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Not all courses are offered every semester.
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Refer to the schedule of courses for each term's specific offerings. More Info. Courses at the University of Florida, with the exception of specific foreign language courses and courses in the online Master of Arts in Mass Communication program, are taught in English.
This is an archived copy of the catalog. Design of systems for estimating and cost control of man-machine productivity for civil engineering projects.
Analysis of cost factors required for optimization of engineering-investment efficiency. Theory and practice of construction operations, equipment utilization and construction methods. Analysis of costs. Optimizing crew and equipment. Heavy equipment costs. New emphasis on planning and executing a construction project.
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Prereq: junior or senior standing, or instructor permission. Simulation of comprehensive construction project involving all phases of planning, scheduling and control from start to finish, which involves making major decisions.
Oral presentation at the end of course. Physical properties of soils, compaction, flow of water through soil, distribution of stress within soil and consolidation. Subsurface exploration settlements analysis, slope stability, earth pressure and an introduction to foundation design.
The application of soil mechanics to the design and analysis of various types of retaining structures and earthen embankments. Comprehensive design of geotechnical system, focusing on design of complete project and utilizing CAD programs. Designs, drawings and oral presentations through group effort. Introduces structural load, equilibrium, shear and bending moment diagrams, structural analysis software, classical methods for displacement determination, method of consistent deformations, slope deflection method, moment distribution method.
Determining structural loads, solving matrix equations, direct stiffness method, formulation of element matrices, transformations, modeling realistic frame and truss systems, introduces the finite element method, determining convergence, interpretation of results, model validation.
Elastic and plastic theories of design, design of members subjected to tension, compression, flexure and torsion.
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Design of connections and rigid frames. Advanced topics in the design of steel structural building systems, advanced column and beam design, base plate design, moment amplification, second-order analysis, bracing considerations, beam-columns, interaction equations, connection design, composite design, plate girders.
Ultimate strength analysis and design of reinforced beams and columns, working stress design for flexure, design of footings and retaining walls. Advanced topics in the design of concrete building systems.
Long columns and frames, floor and roof systems, including two-way slabs, continuous beams, spandrel beams, torsion, foundations, introduces pre-stressed concrete. Two- and three-dimensional graphical methods of visualizing and communicating features of projects for construction involving parcel boundaries, topography, drainage, site modeling, site development, structures, buildings and objects using both traditional and computer-aided drafting and design techniques.
Review of computer programming.
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Numerical methods as applied to civil engineering problems and civil engineering software. Studies the principal materials used for engineering purposes with special attention to mechanical properties and their importance to the engineer. Hands-on experience in testing of civil engineering materials.
Overview of the principles of sustainability as they relate to civil and environmental engineering issues.
Discussions and projects facilitate a basic understanding of the production-consumption model and life cycle assessment. Fundamentals and applications of measuring systems commonly used in civil engineering.
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Topics include recording techniques, strain, force, displacement, flow, temperature, humidity and PH measurements. Analysis of civil engineering proposals, utilizing time-value and related factors.
Feasibility and optimum life comparisons. Fundamentals of civil engineering professional practice: project management, construction delivery processes, business concepts, public policy, administration and leadership.
Function and material requirements of different elements of flexible and rigid pavement systems; characterization of soils, materials, traffic loads, and environment for design; flexible and rigid pavement design; new developments.
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Public works profession, organization, administration and management of operating divisions with emphasis on role of engineer. Simulation of a design project experience through the completion and presentation of a comprehensive roadway project design. Students work in multi-disciplinary groups to complete a system design that includes traffic, materials, hydrologic and geotechnical considerations.
Selected problems or projects in the student's major field of engineering study. Simulation of a design office experience through the completion and presentation of a comprehensive building design.
Students work in multi-disciplinary groups to complete a system design that includes structural, geotechnical and construction management considerations. Classification and properties of fluids, hydrostatics, and conservation of mass, momentum and energy in fluid flow.
Potential flow, similitude and physical modeling. Laminar and turbulent pipe flow. Introduces turbomachines.
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Occurrence and distribution of water by natural processes, including atmospheric thermodynamics, precipitation, runoff, infiltration, water losses, flood routing and catchment characteristics, analysis and methods of runoff prediction. Introduces groundwater hydraulics, including hydrologic cycle, Darcy's equation, Dupuit assumption, well hydraulics, regional flow, freshwater-saltwater interface, flow in the unsaturated zone, fate and transport of contaminants and contaminant plume model.
Fundamental equations for pipe and open conduit flow.
Development of design oriented formulas for pipes and open channels. Introduces hydrology. Surface-water system design including: time of concentration, peak runoff rate, open-channel flow, gravity storm sewer, culvert, stormwater pumping, filtration systems, hydrograph generation, flood routing, site layout, site grading and permitting.
Study of water resources engineering applications including hydrology and statistics, groundwater, hydraulic machinery, dams and reservoirs, water quality, water quality modeling, water and waste-water treatment and water law and institutions. Provides firsthand, supervised research with a faculty advisor or postdoctoral or graduate student mentor. Projects may involve inquiry, design, investigation, scholarship, discovery or application.
Freshman success course that includes academic preparation in calculus, chemistry, student success and technical communications. Introduces important coastal and oceanographic processes. Geophysical fluid motions; waves and tides; air-sea interaction; pollutant transport; coastal hydraulic and sedimentary processes.
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Not intended for engineering majors. Overview of the significance of highway transportation to the social and economic underpinnings of society. Introduces road vehicle performance, geometric design of highways, traffic flow and queuing theory, highway capacity and level of service analysis, traffic control and analysis at signalized intersections, and travel demand and traffic forecasting. Overview of the four-step urban transportation planning process; includes analytical techniques for estimating future travel demand and state-of-the-art approaches.
General review of the fundamentals of traffic engineering with emphasis on field studies and data analysis. Provide students with detailed instruction on the procedures defined within the Highway Capacity Manual HCM , including analytical chapters for uninterrupted and interrupted flow. Systems analysis in transportation planning and engineering, including supply, demand, equilibrium, evaluation and decision analysis.
Simulates a comprehensive design of a transportation facility, specifically an arterial-freeway interchange.
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Utilizes state and national-level design manuals in preparation of standard plans. Applies the theoretical background gained in supporting classes, in areas such as traffic analysis, roadway design, roadway drainage and pavement design.
Some review of this material is provided, as well as introduction of several new concepts. Emphasizes teamwork skills and technical communication skills. More Info Courses at the University of Florida, with the exception of specific foreign language courses and courses in the online Master of Arts in Mass Communication program, are taught in English. Prereq: minimum 2EG classification.
Prereq: EG standing. Prereq: 3EG classification or instructor permission.
Prereq: senior standing. Prereq: undergraduate coordinator permission.
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Prereq: instructor permission. S-U Prereq: EG classification. S-U Prereq: EG student. Prereq: 3EG classification. Print Options.
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