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Course Criteria
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3.00 Credits
Credits: 3 Prerequisites: senior standing Corequisites: None Type: LEC Design of environmental engineering systems, such as water-distribution networks; storm and wastewater collection systems; treatment systems for air, water, and wastewater; and hazardous waste site remediation. This is a professional practice-oriented course and includes process engineering principles, system analysis and design, regulations, economics, guest lectures, and field trips. Students work in design teams and produce written and oral reports for a major design project.
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3.00 Credits
Credits: 3 Prerequisites: CIE 334 Corequisites: None Type: LEC Soil-water-contaminant interaction processes, conduction phenomena, hydraulic conductivity and contaminant transport phenomena, effects of contaminants on soil properties, design aspects of landfills, waste-disposal systems, barriers and cutoff walls, site characterization, and soil remediation.
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1.00 Credits
Credits: 1 Prerequisites: permission of instructor Corequisites: None Type: LEC Offered irregularly. The subject matter of the course is announced when offered.
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3.00 Credits
Credits: 3 Prerequisites: permission of instructor Corequisites: None Type: LEC/LAB Introduces the fundamental aspects of the science and technologies associated with air pollution. Topics include: atmospheric chemistry and basic chemical kinetics; photochemical reactions in the atmosphere; aerosol physics and chemistry; sources of outdoor and indoor air pollution; climatic effects; pollution reduction technologies; gas phase and aerosol measurement and analytical techniques; health effects; atmospheric meteorology; and plume dispersion and transport models.
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3.00 Credits
Credits: 3 Prerequisites: CIE 324 Corequisites: None Type: LEC Develops experience and expertise in the application of structural engineering fundamentals to design of civil engineering projects. Specific technique/problem areas are announced when offered. Requires students to complete homework assignments and hour tests, and they are graded on both. May require an in-depth design exercise.
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3.00 Credits
Credits: 3 Prerequisites: CIE 343 Corequisites: None Type: LEC Develops experience and expertise in the application of fundamentals of water resources engineering to design civil engineering projects. Specific technique/problem areas are announced when offered. Requires students to complete homework assignments and hour tests, and they are graded on both. May require an in-depth design exercise.
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3.00 Credits
Credits: 3 Prerequisites: CIE 340, CIE 343 Corequisites: None Type: LEC Develops experience and expertise in the application of fundamentals of environmental engineering to design of civil engineering projects. Specific technique/problem areas are announced when offered. Requires students to complete homework assignments and hour tests, and they are graded on both. May require an in-depth design exercise.
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3.00 Credits
Credits: 3 Prerequisites: CIE 435 Corequisites: None Type: LEC Develops experience and expertise in the application of fundamentals of geotechnical engineering to design of civil engineering projects. Specific technique/problem areas are announced when offered. Requires students to complete homework assignments and hour tests, and they are graded on both. May require an in-depth design exercise.
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3.00 Credits
Credits: 3 Prerequisites: junior/senior standing in engineering or permission of instructor Corequisites: None Type: LEC Focuses primarily on tools for managing industrial hazardous wastes and assessing the impacts of contamination from inactive waste sites. Major topics include site investigation, risk assessment, and exposure modeling. Students also develop a working knowledge of current US hazardous waste regulations and the history and impact of the Love Canal events. Also presents an overview of current site remediation technologies.
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3.00 Credits
Credits: 3 Prerequisites: CIE 334 Corequisites: None Type: LEC Selection, engineering design, construction, monitoring, and performance evaluation of earth structures. Densification: soft ground consolidation, deep dynamic compaction; reinforcement: earth-retaining systems, soil nailing, reinforced earth, micropiles; ground improvement by admixtures: grouting, soil mixing techniques.
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