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CHE 626: Mathematical Methods in Chemical Engineering
3.00 Credits
New Jersey Institute of Technology
Prerequisite: undergraduate course in differential equations. The purpose of the course is to emphasize the importance of mathematics to chemical engineering practice. Applications of non-linear regression, series solution of ordinary differential equations, Sturm-Liouville problems in partial differential equations, and numerical methods. It is suggested that students take this course before taking ChE 624.
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CHE 626 - Mathematical Methods in Chemical Engineering
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CHE 627: Introduction to Biomedical Engineering
3.00 Credits
New Jersey Institute of Technology
Prerequisites: undergraduate courses in thermodynamics and differential equations. Introduction to the structure and composition of the body followed by an exploration of the properties of blood and its flow in the cardiovascular system; the body as a heat source and as a series of compartments involved in mass transfer of materials (such as those in the kidneys and lungs). Design of artificial kidneys and heart-lung machines is also explored. Same as BME 627.
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CHE 627 - Introduction to Biomedical Engineering
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CHE 628: Biochemical Engineering
3.00 Credits
New Jersey Institute of Technology
Prerequisite: undergraduate degree in chemical engineering. The application of chemical engineering to biological processes, biochemical reaction systems, and their technological use. Special attention given to problems in momentum, energy, and mass transport, as well as chemical reaction kinetics in biological systems.
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CHE 628 - Biochemical Engineering
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CHE 629: Biological Engineering Analysis
3.00 Credits
New Jersey Institute of Technology
Prerequisite: undergraduate degree in chemical engineering. Emphasis is on chemical engineering reactor design employing microbial populations. The dynamics of microbial interactions are described mathematically, as are cell attachment and reactor stability.
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CHE 629 - Biological Engineering Analysis
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CHE 634: Chemical Process Dynamics and Control
3.00 Credits
New Jersey Institute of Technology
Prerequisite: undergraduate chemical engineering course in process dynamics and control. Mathematical principles of process dynamics and control; derivation and solution of differential equations describing the behavior of typical chemical engineering processing units; and mathematical analysis and design of control systems. Digital and sampled data control systems also discussed.
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CHE 634 - Chemical Process Dynamics and Control
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CHE 645: Fundamentals of Rheology
3.00 Credits
New Jersey Institute of Technology
Prerequisite: ChE 626 or permission of the instructor. Rheology of polymer melts and polymer solutions. Various types of time-dependent and time-independent non-Newtonian fluids are classified. Experimental techniques used to characterize these materials are discussed. Effective Until: Spring 2005
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CHE 645 - Fundamentals of Rheology
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CHE 654: Corrosion
3.00 Credits
New Jersey Institute of Technology
Prerequisite: Undergraduate courses in Chemistry. Fundamental principles including thermodynamics and kinetics of corrosion; forms of corrosion (e.g. galvanic, crevice and stress); methods of corrosion measurement; high temperature corrosion; and special case histories. Effective From: Fall 2004
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CHE 654 - Corrosion
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CHE 656: Catalysis
3.00 Credits
New Jersey Institute of Technology
Prerequisite: ChE 612. Introduction of mass transfer and physical characterization of catalysts: the effectiveness factor; absorption; surface reaction; catalytic reactor design.
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CHE 656 - Catalysis
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CHE 662: Chemical Processing of Electronic Materials
3.00 Credits
New Jersey Institute of Technology
Prerequisite: undergraduate degree in chemical engineering. Processes necessary for manufacturing electronic materials into semiconductor devices and systems including single crystal growth, chemical vapor deposition, ion implantation, dry etching, and other considerations.
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CHE 662 - Chemical Processing of Electronic Materials
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CHE 664: Experiments and Simulations in Particle Technology
3.00 Credits
New Jersey Institute of Technology
Prerequisites: graduate standing and consent of the instructor. Covers particle size analysis using sieves as well as laser diffraction technique, size reduction with ball mill, measurement of powder flow properties and internal angle of friction, measurement of angle of repose, design of mass flow hoppers using Jenike direct shear tester, measurement of minimum sintering temperature of powders, particle sedimentation, powder mixing, dry particle coating, and fluidized beds. Simulations involve various dry and fluid based particle systems, focusing on particle-particle and fluidparticle interactions. Same as ME 664.
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CHE 664 - Experiments and Simulations in Particle Technology
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