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CE 411: Pavement Design- hrs
3.00 Credits
University of Portland
Design of flexible and rigid pavements; physical and chemical properties of pavement components and highway material characterization; pavement distress and performance evaluation. Introduction to pavement evaluation, rehabilitation, and pavement management. (Prerequisite: CE 321.)
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CE 416: Traffic Engineering- hrs
3.00 Credits
University of Portland
Introduction to traffic engineering; traffic stream components and characteristics; fundamental principles of traffic flow; studies of traffic speed, volume, travel time, delay, and pedestrian; capacity analysis of freeways, highways, signalized and unsignalized intersections; traffic control devices; traffic signals; traffic accidents and safety; and traffic management. (Prerequisite: CE 315.)
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CE 416 - Traffic Engineering- hrs
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CE 422: Geotechnical Design- hrs
3.00 Credits
University of Portland
Foundations, including footings, piers, and piles, and raft foundations. Permanent retaining structures, mechanically stabilized earth, and soil nailed walls. Temporary shoring of excavations. Slope stability fundamentals. (Prerequisite: CE 321.)
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CE 422 - Geotechnical Design- hrs
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CE 441: Structural Steel Design- hrs
3.00 Credits
University of Portland
Design of structural steel elements for buildings using the LRFD method. Includes tension members, columns, beams, and beam-columns. Bolted and welded connections. Design methods are applied in a course project. (Prerequisite: CE 351.)
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CE 441 - Structural Steel Design- hrs
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CE 442: Reinforced Concrete Design- hrs
3.00 Credits
University of Portland
Properties of an efficient concrete mix. Analysis and design of rectangular and T-beams. Oneway and two-way slab design. Compression members subject to axial and eccentric loads. Primary emphasis on the ultimate strength design method and to recent ACI Building Code. (Prerequisite: CE 351.)
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CE 442 - Reinforced Concrete Design- hrs
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CE 444: Structural Systems Design- hrs
3.00 Credits
University of Portland
Introduction to analysis and design of structural systems and elements. Lateral force resistance to wind and seismic forces: diaphragms and shear walls. Fundamental aspects of masonry and prestressed concrete design. Advanced structural analysis methods: approximate methods of analysis, computer structural analysis. Introduction to building system constraints: Architectural, mechanical, electrical and general program constraints. Emphasis on the International Building Code requirements. (Prerequisite: CE 351. Corequisite: CE 442.)
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CE 444 - Structural Systems Design- hrs
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CE 445: Timber Design- hrs
3.00 Credits
University of Portland
Analysis and design of structures employing timber beams, columns,and tension members. Design of laminated components, structural diaphragms, shear walls, and connections. Wind and earthquake forces are considered. Design methods are applied in a course project. (Prerequisite: CE 351.)
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CE 445 - Timber Design- hrs
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CE 452: Earthquake Engineering- hrs
3.00 Credits
University of Portland
Response of structures to seismic loads and ground motion. Response spectra and their application to earthquake analysis of structures. Seismic design criteria and provisions for buildings and other structures. Use of current codes for earthquake resistant design of structures. (Prerequisites: CE 321, CE 352, MTH 321.)
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CE 452 - Earthquake Engineering- hrs
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CE 462: Sustainable Design- hrs
3.00 Credits
University of Portland
This course will address aspects that contribute to the design of sustainable structures. Topics will include: sustainable measures, facility location, transportation, storm water management, water use, energy use, appropriate materials, waste minimization, and indoor environmental quality. Guest speakers and field trips will be featured. (Prerequisite: Junior standing or consent of instructor.)
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CE 462 - Sustainable Design- hrs
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CE 464: Water Resources Engineering- hrs
3.00 Credits
University of Portland
Study of the hydrologic cycle; rainfall and streamflow measurement and analysis, surface and groundwater occurrence and movement. Prediction of infiltration, evapotranspiration, runoff and unit hydrograph analysis. Flood and drought probability analysis. Introduction to reservoir operation and flood routing. (Corequisite: CE 362, EGR 360, or consent of instructor.)
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CE 464 - Water Resources Engineering- hrs
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