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Course Criteria
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3.00 Credits
Description: Continuation of ECE 5991. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate
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3.00 Credits
Description: A survey course for non-electrical engineering students. Electrical components, dc circuits, ac circuits, power systems, electric machines, analog and digital electronics. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Undergraduate Prerequisites: Undergraduate level PHY 2402 Minimum Grade of D- or Undergraduate level PHY 2412 Minimum Grade of D-
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3.00 Credits
Description: An introduction to the history of renewable energy policy from its inception to the current state of the industry. Evolution of policy from monopolistic to competitive marketplace. The utility environment and the process of entering into the competitive renewable energy markets. The scope and role of policy and how it is shaping the evolving renewable energy marketplace, including the influence of factors such as technology, environment, government, and the regulatory framework. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: The course will introduce key technologies used in Expert Systems including: knowledge engineering, knowledge representation, knowledge bases, rule development, fact development, inference, and explanation facilities. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Addresses some specific topics of interest in networks. Topics: brief review of basic networking concepts and the TCP/IP model; high speed networks (ATM, SONET), wireless networks, quality of service basics of queuing theory and performance analysis. Prerequisites: ECE 3720 or equivalent and ECE 4470 or equivalent. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Arts and Sciences Graduate Engineering
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3.00 Credits
Description: Introduction to computer languages, syntax, parsing, and lexical analysis. Use of Bison and Flex for course projects, with emphasis on implementation of a spreadsheet program. Prerequisites: C programming & data structures. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Solid state electronics concepts including semiconductor device physics, microelectronic fabrication, and SPICE modeling. Topics include quantum well structures, semiconductor physics, pn junctions, bipolar and field effect transistors, photolithography, oxidation, diffusion, and computer simulation of semiconductor devices. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Includes electrical conduction; optical, magnetic & superconductivity. Also includes energy bands in crystals, electron wave functions, electrical conduction in crystalline & non-crystalline materials, optical transitions in semiconductors, classical & quantum theory of magnetism. Open to graduate students & qualified undergraduates. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Practical methods for the conversion and measurement of physical quantities by the use of transducers and electronic circuits are discussed. The underlying technology of the typical electronic measurement system is studied. The role of analog interfaces, modifiers, A/D conversion, busses and digital interfaces in designing instrumentation is discussed. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering
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3.00 Credits
Description: Basic fabrication processes of silicon microelectronic technologies. Interrelationships between the material processing and the operational characteristics of a device. Integration of the various material processes in forming MOS integrated circuits and MEMS devices. 3.00credit(s) Restrictions: Must be enrolled in one of the following Levels: Graduate Engineering Prerequisites: ECE 3500
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