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Course Unit Title Course Unit Code Type of Course Unit Level of Course Unit Year of Study Semester ECTS Credits
Physıcal Chemistry I KIM301 Compulsory Bachelor's degree 3 Fall 5

Name of Lecturer(s)

Prof. Dr. Nalan TEKİN
Prof. Dr. Ufuk YILDIZ
Prof. Dr. Sibel ZOR
Associate Prof. Dr. Ümüt KADİROĞLU

Learning Outcomes of the Course Unit

1) Interprets the applications of basic thermodynamic laws in physical chemistry and other laws and concepts related to physical chemistry.
2) ideal and real gas systems explain.
3) Evaluates thermodynamic equations and their applications.
4) The basic concepts and relations of physical chemistry-related applications, suitability analyzes.
5) Basic relations, adapts to new and more complex situations.

Program Competencies-Learning Outcomes Relation

  Program Competencies
1 2 3 4 5 6 7 8 9 10 11 12
Learning Outcomes
1 High Low Low Low High Middle Low Low High No relation Low High
2 High No relation Low Low No relation Middle Low Low High Low Low High
3 High No relation Low Low No relation Middle Low Low High Low Low High
4 High Low Low Middle Low Middle Low Low High Low Low High
5 High Low Low Middle Low Middle Low Low High Low Low High

Mode of Delivery

Face to Face

Prerequisites and Co-Requisites

None

Recommended Optional Programme Components

Physical chemistry Laboratory I

Course Contents

The properties of perfect and real gases, the perfect gas laws, Kinetic gas theorem, Barometric dispersion law, thermodynamic laws, Maxwell equations,the van der waals equation of real gases; general properties of liquids, Clasius-Clapeyron equation; general properties of solids; solid, glassy and crystal states, crystal net plane

Weekly Schedule

1) Input, unit systems
2) GAS: Gas laws
3) Ideal gases and real gases
4) Van der Waals, Maxwell Boltzmann speed distribution law
5) Kinetic theory of gases, number of collision and the average free path.
6) The 1st law of thermodynamics
7) Internal energy function and Cv heating temperature, enthalpy and Cp heating temperature.
8) mid-term exam
9) Isothermal and adiabatic processes, The 2nd Law of Thermodynamics
10) Reversible and irreversible processes during the system ,environment and the entropy change of the universe.
11) The 3th of Thermodynamics law
12) Free internal energy and free enthalpy functions
13) adherence to state variables of state functions,
14) Maxwell equations
15) The implementation to basic thermodynamic equation of Maxwell's equations.
16) final exam

Recommended or Required Reading

1- P.W. Atkins, Physical Chemistry, Sixth edition, Oxford University Press, Oxford Melbourne Tokyo, 1998 (P.W. Atkins, Fizikokimya, Birinci baskı, Çeviri Editörleri: S.Yıldız, H. Yılmaz, E. Kılıç, Bilim Yayıncılık, Ankara, 2001.
2- Fizikokimya-ATKINS; Çeviri editörleri: S.Yıldız, H. Yılmaz, E. Kılıç, Bilim Yayıncılık,
3- Physical Chemistry, P.W. Atkins, Oxford university pres, 5th ed., 1994
4- R.J. Silbey, R.A. Alberty, M.G. Bawendi, Physical Chemistry, 4th Edition, Wiley, Hoboken, NJ, 2005.
5- Fizikokimya, A.R. Berkem, S. Baykut, İstanbul Üni. Yayını, 1994.
6- Fizikokimya, Yüksel Sarıkaya
7- M. Cebe, Fizikokimya, Cilt I-II, Uludağ Üniversitesi Basımevi, Bursa, 1992.

Planned Learning Activities and Teaching Methods

1) Lecture
2) Question-Answer
3) Discussion
4) Drill and Practice
5) Problem Solving


Assessment Methods and Criteria

Contribution of Midterm Examination to Course Grade

40%

Contribution of Final Examination to Course Grade

60%

Total

100%

Language of Instruction

Turkish

Work Placement(s)

Not Required