Course unit title Level of course unit Course unit code Type of course unit Semester of course unit Local credit ECTS credit Syllabus
IR SPECTROSCOPY Second cycle EAK 515 1 8.00 8.00 Print
   
Description of course unit
Prerequisites and course requisities No required
Language of instruction Turkish
Coordinator Prof.Dr. İbrahim Narin
Lecturer(s) Prof.Dr. İbrahim Narin
Teaching assitant(s) No required
Mode of delivery The emphasis of this course will be on the theoretical principles of IR spectroscopy, sample preparation and recorded to IR spectrum. . Then each student will description no less than five different IR spectrum
Course objective The objective of this course is to teach to student IR spectroscopy, application area and sample preparation, estimation of molecular structure etc.
Course description Theory of IR spectroscopy, IR spectrophotometer and its properties, sources in IR spectroscopy, applications of IR spectroscopy, evaluation and recorded of IR spectra, application to organic structure analysis of IR spectroscopy

Course contents
1 Theory of IR spectroscopy
2 Sources in IR spectroscopy
3 IR spectrometer
4 Application of IR and preparation of sample
5 Qualify analysis with IR spectroscopy
6 Frequency of molecule groups
7 EXAMINATION
8 Estimation of IR Spectrum
9 Preparation of research project
10 Preparation of research project
11 Quantitative analysis with IR spectroscopy
12 Project presentation
13 Project presentation
14 Estimation of IR Spectrum
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16
17
18
19
20

Learning outcomes of the course unit
1 Interpretation of IR spectra
2 The basic of IR spectroscopy
3 Application of IR spectroscopy
4 Learning of the use of IR spectrometer
5 Evaluation of IR spectra
6 Problems encountered in IR spectrometry
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8
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10

*Contribution level of the course unit to the key learning outcomes
1
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5
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45
Number of stars refer to level of contribution from 1 (the least) to 5 (the most)

Planned learning activities, teaching methods and ECTS work load
  Quantity Time (hour) Quantity*Time (hour)
Lectures (face to face teaching) 10 3 30
Study hours out of classroom (study before and after the class) 8 6 48
Homework 3 15 45
Presentation / seminar 2 15 30
Quiz 0 0 0
Preparation for midterm exams 1 18 18
Midterm exams 1 1 1
Project (term paper) 0 0 0
Laboratuar 0 0 0
Field study 0 0 0
Preparation for final exam 1 25 25
Final exam 1 1 1
Research 0 0 0
Total work load     198
ECTS     8.00

Assessment methods and criteria
Evaluation during semester Quantity Percentage
Midterm exam 1 20
Quiz 0 0
Homework 1 20
Semester total   40
Contribution ratio of evaluation during semester to success   40
Contribution ratio of final exam to success   60
General total   100

Recommended and required reading
Textbook Erdik E., 1993, Organik Kimyada Spektoskopik Yöntemler, Gazi Buro Kitabevi, Ankara
Additional references Erdik E., 1993, Organik Kimyada Spektoskopik Yöntemler, Gazi Buro Kitabevi, Ankara

Files related to the course unit