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Guided learning journeys that build knowledge step by step.
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7807 Paths · page 289 / 781
This graduate-level learning path builds a systematic understanding of environmental chemistry, focusing on chemical speciation, phase partitioning, photochemical transformations, and advanced analytical techniques. It integrates fundamental chemical principles with applied environmental systems thinking, preparing learners to analyze complex contamination and fate processes.
This graduate-level learning path explores the biochemical processes that govern the fate of organic pollutants in environmental systems. It progresses from foundational chemistry and microbiology through enzyme kinetics to advanced biodegradation pathways and detoxification mechanisms, emphasizing quantitative modeling and practical applications in bioremediation.
This graduate-level learning path equips learners with the knowledge and skills to analyze the transport of pollutants in air, water, and soil. It covers fundamental transport phenomena, environmental chemistry, and mathematical modeling techniques, culminating in the ability to formulate and solve transport equations for real-world contamination problems.
A comprehensive learning path for senior university students to model environmental systems and pollutant fate and transport. Covers mathematical foundations, modeling frameworks, and applications in water quality and air dispersion.
This advanced learning path equips senior environmental engineering students with the knowledge and skills to assess environmental risks and health impacts. It covers hazard identification, dose-response assessment, exposure analysis, and risk characterization, grounded in statistics and environmental chemistry.
This learning path equips senior environmental engineering students with the knowledge and skills to manage hazardous waste and remediate contaminated sites. It covers classification, treatment, disposal, and remediation technologies, emphasizing regulatory frameworks and risk assessment.
This learning path equips senior environmental engineering students with the knowledge and skills to design effective air pollution control systems. It covers the fundamental principles of air pollution, regulatory frameworks, and the design of particulate control devices, scrubbers, catalytic converters, and adsorption systems. The path emphasizes practical application through design projects and case studies.
This learning path equips senior environmental engineering students with the knowledge to design advanced water and wastewater treatment processes, focusing on membrane processes, advanced oxidation, and nutrient removal. It covers fundamental water quality parameters, process design principles, and integrates these technologies into complete treatment trains.
This advanced learning path equips junior engineering students with the knowledge and skills to design sustainable engineering solutions. It covers environmental fundamentals, lifecycle thinking, design for environment principles, and circular economy strategies, culminating in a capstone project that integrates these concepts.
This learning path guides junior environmental engineering students through the foundational principles and key statutes of U.S. environmental law, focusing on the Clean Water Act, Clean Air Act, and RCRA. It emphasizes the regulatory framework, compliance mechanisms, and practical implications for environmental engineering practice.