course code & title: 0240502 :statistical treatment of...

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Course Code & Title: 0240502 :Statistical Treatment of Analytical Results Name of the Programme: Chemistry MSB Semester Autumn Teaching Methods Credits Theory Recite Lab. Projects/Area Study/Home work Quiz Mid Term Final Total National Credit ECTS Credits Spring 42 - - 61 30 35 72 240 3 8 Language Turkish Grade of the Lecture Associate Degree ( ) Bachelors Degree ( ) Master Degree ( X ) Doctoral Degree ( ) Compulsory / Selective Selective Prerequisities - Course Objectives AnalyticalChemistryof the results obtainedin themethoddevelopmentstudies,statistics, etc. To understandthe importance oftheevaluationresults toimprove the abilityto expressanalytically. Devoloped Programme Adequaciess of the Lecture P.Y.2 P.Y.6 P.Y. 8 P.Y. 10 Learning Outcomes Performstatisticalevaluation ofthe results ofthe analysis Learning Methods and Techniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project Assessment Criteria (X) mark Percent (%) Mid-Terms X 20 Quizzes X 5 Assigments X 5 Projects X 10 Term Projects Laboratory Final Exam X 60 Week Subjects 1 2 3 4 5 6 7 8 9 10 11 12 13 14 Precision Accuracy concepts Type of errors made in analytical processes True value Standard deviation Indeterminate errors Indeterminate errors Making use of modified statistics in solving technical problems Null hypothesis Uses in analytical treatments Least-squares method Significant-figure convention Rounding analytical data Reporting analytical results Course Book & References 1. Skoog, D.A., West D.M., Holler, F.J (çeviri. Kılıç, E, Köseoğlu, F.) (1996) 2. Analitik Kimya Temelleri, 7. Baskı. Ankara: Bilim Yayıncılık.Gündüz T. (1998). 3. Kimyacılar için istatistik, Ankara: Gazi Kitabevi.

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Page 1: Course Code & Title: 0240502 :Statistical Treatment of ...cdn.hitit.edu.tr/fbe/files/69350_1610111429415.pdf · Course Code & Title: 0240504 Ionic Equilibria II Name of the Department

Course Code & Title: 0240502 :Statistical Treatment of AnalyticalResults Name of the Programme: Chemistry MSB

SemesterAutumn

Teaching Methods Credits

Theory Recite Lab.Projects/AreaStudy/Home

workQuiz Mid

Term Final Total NationalCredit

ECTSCredits

Spring 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture AssociateDegree ( )

BachelorsDegree ( ) Master Degree ( X ) Doctoral

Degree ( )Compulsory / Selective SelectivePrerequisities -

Course Objectives AnalyticalChemistryof the results obtainedin themethoddevelopmentstudies,statistics, etc. To understandtheimportance oftheevaluationresults toimprove the abilityto expressanalytically.

Devoloped ProgrammeAdequaciess of the Lecture

P.Y.2P.Y.6P.Y. 8P.Y. 10

Learning Outcomes Performstatisticalevaluation ofthe results ofthe analysis

Learning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Mid-Terms X 20Quizzes X 5Assigments X 5Projects X 10Term ProjectsLaboratory……Final Exam X 60

Week Subjects

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1011121314

PrecisionAccuracy conceptsType of errors made in analytical processesTrue valueStandard deviationIndeterminate errorsIndeterminate errorsMaking use of modified statistics in solving technical problemsNull hypothesisUses in analytical treatmentsLeast-squares methodSignificant-figure conventionRounding analytical dataReporting analytical results

Course Book & References1. Skoog, D.A., West D.M., Holler, F.J (çeviri. Kılıç, E, Köseoğlu, F.) (1996)2. Analitik Kimya Temelleri, 7. Baskı. Ankara: Bilim Yayıncılık.Gündüz T. (1998).3. Kimyacılar için istatistik, Ankara: Gazi Kitabevi.

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Course Code & Title: 0240504 Ionic Equilibria II Name of the Department / Programme: Chemistry

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 50 19 55 74 240 3 7,5Language TurkishGrade of the Lecture College () Undergraduate () Graduate (X) Doctorate ()Compulsory / Elective ElectivePrerequisities -

Course Objectives By the analytical approaches, to give evaluation and implementation ability about protonation constants andequilibrium, stability constants.

Developed ProgrammeAdequaciess of the Lecture PY.1, PY.3, PY.5, PY.6, PY.11

Learning Outcomes Teaching of analytical approaches about equilibrium systems.Learning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes XHomeworks X 10

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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Chemical equilibriaThe equilibrium pointOne-step protonationTwo-step protonationSeveral protonation stepIntroduction to metal complex formationExperimental methods for studying equilibriaMidtermExperimental methods for complicationsExperimental methods from measurements to parametersMaking use of stability constantsMaking use of stability constantsSolve problemsSolve problems

Course Book & References

1. Harris,Daniel C.,Exploring Chemical Analsis,2.Edition, W.H.Freeman Company, 2000.

2.Crawford,K.and Heaton,A.,Problem Solving in Analtical Chemistry,Royal Society of Chemistry,1999.

