KM311 Physical Chemistry 1

6 ECTS - 4-0 Duration (T+A)- 5. Semester- 4 National Credit

Information

Unit FACULTY OF SCIENCE AND LETTERS
CHEMISTRY PR.
Code KM311
Name Physical Chemistry 1
Term 2018-2019 Academic Year
Semester 5. Semester
Duration (T+A) 4-0 (T-A) (17 Week)
ECTS 6 ECTS
National Credit 4 National Credit
Teaching Language Türkçe
Level Üniversite Dersi
Type Normal
Label C Compulsory
Mode of study Yüz Yüze Öğretim
Catalog Information Coordinator Prof. Dr. TUNÇ TÜKEN
Course Instructor Prof. Dr. TUNÇ TÜKEN (Güz) (A Group) (Ins. in Charge)
Prof. Dr. GÜLFEZA KARDAŞ (Güz) (A Group) (Asst. Ins.)


Course Goal / Objective

The purpose of this course, definition of pyhysicochemical systems with help of variables and state functions. Also, knowledge about Laws of Thermodynamic and interpretation of chemical process with help of these laws.

Course Content

This course includes the definition of physicochemical systems, molecular structure of thermodynamic systems, kinetic theory, general properties of gases and fluids, heat, entalpy, internal energy and work. Carnott cycle and definition of entropy, Gibbs free energy, chemical equilibrium and phase equilibrium.

Course Precondition

Yok

Resources

Notes

Ders Notu ve Kitaplar


Course Learning Outcomes

Order Course Learning Outcomes
LO01 Comprehensing the Interpretation of sysytems with phsicochemical properties
LO02 Understanding the definition of sysytems with help of state functions
LO03 Definition of Ideal Gas, Real Gases
LO04 Understanding the Virial Equation, Critical Temperature, Boyle Temperature, Reduced State Diagrams
LO05 Understanding the Kinetic Theory, molecular speed, number of collision
LO06 Understanding the First aw of Thermodynamics, internal energy and work
LO07 Understanding the isothermal, izobaric, adiabatic work, reversible, irreversible process
LO08 Midterm exam
LO09 Understanding Thermochemistry
LO10 Understanding Second Law of thermodynamics
LO11 Understanding Heat pumps and term of entropy
LO12 Understanding the third law of thermodynamics, absolute entropy
LO13 Understanding the definition of Gibbs Free Energy, chemical potential
LO14 Understanding the chemical equilibrum
LO15 Understanding the phase diagram of one component system


Relation with Program Learning Outcome

Order Type Program Learning Outcomes Level


Week Plan

Week Topic Preparation Methods
1 Definition of systems Reading
2 Gas and real gases Reading
3 Kinetic theory Reading
4 Specific heat and barometric distribution Reading
5 The first law of Thermodynamics Reading
6 Internal energy, Entalpy and state functions Reading
7 Thermochemical systems Reading
8 Mid-Term Exam Lecture notes and boooks
9 Temperature reaction entalpy relation, Hess Law Reading
10 Second and third Laws of Thermodynamics, Entropy Reading
11 Ice and solid mixtures and entropy Reading
12 Maxwel equations, free energy and gibbs energy Reading
13 The realtion between free energy and temperature, pressure Reading
14 Chemical equilibrium Reading
15 Reactions at gaseous phase Reading
16 Term Exams Lecture notes and boooks
17 Term Exams Lecture notes and boooks


Assessment (Exam) Methods and Criteria

Assessment Type Midterm / Year Impact End of Term / End of Year Impact
1. Midterm Exam 100 40
General Assessment
Midterm / Year Total 100 40
1. Final Exam - 60
Grand Total - 100

Update Time: 23.01.2019 03:29