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Course Criteria
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3.00 Credits
Introduction to wood design and engineering; properties of wood and wood-based materials; design of beams, columns, walls, roofs, panel systems, and connections. Preq: CE 3010 with a C or better.
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3.00 Credits
Introduces students to the practice of structural engineering for buildings. Working in teams, students complete projects that mimic real-world structural engineering tasks. The projects require students to calculate loads and analyze loads paths through building structures. Gravity and lateral loads are featured in the projects. Students prepare written and graphical documents to communicate the results of their calculations and analyses. Students are also introduced to structural reliability, structural connections, construction plans, roof framing layout, and building codes. Preq: CE 3010 with a C or better.
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3.00 Credits
Basic characteristics of motor-vehicle traffic, highway capacity, applications of traffic control devices, traffic design of parking facilities, engineering studies, traffic safety, traffic laws and ordinances, and public relations. Preq: CE 3110 with a C or better.
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3.00 Credits
Introduces principles and practical application of geometric design for roadways. Students learn the road design process, design considerations, principles of route location, and detailed geometric design standards. Additional topics include designing for bicycle and pedestrians, ADA requirements, and access management. Working in teams, students complete a semester-long project that mimics the real-world roadway design process. The team project permits direct application of design principles introduced in the classroom to a realistic roadway design project. Preq: CE 3110 with a C or better. Coreq: CE 4111.
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0.00 Credits
Non-credit laboratory to accompany CE 4110. Coreq: CE 4110.
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3.00 Credits
Consideration of urban travel characteristics, characteristics of transportation systems, transportation and land-use studies, trip distribution and trip assignment models, city patterns and subdivision layout. May also be offered as CRP 4120. Preq: CE 3110 with a C or better.
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3.00 Credits
This course provides an overview of a variety of techniques that support analysis of and decision making for civil systems. These techniques are applied to multiple civil engineering areas, including, but not limited to, transportation and water systems. Not open to Industrial Engineering students. Preq: Junior standing.
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3.00 Credits
Study of the relationship of local geology to soil formations, groundwater, planning of site investigation, sampling procedures, determination of design parameters, foundation design, and settlement analysis. Preq: CE 3210 with a C or better.
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3.00 Credits
Considers the principles of geology, groundwater and seepage, soil strength, slope stability, and lateral earth pressure and their application to the design of excavations, earth fills, dams, and earth-retaining structures. Preq: CE 3210 with a C or better.
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3.00 Credits
Study of the interaction between soil and structural elements such as pile foundations and retaining structures subjected to static and dynamic loads; application of general purpose finite element software for solving soil-structure interaction problems; introduction to the theory of finite element method, beams on elastic foundation, p-y curves and advanced testing procedures. Preq: CE 3210 and CE 3010, each with a C or better.
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