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Course Criteria
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3.00 Credits
Description: Advanced concepts of thermodynamics: equations of state, physical and chemical equilibrium, estimation of thermodynamic properties. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Applications of statistical methods in chemical engineering: basic concepts, statistical design of experiments, analysis of results, factorial design, sequential design methods, correlation and regression annalysis, presentation of results in useful form. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Mathematical techniques for analyzing chemical engineering problems: development of mathematical models of physical and chemical problems, time dependent and position dependent models, solution of model equations by numerical techniques, computer applications 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Techniques for economic evaluation of projects and processes; time value of money, return on investment, cost estimation of processes, alternative project evaluations, economic balances and optimization. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Fundamentals of single and multi-variable optimization by search techniques: constrained and unconstrained optimization, introduction to linear programming, geometric programming and dynamic programming, limits and usefulness of optimization techniques. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Materials for use in medicine and in/on the body, material bulk and surface properties, biological responses to materials, applications, manufacturing processes, cost, sterilization, packaging and regulatory issues with some drug delivery topics. 3.00credit(s)
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3.00 Credits
Description: Design of facilities for the pharmaceutical and bioprocess industries. Equipment selection, economics, team work, and presentations. 3.00credit(s)
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3.00 Credits
Description: Basics of biochemistry, microbiology, cell biology and molecular biology, as applied to bioproduct formation; enzyme kinetics, immobilized enzymes, diffusion limitations, immobilized enzyme reactors; cell growth kinetics, batch and continuous fermentor operation, bioreactor operation; sterilization, oxygen transfer and scaleup. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Fedbatch, continuous, immobilized-cell and other advanced bioreactors; bioreactor monitoring and control; design and operation of downstream processes, including cell disruption, filtration, extraction, chromatography; facility design; validation and regulatory issues. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: The production of useful materials by growth of living organisms: concepts of metabolism and cell growth, important biochemicals, introduction to modification of cell genetics, fermentation, design and operation of bioreactors, product separation and purification. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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