3. Freiser,Henry,Concepts and Calculations in Analytical Chemistry,A Spreadsheet Approach,CRC Press,1992.

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Course Code & Title: 0240506 New Methods in Electrochemistry Name of the Department / Programme: Chemistry MSB

SemesterAutumn

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

I 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course Objectives Galvanostatic and potentiostatic methods to teach the difference, explain applications of the technique ofcyclic voltammetry.

Developed ProgrammeAdequaciess of the Lecture P.Y.2, P.Y.6, P.Y. 8, P.Y. 10

Learning Outcomes To learn on new Methods in ElectrochemistryLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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Basic circuits with electrochemical measurementsBasic circuits with electrochemical measurementsThe determination of kinetic parameters by the galvanostatic and potentiostatic methodsThe determination of kinetic parameters by the galvanostatic and potentiostatic methodsThe determination of kinetic parameters by the galvanostatic and potentiostatic methodsRotating disc electrode techniqueRotating disc electrode techniqueRotating disc electrode techniqueCyclic voltammetric method and its applicationsCyclic voltammetric method and its applicationsCyclic voltammetric method and its applicationsThe alternative current methods and their applications.The alternative current methods and their applications.The alternative current methods and their applications.

Course Book & References

1. Analitik Kimya, Skoog, West, Holler.2. Bard, A.J., and Faulkner, L.R. 2001. Electrochemical Methods, John Willey and Sens. Inc.

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Course Code & Title: 0240508 Ion Selective Electrodes Name of the Department / Programme: Chemistry MSB

SemesterAutumn

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

I 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course Objectives Basically, to teach students about the terminology and the use of electrodes to provide information aboutconstruction and about.

Developed ProgrammeAdequaciess of the Lecture P.Y.2, P.Y.6, P.Y. 8, P.Y. 10

Learning Outcomes Learn the Ion SelectiveElectrodesLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

Classification of electrodesReference electrodesMetallic indicator electrodesMembrane indicator electrodesGlass electrodes for pH measurementsGlass electrodes for pH measurementsGlass electrodes for other cationsCrystal membrane electrodesCrystal membrane electrodesLiquid membrane electrodesMolecular selective electrode systemsGas sensing probesEnzyme electrodesEnzyme electrodes

Course Book & References

1. Potentiometry and Ion Selective Electrodes Chemistry, A. Evans, A.M. James, John Wiley and Sons,1995..

2. Ion-Selective Electrode Methodology, A.K. Covington, Volume 1-2, CRC Press, Boca Raton, FL (1979).

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Course Code & Title: 0240510 - Analytıcal Bıochemıstry Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course Objectives

The course is mainly learning both classical and modern biochemical methods and nucleic acid isolation andanalysis of biological molecules such as proteins, to train students in the information. The course content ofthe principles and techniques that will be given theoretical explanations; affinity kormatografisi,electrophoresis, centrifugation technique, immune marking, spectrophotometer, fluorometer, HPLC,quantitative PCR, mass spectrometry, and consists of biyoinformatikten. Basic biochemistry laboratorytechniques and provide extensive information about the use of these techniques.

Developed ProgrammeAdequaciess of the Lecture P.Q.1, P.Q.2, P.Q.5, P.Q.6

Learning Outcomes

-Students in biology, biochemistry, physics and chemistry discipline that uses the principles of learning willhave a thorough understanding of the chemistry of life.- Students Pursuing extensive knowledge about the molecular and biochemical techniques for laboratorystudies will have gained the necessary infrastructure.- Students Pursuing biochemical biochemistry laboratory techniques to produce the information needed willacquire the ability to contribute to the scientific field.-Students of the discipline of biochemistry, especially to human health, agriculture, economic andenvironmental areas will be aware of their contribution to society

Learning Methods andTechniques Lecture, Question and answer, discussion

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 40

QuizzesHomeworks

ProjectsTerm Paper

Laboratory Work…

Final Exam X 60Week Subjects

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Course description summaries and subject; recombinant protein expressionChromatography, Protein purificationProtein electrophoresis and other separation methodsThe use of antibodies in BiochemistryProtein analysis by mass spectrometrySpectroscopic methods for the analysis of proteinUsing a structure-function analysis of mutationsEnzyme kinetics and enzyme inhibitionmidtermIntermolecular interactions, the ligand binding specificityCentrifugation techniques, hydrodynamic properties of proteinsEnzyme activity in the biological managementUsing methods to elucidate protein structure, gene expression analysisfinal

