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KIM1020 | General Chemistry - II | 3+0+0 | ECTS:4 | Year / Semester | Spring Semester | Level of Course | First Cycle | Status | Compulsory | Department | DEPARTMENT of MOLECULAR BIOLOGY and GENETICS | Prerequisites and co-requisites | None | Mode of Delivery | | Contact Hours | 14 weeks - 3 hours of lectures per week | Lecturer | Öğr. Gör. Dr Sinan NOHUT | Co-Lecturer | | Language of instruction | Turkish | Professional practise ( internship ) | None | | The aim of the course: | Students taking this course gain an understanding of chemistry that supports their broad interests in science. The course prepares students for other advanced chemistry courses and develops their numerical skills in a scientific context. |
Learning Outcomes | CTPO | TOA | Upon successful completion of the course, the students will be able to : | | | LO - 1 : | gain basic knowledge of chemistry | 1,2,6,8 | 1, | LO - 2 : | Utilizes the principles and laws of chemistry to solve universal problems | 1,2,6,8 | 1, | LO - 3 : | Learning how to analyze and interpret knowledge and apply it in interdisciplinary and interdisciplinary fields | 1,2,6,8 | 1, | LO - 4 : | Have the ability to understand, interpret and conceptualize chemistry-based events and phenomena | 1,2,6,8 | 1, | CTPO : Contribution to programme outcomes, TOA :Type of assessment (1: written exam, 2: Oral exam, 3: Homework assignment, 4: Laboratory exercise/exam, 5: Seminar / presentation, 6: Term paper), LO : Learning Outcome | |
Ideal Gases and Dalton's Law, Kinetic Theory of Gases, ThermochemistryThermodynamics, First and Second Laws of Thermodynamics, Thermodynamics: Free Energy, Chemical Equilibrium: Equilibrium Constants, Chemical Equilibrium: Le Chatelier's Principle, Acids and Bases, Ionic Equilibrium: Weak Electrolytes, Ionic Equilibrium: Solubility Equilibrium, Complex Ion Equilibrium, Electrochemistry, Chemical Kinetics: Reaction Rates, Chemical Kinetics: Reaction Mechanisms and Effect of Temperature on Reaction Rate |
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Course Syllabus | Week | Subject | Related Notes / Files | Week 1 | Ideal Gases and Dalton's Law | | Week 2 | Kinetic Theory of Gases | | Week 3 | Thermochemistry | | Week 4 | Thermodynamics: First and Second Laws of Thermodynamics | | Week 5 | Thermodynamics: Free Energy and Equilibrium | | Week 6 | Chemical Equilibrium: Equilibrium Constants | | Week 7 | Chemical Equilibrium: Le Chatelier's Principle | | Week 8 | Acids and Bases | | Week 9 | midterm | | Week 10 | Ionic Balance: Weak Electrolytes | | Week 11 | Ionic Balance: Solubility balance | | Week 12 | electrochemistry | | Week 13 | Chemical Kinetics: Reaction Rates | | Week 14 | Chemical Kinetics: Reaction Mechanisms and Effect of Temperature on Reaction Rate | | Week 15 | Chemical Kinetics: Reaction Mechanisms and Effect of Temperature on Reaction Rate | | Week 16 | final exam | | |
1 | Chemistry, 13th Edition, Raymond Chang & Jason Overby | | |
1 | General Chemistry: Principles and Modern Applications, 11th Edition, Ralph H. Petrucci, F. | | |
Method of Assessment | Type of assessment | Week No | Date | Duration (hours) | Weight (%) | Mid-term exam | 9 | | 2 saaat | 50 | End-of-term exam | 16 | | 2 saat | 50 | |
Student Work Load and its Distribution | Type of work | Duration (hours pw) | No of weeks / Number of activity | Hours in total per term | | | | |
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