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Rothe, Erhard W.; Zygmunt, William E. – Chemical Engineering Education, 2016
We inserted a self-taught molecular modeling project into an otherwise conventional undergraduate chemical-reaction-engineering course. Our objectives were that students should (a) learn with minimal instructor intervention, (b) gain an appreciation for the relationship between molecular structure and, first, macroscopic state functions in…
Descriptors: Undergraduate Study, Molecular Structure, Chemical Engineering, Thermodynamics
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Honda, Gregory S.; Pazmino, Jorge H.; Hickman, Daniel A.; Varma, Arvind – Chemical Engineering Education, 2015
A chemical engineering PhD student from Purdue University completed an internship at The Dow Chemical Company, evaluating the effect of scale on the hydrodynamics of a trickle bed reactor. A unique aspect of this work was that it arose from an ongoing collaboration, so that the project was within the scope of the graduate student's thesis. This…
Descriptors: Chemical Engineering, Lifelong Learning, Graduate Students, Internship Programs
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Bell, John T. – Chemical Engineering Education (CEE), 1996
Descriptors: Chemical Engineering, Higher Education, Science Projects, Student Projects
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Amyotte, Paul R.; Fels, Mort – Chemical Engineering Education, 1989
Describes a method of organizing and handling senior undergraduate thesis projects. Discusses the benefits and disadvantages of conducting them. (YP)
Descriptors: Chemical Engineering, College Science, Engineering Education, Science Activities
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Benyahia, Farid – Chemical Engineering Education, 2005
A long experience in undergraduate vinyl chloride monomer (VCM) process design projects is shared in this paper. The VCM process design is shown to be fully compliant with ABET 2000 criteria by virtue of its abundance in chemical engineering principles, integration of interpersonal and interdisciplinary skills in design, safety, economics, and…
Descriptors: Undergraduate Students, Design, Engineering Technology, Engineering Education
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Simpson, Annie E.; Evans, Greg J.; Reeve, Doug – Journal of Leadership Education, 2012
The Engineering Leaders of Tomorrow Program (LOT) is a comprehensive curricular, co-curricular, extra-curricular leadership development initiative for engineering students. LOT envisions: "an engineering education that is a life-long foundation for transformational leaders and outstanding citizens." Academic courses, co-curricular certificate…
Descriptors: Engineering Education, Leadership, Chemical Engineering, Data Analysis
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Mitsos, Alexander – Chemical Engineering Education, 2009
A project-based design course is developed for man-portable power generation via microfabricated fuel cell systems. Targeted audience are undergraduate chemical/process engineering students in their final year. The course covers 6 weeks, with three hours of lectures per week. Two alternative projects are developed, one focusing on selection of…
Descriptors: Engineering Education, Design, Instructional Design, Science Course Improvement Projects
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Heitsch, Andrew T.; Ekerdt, John G.; Korgel, Brian A. – Chemical Engineering Education, 2009
The University of Texas at Austin has developed an upper-division undergraduate laboratory called "NANOLAB" to introduce undergraduate science and engineering students to nanoscale science and engineering (NSE) concepts. The NANOLAB is not a stand-alone course offered by a specific department, but rather a laboratory station--or hub--that…
Descriptors: Undergraduate Students, Engineering Education, Laboratories, Natural Sciences
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Stubington, John F. – Chemical Engineering Education (CEE), 1995
Describes a Japanese process-oriented approach called KAIZEN for improving the quality of existing teaching laboratories. It provides relevant quality measurements and indicates how quality can be improved. Use of process criteria sidesteps the difficulty of defining quality for laboratory experiments and allows separation of student assessment…
Descriptors: Chemical Engineering, Educational Assessment, Higher Education, Program Evaluation
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Rockstraw, David A. – Chemical Engineering Education, 2005
An established methodology involving the sequential presentation of five skills on ASPEN Plus to undergraduate seniors majoring in ChE is presented in this document: (1) specifying unit operations; (2) manipulating physical properties; (3) accessing variables; (4) specifying nonstandard components; and (5) applying advanced features. This…
Descriptors: Chemical Engineering, Teaching Methods, College Seniors, Science Process Skills