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CHBE 180: Modeling and Simulation in Chemical Engineering
3.00 Credits
Vanderbilt University
Development of chemical engineering process models and their numerical solutions. The models include solution of linear and non-linear equations, eigenvalue problems, differentiation, and integration, ordinary differential equations, linear and nonlinear regression. Chemical process simulation using commercial simulators is introduced. A foundation for advanced work in chemical engineering. Prerequisite: CHBE 161; Corequisite: MATH 198; or consent of instructor. SPRING.
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CHBE 223: Phase Equilibria and Stage-Based Separations
3.00 Credits
Vanderbilt University
Thermodynamic principles and calculations of mixture phase equilibrium. Development of correlations to design chemical separation processes. Applications to separation processes involving gases, liquids, and solids such as distillation, adsorption, and extraction. Simulation of separation processes. Prerequisite: CHBE 162, CHBE 180. FALL.
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CHBE 223 - Phase Equilibria and Stage-Based Separations
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CHBE 225: Chemical Reaction Engineering
3.00 Credits
Vanderbilt University
Thermodynamic basis of chemical equilibrium. Analysis of chemical kinetic data and application to the design of chemical reactors. Batch, semibatch, and flow reactors are considered in both steady-state and transient operation. Brief treatments of catalysis and physical and chemical adsorption. Prerequisite: CHBE 223. FALL.
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CHBE 225 - Chemical Reaction Engineering
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CHBE 228W: Chemical Engineering Laboratory I
4.00 Credits
Vanderbilt University
Laboratory experiments in momentum, energy, and mass transport, thermodynamics, kinetics, separations, and process dynamics. Interpretation of data for equipment and process design. Statistical treatment of data and error analysis. Writing and oral presentations are emphasized. CHBE 228W: Two lecture hours and one 5-hour laboratory. CHBE 229W: One lecture hour and one 5-hour laboratory. Prerequisite: CHBE 230. Sequence begins in SPRING.
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CHBE 229W: Chemical Engineering Laboratory II
3.00 Credits
Vanderbilt University
Laboratory experiments in momentum, energy, and mass transport, thermodynamics, kinetics, separations, and process dynamics. Interpretation of data for equipment and process design. Statistical treatment of data and error analysis. Writing and oral presentations are emphasized. CHBE 228W: Two lecture hours and one 5-hour laboratory. CHBE 229W: One lecture hour and one 5-hour laboratory. Prerequisite: CHBE 230. Sequence begins in SPRING.
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CHBE 230: Fluid Mechanics and Heat Transfer
3.00 Credits
Vanderbilt University
Principles of momentum and energy transport and their application to the analysis and design of chemical and biological engineering systems. Prerequisite: Junior standing. Corequisite: MATH 198. FALL.
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CHBE 230 - Fluid Mechanics and Heat Transfer
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CHBE 231: Mass Transfer and Rate-Based Separations
3.00 Credits
Vanderbilt University
Principles of mass transfer and their application to the analysis of chemical and biological engineering systems. Design of rate-based separation operations. Prerequisite: CHBE 230. SPRING.
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CHBE 231 - Mass Transfer and Rate-Based Separations
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CHBE 233W: Chemical Engineering Process and Product Design
3.00 Credits
Vanderbilt University
A systematic approach to design and safety practices for chemical process operations. Process and product design, economic evaluation of alternatives, ethics, and a cost and safety analysis of a typical chemical, biological, or petroleum process and products. Process simulations required. Prerequisite: CHBE 223, 225, and 231. FALL.
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CHBE 242: Chemical Process Control
3.00 Credits
Vanderbilt University
Design of control systems for chemical processes. Principles of process dynamics and control of single and multivariable systems. Frequency and stability analyses and their effect on controller design. Prerequisite: MATH 198. FALL.
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CHBE 242 - Chemical Process Control
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CHBE 246: Chemical Engineering Projects
1.00 - 3.00 Credits
Vanderbilt University
Opportunities for individual students to do research or design work under guidance of a faculty member. Requires faculty sponsorship of the project.
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CHBE 246 - Chemical Engineering Projects
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