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Networked Systems 254: Nonlinear Optimization Methods
3.00 Credits
University of California-Irvine
Formulation, solution, and analysis of nonlinear programming problems. Unconstrained optimization, optimization over a convex set, Lagrange multiplier theory, Lagrange multiplier algorithms, duality theory, convex programming, dual methods, and multiobjective optimization theory. Emphasizes mathematical analysis. Prerequisite: Mathematics 2J or consent of instructor. Same as EECS261B.
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Networked Systems 254 - Nonlinear Optimization Methods
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Networked Systems 255: Network Congestion and Flow Control Theory
3.00 Credits
University of California-Irvine
Congestion and flow control theory for network traffic engineering. Path control, flow assignment, and network management. Fundamental laws of network congestion, controllability, observability, manageability, and maximin theories, and timeoptimal queue control theory. Same as EECS262.
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Networked Systems 255 - Network Congestion and Flow Control Theory
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Networked Systems 260: Middleware for Networked and Distributed Systems
4.00 Credits
University of California-Irvine
Discusses concepts, techniques, and issues in developing distributed systems middleware that provides high performance and Quality of Service for emerging applications. Also covers existing standards (e.g., CORBA, DCOM, Jini, Espeak) and their relative advantages and shortcomings. Prerequisite: undergraduate- level course in operating systems and networks or consent of instructor. Same as Computer Science 237.
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Networked Systems 260 - Middleware for Networked and Distributed Systems
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Networked Systems 261: Distributed Computer Systems
3.00 Credits
University of California-Irvine
Design and analysis techniques for decentralized computer architectures, communication protocols, and hardware- software interface. Performance and reliability considerations. Design tools. Prerequisites: EECS211 and EECS213. Same as EECS218.
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Networked Systems 261 - Distributed Computer Systems
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Networked Systems 270: Topics in Networked Systems
4.00 Credits
University of California-Irvine
Study of Networked Systems concepts. Prerequisite: consent of instructor. May be repeated for credit as topics vary.
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Networked Systems 270 - Topics in Networked Systems
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Networked Systems 295: Networked Systems Seminar
2.00 Credits
University of California-Irvine
Current research in networked systems. Includes talks by UCI faculty, visiting researchers, and Networked Systems graduate students. Satisfactory/Unsatisfactory only. May be repeated for credit.
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Networked Systems 295 - Networked Systems Seminar
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Neurobiology and Behavior 200A: B- C Research in Neurobiology and Behavior
3.00 Credits
University of California-Irvine
Individual research supervised by a specific professor. Prerequisite: consent of instructor.
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Neurobiology and Behavior 200A - B- C Research in Neurobiology and Behavior
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Neurobiology and Behavior 201A: B- C Research in Neurobiology and Behavior
3.00 Credits
University of California-Irvine
Individual research supervised by a specific professor. Prerequisite: consent of instructor.
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Neurobiology and Behavior 201A - B- C Research in Neurobiology and Behavior
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Neurobiology and Behavior 202A: B,C Foundations of Neuroscience
3.00 Credits
University of California-Irvine
Intended to expose students to critical reading and analysis of the primary neuroscience literature. Instructors from departments associated with the Interdepartmental Neuroscience Program participate and discuss topics of current interest. Satisfactory/ Unsatisfactory only.
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Neurobiology and Behavior 202A - B,C Foundations of Neuroscience
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Neurobiology and Behavior 206: Molecular Neuroscience
5.00 Credits
University of California-Irvine
Surveys molecular and cellular mechanisms involved in neuronal function, including control of gene expression, post-transcriptional and post-translational processing, RNA and protein targeting, cell death mechanisms, and the molecular genetic basis of neurological disorders. Overview of the molecular aspects of developmental neurobiology. Prerequisite: Neurobiology and Behavior graduate student or consent of instructor. May be taken for credit twice.
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Neurobiology and Behavior 206 - Molecular Neuroscience
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