Course Book & References

Biochemistry Laboratory: Modern Theory and Techniques, Second Edition, by Rodney Boyer.-Venn, Richard F.Principles and practice of bioanalysis 2nd ed.Basic principles and applications of Biotechnology TELEFONCU-Azmi, Nurdan KAŞIKARA PAZARLIOĞU-Basic and modern techniques in biochemistry TELEFONCU Azmi, Johann SALNIKOW, Figen Zihnioğlu, Ali Kılıç-Online resources

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Course Code & Title: 0240512 Electroanalytical Chemistry II Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

I 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course ObjectivesElectrochemical information and techniques to use to teach basic informationinterpret. Electrochemical techniques to use information and analytical purposes, to interpret.

Developed ProgrammeAdequaciess of the Lecture PY.1, PY.2, PY.5, PY.6

Learning Outcomes Electrochemical techniques to use information and analyticalpurposes, to interpret.Learning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

Electrode reactions,Electrode reactions,Electrode reactions,kinetics of electron transfer processes,

current-potential characteristics.Tafel plots,adsorption,mass transfer processes,mass transfer processespotential controlled coulometry and bulk electrolysis, chronoamperometry (CA), chronocoulometry (CC),

elucidation of electrode reactions using CA and CC techniques.Linear sweep voltametry (LSV), cyclic voltammetry (CV),elucidation of electrode reactions using LSV and CV techniques.

Course Book & References Analytical Chemistry, Skoog, West, Holler.Bard, A.J., and Faulkner, L.R. 2001. Electrochemical Methods, John Willey and Sens. Inc.

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Course Code & Title: 0240514 NMR spectroscopy

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework

Quiz MidTerm

Final Total NationalCredit

ECTSCredits

I 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()

Compulsory / Elective ElectivePrerequisitiesCourse Objectives Theory and Applications of NMR in Organic ChemistryDeveloped ProgrammeAdequaciess of the Lecture PY.1, PY.2, PY.5, PY.6, P.Y 7

Learning Outcomes Theory of NMR in Organic Chemistry to be informed about andimplementLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

Midterm ExamsQuizzes

HomeworksProjects

Term PaperLaboratory Work

…Final Exam

Week Subjects

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1011121314

High field NMR.Fourier transforms NMR and pulse NMR.

NMR Spectrometer and High field NMR Spectroscopy.NMR Spectrometer and High field NMR Spectroscopy.Chemical Shift and Chemical Structure of Organic compounds.Spin-spin Coupling in NMR Spectroscopy.Chemical Shift and Spin-spin Coupling in NMR Spectroscopy using PC.Dynamic NMR Spectroscopy.Dynamic NMR Spectroscopy.NMR in structural analysis.NMR in structural analysis13CNMR Spectroscopy.Introduction to 2D NMR Spectroscopy.NMR methods in stereochemistry.

Course Book & References1. R. M. Silverstein and G. C. Bassler M. Klessinger Spectrometric Identification of OrganicCompounds. Sixth Edition, John Willey Sons, New York, 543 p.2. M. Balcı. Nükleer Manyetik Rezonans spestroskopisi, Metu Press, Ankara,452 p.

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Course Code & Title: 0240516 Spectroscopic Methods in OrganicChemistry II Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

I 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course ObjectivesUltraviolet spectra, infrared spectra, 1H-NMR and 13C-NMR spectraAnalysis and Solutions, Mass spectra analysis and solutions

Developed ProgrammeAdequaciess of the Lecture PY.1, PY.2, PY.5, PY.6, P.Y.7

Learning Outcomes Spectroscopic methods in organic chemistry to have the ability to reviewLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

Ultraviolet-visible spectroscopy.Ultraviolet-visible spectroscopy.Ultraviolet-visible spectroscopy.Infrared spectroscopy (IR)Infrared spectroscopy (IR)Infrared spectroscopy (IR)Infrared spectroscopy (IR)1H-NMR and 13C-NMR Spectroscopy and structural analysis.1H-NMR and 13C-NMR Spectroscopy and structural analysis.1H-NMR and 13C-NMR Spectroscopy and structural analysis.1H-NMR and 13C-NMR Spectroscopy and structural analysis.Basic principles of mass spectroscopy and Application of mass spectroscopy.Basic principles of mass spectroscopy and Application of mass spectroscopy.Basic principles of mass spectroscopy and Application of mass spectroscopy.

Course Book & References

1. R. M. Silverstein and G. C. Bassler M. Klessinger Spectrometric Identification of OrganicCompounds. Sixth Edition, John Willey Sons, New York, 543 p.2. Ender Erdik, Organik Kimyada Spektroskopik Yöntemler, Ankara Üniversitesi FenFakültesi, Gazi Kitapevi,531 s.

