Course Description |
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Course Name |
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Structure of Inorganic Compounds II |
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Course Code |
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KM-524 |
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Course Type |
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Optional |
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Level of Course |
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Second Cycle |
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Year of Study |
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1 |
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Course Semester |
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Fall (16 Weeks) |
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ECTS |
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6 |
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Name of Lecturer(s) |
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Prof.Dr. BİLGEHAN GÜZEL |
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Learning Outcomes of the Course |
: |
Evaluate IR, NMR and Mass spectra and have knowledge about chromatographic methods To light the structure by utilizing all three devices spectra Have knowledge about chromatographic methods
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Mode of Delivery |
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Face-to-Face |
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Prerequisites and Co-Prerequisites |
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None |
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Recommended Optional Programme Components |
: |
None |
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Aim(s) of Course |
: |
To teach IR, NMR, mass spectroscopic techniques such as use of inorganic compounds and chromatographic methods in lighting. |
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Course Contents |
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Interpretation of IR, NMR, Mass spectrums which are belong to inorganic compounds |
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Language of Instruction |
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Turkish |
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Work Place |
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Classroom |
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Course Outline /Schedule (Weekly) Planned Learning Activities |
| Week | Subject | Student's Preliminary Work | Learning Activities and Teaching Methods |
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1 |
Molecular luminesence spectrometry |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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2 |
Infrared Spectrometry; IR device parts |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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3 |
Infrared Spectrum, structure interpretation and general rules |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
|
4 |
Nuclear magnetic resonance spectroscopy |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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5 |
NMR spectrometries |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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6 |
Molecular mass spectrometry |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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7 |
Mass spectrometries and introducing parts of device |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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8 |
Midterm Exam |
Related books |
Written Exam |
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9 |
Interpretation of mass spectra |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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10 |
Introduction to chromatographic seperation |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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11 |
Gas chromatography I |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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12 |
Gas chromatography II |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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13 |
High performance liquid chromatography |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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14 |
Super critic liquid chromatography |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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15 |
Electrophoresis |
Related books, spectrum libraries on internet and literature |
Presentation and spectra interpretation |
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16/17 |
Final Exam |
Related books |
Written Exam |
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Required Course Resources |
| Resource Type | Resource Name |
| Recommended Course Material(s) |
3. Silverstein, R.M., Bassler, G.C., Morrill, T.C (1991). Spectrometric Identification of Organic Compounds, fifth edition, John Wiley&Sons Inc., New York.
1. Skoog, D.A, Holler, F.J., Nieman, T.A.; Instrumental Analysis
2. Robinson, J.W, Frame, E.M.S, Frame II, G.M (2005). Undergraduate Instrumental Analysis, Sixth edition, Marcel Dekker, New York.
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| Required Course Material(s) | |
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| Contribution of the Course to Key Learning Outcomes |
| # | Key Learning Outcome | Contribution* |
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1 |
Have the sufficient chemistry knowledge by doing research in chemistry; evaluate and interpret the findings. |
4 |
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2 |
Have comrehensive knowledge about the technical and methodological issues in chemistry. |
4 |
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3 |
Have the awareness of the innovative changes in the field and gain the ability to analyze, learn and apply them. |
4 |
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4 |
Design institutional modelling and experiential research; have the problem-solving ability. |
2 |
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5 |
Keep up with the recent scientific developments in the field. |
2 |
|
6 |
Plan and conduct a scientific research. |
4 |
|
7 |
Have the ability to adapt to new conditions and solve the problems emerged. |
3 |
|
8 |
Obtain the latest technological developments in the field. |
2 |
|
9 |
Take the responsibility to work both individually and in a team. |
4 |
|
10 |
Follow the new methods in the field and solve the complex problems. |
3 |
|
11 |
Present the findings of the research study in an efficient way both in oral and written form; have a scientific approach to environmental issues. |
5 |
|
12 |
Oversee the scientific and ethical values during the process of data collection and interpretation of the findings. |
4 |
|
13 |
Propose scientific solutions about the environmental problems and create awareness in the society. |
3 |
| * Contribution levels are between 0 (not) and 5 (maximum). |
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