Course Information


Course Information
Course Title Code Semester L+U Hour Credits ECTS
GENETIC POLYMORPHISM 34336047 2 + 0 2.0 6.0

Prerequisites None

Language of Instruction Turkish
Course Level Graduate Degree
Course Type Compulsory
Mode of delivery
Course Coordinator
Instructors Halit Sinan SÜZEN
Assistants
Goals Comprehension of the general organization of the human genome, understanding of genes and genetic code and gene expression, understanding of DNA polymorphisms in toxicology
Course Content Human genome, genes and gene expression, DNA polymorphisms
Learning Outcomes 1) He/She creates functional interactions with relevant individuals and organizations by using strategic decision-making processes about the solutions of the problems related to the field of his/her
2) He/She complies with ethical research.
3) He/She produces solutions for social, scientific and ethical issues in business life and his/her field. Also he/she supports the development of these values at the national and international level

Weekly Topics (Content)
Week Topics Teaching and Learning Methods and Techniques Study Materials
1. Week Genetic polymorphism concept Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Brain Based Learning
Homework Presentation (Including Preparation Time) Activity (Web Search, Library Work, Trip, Observation, Interview etc.)
2. Week General characteristics of human genome Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Scenario Based Learning
Homework Presentation (Including Preparation Time) Report (Including Preparation and presentation Time)
3. Week Gene expression Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Brain Based Learning
Homework Presentation (Including Preparation Time) Report (Including Preparation and presentation Time)
4. Week Translational, post-translational and protein structure Lecture; Question Answer; Discussion
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Scenario Based Learning
Homework Presentation (Including Preparation Time) Activity (Web Search, Library Work, Trip, Observation, Interview etc.)
5. Week Genetic code Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Scenario Based Learning
Homework Presentation (Including Preparation Time) Report (Including Preparation and presentation Time)
6. Week DNA polymorphism Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Scenario Based Learning
Homework Presentation (Including Preparation Time) Report (Including Preparation and presentation Time)
7. Week Classification of DNA polymorphisms Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Brain Based Learning
Homework Presentation (Including Preparation Time) Report (Including Preparation and presentation Time)
8. Week Methods of detecting DNA polymorphisms Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Scenario Based Learning
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
9. Week Polymerase chain reaction Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Scenario Based Learning
Homework Presentation (Including Preparation Time) Report (Including Preparation and presentation Time)
10. Week Midterm exam Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Scenario Based Learning
Homework Presentation (Including Preparation Time) Activity (Web Search, Library Work, Trip, Observation, Interview etc.)
11. Week Enzymes metabolizing toxic substances Lecture; Question Answer; Discussion
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Scenario Based Learning
Homework Presentation (Including Preparation Time) Activity (Web Search, Library Work, Trip, Observation, Interview etc.)
12. Week Polymorphisms in metabolizing enzymes of toxic substances Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Homework Presentation (Including Preparation Time) Report (Including Preparation and presentation Time)
13. Week The importance of DNA polymorphisms in toxicology Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Scenario Based Learning
Homework Presentation (Including Preparation Time) Activity (Web Search, Library Work, Trip, Observation, Interview etc.)
14. Week Homework presentations Lecture; Question Answer; Problem Solving
Brainstorming; Opinion Pool; Speech Loop
Problem Based Learning; Storyline; Scenario Based Learning
Homework Presentation (Including Preparation Time) Activity (Web Search, Library Work, Trip, Observation, Interview etc.)

Sources Used in This Course
Recommended Sources
An Introduction to Genetic Analysis
Application of genomics to toxicology research
Casarett & Doull's Toxicology: The Basic Science of Poisons

Relations with Education Attainment Program Course Competencies
Program RequirementsContribution LevelDK1DK2DK3
PY15000
PY25000
PY35000
PY45000

*DK = Course's Contrubution.
0 1 2 3 4 5
Level of contribution None Very Low Low Fair High Very High
.

ECTS credits and course workload
Event Quantity Duration (Hour) Total Workload (Hour)
Course Duration (Total weeks*Hours per week) 14 2
Work Hour outside Classroom (Preparation, strengthening) 14 2
Homework 12 2
Presentation (Including Preparation Time) 14 2
Practice (Teaching Practice, Music/Musical Instrument Practice , Statistics, Laboratory, Field Work, Clinic and Polyclinic Practice) 2 2
Midterm Exam 1 2
Time to prepare for Midterm Exam 8 3
Final Exam 1 2
Time to prepare for Final Exam 14 2
2 2
Total Workload
Total Workload / 30 (s)
ECTS Credit of the Course
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Course Information