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Course Code & Title: 0240518-Trace Element Analysis II Name of the Department / Programme: Chemistry

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit ECTS Credits

II 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities -

Course Objectives Spectrophotometric methods of analysis of trace elements, sample enhancements, Comparison of AtomicFluorescence and Emission methods.

Developed ProgrammeAdequaciess of the Lecture P.Y.1, P.Y. 5, P.Y.6

Learning Outcomes Information on Trace Elements analysisLearning Methods andTechniques Lecture, Question and Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Assignment, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

Separation and Analysis of Trace Elements with Spectrophotometric Methods, Combined and Hybrid Methods,Atomic Emission and Absorption Spectrometry,Combined and Hybrid MethodsAtomic Fluorescence Spectrometry,Spectrophotometry and Fluorimetry,X-ray Fluorescence Spectrometry,Electron Spin Resonance,Activation Analysis,Electrochemical Methods,Chromatographic Methods,Catalimetry and Other Methods,Preconcentration in Analysis of Various Substances,Environmental Samples, Mineral Raw Materials, Metals,Alloys and other inorganic samples, Organic Substances and in Biological Samples

Course Book & References

Inorganic Trace Analysis, A.G. Howard, P.J. StathamSelected methods of Trace Metal Analysis, J.C.V. LoonModern Methods for trace element determination, C. Vandecasteele, C.B. BlockPrinciples of Instrumental Analysis, D.A. Skoog, J.J. Leary

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Course Code & Title: 0240520- Dye Chemistry Name of the Department / Programme: Chemistry

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisitiesCourse Objectives Information on synthesis and properties of organic dyes. Synthesis and Classification of dyes.Developed ProgrammeAdequaciess of the Lecture P.Y.1, P.Y. 5, P.Y.8,

Learning Outcomes To learn the Synthesis, classification and properties of dyesLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

Identification of textile dyes and related literature.Synthesis and Classification of dyes.Main sources of textile dyes,Raw materials, textile dyes synthesis steps,Basic chemistry of textile materials,relations between the chemicals and materials, dyes,Commercial forms of textile dyes,Textile dyes and related resolutions and storage of chemicals.The basic principles of painting materials.General methods of dyeing,Direct and vat dyes,Reactive and azo dyes,Sulfur, and Disperse dyesinidigo, phthalocyanine dyes.

Course Book & References 1. Venkataraman, K. Synthetic Dyestuff Chemistry, 1970. 3. Volume, Academic Edition. New York-London, 485 p.2. Baser, I., Dyestuff Chemistry, Marmara University Press, 1990, Istanbul, 216 p.

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Course Code & Title: 0240522- Polymer Chemistry Name of the Department / Programme: Chemistry

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course ObjectivesPolymer production techniques, basic knowledge of polymer synthesis and classification

Developed ProgrammeAdequaciess of the Lecture P.Y.1, P.Y. 5, P.Y.10, P.Y.12

Learning Outcomes Learn polymer chemistryLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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Introduction and definitions,Classification of polymers,Classification of polymersPolymeric reactions,Polymeric reactions,Chain polymers,Chain polymers,Condensation polymerization,Condensation polymerization,Special techniques used in the preparation of polymers,Special techniques used in the preparation of polymersGeneral properties of polymeric materials,General properties of polymeric materialsSome of the chemical structure and properties of polymers

Course Book & References 1. B. Beşergil, “Polimer Kimyası” 470 sayfa, Gazi Kitabevi2. M.Saçak, “ Polimer Kimyası” 525 sayfa, Gazi yayınevi

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Course Code & Title: 0240524_Catalysis and Heterogeneous Catalysis Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course Objectives

Many natural phenomenon and the phenomenon of catalysis plays an important role in the development oflaboratory-level reactions, homogeneous and heterogeneous catalytic reactions, analysis, mechanisms,kinetics and phase behavior of the reaction rate constants of collision and transition state theory, and thecalculation of the rate of

Developed ProgrammeAdequaciess of the Lecture

PQ.3PQ.6PQ.7

Learning Outcomes -Learning Methods andTechniques Lecture, Question and answer, discussion

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 40

QuizzesHomeworks

ProjectsTerm Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

General structure and mechanism of catalytic reactionsExamination of samples of the course before the course on the subjectHomogeneous catalysis: acid-base catalysisGas systems catalyzeheterogeneous catalysisCatalyzed surface area, void volume and density accountThe theory of heterogeneous catalysisMID-TERM EXAMBatch system for catalyst deactivation rate calculationAdsorption, desorption and surface reaction rate calculation forConcentrations in the surface of the liquid phase catalysis rate equationsFixed bed transport event analysis of heterogeneous reactionsheterogeneous reactions in fluidized bed convective eventheterogeneous reactions in fluidized bed convective event

