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Chemical Engineering Thermodynamics 2 · LearnSpace
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Chemical Engineering Thermodynamics 2

Курс от Korea Advanced Institute of Science and Technology(KAIST)
Средний≈ 31.7 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

An appreciation of thermodynamics is required to become a chemical and biomolecular engineer. Thermodynamics can assess the viability of a process and is one of the curriculum's most essential topics. The principles are utilized in following engineering courses (kinetics, mass transfer, design, materials) and are applicable to numerous engineering disciplines. The increased emphasis on energy usage and transformation as a result of rising demand, diminishing supply, and global warming necessitates that the engineers who will tackle these issues have a firm grasp of thermodynamics. The first and second laws will be studied in this course. Non-ideal features of single-component and multicomponent systems will be emphasized. A substantial portion of the course is devoted to solution thermodynamics, which is crucial for separations (e.g., distillation, extraction, membranes), and chemical equilibrium, which is crucial for reaction engineering. "A theory is more striking when its premises are simpler, when it relates more diverse types of things, and when its scope of applicability is broader. Consequently, the profound impact that classical thermodynamics had on me. It is the only physical theory with universal content that I am confident, within the range of its applicability, will never be overthrown." — Albert Einstein

Навыки, которые вы освоите

Chemical EngineeringEngineering CalculationsMathematical ModelingEnvironmental EngineeringEngineeringChemistryChemical and Biomedical EngineeringEnergy and UtilitiesBiological EngineeringSustainable EngineeringProcess EngineeringEngineering Analysis

Программа курса

8 модулей · 37 учебных материалов

01Week 15 материалов

Week 1

1-1 The Framework of Solution Thermodynamics (Intro)Видео1-2 Fundamental Property RelationВидео1-3 Chemical Potential and Phase EquilibriumВидеоQuiz 1. Problem & SolutionЧтение

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Dong-Yeun Koh

Associate Professor

Chemical Engineering Thermodynamics 2
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Обучение на Coursera

≈ 31.7 ч

8 модулей

Язык: Английский

Часть программы вашего университета
Quiz 1.Задание
02Week 25 материалов

Week 2

1-4 Partial Molar PropertiesВидео1-5 Ideal Gas Mixture ModelВидео1-6 Mixing PropertiesВидеоQuiz 2. Problem & SolutionЧтениеQuiz 2.Задание
03Week 36 материалов

Week 3

1-7 Fugacity and Fugacity Coefficient (Gas)Видео1-8 Fugacity and Fugacity Coefficient (Solution)Видео1-9 Ideal Solution ModelВидео1-10 Excess PropertiesВидеоQuiz 3. Problem & SolutionЧтениеQuiz 3.Задание
04Week 45 материалов

Week 4

2-1 Vapor Liquid Equilibrium for Pure SpeciesВидео2-2 Lewis/Randall RuleВидео2-3 Phase EquilibriumВидеоQuiz 4. Problem & SolutionЧтениеQuiz 4.Задание
05Week 54 материалов

Week 5

3-1 The Gamma/Phi Formulation of VLEВидео3-2 Simplification of VLEВидеоQuiz 5. Problem & SolutionЧтениеQuiz 5.Задание
06Week 65 материалов

Week 6

3-3 Raoult's Law(BUBL & DEW P)Видео3-4 Raoult's Law(BUBL & DEW T)Видео3-5 Modified Raoult's LawВидеоQuiz 6. Problem & SolutionЧтениеQuiz 6. Задание
07Week 74 материалов

Week 7

3-6 Properties from VLE DataВидео3-7 Fitting Activity Coefficient Models to VLE DataВидеоQuiz 7. Problem & SolutionЧтениеQuiz 7.Задание
08Week 83 материалов

Week 8

3-8 VLE Data ReductionВидеоQuiz 8. Problem & SolutionЧтениеQuiz 8.Задание