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
  • Faculty of Engineering
  • Department of Chemical Engineering
  • Course Structure Diagram with Credits
  • Mathematical Modeling in Chemical Engineering
  • Description
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications

Course Introduction Information

Code - Course Title KMH303 - Mathematical Modeling in Chemical Engineering
Course Type Required Courses
Language of Instruction İngilizce
Laboratory + Practice 4+0
ECTS 5.0
Course Instructor(s) DOKTOR ÖĞRETİM ÜYESİ MURAT KILIÇ, DOÇENT DOKTOR LEVENT AKYALÇIN
Mode of Delivery This course is conducted in face-to-face/hybrid form only.
Prerequisites It is necessary to have successfully completed the MAT219 Differential Equations course.
Courses Recomended There is no recommended optional programme component for this course.
Recommended Reading List * Rice, Richard G. and Do, Duong D., “Applied Mathematics and Modeling for Chemical Engineers”, John Wiley and Sons, 1995.*Jenson, VG. and Jeffreys GV, “Mathematical Methods in Chemical Engineering”, Second Edition, Academic Press, 1977.*Franks R.G.E., Modeling and Simulation in Chemical Engineering, John-Wiley, 1972 *Cutlip M.B., Shacham M., Problem Solving in Chemical and Biochemical Engineering with POLYMATH, Excel, and MATLAB, 2nd Ed., Prentice Hall, 2008 *A. Constantinides & N. Mostoufi, Numerical Methods for Chemical Engineers with MATLAB Applications, Prentice Hall, 1999.*Spiegel M.R., Mathematical Handbook of Formulas and Tables, Schaum\\\\\\\'s Outline Series, McGraw-Hill, 1968
Assessment methods and criteria 3 Quizes, 1 Midterm and Final Examinations
Work Placement N/A
Sustainability Development Goals

Content

Weeks Topics
Week - 1 Ordinary differantial equaitons and analytical solution methods
Week - 2 Ordinary differantial equaitons and analytical solution methods
Week - 3 Introduction to Modeling in Chemical Engineering
Week - 4 Steady-state modeling of systems involving physical and chemical changes and solution of the equation obtained
Week - 5 Steady-state modeling of systems involving physical and chemical changes and solution of the equation obtained
Week - 6 Unsteady-state modeling of systems involving physical and chemical changes and analytical solution of the equation obtained
Week - 7 Unsteady-state modeling of systems involving physical and chemical changes and analytical solution of the equation obtained
Week - 8 Unsteady-state modeling of systems involving physical and chemical changes and analytical solution of the equation obtained
Week - 9 Steady state modeling shell balances for momentum, heat and mass transfer operations.
Week - 10 Steady state modeling shell balances for momentum, heat and mass transfer operations.
Week - 11 Unsteady-state modeling of systems involving physical and chemical changes and analytical solution of the equation obtained
Week - 12 Modeling shell balances in momentum, heat and mass transfer in unsteady state conditions.
Week - 13 Data analysis and regression
Week - 14 Data analysis and regression

Learning Activities and Teaching Methods

  • Teaching Methods
  • Lecture
  • Question & Answer
  • Drill - Practise
  • Problem Solving
  • Competences
  • Follow ethical and moral rules
  • Effective use of a foreign language
  • Use time effectively
  • Problem solving
  • Elementary computing skills

Assessment Methods

Assessment Method and Passing Requirements
Quamtity Percentage (%)
1.Midterm Exam 1 30
Quiz 1 20
Final Exam 1 50
Toplam (%) 100
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