If you are learning about csu environmental engineering for the first time, the subject might seem overwhelming to those who haven’t explored the subject before, but you are likely to find it fascinating.
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Environmental engineers design solutions that prevent future pollution as well as correct existing pollution problems. The undergraduate curriculum in Environmental Engineering is based on a strong foundation in physical and biological sciences, mathematics, and engineering fundamentals. The All-University Core Curriculum provides a broad background in communication, liberal arts, humanities, and social sciences. Upper-division courses address engineering applications for prevention and control of air, water, and land pollution. Required courses that are specific to the Environmental Engineering major come from several engineering and science disciplines, including organic and environmental chemistry, microbiology, hydrology, statistics, environmental toxicology, and water treatment. Technical electives provide specialization in a particular area of interest. Seniors complete the same year-long, capstone design experience as Civil Engineering majors, working in teams on real-world engineering problems.
Participation in student professional societies, other campus organizations, internships, and volunteer activities is highly recommended to foster personal growth and professional development. The Fundamentals of Engineering (FE) exam is the first step toward registration as a Professional Engineer, an important professional credential for environmental engineers. Therefore, students are strongly encouraged to take the FE exam prior to graduation. Similar to Civil Engineering majors, our graduates consistently achieve a passing rate on the FE exam that is above the national average. The educational outcomes and objectives for the Environmental Engineering program, along with additional information on this major, are given at Department of Civil and Environmental Engineering website. The Environmental Engineering major is accredited by the Engineering Accreditation Commission of ABET.
Potential Occupations
The expansion of our population and economy, along with increased public concern and regulation of environmental quality, will contribute to the increased demand for the services of environmental engineers, both in the U.S. and abroad. Environmental engineers typically are employed in designing pollution prevention equipment and systems, designing environmental monitoring systems, implementing both government and industry environmental regulations, designing water and wastewater treatment systems, and restoring ecosystem health.
Students who obtain a Bachelor of Science in Environmental Engineering from CSU are well prepared for entry-level positions with regulatory agencies, engineering consulting firms, and environmental divisions of large corporations, particularly in the energy and manufacturing industries. Some example job titles for graduates include, but are not limited to, hydraulic engineer, water resources engineer, environmental engineer, geoenvironmental engineer, reclamation engineer, stormwater engineer, floodplain manager, groundwater engineer, hydrologist, urban/regional planner, water infrastructure engineer or manager, contract administrator, facilities engineer or manager, irrigation engineer, ecological engineer, and educator. Graduate study in a specific area of interest is highly recommended to enhance the ability to undertake more advanced technical responsibilities upon graduation.
Effective Spring 2020
FRESHMAN | |||
---|---|---|---|
AUCC | CREDITS | ||
CHEM 111 | General Chemistry I (GT-SC2) | 3A | 4 |
CHEM 112 | General Chemistry Lab I (GT-SC1) | 3A | 1 |
CIVE 102 | Introduction to Civil and Environmental Engr | 3 | |
CIVE 103 | Engineering Graphics and Computing | 3 | |
CO 150 | College Composition (GT-CO2) | 1A | 3 |
MATH 160 | Calculus for Physical Scientists I (GT-MA1) | 1B | 4 |
MATH 161 | Calculus for Physical Scientists II (GT-MA1) | 1B | 4 |
PH 141 | Physics for Scientists and Engineers I (GT-SC1) | 3A | 5 |
Select four credits from the following course or course pair: | 4 | ||
Group A: | |||
BZ 110 | Principles of Animal Biology (GT-SC2) | 3A | |
BZ 111 | Animal Biology Laboratory (GT-SC1) | 3A | |
Group B: | |||
BZ 120 | Principles of Plant Biology (GT-SC1) | 3A | |
Group C: | |||
LIFE 102 | Attributes of Living Systems (GT-SC1) | 3A | |
