COURSE UNIT TITLE

: CHEMISTRY II

Description of Individual Course Units

Course Unit Code Course Unit Title Type Of Course D U L ECTS
OKM 1122 CHEMISTRY II COMPULSORY 3 0 0 3

Offered By

Physics Teacher Education

Level of Course Unit

First Cycle Programmes (Bachelor's Degree)

Course Coordinator

ASISTANT PROFESSOR GÜLTEN ŞENDUR

Offered to

Physics Teacher Education

Course Objective

This course aims to teach fundamental concepts related to properties of solutions, kinetics, chemical equilibrium, acids-bases, thermodynamics, electrochemistry and complexes to gain problem solving skills

Learning Outcomes of the Course Unit

1   Calculating different concentrations of a solution
2   Calculating the reaction rate for a chemical reaction
3   Explaining equilibrium conditions
4   Applying Le Chatelier s principle to different reactions
5   Explaining Criteria for Precipitation
6   Calculating the pH of all kinds of acids and bases
7   Distinguishing galvanic and electrolytic cell,
8   Distinguishing between a system and its surroundings, endothermic and exothermic reactions

Mode of Delivery

Face -to- Face

Prerequisites and Co-requisites

None

Recomended Optional Programme Components

None

Course Contents

Week Subject Description
1 Solutions: Properties of solutions, concentration of solutions
2 Kinetics: Reaction rate law, Factors Affecting reaction rates
3 Chemical Equilibrium: Properties of chemical equilibrium , equilibrium constants, Le-Chatelier s Principle
4 The Solubility Product Constant: Criteria for Precipitation
5 The Solubility Product Constant: Equilibria involving complex ions,
6 Acids and Bases: Definitions of acid-bases, strong acids and bases, weak acids and bases, PH, POH,
7 Study Week
8 Midterm Exam
9 Acids and Bases: titrations, buffer solutions
10 Thermodynamics: The first and second law of thermodynamics, free energy,
11 Thermodynamics: G, S; entropy,
12 Electrochemistry: Redox reactions,
13 Electrochemistry: Galvanic cells, electrolysis
14 Chemistry of Complex Compound: Naming of Coordination Compounds
15 Final Exam

Recomended or Required Reading

1. Petrucci, R.H, Harwood, W.S. and Herring, F.G. (Çev edt.: Uyar, T, Aksoy, S) Genel Kimya Ilkeler ve Modern Uygulamalar, Ankara: Palme Yayınevi
2. Mortimer , C. E. (Çev Edt: Altınata, T). Modern Üniversite Kimyası, Istanbul: Çağlayan Kitapevi
3. Chang, R. ( Çev: Uyar, T; Aksoy, S; Inam, R ) Genel Kimya Temel Kavramlar, Ankara: Palme Yayınevi
4. Atkins, P, Jones, L. (Çev Edt: Kılıç, E, Köseoğlu, F, Yılmaz, H) Temel kimya-2 moleküler, maddeler ve değişimler, Bilim Yayıncılık, Ankara
5. Erdik, E., Sarıkaya,Y., Temel Üniversite Kimyası Gazi Kitabevi, Ankara 2004

Planned Learning Activities and Teaching Methods

Presentation Technique, Discussion, Problem Solving, Question-Answer Method,

Assessment Methods

SORTING NUMBER SHORT CODE LONG CODE FORMULA
1 MTE MIDTERM EXAM
2 FINS FINAL EXAM
3 FCGR FINAL COURSE GRADE (RESIT) MTE * 0.40 +FINS * 0.60
4 RST RESIT
5 FCGR FINAL COURSE GRADE (RESIT) MTE * 0.40 + RST* 0.60

Further Notes About Assessment Methods

None

Assessment Criteria

To be announced.

Language of Instruction

Turkish

Course Policies and Rules

To be announced.

Contact Details for the Lecturer(s)

gulten.sendur@deu.edu.tr

Office Hours

To be announced.

Work Placement(s)

None

Workload Calculation

Activities Number Time (hours) Total Work Load (hours)
Lectures 13 3 39
Preparations before/after weekly lectures 12 2 24
Preparation for midterm exam 1 8 8
Preparation for final exam 1 10 10
Final 1 2 2
Midterm 1 2 2
TOTAL WORKLOAD (hours) 85

Contribution of Learning Outcomes to Programme Outcomes

PO/LOPO.1PO.2PO.3PO.4PO.5PO.6PO.7PO.8PO.9PO.10PO.11PO.12PO.13PO.14PO.15PO.16PO.17PO.18PO.19PO.20
LO.154
LO.2543
LO.3334
LO.4543
LO.54
LO.6543
LO.7344
LO.8434