Course Book & References

1.J. M. Smith, Chemical Engineering Kinetics, McGrawHill, 2000.2. Cemil ŞENVAR Chemical Kinetics and Macromolecules (Physical Volume IV),3. Marmara Uni. Publications, Istanbul, 19864. Physical Chemistry, First Edition, Science Publications, Ankara, 2001

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Course Code & Title: 0240526- Organometallic Chemistry Name of the Department / Programme: Chemistry

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course Objectives

Organometallic, organic and inorganic chemistry is an important discipline that brings together the branches. Metal-carbonσ and π bond containing compounds, one or more cluster compounds containing metal-metal bond in the field of chemicalresearch is increasingly important. Organometallic compounds in the synthesis of many organic substances for use as initialor intermediate step of compound interest. New application areas include the biochemistry and semiconductor materialstechnology. Graduate research will be important and increasingly more and more young researchers in this field will beappropriate equipping the necessary information.

Developed ProgrammeAdequaciess of the Lecture P.Y.1, P.Y. 5, P.Y.11, P.Y.12

Learning Outcomes Learn organometallic compoundsLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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Overview of organometallic chemistry.Connecting to the foundation and structure.18 - electron rule.Carbonyl ligand.Pi-linear systems,Cyclic pi systems.Organometallic reactions,Consisting of metal and ligand exchange reactions,Homogeneous catalysis,Structure of metal-carbene complexes, the structure of metal-carbyne complexes.Biyoorganometalikler,Organolantanitler, Fullerene-metal complexes.Spectral characterization of organometallic complexes.Organometallic chemistry applications.

Course Book & References

1. G. Spessard, G. Miessler; Organometallic Chemistry, Prentice Hall, 1997.2. C. Housecroft, A. Sharpe; Inorganic Chemistry, Prentice Hall, 2001.3. M. Bochmann; Organometallics 1 and 2, Oxford University Press, 1994.4. G. Miessler, D.A. Tarr; Inorganic Chemistry, Prentice Hall, 1999.5. J.S. Thayer; Organometallic Chemistry, VCH Publishers Inc., 1988.

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Course Code & Title: 0240528- Fuel Chemistry Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisitiesCourse Objectives

Developed ProgrammeAdequaciess of the Lecture

PQ.3PQ.6PQ.7

Learning Outcomes -Learning Methods andTechniques Expression, Listening, Reading and Writing

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 40

QuizzesHomeworks

ProjectsTerm Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

The basic concepts of fuelsNatural solid fuelsArtificial solid fuels, the production and chemistryThe production of coke andProblems of coal combustion and parsedCoking properties of coalsCoke production methodsCoal combustion systemsMID-TERMFluidized bed furnaces and cycloneliquefaction of coalliquid fuelsgaseous fuelsSolved problems

Course Book & References Aydin, AO, Advanced Fuel Chemistry Lecture Notes, Faculty of Science, Department of Chemistry, 2008.

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Course Code & Title: 0240530- Supramolecular Chemistry Name of the Department / Programme: Chemistry

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course ObjectivesSupramolecular chemistry, chemistry, biology-specific recognition of developments in the field, to thereaction, transport and events such as the understanding of regulation, as well as material science,nanotechnology applications in particular will be very useful in understanding.

Developed ProgrammeAdequaciess of the Lecture P.Y.1, P.Y.4, P.Y. 5, P.Y.6, P.Y. 11

Learning Outcomes Information in the field of supramolecular chemistryLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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Molecular recognition of supramolecular structures,Synthesis of supramolecular,Synthesis of supramolecular,Supramolecular reactivity and catalysis,Bioorganic and bioinorganic model compounds,Host-guest chemistry with cations and anions,Clathrate inclusion compounds Photoresponsive host-guest systems,Transport processes and carried design,Non-linear optical properties of supramolecular species,Supramolecular electrochemistry,Supramolecular electrochemistry,Electronic applications of supramolecular systems,Molecular and supramolecular systems,Molecular and supramolecular devices.

Course Book & References

1.Supramolecular Chemistry: an Introduction Fritz Vögtle; Wiley, c 1991.2.Frontiers in Supramolecular Organic Chemistry and Photochemistry Hans JörgSchneiderand Heinz Dürr Weinheim; VCH, C 1991.3.Supramolecular Chemistry: Concepts and Perspectives Jean-Marie Lehn. VCH, Weinheim,1995

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Course Code & Title: 0240532 Chemistry of Pesticide Name of the Department / Programme: Chemistry MSB

SemesterAutumn

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

I 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course ObjectivesTo learn Structures of pesticides , pesticides and human; Health acut and chronic effects , The usage fields ofpesticides.

