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CE 200: Special Topics
3.00 Credits
University at Buffalo
Credits: 3 Prerequisites: Permission of director of undergraduate studies Corequisites: None Type: LEC Topics in the field of specialization selected with the permission of the instructor.
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CE 200 - Special Topics
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CE 212: Fundamental Principles of Chemical Engineering
4.00 Credits
University at Buffalo
Credits: 4 Prerequisites: CHE 108, MTH 14, PHY 107 Corequisites: None Type: LEC/REC Integrates fundamentals of mathematics, physics, and chemistry into chemical engineering concepts; laws of conservation of mass and energy.
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CE 212 - Fundamental Principles of Chemical Engineering
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CE 300: Special Topics
3.00 Credits
University at Buffalo
Credits: 3 Prerequisites: Permission of director of undergraduate studies Corequisites: None Type: LEC Topics in the field of specialization selected with the permission of the instructor.
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CE 300 - Special Topics
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CE 304: Chemical Engineering Thermodynamics
4.00 Credits
University at Buffalo
Credits: 4 Prerequisites: CE 1, MTH 41 Corequisites: None Type: LEC/REC Applies the laws and tools of equilibrium thermodynamics to chemical engineering problems, including calculation of thermodynamic properties of pure fluids and mixtures, computation of energy requirements for changing the state of a system, analysis of phase equilibria (emphasizing vapor-liquid equilibrium), and treatment of chemical reaction equilibria.
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CE 304 - Chemical Engineering Thermodynamics
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CE 307: Chemical Engineering Design I
3.00 Credits
University at Buffalo
Credits: 3 Prerequisites: CE 1, MTH 306 Corequisites: None Type: LEC Introduces process control: mathematical modeling of simple systems, dynamic response, feedback control, stability; engineering economics: investment and profitability, cost estimation, optimization.
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CE 307 - Chemical Engineering Design I
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CE 317: Transport Processes I
4.00 Credits
University at Buffalo
Credits: 4 Prerequisites: MTH 41, MTH 306 Corequisites: CE 1, CE 37 Type: LEC/REC Introduces fluid statics and dynamics with examples from chemical engineering operations. Applies macroscopic mass, energy, and momentum balances to fluid flow problems. Dimensional analysis and correlation of turbulent flow data. Theories of turbulence. The Navier-Stokes equations, momentum transport and velocity profiles in one-dimensional laminar flow, boundary layers, and potential flow.
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CE 317 - Transport Processes I
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CE 318: Transport Processes II
4.00 Credits
University at Buffalo
Credits: 4 Prerequisites: CE 317 Corequisites: CE 328 Type: LEC/REC The equations of change of heat and mass transport. Steady- and unsteady-state heat conduction in one and two dimensions. Free and forced convection; prediction and correlation of heat transfer. Mass transfer by diffusion and convection; analogies with heat transfer. Simultaneous mass transfer and chemical reaction.
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CE 318 - Transport Processes II
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CE 327: Chemical Engineering Laboratory I
1.00 Credits
University at Buffalo
Credits: 1 Prerequisites: None Corequisites: CE 317 Type: LAB/LEC Accompanies CE 317. Fundamentals of design, execution, analysis, and documentation of engineering experiments. One three-hour laboratory per week or equivalent.
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CE 327 - Chemical Engineering Laboratory I
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CE 328: Chemical Engineering Laboratory II
1.00 Credits
University at Buffalo
Credits: 1 Prerequisites: CE 327 Corequisites: CE 318 Type: LAB/LEC Accompanies CE 318. Continuation of CE 327.
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CE 328 - Chemical Engineering Laboratory II
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CE 329: Chemical Engineering Reaction Kinetics
3.00 Credits
University at Buffalo
Credits: 3 Prerequisites: MTH 306 Corequisites: CE 12 Type: LEC Chemical kinetics as applied to the design of chemical reaction equipment. Introduces the theory of reaction rates in homogeneous and heterogeneous systems; experimental methods; analysis of rate data; reactor types and design; selectivity in complex reaction systems.
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CE 329 - Chemical Engineering Reaction Kinetics
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