Course unit title Level of course unit Course unit code Type of course unit Semester of course unit Local credit ECTS credit Syllabus
GENETICS AND ENVIRONMENT First cycle VZT 545 1 4.00 4.00 Print
   
Description of course unit
Prerequisites and course requisities NO
Language of instruction TURKISH
Coordinator PROF. DR. BİLAL AKYÜZ
Lecturer(s) DOÇ. DR. BİLAL AKYÜZ, YRD. DOÇ. DR KORHAN ARSLAN
Teaching assitant(s) ARŞ. GÖR. ESMA GAMZE AKSEL, ARŞ. GÖR FADİME ÖZDEMİR
Mode of delivery Homework, presentation and lecturing
Course objective To inform students about genoype and eniviroment
Course description GENOTYPINE AND THEIR ROLE OF ENVIRONMENT FROM PHENOTYPE

Course contents
1 Genetic history
2 What is genetics?
3 Structure of DNA and RNA
4 Gene, locus, chromosome, allele
5 Mutations
6 Gene mutations
7 Chromosome mutations
8 Exam
9 Effect of environmental factors on the genome
10 Epigenetic
11 Modifications at the chromatin level
12 Noncovalent Histone Modifications
13 Modifications to DNA level
14 RNA interferance, Terapötik siRNAs
15 Effect of environmental factors on epigenetic mechanisms
16 Final exam
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Learning outcomes of the course unit
1 What is the Genetis?
2 The Factors of affecting to genotype
3 THE ROLE OF GENETIC IN CHARACTERS
4 THE ROLE OF ENVIROMENT IN CHARACTERS
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*Contribution level of the course unit to the key learning outcomes
1 have advanced theoretical and practical knowledge in the field of natural sciences that builds upon their secondary education and is supported by textbooks, course materials and other scientific resources presenting up-to-date information.
2 Make use of theoretical and practical knowledge acquired in the field of mathematics and natural science and chemistry.
3 The ability to have scientific and ethical values.
4 To solve unexpected problems in related applications of chemistry field.
5 The ability to plan and manage activities required for professional development.
6 Critically evaluate the accuracy and relevancy of knowledge and skills acquired; to define andassess learning needs; and to direct learning processes.
7 The ability to offer solutions to problems.
8 The ability of sharing their opinions or solutionoffers to the problems to specialists or non-specialists, supporting these with qualitative and quantitative data.
9 The ability to have enough competency in a foreign language to follow the literature in chemistry and communicate with their pers.
10 The ability to use computer software and communication and information technologies required in the field of chemistry competently and use theseto access scientific resources
11 The ability to comply with social, scientific and ethical values in the process of collecting, interpreting and using data and reporting the results in the field of chemistry
12 Awareness of the environmental protection and work/laboratory safety.
13 Have the skills towork in interdisciplinary subjects
14 To have skills to use modern devices required for the practices.
15 To have competency in keeping up with global innovations and developments in chemistry and in related fields.
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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) 5 5 25
Study hours out of classroom (study before and after the class) 4 2 8
Homework 4 4 16
Presentation / seminar 0 0 0
Quiz 0 0 0
Preparation for midterm exams 1 5 5
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 4 4
Final exam 1 1 1
Research 5 8 40
Total work load     100
ECTS     4.00

Assessment methods and criteria
Evaluation during semester Quantity Percentage
Midterm exam 1 40
Quiz 0 0
Homework 0 0
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 NO
Additional references THE CELL

Files related to the course unit