Developed ProgrammeAdequaciess of the Lecture PY1, PY3, PY5

Learning Outcomes To solve chemical problems, and to develop innovative ways to apply the methodLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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Pesticide definitionUses of areas.Uses of areas.Have to used pesticides?The Classification of pesticides accordig to the pest groupsThe Classification of pesticides accordig to the pest groupsPesticides and human; Health acut and chronic effectsPesticide use in Turkey and poisoning (accident and suicide)Toxicological properties of Pesticides according to chemical structuresToxicological properties of Pesticides according to chemical structuresPesticides and CancerPesticides in air, water and soil.Uncontrolled use of PesticideThe reduction to use of pesticide and biological pest control.

Course Book & References

1. J. Doull, D. Gammon, L. Reiter, E. Hodgson; Handbook of Pesticide Toxicology, Academic Press,2. Hideo Ohkawa, Hisashi Miyagawa, and Philip W. Lee; Pesticide Chemistry, WILEY-VCH, Weinheim, 20073. C. Matolcsy, M. Nadasy, V. Andriska; Pesticide Chemistry, Elsevier, Amsterdam, 1988.4. J. Pretty; The Pesticide Detox, Earthscan, London, NW1 OJH, UK,2005.5. R. Krieger, Handbook of Pesticide Toxicology, academic Press, 2000.

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Course Code & Title: 0240534 Boron Chemistry(Bor Kimyası) Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final TotalNation

alCredit

ECTSCredits

I 42 - - 70 - 46 82 240 3 7,5Language TurkishGrade of the Lecture College () Undergraduate () Graduate (X) Doctorate ()Compulsory / Elective ElectivePrerequisities

Course Objectives To learn Physical and Chemical Properties of elementel boron, The usage fields of boron compounds, Health andenvironmental effects of boron.

Developed ProgrammeAdequaciess of theLecture

PY.1, PY.5, PY.8, PY.12, PY.13

Learning Outcomes To learn the Boron ChemistryLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes XHomeworks X 10

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

History of BoronPhysical and Chemical Properties of elementel boronBoron Minerals,Commercial Boron Minerals, Obtian of Boron and Reactions,Borates(naturel borates, rafine borates)Borat sources in the worldBoron mining and industry in TurkeyBoron Compounds, Siklik boron compounds, Borax, Boric AcidSpeciality Boron Chemicals, Lithium-boron-phosphate compounds,Boron complexes, , Health and environmental effects of boronThe usage fields of boron compounds, use of glass and ceramic industriesin Manufacture of fireproofing metarials, in agricultural sector, in metal and metallurgicalindustry, in nuclear practices, in Energy storage and as fuel, etc.Health and environmental effects of boron.

Course Book & References1. H.A. Ali, et al; Contemporary Aspects of Boron: Chemistry and Biological Applications, Elsevier, 2005.2. J.D. Lee; Concise Inorganic Chemistry, Blackwell Science, Noida, 2002.3. T.B. Marder, Z. Lin; Contemporary Metal Boron Chemistry I, Springer-Verlag Berlin Heidelberg, 2008.

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Course Code & Title: 0240536 Advanced Inorganic Chemistry-II Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 61 30 35 72 240 3 8Language TurkishGrade of the Lecture College () Undergraduate () Graduate (X) Doctorate ()Compulsory / Elective ElectivePrerequisities

Course ObjectivesThe department graduate program, undergraduate-level fundamental concepts in the field of inorganicchemistry at a level that can not be given further rectify that would be useful for the opening of AdvancedInorganic Chemistry II course.

Developed ProgrammeAdequaciess of the Lecture PY.1, PY.2, PY.5, PY.12, PY.13

Learning Outcomes A more advanced level of knowledge In the field of inorganic chemistry that can not be at the undergraduatelevel

Learning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 30

QuizzesHomeworks

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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The reaction and structures of inorganic molecules.The reaction and structures of inorganic molecules.Solide state chemistry.Structure of solid complexesImperfections in optimum crystal structures.Conductivity in ionic solids.Acid-base chemistryHard and soft concepts in acids and bases.Inorganic chains, rings, cages and clusters and their structural properties.The chemistry of the halogens and the noble gases.Periodicity, first and second row anomaliesThe use of p orbitals in pi bondingThe use of d orbitals by nonmetals oeriodicAnomalies of the nonmetals and posttransiton metals.

Course Book & References

1 J.E. Huhey;Inorganic Chemistry, Harper Collins College Publishers, NewYork,1993.2. I.S. Butler, J.F. Harrod; Inorganic Chemistry, The Benjamin/Cummings Publishing company, Inc., 1 California,

1989.3. C. Housecroft, A. Sharpe; Inorganic Chemistry, Prentice Hall, 2001.4. G. Miessler, D.A. Tarr; Inorganic Chemistry, Prentice Hall, 1999.