Total Credits | 31 | ||
SOPHOMORE | |||
CHEM 113 | General Chemistry II | 3 | |
CHEM 114 | General Chemistry Lab II | 1 | |
CHEM 245 | Fundamentals of Organic Chemistry | 4 | |
CIVE 202 | Numerical Modeling and Optimization | 3 | |
CIVE 203 | Engineering Systems and Decision Analysis | 3 | |
CIVE 260 | Engineering Mechanics-Statics | 3 | |
CIVE 261 | Engineering Mechanics-Dynamics | 3 | |
CIVE 360 | Mechanics of Solids | 3 | |
MATH 261 | Calculus for Physical Scientists III | 4 | |
MECH 237 | Introduction to Thermal Sciences | 3 | |
Arts and Humanities | 3B | 3 | |
Total Credits | 33 | ||
JUNIOR | |||
CIVE 300 | Fluid Mechanics | 3 | |
CIVE 301 | Fluid Mechanics Laboratory | 1 | |
CIVE 322 | Basic Hydrology | 3 | |
CIVE 339 | Environmental Engineering Concepts | 3 | |
CIVE 355 | Introduction to Geotechnical Engineering | 3 | |
CIVE 356 | Geotechnical Engineering Laboratory | 1 | |
CIVE 442 | Air Quality Engineering | 3 | |
MATH 340 | Intro to Ordinary Differential Equations | 4 | |
MIP 300 | General Microbiology | 3 | |
Select one course from the following: | 3 | ||
AREC 202 | Agricultural and Resource Economics (GT-SS1) | 3C | |
ECON 202 | Principles of Microeconomics (GT-SS1) | 3C | |
Advanced Writing | 2 | 3 | |
Diversity and Global Awareness | 3E | 3 | |
Total Credits | 33 | ||
SENIOR | |||
CIVE 401 | Hydraulic Engineering | 3 | |
CIVE 402 | Senior Design Principles | 4A,4B | 3 |
CIVE 403 | Senior Project Design | 4C | 3 |
CIVE 439 | Applications of Environmental Engr Concepts | 3 | |
CIVE 441 | Water Quality Analysis and Treatment | 3 | |
ERHS 446 | Environmental Toxicology | 3 | |
Arts and Humanities | 3B | 3 | |
Historical Perspectives | 3D | 3 | |
Engineering Technical Electives | 6 | ||
Technical Electives | 3 | ||
Total Credits | 33 | ||
Program Total Credits: | 130 |
Engineering Technical Electives – Select a minimum of 6 credits
Code | Title | Credits |
---|---|---|
BIOM 533/CIVE 533 | Biomolecular Tools for Engineers | 3 |
CIVE 305 | Intermediate AutoCAD | 3 |
CIVE 330 | Ecological Engineering | 3 |
CIVE 413 | Environmental River Mechanics | 3 |
CIVE 423 | Groundwater Engineering | 3 |
CIVE 424/GEOL 424 | Modern Gas and Oil | 3 |
CIVE 437 | Wastewater Treatment Facility Design | 3 |
CIVE 440 | Nonpoint Source Pollution | 3 |
CIVE 455 | Applications in Geotechnical Engineering | 3 |
CIVE 458 | Environmental Geotechnics | 3 |
CIVE 502 | Fluid Mechanics | 3 |
CIVE 511 | Coastal Engineering | 3 |
CIVE 512 | Irrigation Systems Design | 3 |
CIVE 513 | Morphodynamic Modeling | 3 |
CIVE 514 | Hydraulic Structures/Systems | 3 |
CIVE 519 | Irrigation Water Management | 3 |
CIVE 521 | Hydrometry | 3 |
CIVE 524/WR 524 | Modeling Watershed Hydrology | 3 |
CIVE 525 | Water Engineering International Development | 3 |
CIVE 530 | Environ Engr at the Water-Energy-Health Nexus | 3 |
CIVE 531 | Groundwater Hydrology | 3 |
CIVE 538 | Aqueous Chemistry | 3 |
CIVE 540/CBE 540 | Advanced Biological Wastewater Processing | 3 |
CIVE 541 | Environmental Unit Operation-Treatment-Design | 4 |
CIVE 542 | Water Quality Modeling | 3 |
CIVE 544 | Water Resources Planning and Management | 3 |
CIVE 547/STAT 547 | Statistics for Environmental Monitoring | 3 |
CIVE 549 | Drainage and Wetland Engineering | 3 |
CIVE 558 | Containment Systems for Waste Disposal | 3 |
CIVE 572 | Analysis of Urban Water Systems | 3 |
CIVE 574 | Civil Engineering Project Management | 3 |
CIVE 575 | Sustainable Water and Waste Management | 3 |
CIVE 576 | Engineering Applications of GIS and GPS | 3 |
CIVE 577 | GIS in Civil and Environmental Engineering | 3 |
ENGR 502 | Engineering Project and Program Management | 3 |
ENGR 550/MATH 550 | Numerical Methods in Science and Engineering | 3 |
SYSE 501 | Foundations of Systems Engineering | 3 |
Additional Technical Electives – Select a minimum of 3 credits
Code | Title | Credits |
---|---|---|
AREC 342 | Water Law, Policy, and Institutions | 3 |
ATS 555 | Air Pollution | 3 |
ATS 560 | Air Pollution Measurement | 2 |
BZ 471 | Stream Biology and Ecology | 3 |
BZ 472 | Stream Biology and Ecology Laboratory | 1 |
BZ 474/ESS 474 | Limnology | 3 |
GR 323/NR 323 | Remote Sensing and Image Interpretation | 3 |
LIFE 320 | Ecology | 3 |
MGT 305 | Fundamentals of Management | 3 |
MGT 310 | Human Resource Management | 3 |
MGT 320 | Contemporary Management Principles/Practices | 3 |
NR 322 | Introduction to Geographic Information Systems | 4 |
SOCR 467 | Soil and Environmental Chemistry | 3 |