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Course Criteria
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3.00 Credits
Prerequisites: CE 205 or EAS 222 Basic structural engineering topics on the analysis of beams, trusses, and frames. Topics include load criteria and influence lines; force and deflection analysis of beams and trusses; analysis of indeterminate structures by approximate methods, superposition, and moment distribution. Computer applications and a semester-long design-analysis project requiring engineering decisions. 4 credit hours (two hours lecture, two hours discussion).
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3.00 Credits
Prerequisites: CH 115 , CH 117 and CE 306 Introduction to water supply and demand. Water quantity and quality. Design and operation principles of water and wastewater treatment, disposal, and reuse systems. Collection, recycling, and disposal practices of solid wastes. Fundamentals of air pollution and air pollution control.
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2.00 Credits
Prerequisite: CE 312 (may be taken concurrently) Experiments covering mechanics and structural engineering. The response of metals and wood to different loading conditions will be examined. Laboratory instrumentation will be studied. Laboratory procedures, data collection, interpretation, and presentation will be emphasized.
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2.00 Credits
Prerequisite: CE 304 (may be taken concurrently) Experiments and laboratory testing in geotechnical engineering. Lab testing includes classification, density, hydraulic conductivity, shear strength, and consolidation tests. Laboratory procedures and data collection, inerpretation, and presentation will be discussed.
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2.00 Credits
Prerequisite: CE 315 (may be taken concurrently) Fundamentals of data collection, analysis, and presentation. Principles of technical report writing. Laboratory methods in hydraulics and environmental engineering. Experiments include pipe and open channel flow; analysis of various hydraulics structures, pumps and other hydraulic machinery; titrimetric, gravimetric, and instrumental methods in water/wastewater quality testing.
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0.00 Credits
Prerequisite: 60 credit hours toward the BS degree. A partnership consisting of the student, faculty, and employers/organizations providing exposure to and participation in a working engineering environment. The internship will translate classroom knowledge to a professional work environment, and the student will work and learn with practicing engineers while gaining professional experience. A minimum of 300 hours performing related engineering duties is required.
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3.00 Credits
Prerequisite: CE 304 or consent of instructor Application of soil mechanics to foundation design, stability, settlement. Selection of foundation type - shallow footings, deep foundations, pile foundations, mat foundations. Subsurface exploration.
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3.00 Credits
Prerequisite: senior status. Engineering, social, economic, political and legal aspects of sustainable urban planning. Emphasis placed on smart growth/smart energy, new urbanism, low-impact development, and transit-oriented development. Case studies of communities in local, national, and global examples.
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3.00 Credits
Prerequisite: CE 315 Physical, chemical, and biological aspects of water quality and pollution control. Study of unit operations and processes of water, wastewater, and wastewater residuals treatment. Emphasis on hydraulic and process design of water pollution control facilities.
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3.00 Credits
Prerequisites: CE 312 , EAS 112 , senior status or permission of instructor The analysis of statically indeterminate structures. Topics include approximate methods, moment distribution, conjugate beam, energy methods, influence lines, and an introduction to matrix methods. Computer applications and a project requiring structural engineering decisions.
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