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Path Category
Guided learning journeys that build knowledge step by step.
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7807 Paths · page 288 / 781
This learning path introduces the principles of environmental justice, focusing on equity, vulnerable populations, policy, and community engagement. It builds from foundational environmental concepts to the application of justice frameworks in environmental engineering contexts.
This learning path provides a structured journey from fundamental water quality concepts to the application of treatment technologies and health risk assessment. It covers key contaminants, regulatory standards, and the link between water quality and public health, culminating in a practical understanding of how safe drinking water is ensured.
This advanced learning path equips senior and graduate environmental engineering students with the knowledge to design biological treatment systems for contaminated sites. It covers the fundamentals of environmental microbiology, bioremediation mechanisms, and the design of biostimulation and phytoremediation systems, integrating site characterization and system design principles.
This advanced learning path guides senior or graduate students through the principles and applications of nanotechnology in environmental engineering. It covers the fundamental properties of nanomaterials, their use in remediation and sensing, and the critical aspects of environmental toxicity and risk assessment. The path integrates core environmental chemistry concepts with cutting-edge nanotechnological solutions.
This advanced learning path equips senior and graduate students with a deep understanding of climate change mitigation. It covers carbon capture technologies, renewable energy systems, and adaptation strategies, grounded in environmental fundamentals and supported by policy and economic analysis.
This advanced learning path equips senior and graduate students with the knowledge and skills to manage water resources sustainably. It covers hydrological principles, water allocation strategies, demand management, and water quality protection, emphasizing integrated approaches and real-world applications.
This learning path guides senior and graduate students from sustainability fundamentals through the core frameworks of industrial ecology, including material and energy flow analysis, industrial symbiosis, and eco-design. It culminates in applying these concepts to real-world environmental problem-solving.
This advanced learning path equips senior and graduate students with the knowledge and skills to analyze urban environmental issues, focusing on stormwater management, urban heat islands, and green infrastructure. It covers the fundamental sciences, urban systems context, and design principles, culminating in integrated planning and career-ready application.
This learning path equips junior and senior university students with the core GIS skills needed to analyze and address environmental problems. Starting from fundamental GIS concepts and data models, it progresses through spatial analysis, watershed analysis, and environmental data integration, culminating in practical mapping and communication of results.
This learning path equips senior and graduate students in environmental engineering with the skills to analyze complex environmental data using statistical and computational techniques. It covers essential statistics, time series analysis, multivariate methods, and GIS integration, culminating in a capstone project that applies these methods to real-world environmental problems.