Eskisehir Technical University Info Package Eskisehir Technical University Info Package
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About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Graduate School of Sciences
  • Department of Chemical Engineering
  • Master of Science (MS) Degree
  • Course Structure Diagram with Credits
  • Advanced Chemical Engineering Thermodynamics
  • Description
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications

Course Introduction Information

Code - Course Title KMH501 - Advanced Chemical Engineering Thermodynamics
Course Type Required Courses
Language of Instruction Türkçe
Laboratory + Practice 3+0
ECTS 7.5
Course Instructor(s)
Mode of Delivery Face to face
Prerequisites There is no prerequisite or co-requisite for this course.
Courses Recomended It is suggested for students to take Thermodynamics and Physical Chemistry courses.
Recommended Reading List
Assessment methods and criteria Classical exam and homework
Work Placement Not Applicable
Sustainability Development Goals

Content

Weeks Topics
Week - 1 Fundamental concepts of Thermodynamics: first law, system, properties of system, phase rule, equilibria, heat capasity, internal energy, enthalpy, constant P and V processes.
Week - 2 Volumetric properties of pure fluids: PVT behaviour of pure substance, Virial eqn of state and applications, The ideal gas, generalized correlations for gases and liquids.
Week - 3 Thermodynamic property relations: partial derivatives, The Maxwell Relations, The clapeyron eqn, genral relations for du, dh, dS, dA, dG, Cv ve Cp, The Joule-Thomson coefficient
Week - 4 Thermodynamic properties of fluids: property relations for homogeneous phases, residual properties, residual properties of eqn of state, two phase systems.
Week - 5 Thermodynamic properties of fluids:Thermodynamic diagrams, Tables of Thermodynamic properties, Generalized property correlations for gases, practise.
Week - 6 Thermodynamic properties of fluids:Thermodynamic diagrams, Tables of Thermodynamic properties, Generalized property correlations for gases, practise.
Week - 7 Vapor-liquid equilibrium: Balance of nature, phase rule, Duhem's theory, Raoult's and Henry's Law.
Week - 8 Solution thermodynamics:Theory: Fundamental property relation, The chemical potential and phase equilibria, partial properties, The ideal-gas mixture model.
Week - 9 Solution thermodynamics:Theory: fugacity and fugacity coefficient, generalized correlations for the fugacity coefficient, the ideal solution model, excess properties.
Week - 10 Solution thermodynamics: Applications: Liquid phase properties from VLE data, Models for the excess Gibbs energy, property changes of mixing, heat effects of mixing process.
Week - 11 Chemical-reaction equilibria: The reaction coordinate, application of equilibrium criteria to chemical rxns, The standard Gibbs-energy change and the equilibrium constant, effect of temperature on the equilibrium constant.
Week - 12 Chemical-reaction equilibria: The reaction coordinate, application of equilibrium criteria to chemical rxns, The standard Gibbs-energy change and the equilibrium constant, effect of temperature on the equilibrium constant.
Week - 13 Chemical equilibrium: evaluation of equilibrium constants, the relationship of the equilibrium constant with the composition, the equilibrium constant for single reaction systems, phase rule, Duhem theory for reaction systems, balance for systems with multiple reactions.
Week - 14 final

Learning Activities and Teaching Methods

  • Teaching Methods
  • Lecture
  • Question & Answer
  • Observation
  • Experiment
  • Case Study
  • Brain Storming
  • Competences
  • True to core values

Assessment Methods

Assessment Method and Passing Requirements
Quamtity Percentage (%)
Toplam (%) 0
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