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Course Criteria
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3.00 Credits
Prerequisite: CH E 520 or consent of instructor. Fundamental laws of diffusion and diffusion with chemical reaction in traditional and unconventional mass transfer operations. (Lecture-problem 3 hours). Letter grade only (A-F).
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3.00 Credits
Prerequisite: CH E 430. Modeling of chemical reactors; effects of multiple phases, mixing, adsorption, diffusion and catalysts on reactor performance. (Lecture-Problems 3 hrs) Letter grade only (A-F).
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3.00 Credits
Prerequisites: CH E 330, 420, or consent of instructor. Rate-controlled separation processes such as membrane separations, pressure swing adsorption, molecular sieve separation, supercritical fluid extraction, reverse osmosis, and spray drying. Additional projects required for CH E 537. (Lecture-problems 3 hours) Letter grade only (A-F).
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3.00 Credits
Prerequisite: E E 210 or PHYS 152. Basic principles of device physics and applications of transport processes to device fabrication. Fabrication processes include oxidation, microlithography, etching, doping by diffusion or ion implantation, film growth by chemical vapor deposition, and metallization. Graduate students have additional assignments on design of micro-fabricated devices. (Lecture-problems 3 hours) Letter grade only (A-F).
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3.00 Credits
Prerequisite: CH E 330. Pollution prevention strategies in chemical industry. Hierarchical approach waste minimization. Life cycle analyses of wastes. Identification of pollution source. Environmentally compatible materials. Unit operations for minimizing waste. Economics of pollution prevention. Extra requirement for graduate students. (Lecture-problems 3 hours) Letter grade only (A-F).
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3.00 Credits
Prerequisite: CHEM 327 or consent of instructor. Physical and chemical properties of hazardous materials and wastes. Environmental hazards. An examination of environmental laws, regulations and standards dealing with storage, transportation, treatment and disposal of hazardous wastes. Emergency planning and preparedness. Extra requirement for graduate students: term papers or projects. (Lecture-problems 3 hours) Letter grade only (A-F).
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3.00 Credits
Prerequisite: one of the following: CH E 460, E E 370/L, 411, 470, 471, 511, MAE 376, E T 492, or consent of instructor. Principles and practices of controller selection and tuning, advanced control loops, model predictive control, decoupling, hands-on experience of control loop design and implementation using Labview. (Lecture-Problems 3 hours) Letter grade only (A-F).
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3.00 Credits
Prerequisites: CH E 200, 330, 430, and life science course(s) with instructor's approval. Review of basic science. Kinetics of enzyme-catalyzed reactions. Kinetics of substrate utilization, product formation and biomass production. Design and analysis of bioreactors. Product recovery operations. Applications to natural systems. Extra requirements for graduate students. (Lecture-problems 3 hrs) Letter grade only (A-F).
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3.00 Credits
Prerequisite: CHEM 320A or 327, or consent of instructor. Application of chemistry to the problems of pollution. Graduate students have additional assignments. (Lecture-problem 3 hours). Letter grade only (A-F).
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3.00 Credits
Prerequisites: CH E 420, 430. Simulation and optimization of chemical engineering processes by mathematical formulation and computer modeling. Extra requirements for graduate students: term papers or projects. (Lecture-problems 3 hours) Letter grade only (A-F).
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