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Peer reviewedDeshpande, Pradeep B.; Plank, Charles A. – Chemical Engineering Education, 1979
Describes the undergraduate chemical engineering curriculum at the Speed Scientific School of the University of Louisville. The history of the department, a description of the chemical engineering courses, and the strengths and weaknesses of the program are also included. (HM)
Descriptors: Chemical Industry, Chemistry, College Science, Course Descriptions
Peer reviewedYen, T. F. – Chemical Engineering Education, 1979
Described is a graduate level engineering course offered at the University of Southern California on coal liquefaction processes. Lecture topics and course requirements are discussed. A 64-item bibliography of papers used in place of a textbook is included. (BT)
Descriptors: Curriculum Development, Energy, Engineering, Engineering Education
Peer reviewedChemical and Engineering News, 1977
Cites statistics on undergraduate and graduate study in chemistry and chemical engineering at higher education institutions approved by the American Chemical Society. (MLH)
Descriptors: Chemistry, College Science, Degrees (Academic), Engineering Education
Keedy, Hugh F. – Engineering Education, 1977
Describes a one-and-a-half day workshop designed to introduce engineering graduate students to effective teaching methods. (MLH)
Descriptors: Educational Programs, Engineering, Engineering Education, Graduate Students
Milesko-Pytel, Diana – American Education, 1977
The Illinois Institute of Technology is making engineering more accessible to women, blacks, and other minorities and searches high schools for likely candidates. (Editor)
Descriptors: Career Awareness, College Preparation, Educationally Disadvantaged, Engineering Education
Peer reviewedHargreaves, D. J. – European Journal of Engineering Education, 1996
Describes the use of three questionnaires in assessing how students learn. Results of the study process questionnaire, the course experience questionnaire, and the learning style inventory indicate that lecturers need to change their teaching paradigm to one where the lecturer is closely involved in the learning context. (DDR)
Descriptors: Cognitive Style, Course Content, Educational Strategies, Engineering Education
Peer reviewedMartinez-Val, Rodrigo – European Journal of Engineering Education, 1997
Describes the successive stages of the School of Aeronautical Engineering of Madrid, Spain, in terms of entry requirements, curricula guidelines, options or specialties, duration of studies, and number of graduates. Also includes a description of the Spanish aeronautical industry and its evolution. (Author/PVD)
Descriptors: Aerospace Education, Aviation Technology, Educational History, Engineering Education
Peer reviewedKautz, Karlheinz – Human-Computer Interaction, 1996
Discusses user participation and participatory design in the context of formal education for computing professionals. Topics include the current curriculum debate; mathematical- and engineering-based education; traditional system-development training; and an example of a course program that includes computers and society, and prototyping. (53…
Descriptors: Computer Science Education, Computer Uses in Education, Curriculum Development, Engineering Education
Olds, Barbara M.; Miller, Ronald L. – NCA Quarterly, 1997
Describes the use of portfolios, which include student test scores, GPAs, samples of class work, and student surveys, as tools for assessing student ability and success at the Colorado School of Mines. Discusses the strengths and weaknesses of portfolio assessment as well as instructional and institutional changes brought about by the evaluation…
Descriptors: Educational Assessment, Educational Change, Engineering Education, Evaluation Methods
Peer reviewedEdward, Norrie S. – European Journal of Engineering Education, 1997
Evaluates the importance of realism in the screen presentation of the plant in computer-based laboratory simulations for part-time engineering students. Concludes that simulations are less effective than actual laboratories but that realism minimizes the disadvantages. The schematic approach was preferred for ease of use. (AIM)
Descriptors: Computer Assisted Instruction, Computer Simulation, Demonstrations (Educational), Engineering Education
Peer reviewedBarker, Ray; Holbrook, Allyson – Journal of Vocational Education and Training: The Vocational Aspect of Education, 1996
As engineering technician training developed in New South Wales in the 1950s-1960s, technical educators were marginalized by power struggles over apprentice recruitment and the complications of industrial legislation. However, educators and professional associations took a leadership role in the development of technician training in the metal…
Descriptors: Apprenticeships, Educational Demand, Engineering Education, Engineering Technicians
Peer reviewedBieniawski, Z. T.; Bieniawski, Stefan R. – Bulletin of Science, Technology and Society, 1996
Summarizes a research study performed to assess curriculum changes in engineering education. Discusses the implications of the various curriculum strategies and initiatives and identifies the necessary socio-technological ingredients for world-class education of engineers. (DDR)
Descriptors: Course Content, Educational Research, Engineering Education, Foreign Countries
Peer reviewedNg, G. S. – Computer Applications in Engineering Education, 1997
Describes a course teaching the use of computers in emulating human visual capability and image processing and proposes an interactive presentation using multimedia technology to capture and sustain student attention. Describes the three phase presentation: introduction of image processing equipment, presentation of lecture material, and…
Descriptors: Algorithms, Attention, Computer Assisted Instruction, Educational Technology
Peer reviewedSungar, N.; Sharpe, J. P.; Moelter, M. J.; Fleishon, N.; Morrison, K.; McDill, J.; Schoonover, R. – American Journal of Physics, 2001
Describes the implementation of a new laboratory-based, interdisciplinary undergraduate course on linear dynamical systems. Focuses on geometrical methods and data visualization techniques. (Contains 20 references.) (Author/YDS)
Descriptors: Computer Uses in Education, Course Descriptions, Educational Technology, Engineering Education
Peer reviewedLaumakis, P. J.; Harlow, G. – International Journal of Mathematical Education in Science and Technology, 2002
Analyzes a simple boom structure and assesses its reliability using elementary engineering mechanics. Demonstrates the power and utility of Monte-Carlo simulation by showing that such a simulation can be implemented more readily with results that compare favorably to the theoretical calculations. (Author/MM)
Descriptors: Computer Uses in Education, Engineering Education, Higher Education, Mathematical Applications


