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Rainey, Gilbert L. – Engineering Education, 1981
Reviews problems and successful techniques associated with various instructional systems including individualized instruction, personalized system of instruction, audiotutorial system, and others. Includes comments on behavioral objectives, mastery, and testing. (SK)
Descriptors: College Science, Conventional Instruction, Engineering Education, Higher Education
Peer reviewed Peer reviewed
Weston, Kenneth C. – CoED, 1981
Describes a flexible, multichannel, highly accurate, digital data acquisition system for use with a microcomputer. Includes a description of instrumentation for computer data acquisition, data acquisition systems, software, uses in the curriculum, library interaction and action, and use in a mechanical engineering laboratory. (DS)
Descriptors: Computer Assisted Instruction, Computer Oriented Programs, Computer Science, Data Collection
Peer reviewed Peer reviewed
Stroeve, Pieter – Chemical Engineering Education, 1981
Describes an undergraduate research program in biomedical engineering at the State University of New York at Buffalo. Includes goals and faculty comments on the program. Indicates that 58 percent of projects conducted between 1976 and 1980 have been presented at meetings or published. (SK)
Descriptors: Biomedicine, Chemistry, College Science, Engineering
Peer reviewed Peer reviewed
Gedeon, David V. – CoED, 1981
Describes a course to make technical managers more aware of computer technology and how data loggers, programmable controllers, and larger computer systems interact in a hierarchical configuration of manufacturing process control. (SK)
Descriptors: College Science, Computer Science, Computer Science Education, Course Descriptions
Berry, W. B. – Engineering Education, 1981
Presents and analyzes statistical data to assist in evaluating general trends in engineering research and graduate study, and for comparisons among universities. Data are presented for 1978 and 1979 annual averages and annual average ratios relative to 17 criteria, including among others, full-time faculty and professional faculty researchers.…
Descriptors: College Science, Data Analysis, Educational Trends, Engineering Education
Chesson, Eugene – Engineering Education, 1980
Discusses the problems of the future shortage of engineering faculty and the substantial decline in the number of PhD students. The external and the internal factors of these problems are also discussed. (HM)
Descriptors: College Faculty, College Graduates, Doctoral Programs, Employment Opportunities
Peer reviewed Peer reviewed
Krieger, James – Chemical and Engineering News, 1980
Presents highlights of the findings of a recent federal government report on science and engineering education at the university level. Reasons for faculty shortages in these fields and trends in the demand for scientists and engineers are analyzed, and several recommendations are made. (WB)
Descriptors: College Faculty, College Graduates, College Science, Engineering Education
Peer reviewed Peer reviewed
Kenney, C. N. – Chemical Engineering Education, 1980
Describes a course, including content, reading list, and presentation on chemical reactors at Cambridge University, England. A brief comparison of chemical engineering education between the United States and England is also given. (JN)
Descriptors: Chemical Industry, Chemical Reactions, Chemistry, College Science
Martin, Gail M. – Occupational Outlook Quarterly, 1980
Discusses career opportunities, educational requirements, and information sources in these emerging professions: environmental, biomedical, fire protection, ocean, energy, ceramic, and plastics engineering. (SK)
Descriptors: Biomedicine, Ceramics, Degree Requirements, Employment Opportunities
Peer reviewed Peer reviewed
Robinson, Arthur L. – Science, 1980
Discusses the problem of the shortage of engineers capable of designing advanced integrated circuits (IC) and presents some suggestions for increasing the number of IC designers in universities and semiconductor companies. (HM)
Descriptors: Electric Circuits, Electronics Industry, Engineering Education, Engineering Technology
Peer reviewed Peer reviewed
Leung, W. P.; And Others – Physics Education, 1980
Describes a project on the application of the laser which aims to stimulate the interest of undergraduate students in applied physics and to demonstrate the interaction between light and ultrasonic waves by building a simple laser communication system. (SK)
Descriptors: College Science, Electronics, Engineering Education, Higher Education
Houze, R. Neal; Simon, Rebecca J. – Engineering Education, 1981
Presents strategies for planning a successful cooperative education experience. The potential of a cooperative education program can be realized only if the expectations and responsibilities of the industry, the university and the students are recognized and realistically balanced. (Author/WB)
Descriptors: Cooperative Education, Engineering Education, Field Experience Programs, Higher Education
Flower, K. W.; Craft, W. J. – Engineering Education, 1981
Describes the use of computer assisted instruction at North Carolina Agriculture and Technical State University in freshman and remedial mathematics to cut down high attrition rates and weed out quickly the students who can't adapt to the vigors of engineering course work. (Author/DS)
Descriptors: College Science, Computer Assisted Instruction, Course Descriptions, Engineering Education
Peer reviewed Peer reviewed
Friedman, Edward A. – Liberal Education, 1979
The impact of technology on higher education from increasingly complex computers and technological systems will cause higher education to include technological courses in the liberal arts curriculum, prepare liberal arts students for careers in nontraditional areas in which technology is an important component, and broaden the base of engineering…
Descriptors: Curriculum, Curriculum Design, Curriculum Development, Educational Change
Peer reviewed Peer reviewed
Lawrence, Peter – Higher Education Review, 1979
The status, function, and education of engineers in Britain and West Germany are compared. Status of the German engineer, engineering education in Germany, the engineer and German society, and the overachieving engineer are discussed. (Author/MLW)
Descriptors: Academic Achievement, Achievement, Economic Factors, Education Work Relationship
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