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Course Criteria
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3.00 Credits
Chemical engineering principles are applied to bioprocess design. Emphasis is placed on designing bioreactors and bioseparation unit operations used in industrial biotechnology and the chemical process industry. Application of bioreaction and bioseparation operations to other chemical processes are discussed. Preq: CHE 3300 and CHE 4500.
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3.00 Credits
Analysis of single and multidimensional steady-state and transient problems in momentum, mass, and energy transfer in biological systems. Mathematical similarities and differences in these mechanisms are stressed, and mathematical descriptions of physiological and engineering systems are formulated. Preq: CHE 3300 and MATH 2080.
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3.00 Credits
Study of principal methods of separation and purification of bioproducts, such as proteins, amino acids, and pharmaceuticals. Topics include analytical bioseparations, membrane separations, sedimentation, cell disruption, extraction, adsorption, chromatography, precipitation, crystallization, and drying. Preq: CHE 3300; and BCHM 3010 or BCHM 3050 or BCHM 4230.
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3.00 Credits
Introduction to basic principles of biomolecular engineering: the purposeful manipulation of biological molecules and processes applied to problems and issues in the life sciences, biotechnology, and medicine. Topics include carbohydrates, proteins, nucleic acids, and lipids with emphasis on their structure-property-function relations; molecular recognition; biochemical pathway engineering; and cell growth. Preq: CHE 2300 and CHE 3190.
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3.00 Credits
Development of methodologies used to design, fabricate, and apply biosensors and bioelectronic devices for the environmental, medical, and chemicals industries. Application of the fundamentals of measurement science to optical, electrochemical, mass, and thermal means of signal transduction. Use of the fundamentals of surface science to interpret bio-immobilization and biomolecule-surface interactions. Preq: CHE 3300; and BCHM 3010 or BCHM 3050.
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3.00 Credits
Students learn principles of membrane science and technology and study membrane applications in the biotechnology and biomedical industries. Advanced topics include surface modification of membranes, synthesis of porous membranes for biomedical applications such as tissue engineering, environmentally responsive membranes, and membrane-based biomedical devices. Preq: CHE 3300.
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3.00 Credits
Chemical engineering principles are applied to bioprocess design. Emphasis is placed on designing bioreactors and bioseparation unit operations used in industrial biotechnology and the chemical process industry. Application of bioreaction and bioseparation operations to other chemical processes are discussed. Preq: CHE 3300 and CHE 4500.
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3.00 Credits
Study of methodologies in design, fabrication and application of biosensors and bioelectronic devices for monitoring the environmental, medical and chemical industries. Includes measurement science fundamentals applied to optical, electrochemical, mass and thermal means of signal transduction. Also considers surface science fundamentals to interpret bioimmobilization, biofouling and nonspecific interactions of enzymes, antibodies and DNA at surfaces. Preq: Consent of instructor.
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3.00 Credits
In consultation with and under the direction of the faculty, students pursue scholarly activities through an interdisciplinary lens. Students explore topics specific to behavioral, social, and health sciences individually and within interdisciplinary teams. May be repeated for a maximum of six credits, provided the content of subsequent sessions is meaningfully different than the previous ones.
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1.00 Credits
In consultation with and under the direction of a faculty member, students pursue scholarly activities both individually and in teams. These creative inquiry projects are interdisciplinary. May be repeated for a maximum of 12 credits.
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