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Course Criteria
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4.00 Credits
Description: Prerequisite: EGCE 408 or 430; EGCE 533 or equivalent. Characteristics, design criteria and safety provisions of tall buildings. Selection, optimization and analysis of framing systems. Design standards, constructability, wind and seismic considerations. Design project to the standards of professional practice. Computer application. Units: 4
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3.00 Credits
Description: Prerequisite: any 400-level Management course approved by the department head. Expert systems and artificial intelligence techniques in construction engineering; expert systems for: safety evaluation of structures during construction, site selection, construction decision making, and construction schedule analysis; project monitoring; claims and disputes. Units: 3
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3.00 Credits
Description: Prerequisites: EGCE 441. Topics with regard to the formation and control of air pollutants are studied. This course intends to provide a strong foundation for design and development of engineering solutions, devices and systems for industrial air pollution prevention and control. Units: 3
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3.00 Credits
Description: Prerequisites: Classified graduate status and formal approval of Civil Engineering Graduate Committee, graduate adviser and department head. Units: (1-6)
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3.00 Credits
Description: Prerequisites: Classified graduate status and formal approval of Civil Engineering Graduate Committee, graduate adviser, and department head. (Maximum of 3 units per semester) Units: (1-6)
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1.00 - 3.00 Credits
Description: Prerequisites: Classified graduate status and formal approval of Civil Engineering Graduate Committee, graduate adviser, and department head. Units: 1-3
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3.00 Credits
Description: Prerequisite: Comp Sci 120 and Math 270A. Binary number system and arithmetic, computer codes, Boolean algebra, logic gates, K-map minimization, sequential circuits, memory devices, state diagram and table, computer architecture, memory, Arithmetic Logic Unit, and control unit. (2 hours lecture, 2 hours laboratory) Units: 3
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3.00 Credits
Description: Prerequisite: EGCP 180. Microcontrollers, microcontroller programming model and instruction set, assembler directives, writing and debugging microcontroller assembly language routines, microcontroller memory system, microcontroller communication systems. (1 hour lecture, 4 hours laboratory) (Same as EGEE 280) Units: 3
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2.00 Credits
Description: Prerequisites: Comp Sci 121 and EGCP 180. Introduction to various modeling methods, timings, events, propagation delays and concurrency, the language constructs, data representations and formats, and physical attributes. (1 hour lecture, 2 hours laboratory) (Same as EGEE 281) Units: 2
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3.00 Credits
Description: Prerequisites: EGEE 303 and Math 250B. Modeling and simulation of physical systems, mathematical description of systems, transfer functions, poles and zeros, frequency response, continuous and discrete-time convolution, continuous and discrete Fourier transforms, Laplace and Z transforms, Fast Fourier Transforms, simulation using Matlab. Units: 3
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