Preparing your Path…
Preparing your Path…
Path Catalog
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7801 Paths · page 315 / 781
This learning path guides sophomore chemical engineering students through the principles of fluid mechanics applied to process systems, covering flow in pipes, pumps, compressors, agitation, and non-Newtonian fluids. It builds on material balances and calculus to develop skills in analyzing and designing fluid handling equipment.
This learning path guides sophomore chemical engineering students through the essential thermodynamic principles needed to analyze chemical processes. It covers PVT behavior, energy and entropy balances, phase equilibria, and chemical equilibrium, building from foundational physics and material balances to practical applications.
A structured learning path for first-year chemical engineering students to master material and energy balance calculations. It covers fundamental concepts, systematic problem-solving, reactive systems, recycle, and energy balances, building from basic definitions to integrated applications.
This learning path introduces beginners to the fundamental principles of safety in chemical processes. It covers hazard identification, understanding Material Safety Data Sheets (MSDS), the use of Personal Protective Equipment (PPE), fire safety, and emergency response procedures. The path emphasizes the importance of a safety culture and prepares learners for further study in process safety.
This learning path introduces high school students to the major industries that employ chemical engineers, including petroleum, petrochemicals, pharmaceuticals, food, and materials. It covers the role of chemical engineers, the core processes they handle, and industry-specific applications, providing a foundation for career exploration.
This learning path reviews essential chemistry concepts foundational to chemical engineering, including stoichiometry, chemical equilibrium, thermodynamics, and organic chemistry basics. It is designed for beginners with a high school background, progressing from atomic structure through to introductory organic chemistry.
This learning path systematically builds the mathematical foundation required for chemical engineering analysis, starting with algebra and progressing through calculus, differential equations, statistics, and numerical methods. Each topic is carefully sequenced to ensure learners have the necessary prerequisites before moving to more advanced concepts, with practical applications in chemical engineering contexts.
This learning path introduces high school students to the scope, history, and fundamental concepts of chemical engineering. It covers process industries, unit operations, thermodynamics, and transport phenomena, building a foundation for further study.
This learning path equips graduate students and researchers with comprehensive research skills for structural engineering, covering problem formulation, literature review, experimental design, numerical modeling, data analysis, scientific writing, and ethics. It progresses from foundational knowledge to advanced application, ensuring a systematic and rigorous approach to research.
This learning path introduces the principles of modular construction, focusing on structural design, prefabrication, connections, transportation, and assembly. It is designed for university students and professionals in structural engineering who want to understand how modular buildings are conceived, designed, and erected.