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Course Criteria
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1.00 - 3.00 Credits
Cr. 1-3. Repeatable. Prereq : LSCM 360, senior classifi cation, permission of instructor.
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3.00 Credits
Cr. R. F. Prereq : Sophomore classifi cation in Mat E. Preparation for a career in materials engineering; experiential learning, resumes, interviewing, Myers-Briggs Type Indicator, leadership, undergraduate research, international opportunities, graduate school preparation and opportunities, and alternative career paths. Satisfactory-fail only.
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3.00 - 4.00 Credits
Cr. 5. F. Prereq : Chem 177 or 167. Structure and properties of ceramic, electronic, polymeric and metallic materials, emphasizing differences based on structure and bonding. Phase equilibria and phase transformations. Laboratory exercise in materials property measurements. Restricted to Materials Engineering majors. Only one of Mat E 211, 272, or 392 may count toward graduation.
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2.00 - 3.00 Credits
(2-3) Cr. 3. S. Prereq: 211, credit or enrollment in Phys 221. Structural characterization of ceramic, electronic, polymeric and metallic materials. Techniques include optical and electron microscopy, x-ray diffraction, and thermal analysis. Identifi cation of materials type, microstructure, and crystal structure.
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0.00 - 2.00 Credits
Cr. 2. F.S.SS. Prereq: Sophomore classifi cation; Chem 167 or 177. Introduction to the structure of metals, polymers and ceramics. Crystal structure and imperfections in metals. Diffusion, mechanical properties, and failure mechanisms. Phase equilibrium diagrams and heat treatment principles for steels, composite materials, and aluminum alloys. Engineering applications. Only one of Mat E 211, 272, or 392 may count toward graduation.
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3.00 Credits
Cr. R. F.S.SS. Prereq: Permission of department and Engineering Career Services. First professional work period in the cooperative education program. Students must register for this course before commencing work.
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0.00 - 3.00 Credits
(3-0) Cr. 3. F. Prereq : Chem 178 and credit or enrollment in Math 266. Basic laws of thermodynamics applied to materials systems. Thermodynamics of chemical reactions. Homogeneous and heterogeneous equilibrium. Phase diagrams for materials systems. Nonmajor graduate credit.
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0.00 - 3.00 Credits
(3-0) Cr. 3. S. Prereq: 211, 311. Kinetic phenomena and phase equilibria relevant to the origins and stability of microstructure in metallic, ceramic and polymeric systems. Application of thermodynamics to the understanding of stable and metastable phase equilibria, interfaces and their effects on stability: defects and diffusion, empirical rate equations for transformation kinetics, driving forces and kinetics of nucleation, diffusional and diffusionless phase transformations. Nonmajor graduate credit.
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2.00 Credits
(2-2) Cr. 3. S. Prereq: 211. Use of mathematical and statistical computer tools for materials design and analysis. Applications of statistical principles to problems concerned with materials. Computer-assisted design of experiments. Nonmajor graduate credit.
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0.00 - 3.00 Credits
Cr. 3. F. Prereq : 211. Ceramic crystal structures, defects, diffusion and transport. Phase equilibria and microstructures. Powder packing. Thermal, electronic, optical and magnetic properties of ceramics. Nonmajor graduate credit.
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