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Course Criteria
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3.00 Credits
Introduction to GIS concepts addressing data structures, spatial entities, and queries. Topics include location referencing methods, data collection techniques, current applications, and institutional and organizational issues. Cross-listed as: CEE 5190.
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3.00 Credits
Analysis and design of flexible and rigid pavements for highways and runways, including the design of overlays. Equal emphasis on current practice and advanced concepts of pavement management.
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3.00 Credits
Introduces systems approach to analysis of transportation services and infrastructure. Focuses on basic and advanced concepts, including operations research techniques, simulation, and artificial intelligence. Topics include facility sizing and location, financial and economic analysis of investment projects, and privatization. Prerequisite/Restriction: CEE 3030 or equivalent.
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3.00 Credits
Topics covered include characteristics, measurements, and analysis of volume, speed, density, and travel time; capacity and level of service analysis; signalization and traffic control devices. Cross-listed as: CEE 5220. Prerequisite/Restriction: CEE 3210.
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3.00 Credits
Principles of highway location and planning, with full consideration of economic, environmental, and other impacts. Capacity analysis of intersections and highways, passing-lane design, and risk-cost based horizontal and vertical alignment design. Introduction to design software through coursework and term projects. Prerequisite/Restriction: CEE 3210. Cross-listed as: CEE 5230.
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3.00 Credits
Examination of travel demand forecasting, data collection, and survey data analysis techniques. Focuses on transportation-land use interactions and impact of market-based policies on travel demand. Theories and applications of traditional and advanced trip distribution, mode choice, and route assignment models. Prerequisites: CEE 3210 and Admittance to the Professional Program Cross-listed as: CEE 5240.
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3.00 Credits
This course includes statistical analysis of transportation data, including safety and risk assessment; regression and multivariate analysis, such as discriminant analysis, canonical correlation, and factor analysis; and in-depth study of selected methodologies for analyzing transportation safety and designing countermeasures. Additional coursework is required for those enrolled in the graduate level course. Prerequisite: Students must have the following (or graduate standing): CEE 3210
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3.00 Credits
Principles of planning, design, and operation of transit systems in urban and rural areas. Determination of optimal route alignments, schedules, and station/stop spacings. Exploration of innovations in financing and pricing, including cost-cutting techniques.
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3.00 Credits
Traffic flow fundamentals, macroscopic and microscopic models of traffic flow, shock wave analysis, car following principles, queuing systems, and simulation.
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3.00 Credits
Analytical approaches and algorithms to the formulation and solution of the equilibrium assignment problem for transportation networks. Emphasis on user equilibrium, comparison with system optimal stochastic user equilibrium, origin-destination matrix estimation, and network design problems.
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