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ECHE 364: Chemical Reaction Processes
3.00 Credits
Case Western Reserve University
Design of homogeneous and heterogeneous chemical reactor systems. Relationships between type of reaction and choice of reactor. Methods of obtaining and analyzing kinetic data. Relationship between mechanism and reaction rate and brief introduction to catalysis. Recommended preparation: ECHE 360. Prereq: ECHE 260 and MATH 224.
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ECHE 364 - Chemical Reaction Processes
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ECHE 365: Measurements Laboratory
3.00 Credits
Case Western Reserve University
Laboratory introduction to the measurement process in engineering. Matching measurements to approximate and exact physical models is stressed. Extraction of physical parameters and estimation of the errors in the parameter estimates is an important part of the course. Example projects cover steady and unsteady state heat transfer, momentum transfer, and the first law of thermodynamics. Recommended preparation: ECHE 360. Prereq: ECHE 260, ECHE 363 and ENGR 225.
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ECHE 365 - Measurements Laboratory
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ECHE 367: Process Control
4.00 Credits
Case Western Reserve University
Theoretical and practical aspects of feedback control of chemical processes. The course involves extensive use of computer software with some exams taken using the computer. Short laboratories and Labview training are integrated into the course. Topics include: analysis of linear dynamical systems using Laplace transforms, derivation of unsteady state mathematical models of simple chemical processes, dynamic simulation of linear and nonlinear models, design of PID controllers by model inverse methods, tuning of controller to accommodate process model uncertainty, two degrees of freedom controllers, feed-forward and cascade control. The Labview training covers programming basics, interfacing to a data acquisition system, and incorporating control algorithms.. Prereq: ECHE 260 and MATH 224.
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ECHE 367 - Process Control
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ECHE 370: Fluid Mechanics for Chemical Systems
3.00 Credits
Case Western Reserve University
This course introduces the physical and mathematical concepts associated with the motion of material and the transfer of momentum. These concepts will be applied to the analysis of engineering systems to obtain both exact solutions and practical estimates. Both analytical and numerical solutions will be utilized.
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ECHE 370 - Fluid Mechanics for Chemical Systems
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ECHE 371: Heat and Mass Transfer for Chemical Systems
3.00 Credits
Case Western Reserve University
This course introduces the physical and mathematical concepts associated with the transfer of heat and mass. These will be applied to the analysis of engineering situations to obtain both exact solutions and practical estimates. Analytical and numerical solutions will be utilized.
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ECHE 371 - Heat and Mass Transfer for Chemical Systems
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ECHE 380: Electrochemical Technology
3.00 Credits
Case Western Reserve University
Fundamentals of modern electrochemical technology and the engineering principles involved. Basics of classical electrochemistry; thermodynamics and kinetics. Engineering aspects of transport phenomena, scaling, and design as applied to electrochemical industries. Practical examples from metal finishing, batteries and fuel cells, and the electrolytic industries. Recommended preparation: ECHE 260.
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ECHE 380 - Electrochemical Technology
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ECHE 381: Electrochemical Engineering
3.00 Credits
Case Western Reserve University
Engineering aspects of electrochemical processes including current and potential distribution, mass transport and fluid mechanical effects. Examples from industrial processes including electroplating, industrial electrolysis, corrosion, and batteries. Recommended preparation: ECHE 260 or permission of instructor. Offered as ECHE 381 and ECHE 480.
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ECHE 381 - Electrochemical Engineering
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ECHE 383: Chemical Engineering Applied to Microfabrication and Devices
3.00 Credits
Case Western Reserve University
Silicon based microfabrication and micromachining require many chemical engineering technologies. Microfabricated devices such as sensors are also directly related to chemical engineering. The applications of chemical engineering principles to microfabrication and micromachining are introduced. Oxidation processing, chemical vapor deposition, etching and patterning techniques, electroplating and other technologies are discussed. Graduate students will submit an additional final project on some technical aspect of microfabrication technology or devices. Recommended preparation: ECHE 363 and ECHE 371. Offered as ECHE 383 and ECHE 483.
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ECHE 383 - Chemical Engineering Applied to Microfabrication and Devices
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ECHE 396: Research and Innovation
3.00 Credits
Case Western Reserve University
This course is an opportunity for undergraduate students to experience research--how to approach a research problem, design experiments and analyze data. This will be accomplished through (a) hands-on laboratory experiences with important research techniques, (b) assignment of open-ended projects on research topics, and (c) discussion of specific interdisciplinary research being pursued at Case. It is meant to be a mechanism for students to become involved in a research project; the final assignment is to submit a proposal for this project. Example interdisciplinary research areas to be included are Fuel Cells and Batteries, Sensors, Biomaterials, and Micro and Nano-fabricated Devices.
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ECHE 396 - Research and Innovation
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ECHE 397: Special Topics in Chemical Engineering
3.00 Credits
Case Western Reserve University
Special topics within an area of chemical engineering.
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ECHE 397 - Special Topics in Chemical Engineering
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