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Carta, Jungbauer – Chemical Engineering Education, 2011
We describe an intensive course that integrates graduate and continuing education focused on the development and scale-up of chromatography processes used for the recovery and purification of proteins with special emphasis on biotherapeutics. The course includes lectures, laboratories, teamwork, and a design exercise and offers a complete view of…
Descriptors: Chemistry, Chemical Engineering, Engineering Education, Graduate Study
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Shaeiwitz, Joseph A. – Chemical Engineering Education, 1983
A three or four semester-hour graduate course was designed to provide basic instruction in heat/mass transfer topics relevant to chemical engineering problems and to train students to develop mathematical descriptions for new situations encountered in problem-solving. Course outline and list of references used in the course are provided. (JM)
Descriptors: Chemical Engineering, Course Content, Course Descriptions, Engineering Education
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Woods, Donald R. – Chemical Engineering Education, 1983
Describes a graduate or senior elective course combining fundamentals of surface phenomena with practical problem-solving structured around a series of case problems. Discusses topics covered and their development through acquiring new knowledge applied to the case problem, practical calculations of solutions, and applications to additional…
Descriptors: Chemical Engineering, Course Content, Course Descriptions, Engineering Education
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Takoudis, Christos G. – Chemical Engineering Education, 1983
Presents course outline, topics covered, and final project (doubling as a take home final exam) for a one-semester, interdisciplinary course on the design and behavior of chemical reactors. Interplay of chemical and physical rate processes is stressed in the course. (JM)
Descriptors: Chemical Engineering, Chemical Reactions, Course Content, Course Descriptions
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Davis, Mark E. – Chemical Engineering Education, 1983
Describes a two-quarter sequence of graduate courses in numerical methods and modeling for chemical engineers. Rationale, course content, methodology, topic development, and such course requirements as homework and design projects are considered. Emphasis is placed on the treatment of numerical methods implemented in commercial software. (JM)
Descriptors: Chemical Engineering, Computer Oriented Programs, Course Content, Course Descriptions
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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
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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
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Valle-Riestra, J. Frank – Chemical Engineering Education, 1983
Describes a course designed to expose neophytes to methodology used in chemical process industries to evaluate commercial feasibility of proposed projects. Previously acquired disciplines are integrated to facilitate process synthesis, gain appreciation of nature of industrial projects and industrial viewpoint in managing them, and to become adept…
Descriptors: Chemical Engineering, Chemical Industry, Course Content, Course Descriptions