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Guided learning journeys that build knowledge step by step.
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7808 Paths · page 313 / 781
This advanced learning path for senior and graduate chemical engineering students explores the science and engineering of carbon capture and utilization (CCU). It covers the core separation processes—absorption, adsorption, membranes, and mineralization—grounded in thermodynamics and mass transfer principles, and concludes with integration and system-level analysis.
This advanced learning path equips senior and graduate chemical engineering students with a deep understanding of the chemical and physical processes used in water treatment, focusing on membrane processes, reverse osmosis, ion exchange, and disinfection. Grounded in mass transfer and separation science, the path progresses from foundational principles to process design and integration, enabling learners to analyze and design effective water treatment systems.
This learning path equips senior and graduate chemical engineering students with the knowledge and skills to design chemical processes that minimize environmental impact. It covers green chemistry principles, lifecycle assessment, waste minimization strategies, and sustainable process design, integrating these concepts into a holistic approach for sustainable chemical engineering.
This advanced learning path equips senior chemical engineering students with the skills to systematically identify, analyze, and mitigate risks in chemical processes. It covers core process safety fundamentals, hazard identification techniques (HAZOP), layer of protection analysis (LOPA), quantitative risk assessment (QRA), and consequence modeling, culminating in an integrated risk mitigation project.
This learning path bridges chemical engineering fundamentals with food processing operations, focusing on preservation, thermal processing, drying, and packaging. It covers essential concepts of heat and mass transfer as applied to food systems, suitable for university students and professionals seeking a structured introduction.
This advanced path equips senior or graduate chemical engineering students with the knowledge to analyze and design systems for energy conversion and storage, focusing on fuel cells, batteries, combustion, and carbon capture. It integrates thermodynamics and reaction engineering principles to understand and optimize these processes.
This advanced learning path equips senior chemical engineering students with the knowledge to apply chemical engineering principles to environmental challenges. It covers mass transfer and reaction engineering fundamentals, their application to air and water pollution control, waste treatment, and sustainability, with a focus on practical design and analysis.
This advanced learning path guides senior and graduate chemical engineering students through the core principles and practices of pharmaceutical manufacturing. It covers drug synthesis, reaction engineering, separation and purification, formulation, packaging, and quality control, emphasizing the integration of these areas in a regulated environment.
This learning path provides an advanced understanding of petroleum refining, covering the fundamental chemistry of crude oil, key separation processes, conversion technologies, and product treatment and blending. Designed for senior chemical engineering students, it integrates principles of separation processes and reaction engineering to explain the operation and design of refinery units.
This learning path equips graduate chemical engineering students with the skills to apply Computational Fluid Dynamics (CFD) to analyze and design chemical process equipment. It covers essential fluid mechanics and computational methods, progressing through geometry preparation, meshing, turbulence modeling, multiphase flow, and validation against experimental data. The path emphasizes practical application and critical evaluation of CFD results.