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Course Criteria
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0.00 - 3.00 Credits
The design of structural concrete members based upon working stress and strength design methods. Study of standard specifications. Introduction to prestressed concrete. Offered: Fall
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0.00 - 3.00 Credits
The design of structural concrete members based upon working stress and strength design methods. Study of standard specifications. Introduction to prestressed concrete. Offered: Fall
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0.00 - 3.00 Credits
The design of buildings and bridge components according to standard specifications. Application of load and resistance factor and allowable stress design methods. Introduction to plastic design of steel structures. Offered: Spring
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0.00 - 3.00 Credits
The design of buildings and bridge components according to standard specifications. Application of load and resistance factor and allowable stress design methods. Introduction to plastic design of steel structures. Offered: Spring
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3.00 Credits
Review of various air quality models. Introduction and implementation of air quality science in model simulation including the emission inventory, dynamic meteorology and chemical transport. Air quality simulation using first-principle models will be emphasized. Offered: Other
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3.00 Credits
Investigate practical applications of soil mechanics principals to geotechnical engineering, dewatering techniques, design and analysis of deep foundations and retaining structures. Offered: Summer
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3.00 Credits
Introduction to aquatic and atmospheric chemistry, chemical kinetics and equilibrium, acid-base chemistry, chemical buffer, metal-ligand chemistry, precipitation and dissolution, redox chemistry and radical chemistry. Offered: Other
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3.00 Credits
Introduction of stormwater quality and quantity management and simulation models (e.g., SWMM, StormCAD), introduction to the Best Management Practice and Total Maximum Daily Load for coastal areas, and design of urban stormwater system facilities, e.g., detention ponds, culverts, channel system and stormwater pipes. Offered: Other
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3.00 Credits
The design, operation and applicability of standard destruction and detoxification technologies will be presented. The various types of incineration, thermal,biological, physical and chemical treatment methods will be included, as well as the technologies now in the later stages of research and development. Emphasis will be on applicability and functional design as opposed to detailed design. Offered: Summer
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3.00 Credits
Introduction to water quality simulation in natural water systems, e.g., water temperate, dissolved oxygen model in lakes/reservoirs/estuaries, turbulent diffusion and dispersion in one and two dimensional systems, and chemical and biological kinetics in water quality model. Introduction to monitoring of air and water quality parameters in coastal areas, including solids, dissolved oxygen, BOD, COD, salinity, criterion pollutants and selected instrumental analysis. Offered: Other
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