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Path Category
Guided learning journeys that build knowledge step by step.
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7816 Paths · page 504 / 782
This advanced professional path equips oil and gas professionals with a deep understanding of the chemistry underlying hydrocarbon extraction, processing, and environmental management. It covers petroleum chemistry, refining byproducts, oil spill behavior, drilling fluids, and waste management, emphasizing chemical principles and their practical environmental implications.
This learning path equips environmental and chemical engineers with the chemical principles and practical skills needed for industrial water treatment, covering boiler water, cooling water, corrosion control, wastewater treatment, and regulatory compliance.
This path equips environmental compliance professionals with the knowledge to understand and apply chemical testing required by environmental regulations. It covers regulatory frameworks, analytical chemistry fundamentals, and compliance monitoring, culminating in a capstone project to design a testing plan.
This learning path equips lab managers and QA staff with the knowledge and skills to apply Good Laboratory Practice (GLP) in environmental chemistry settings. It covers foundational principles, regulatory frameworks, documentation, quality systems, audits, and practical implementation.
A professional learning path for laboratory technicians and analysts to perform standard environmental chemistry analyses. It covers core analytical techniques, sample handling, QA/QC, safety, and data interpretation, culminating in a capstone project.
This learning path equips chemical and environmental professionals with the knowledge and skills to communicate chemical risks effectively to the public. It covers foundational toxicology, risk perception, communication strategies, public engagement, and handling uncertainty, culminating in practical application.
This learning path explores the chemical processes driving ocean acidification, from CO2 uptake and carbonate chemistry to impacts on marine life and potential feedbacks. It starts with foundational chemistry concepts and builds toward a comprehensive understanding of this critical environmental issue.
This learning path equips students in public health and environmental science with the knowledge and skills to evaluate how chemical pollutants affect human health. It covers foundational chemistry, exposure pathways, toxicological principles, epidemiological evidence, and environmental health policy, culminating in a practical case study.
A graduate-level learning path that systematically builds from the physicochemical foundations of interfaces and colloids to applied topics in environmental engineering, including adsorption, surface charging, colloidal stability, coagulation, and membrane fouling. The path emphasizes the underlying thermodynamics, electrostatics, and DLVO theory, and connects them to real environmental processes and technologies.
This advanced graduate learning path systematically explores how the chemical form (speciation) of pollutants governs their environmental behavior, bioavailability, and toxicity. It integrates fundamental aqueous chemistry, advanced analytical techniques, and speciation modeling with toxicological principles, culminating in a comprehensive understanding of the fate and effects of chemical contaminants.