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Duda, J. L. – Chemical Engineering Education, 1984
Discusses five common misconceptions that graduate students may have about their future graduate school experiences. Two of these misconceptions are that graduate school would be a continuation of undergraduate experiences and that the study of chemical engineering has nothing to do with human values, ethics, and morals. (JN)
Descriptors: Chemical Engineering, Educational Objectives, Engineering Education, Graduate Study
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Kummler, Ralph H.; And Others – Chemical Engineering Education, 1989
Provides an overview of the "Hazardous Waste Management Graduate Certificate" program at Wayne State University. Describes four required courses and nine optional courses. Discusses the development of a Master program and the curriculum of the Master program. (YP)
Descriptors: Chemical Engineering, College Science, Course Descriptions, Engineering
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Kauffman, David – Chemical Engineering Education, 1985
Examines the benefit (or loss) to a chemical engineer with a bachelor of science degree for staying in school to earn a master's or doctoral degree. Points out that, contrary to popular belief, the economics of getting advanced degrees in chemical engineering is currently favorable. (JN)
Descriptors: Chemical Engineering, Cost Effectiveness, Engineering Education, Graduate Study
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Marnell, Paul – Chemical Engineering Education, 1984
Describes a year-long graduate plant design course. The course provides students with an appreciation of the profit motive that drives business activity, the role of the chemical engineer in achieving this goal, and historical and contemporary perspectives on chemical engineering practice. (JN)
Descriptors: Chemical Engineering, Course Descriptions, Educational Objectives, Engineering Education
Doigan, Paul – Engineering Education, 1986
Reports data, with a few exceptions, from all colleges awarding bachelor's or higher degrees in engineering and engineering technology in the United States in 1985. Data are broken down by degree, school, curriculum, women, minorities, and foreign nationals. Eight tables summarize the data. (JM)
Descriptors: Bachelors Degrees, College Science, Data, Degrees (Academic)
Jones, Lyle V., Ed.; And Others – 1982
The quality of doctoral-level chemical engineering (N=79), civil engineering (N=74), electrical engineering (N=91), and mechanical engineering (N=82) programs at United States universities was assessed, using 16 measures. These measures focused on variables related to: (1) program size; (2) characteristics of graduates; (3) reputational factors…
Descriptors: Academic Libraries, Chemical Engineering, Civil Engineering, College Faculty
Engineering Education, 1986
Engineering and technical colleges (N=221) responded to a questionnaire concerning various aspects of their institution (such as faculty, enrollment, research expenditures, budget, and degrees awarded). Results are provided alphabetically by institution. (JN)
Descriptors: College Faculty, Degree Requirements, Degrees (Academic), Engineering
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Edie, Dan D. – Chemical Engineering Education, 1984
Describes a graduate "residence" program at Clemson University which is sponsored by the university and local industries. Advantages for graduate students (including increased levels of financial support and opportunities to gain significant industrial research experience), faculty, and sponsoring companies are outlined. Examples of these topics…
Descriptors: Chemical Engineering, Engineering Education, Graduate Study, Higher Education
Wankat, Phillip C.; Oreovicz, Frank S. – Engineering Education, 1984
Describes a graduate level course on the philosophy and techniques of teaching chemical engineering. Course topics include lecturing methods, test construction and grading, homework assignments, laboratory instructional methods, and methods of individual tutoring. All topics were approached using a variety of instructional strategies. (JN)
Descriptors: Chemical Engineering, College Instruction, Course Descriptions, Engineering Education
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San, Ka-Yiu; McIntire, Larry V. – Chemical Engineering Education, 1989
Presents an introduction to the Biochemical and Biomedical Engineering program at Rice University. Describes the development of the academic and enhancement programs, including organizational structure and research project titles. (YP)
Descriptors: Biochemistry, Biomedicine, College Science, Engineering
Long, Richard L., Jr. – 1986
The approach taken to chemical engineering education at New Mexico State University is described in this report. The curriculum model for its undergraduate and graduate program emphasizes both content and skill development. Involvement in tasks related to ongoing research projects is stressed and serves as the basis for course assignments at the…
Descriptors: Chemical Engineering, College Science, Engineering Education, Graduate Study
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Yen, 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
Jones, Marilyn S.; And Others – Engineering Education, 1985
Provides a list of questions for obtaining, organizing, and comparing attributes and liabilities across several institutions or universities. Topics include: demographics; faculty/administration; duties; labs/equipment; programs; research; professional development; promotion; and benefits. These questions would also be useful to students selecting…
Descriptors: College Faculty, Criteria, Employment Practices, Engineering
Weinstein, Bob – Graduating Engineer, 1985
Two engineers with doctoral degrees weigh factors, pro and con, in pursuing their degree and the different career paths they have taken. One person outlines the steps in academia while the other has moved through several industrial positions. Indicates that the degree can open doors but can also limit options. (DH)
Descriptors: Career Choice, Career Ladders, Degree Requirements, Degrees (Academic)
Engineering Education, 1985
Provides data collected from 218 institutions offering graduate and undergraduate engineering degrees. These data (presented alphabetically by institution) include number of faculty, student enrollment, graduate degree requirements, degree programs, degrees offered, appointments to graduate students, major research areas, and research…
Descriptors: Admission (School), Degree Requirements, Degrees (Academic), Engineering
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