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Course Code & Title: 0240538 Structural Inorganic Chemistry Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 61 30 35 72 240 3 8Language TurkishGrade of the Lecture College () Undergraduate () Graduate (X) Doctorate ()Compulsory / Elective ElectivePrerequisities

Course Objectives

Synthesis of inorganic materials chemistry examination, determination of structural properties, structuraldefects of inorganic crystals and the importance of these disorders. Proper determination of structures forsynthesis of inorganic materials to learn.

Developed ProgrammeAdequaciess of the Lecture PY.3, PY.5, PY.6, PY.12

Learning Outcomes A more advanced level of knowledge In the field of inorganic chemistry that can not be at the undergraduatelevel

Learning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes XHomeworks X 10

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

Description of chemical structures.Polymorphisim and phase diagrams.Structure, energy and chemical bonding in inorganic compounds.The effective size of atoms.Inorganic ionic compounds.Molecular structures of compounds of main group elements.Molecular structures of compounds of transition metals.The element structures of the nonmetals.Diamond like structures.Polyanionic and polycationic compounds.Sphere packings.Metal structures.The sphere packing principle for compounds.Physical properties of solids.

Course Book & Referencesl. U. Müller; Inorganic structural Chemistry, Wiley, 19972. B.N.Figgis; Comprehensive Coordination Chemistry, Pergamon, Oxford, 1987.3. C. Housecroft, A. Sharpe; Inorganic Chemistry, Prentice Hall, 2001.

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Course Code & Title: 0240540 Chemistry of Lanthanides and Actinides Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

I 42 - - 70 - 47 81 240 3 7,5Language TurkishGrade of the Lecture College () Undergraduate () Graduate (X) Doctorate ()Compulsory / Elective ElectivePrerequisities

Course Objectives

Technological progress is needed in parallel with well known properties of the materials found or thedevelopment of elements is possible. Nuclear technology is the most important developments in the productionof uranium in the actinide elements and compounds in terms of analysis has a very wide range of research areas.In recent years, high-tech equipment found in the lanthanide and actinide elements and compounds in the userarea and an analysis of those who work in this area will help.

Developed ProgrammeAdequaciess of the Lecture PY.1, PY.3, PY.5, PY.7, PY.8,PY.11

Learning Outcomes A more advanced level of knowledge In the field of inorganic chemistry that can not be at the undergraduatelevel

Learning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes XHomeworks X 10

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

General properties of lanthanides.Electronic configuration of lanthanidesMagnetic properties of lanthanides.Synthesis of lanthanides compounds.Coordination number and stereochemistry of lanthanides.Allotropic modifications.Investigation of lanthanides elements in details.Applications of lanthanides as high-tech materials.General properties of actinides. Electronic configurations of actinides.Bond formation in actinides compounds. Coordination numbers and stereochemistry.Solution chemistry of actinides.Investigation of actinides elements in details.Synthesis of actinides compounds.Chemistry of uranium.

Course Book & References1. S. Cotton; Lanthanide and Actinide Chemistry, John Wiley & Sons Ltd., England, 2006.2. Comprehensive Inorganic Chemistry-Vol.4, Vol.5 19753.Synthesis of Lanthanides and Actinides compounds ed.G.Meyer. Dordrecht; Kluwer Academic 1991.

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Course Code & Title: 0240542 Bioinorganic Chemistry Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

I 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course ObjectivesInorganic chemistry is one of the key objectives is to investigate the role of the biochemical mechanisms ofvarious metal and non-metals. Basic concepts and approaches in this area will be within the scope of thiscourse

Developed ProgrammeAdequaciess of the Lecture PY.1, PY.2, PY.5, PY.6

Learning Outcomes To learn about Bioinorganic ChemistryLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

Introduction to biochemistry.Introduction to biochemistry.The cell and its biochemical organisation.Metalloporphyrins.

Photosynthesis and respiration.Photosynthesis and respiration.Hemoglobin, myoglobin, and cytochromes.

Blue copper proteins.Function of metal ions in genetic regulation.Metal complexes as anticancer agents.Chemistry of biological nitrogen fixation.Esential elements and inorganic anion or cation chemistry for metabolism.Esential elements and inorganic anion or cation chemistry for metabolism.

Course Book & References

1.M. J. Kendrick et al; Metals in Biological Systems , Ellis Horwood Ltd. 1992.2.Martin N Hughes. The inorganic chemistry of Biological Process, John Willey and Sons, 1981.3.J.A. Cowan; Inorganic Biochemistry, Willey VCH, 1996.4.Frausto Da Silva, J. J. P; The Biological Chemistry of the Elements, Oxford University Press, 1991.

