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COURSE INFORMATION
Course CodeCourse TitleL+P HourSemesterECTS
KIM 510SYMMETRY AND GROUP THEORY3 + 02nd Semester7,5

COURSE DESCRIPTION
Course Level Master's Degree
Course Type Elective
Course Objective To provide information about moleküler symmetry and group theory, especially applications of the symmetry and group theory and molecular energy levels and determine the transition of the levels.
Course Content Symmetry operations and symmetry elements, point groups and point group determination, high symmetry point groups, chiral molecules, character tables, mulliken symbols, symmetry of atomic orbitals, spectroscopic selection rules, reduction process, applications; polarity, kiralite, NMR, vibration modes.
Prerequisites No the prerequisite of lesson.
Corequisite No the corequisite of lesson.
Mode of Delivery Face to Face

COURSE LEARNING OUTCOMES
1It gives basic information about molecular symmetry and group theory.
2Detects point groups.
3Learns character charts and their uses.

COURSE'S CONTRIBUTION TO PROGRAM
PO 01PO 02PO 03PO 04PO 05PO 06PO 07PO 08PO 09PO 10PO 11
LO 00154 33      
LO 0025  44      
LO 003    44     
Sub Total104 7114     
Contribution31024100000

ECTS ALLOCATED BASED ON STUDENT WORKLOAD BY THE COURSE DESCRIPTION
ActivitiesQuantityDuration (Hour)Total Work Load (Hour)
Course Duration (14 weeks/theoric+practical)14342
Hours for off-the-classroom study (Pre-study, practice)14456
Assignments32163
Mid-terms11010
Final examination12424
Total Work Load

ECTS Credit of the Course






195

7,5
COURSE DETAILS
 Select Year   


 Course TermNoInstructors
Details 2014-2015 Fall1EMİN ERDEM


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Course Details
Course Code Course Title L+P Hour Course Code Language Of Instruction Course Semester
KIM 510 SYMMETRY AND GROUP THEORY 3 + 0 1 Turkish 2014-2015 Fall
Course Coordinator  E-Mail  Phone Number  Course Location Attendance
Prof. Dr. EMİN ERDEM eerdem@pau.edu.tr FEN A0003 %60
Goals To provide information about moleküler symmetry and group theory, especially applications of the symmetry and group theory and molecular energy levels and determine the transition of the levels.
Content Symmetry operations and symmetry elements, point groups and point group determination, high symmetry point groups, chiral molecules, character tables, mulliken symbols, symmetry of atomic orbitals, spectroscopic selection rules, reduction process, applications; polarity, kiralite, NMR, vibration modes.
Topics
Materials
Materials are not specified.
Resources
Course Assessment
Assesment MethodsPercentage (%)Assesment Methods Title
Final Exam50Final Exam
Midterm Exam50Midterm Exam
L+P: Lecture and Practice
PQ: Program Learning Outcomes
LO: Course Learning Outcomes