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CELL 9999: Non-Topical Research
1.00 - 12.00 Credits
University of Virginia-Main Campus
For doctoral dissertation, taken under the supervision of a dissertation director.
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CELL 9999 - Non-Topical Research
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CH E202: Thermodynamics
3.00 Credits
University of Virginia-Main Campus
Includes the formulation and analysis of the first and second laws of thermodynamics; energy conservation; concepts of equilibrium, temperature, energy, and entropy; equations of state; processes involving energy transfer as work and heat; reversibility and irreversibility; and closed and open systems and cyclic processes. Cross-listed as MAE 210. (S) Prerequisites & Notes Corerequisite: APMA 212. Credits: 3
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CH E202 - Thermodynamics
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CH E215: Material and Energy Balances
3.00 Credits
University of Virginia-Main Campus
Introduces the field of chemical engineering, including material and energy balances applied to chemical processes, physical and thermodynamic properties of multicomponent systems. Three lecture and one discussion hour. (Y) Prerequisites & Notes Prerequisite: CHEM 151, APMA 111. Credits: 3
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CH E215 - Material and Energy Balances
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CH E216: Modeling and Simulation in Chemical Engineering
3.00 Credits
University of Virginia-Main Campus
Mathematical and computational tools for the analysis and simulation of chemical processes and physicochemical phenomena. Mathematical and numerical methods. Three lecture and one laboratory hour. (Y) Prerequisites & Notes Prerequisite: CS 101, APMA 213, CHE?215. Credits: 3
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CH E216 - Modeling and Simulation in Chemical Engineering
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CH E246: Introduction to Biotechnology
3.00 Credits
University of Virginia-Main Campus
Introduction to the fundamentals of biochemistry and molecular and cell biology emphasizing their relevance to industrial applications of biotechnology. Three lecture hours. (Y) Prerequisites & Notes Prerequisite: CHEM 151. Credits: 3
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CH E246 - Introduction to Biotechnology
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CH E316: Chemical Thermodynamics
3.00 Credits
University of Virginia-Main Campus
Principles of chemical thermodynamics further developed and applied. Emphasizes phase and chemical equilibria calculations. Three lecture hours. (Y) Prerequisites & Notes Prerequisite: CHE 202, 215, or equivalent. Credits: 3
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CH E316 - Chemical Thermodynamics
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CH E318: Chemical Reaction Engineering
3.00 Credits
University of Virginia-Main Campus
Determination of rate equations for chemical reactions from experimental data. Use of kinetics and transport relations in the design of both batch and continuous reactors; homogeneous, heterogeneous, uncatalyzed and catalyzed reactions. Three lecture hours. (Y) Prerequisites & Notes Prerequisite: CHE 216, 316; corequisite: CHE 322. Credits: 3
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CH E318 - Chemical Reaction Engineering
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CH E321: Transport Processes I:Momentum and Heat Transfer
4.00 Credits
University of Virginia-Main Campus
Development and application of the concepts of momentum and heat transfer to chemical processing operations, emphasizing continuous operations. Four lecture hours. (Y) Prerequisites & Notes Prerequisite: CHE 215, 216. Credits: 4
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CH E321 - Transport Processes I:Momentum and Heat Transfer
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CH E322: Transport Processes II:Mass Transfer and Separations
4.00 Credits
University of Virginia-Main Campus
Fundamental concepts of diffusion and mass transfer. Application to continuous contacting in separation devices. Material and energy conservation calculations for equilibrium stage processes, including multistage, multicomponent calculations as involved in distillation, absorption, and extraction systems. Four lecture hours. (Y) Prerequisites & Notes Prerequisite: CHE 216, 316, and 321. Credits: 4
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CH E322 - Transport Processes II:Mass Transfer and Separations
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CH E347: Biochemical Engineering
3.00 Credits
University of Virginia-Main Campus
Quantitative engineering aspects of industrial applications of biology including the microbial synthesis of commercial products, environmental biotechnology, and the manufacture of biopharmaceuticals through recombinant microorganisms, transgenic animals, and plants. Three lecture hours. (Y) Prerequisites & Notes Prerequisite: CHE 246, CHE 321, or instructor permission; corequisite: CHE 318, 322 or instructor permission. Credits: 3
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CH E347 - Biochemical Engineering
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