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Course Criteria
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4.00 Credits
The design of equipment, processes, and systems of interest in chemical engineering through application of scientific, technological, and economic principles. The concepts of product design, design for the environment, and the ethical and safety issues of design are introduced. Emphasis is placed on problem formulation and the conceptual, analytical, and decision aspects of open-ended design situations. The work integrates knowledge and skills gained in previous and concurrent courses. This is a writing-intensive course. Prerequisites/Corequisites: Prerequisites: CHME 4040 and CHME 4500. When Offered: Spring term annually. Credit Hours: 4
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3.00 Credits
A two-term laboratory course on experimental analysis of the operations and processes of chemical engineering. Emphasis is placed on planning of experiments, data evaluation, and report writing. Prerequisites/Corequisites: Prerequisites: CHME 4010, CHME 4020, and CHME 2020. When Offered: Fall and spring terms annually. Credit Hours: 3
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3.00 Credits
A two-term laboratory course on experimental analysis of the operations and processes of chemical engineering. Emphasis is placed on planning of experiments, data evaluation, and report writing. Prerequisites/Corequisites: Prerequisites: CHME 4150, CHME 4040, and CHME 4500. When Offered: Fall and spring terms annually. Credit Hours: 3
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3.00 Credits
A one-term laboratory course covering the fundamentals of biotechnology and bioprocessing including molecular biology, fermentation, and protein purification. Prerequisites/Corequisites: Prerequisite: Senior standing in Chemical & Biological Engineering. CHME 4430 strongly recommended. When Offered: Spring term annually. Credit Hours: 3
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3.00 Credits
Theory and practice of chromatographic separation processes. Dynamics of zone migration, diffusion, and kinetics. Multicomponent adsorption, nonequilibrium adsorption, zone spreading, and control of separation. Modern analytical and preparative bioseparation techniques of liquid chromatography. Prerequisites/Corequisites: Prerequisite: senior or graduate standing in chemical engineering or permission of instructor. When Offered: Spring term annually. Credit Hours: 3
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3.00 Credits
Description, fundamentals, and engineering features of processes using microbial, plant, or animal cells or their enzymes. Topics include review of biochemistry, review of microbiology, computer simulation, growth, death, aseptic techniques, continuous culture, fermenter design, sterilization, mixed cultures, process scale up, immobilized cells and enzymes, recovery of products, and process economics. Weekly exercises requiring personal computers. Prerequisites/Corequisites: Prerequisite: background in chemical engineering or microbiology. Biochemistry strongly recommended. When Offered: Fall term annually. Credit Hours: 3
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3.00 Credits
Principles of kinetics, reactor design, and analysis for both homogeneous and heterogeneous (catalytic) systems. Topics include design for multiple reaction networks (optimum selectivity), analysis of simple reactor combinations, and design of isothermal, adiabatic, and optimum temperature profile reactor. Prerequisites/Corequisites: Prerequisites: CHME-2010, CHME-4010, and CHME-4020. When Offered: Fall term annually. Credit Hours: 3
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3.00 Credits
The basic processes of fabrication of silicon-based semiconductor devices with emphasis on the chemical principles and systems involved. Topics include materials preparation, oxide growth, lithography, diffusion, ion implantation, epitaxial growth, chemical-vapor deposition, vacuum deposition, reactive ion etching, and packaging technologies. Fabrication of both bipolar and FET devices is discussed with emphasis on manufacturing process flow and control. Process design methodology. Prerequisites/Corequisites: Prerequisite: senior standing in chemical engineering or permission of instructor. When Offered: Fall term annually. Credit Hours: 3
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1.00 - 3.00 Credits
Credit Hours: 1 to 3
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3.00 Credits
Credit Hours: 3
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