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Course Unit Title Course Unit Code Type of Course Unit Level of Course Unit Year of Study Semester ECTS Credits
Crystallography JLJ217 Elective Bachelor's degree 2 Fall 4

Name of Lecturer(s)

Prof. Dr. Nezihi KÖPRÜBAŞI

Learning Outcomes of the Course Unit

1) Comprehend crystallographic literature
2) Showing how the internal structure effects external structure
3) Calculate crystallographic parameters
4) Comprehend which space group crystals belong to
5) Investigating the relationship between crystal chemistry and physics

Program Competencies-Learning Outcomes Relation

  Program Competencies
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18
Learning Outcomes
1 High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation
2 High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation
3 High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation
4 High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation
5 High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation

Mode of Delivery

Face to Face

Prerequisites and Co-Requisites

None

Recommended Optional Programme Components

No

Course Contents

This course covers crystals, crystal systems and lattice structures, in the crystal symmetry elements and symmetry laws, the crystal parameters and indices, Crystal and stereographic projection, isometric system, Tetragonal system, Ortorombik system Hexagonal system Trigonal system, monoclinic system, Triklinik system, the optical properties of crystals and the behavior of , which determine the crystal structure and chemical methods (XRF, XRD, TEM, NMR, IR, ICP-MS), crystallographic characteristics of minerals forming rocks

Weekly Schedule

1) Introduction and definitions
2) Crystal systems and lattice structures
3) Crystal symmetry elements and symmetry in the laws
4) Crystal parameters and indices
5) Stereographic projection of crystal
6) Isometric system
7) Midterm
8) Tetragonal system
9) orthohombic system
10) hexagonal system
11) trigonal system
12) monoclinic system
13) triclinic system
14) Optical properties and behavior of crystals
15) The crystal structure determination and chemical methods (XRF, XRD, TEM, NMR, IR, ICP-MS)
16) final exam

Recommended or Required Reading

Planned Learning Activities and Teaching Methods



Assessment Methods and Criteria

Contribution of Midterm Examination to Course Grade

20%

Contribution of Final Examination to Course Grade

80%

Total

100%

Language of Instruction

Turkish

Work Placement(s)

Not Required