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Lo, Roger C.; Bhatia, Hina; Venkatraman, Rahul; Jang, Larry K. – Chemical Engineering Education, 2015
Microfluidics involves the study of the behavior of fluids at microscale, fluid manipulations, and the design of the devices that can effectively perform such manipulations. We are developing two new elective courses to include microfluidics in our curriculum at CSULB. Herein, we present the results of the first course, Microfabrication and…
Descriptors: Chemical Engineering, Science Instruction, College Science, Science Curriculum
Wilcox, Jennifer – Chemical Engineering Education, 2006
A graduate-level computational chemistry course was designed and developed and carried out in the Department of Chemical Engineering at Worcester Polytechnic Institute in the Fall of 2005. The thrust of the course was a reaction assignment that led students through a series of steps, beginning with energetic predictions based upon fundamental…
Descriptors: Chemical Engineering, Computation, Science Curriculum, Curriculum Design
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

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

Angus, John C.; Schultz, Brian D.; Edwards, Robert V. – Chemical Engineering Education (CEE), 1999
Cites reasons for concern about the standard measures of program quality in graduate study. Focuses on a report from the National Research Council (NRC) and proposes some alternative evaluation standards. (DDR)
Descriptors: Chemical Engineering, Chemical Industry, College Curriculum, Educational Change

McCready, Mark J.; Leighton, David T. – Chemical Engineering Education, 1987
Discusses the problems created in graduate chemical engineering programs when students enter with a wide diversity of understandings of transport phenomena. Describes a two-semester graduate transport course sequence at the University of Notre Dame which focuses on fluid mechanics and heat and mass transfer. (TW)
Descriptors: Chemical Engineering, College Science, Course Content, Course Descriptions

Seider, Warren D.; Ungar, Lyle H. – Chemical Engineering Education, 1987
Describes a course in nonlinear mathematics courses offered at the University of Pennsylvania which provides an opportunity for students to examine the complex solution spaces that chemical engineers encounter. Topics include modeling many chemical processes, especially those involving reaction and diffusion, auto catalytic reactions, phase…
Descriptors: Chemical Engineering, College Mathematics, College Science, Course Content
Dayton Univ., OH. School of Engineering. – 1981
This information summarizes the University of Dayton (Ohio) Women in Science Career Facilitation Project entitled Fast Track Late Entry. The University of Dayton Fast Track Program was designed to bring women with bachelor's degrees in mathematics, chemistry, or physics to a technical level in chemical or electrical engineering equivalent to…
Descriptors: Chemical Engineering, College Science, Degrees (Academic), Electronics

Moo-Young, Murray – Chemical Engineering Education, 1986
Describes the biochemical engineering and industrial biotechnology programs of the University of Waterloo (Ontario, Canada). Provides descriptions of graduate courses, along with a sample of current research activities. Includes a discussion of the programs' mechanisms for technology transfer. (TW)
Descriptors: Biochemistry, Chemical Engineering, College Science, Consortia