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CHEN 660: Quant Risk Analysis
3.00 Credits
Texas A & M University-Galveston
Quantitative Risk Analysis. (3-0). Credit 3. Fundamental concepts, techniques, and applications of risk analysis and risk-informed decision making for engineering students. Practical uses of probabilistic methods are demonstrated in exercises and case studies from diverse engineering areas. Prerequisites: Graduate or Senior status. Cross-listed with SENG 660 and ISEN 660.
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CHEN 661: Chem Eng Optimization
3.00 Credits
Texas A & M University-Galveston
Optimization of Chemical Engineering Processes. (3-0). Credit 3. Methods of optimization applied for the design and control of chemical engineering processes. Prerequisite: Approval of instructor.
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CHEN 662: Molecular Modeling
3.00 Credits
Texas A & M University-Galveston
Computational Chemistry and Molecular Modeling for Engineers. (3-0). Credit 3. Applications of computational chemistry and molecular modeling relevant to engineers, especially predictions for thermophysical properties and reaction rates; emphasis on the creative and intelligent use of commercial software to solve practical problems; problems relevant to process safety engineer. Prerequisites: CHEN 623 and 624 or approval of instructor.
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CHEN 670: Comptl Mtrls Sci Eng
3.00 Credits
Texas A & M University-Galveston
Computational Materials Science and Engineering. (3-0). Credit 3. Modern methods of computational modeling and simulation of materials properties and phenomena, including synthesis, characterization, and processing of materials, structures and devices; quantum, classical, and statistical mechanical methods, including semi-empirical atomic and molecular-scale simulations, and other modeling techniques using macroscopic input. Prerequisites: Approval of instructor; graduate classification. Cross-listed with MSEN 670 and MEMA 670.
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CHEN 670 - Comptl Mtrls Sci Eng
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CHEN 675: Microelectron Proc Engr
3.00 Credits
Texas A & M University-Galveston
Microelectronics Process Engineering. (3-0). Credit 3. State-of-art process engineering principles on microelectronics, especially for the fabrication of very large scale integrated circuits (VLSICs); fundamental unit processes, such as thin film deposition, thermal growth, lithography, etching and doping, material structures and properties, and basic device operation principles. Prerequisites: CHEN 623 and 624 or approval of instructor.
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CHEN 681: Seminar
1.00 Credits
Texas A & M University-Galveston
Seminar. (1-0). Credit 1. Graduate students will be required to attend discussions covering problems of current importance in chemical engineering research.
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CHEN 684: Professional Internship
1.00 - 4.00 Credits
Texas A & M University-Galveston
Professional Internship. Credit 1 to 4 each semester. Engineering research or design experience in industrial setting away from Texas A&M campus; projects supervised jointly by faculty and industrial representative. Prerequisite: Graduate classification.
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CHEN 685: Directed Studies
1.00 - 12.00 Credits
Texas A & M University-Galveston
Directed Studies. Credit 1 to 12. One or more of numerous problems in chemical engineering processes and operations. Prerequisite: Approval of department head.
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CHEN 689: Special Topics In
1.00 - 4.00 Credits
Texas A & M University-Galveston
Special Topics in... Credit 1 to 4. Selected topics in particular areas of chemical engineering. May be repeated for credit. Prerequisites: Approval of department head and instructor.
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CHEN 691: Research
1.00 - 23.00 Credits
Texas A & M University-Galveston
Research. Credit 1 or more each semester. Problems of unit operations and unit processes. For maximum credit, comprehensive thesis must be prepared of sufficiently high calibre to permit publication in scientific and technical journals. Prerequisite: Approval of department head.
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