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Course Code & Title: 0240544 Chemistry of Metal ComplexEqubilirium Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

I 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisities

Course ObjectivesConditions of formation of metal complexes, stability constants of situations, crystallization of products, learnthe methods of analysis.

Developed ProgrammeAdequaciess of the Lecture PY.1, PY.2, PY.5, PY.7

Learning Outcomes To learn about Chemistry of Metal Complex EqubiliriumLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

Quizzes X 5Homeworks X 5

Projects X 10Term Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

General Characterization of Complex Equilibrium Systems.Complex Formation Equilibria and Equilibrium Constants.The effect of complex formation.on solubility. The effect of simple associate ion.

The formation of complex compound metal ion and a ligand.Alpha functiones. Beta functiones.The Determination of Stability Costants of complex compounds and Stoichiometries.Graphic methods. Digital methods. Experimental methods. Optic methods. Babko method.Mol ratios method.Continous variations method.Potentiometric methods. Bjerrum method.Complex Formation FunctionComplex Formation step.pH metric study of formation equilibria of metal complexes and protonation constants.Calculation free ligand concentration.The Investigation metal ammins.

Course Book & References1.Transition Metal Chemistry, Malcolm Gerloch, Edwin, C. Constable, VCH,Weinheim, 1994.2.Inorganic Chemistry, D.F. Shriver; P.W. Atkins, Oxford, 1999.3.Inorganic Chemistry, Gary L. Miessler, Donalt A. Tarr., Prentice Hall Int.,1999.

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Course Code & Title: 0240546 & Molecular Symmetry and Theory Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 61 30 35 72 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate ()Graduate

M.Sc. (X) Ph.D. ()Compulsory / Elective ElectivePrerequisitiesCourse Objectives Learning the molecular symmetry, understanding the elements of group theory

Developed ProgrammeAdequaciess of the Lecture

P.Q.3P.Q.6P.Q.7

Learning Outcomes To be able to solve flow and heat transfer problems using experimental methodsLearning Methods andTechniques Lecture, Question-Answer, Discussion, Presentation, Problem Solving, Simulation, Seminar, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 20

QuizzesHomeworks X 20

ProjectsTerm Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

Relationship between group theory and chemistrySymmetry and group theorySymmetry and group theoryMatrix representationsPoint groupsPoint groupsSymmetry groups of small moleculesGroup representations and character tablesGroup representations and character tablesMolecular vibrationsMolecular vibrationsElectronic structure of atoms and moleculesMolecular orbitalsMolecular orbitals

Course Book & References1. Introduction to symmetry and grup theory for chemists, A.M.Lesk, Kluwer Academic, 20042. Grup theory with applications in chemical physics, P.W.M.Jacobs, Chambridge Univ.Press, 20053. Group theory in physics, J.F.Cornwell, Academic Pres, 1984

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Course Code & Title: 0240548 Quantum Theory of Atoms andMolecules-II Name of the Department / Programme: Chemistry MSB

SemesterSpring

Teaching Methods Credits

Theory Recite Lab. Project/AreaStudy/Homework Quiz Mid

Term Final Total NationalCredit

ECTSCredits

II 42 - - 57 16 50 75 240 3 8Language Turkish

Grade of the Lecture College () Undergraduate () GraduateM.Sc. (X) Ph.D. ()

Compulsory / Elective ElectivePrerequisities -Course Objectives To applicate to atoms and molecules of quantum theory.Developed ProgrammeAdequaciess of the Lecture PY.1, PY.2, PY.5, PY.6

Learning Outcomes 1- Solution by theoretical methods of atomic and moleculer structure.Learning Methods andTechniques Lecture, Question-Answer, Discussion, Problem Solving, Homework, Project

Assessment Criteria

(X) mark Percent (%)Midterm Exams X 25

Quizzes 5 5Homeworks X 10

ProjectsTerm Paper

Laboratory Work…

Final Exam X 60Week Subjects

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1011121314

Motion in central field.Angular momentum and spin.Summation of angular momentums.Approximation methods in quantum mechanics.Variation methods.Methods of lineer combination of atomic orbitals.WKB approximation method.MidtermTime independent perturbation methods.Applications to atoms and molecules of perturbation methods.Quantum mechanics of atoms.Quantum mechanics of diatomic molecules.Polyatomic molecules.Moleculer symmetry.

Course Book & References1. T L.D.Landau and E.M. Lifshitz, ‘Quantum Mechanics’, Third edition , Pergamon Press 1994.2. W.Greiner,’Quantum Mechanics:An Introduction’, Springer-Verlag,1993.3. B.H.Bransden, C.J.Joachain, ‘Atom ve molekül fiziği’, Samsun-1989.