignments. (MLH)
Descriptors: Bachelors Degrees, Cooperative Programs, Engineering, Engineering Education
Torda, T. P. – Engineering Education, 1973
Discusses two-year experience of conducting an interdisciplinary undergraduate program which integrates liberal arts into technical curricula and emphasize non-conventional learning processes and evaluation. The purpose is to prepare students with abilities to develop technology needed by society and to minimize its side effects harmful to the…
Descriptors: Educational Objectives, Educational Programs, Engineering Education, Higher Education
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