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Description of Individual Course UnitsCourse Unit Code | Course Unit Title | Type of Course Unit | Year of Study | Semester | Number of ECTS Credits | ULVS1042013274 | GENETICS | Compulsory | 1 | 2 | 3 |
| Level of Course Unit | Short Cycle | Objectives of the Course | The aim of the course is
• to teach basic genetic | Name of Lecturer(s) | Öğr.GÖR. Şükran ÖZTÜRK | Learning Outcomes | 1 | The basic concepts of genetics, Mendelian genetics, population genetics, mitosis and meiosis, the chromosomes will have information about the structure. |
| Mode of Delivery | Formal Education | Prerequisites and co-requisities | Yok | Recommended Optional Programme Components | Week 1 The Basic Principles of Genetics, Mendelian Genetics 1
Week 2 Cytological Basis of Heredity, Inheritance Dihibrit 1
Week 3 Dependence of Gene, Chromosome Maps, Multiple Alleles 1
Week 4 Blood Groups Inheritance, Polygenic Inheritance 1
Week 5 Sex Linked Inheritance, Determination of Sex 1
Week 6 Chromosomal Aberrations, Principles of Mendelian Segregation 1
Week 7 Population Genetics, Genetic Testing of Hypotheses 1
Week 8 Mid-Term Exam
Week 9 Hardy-Weinberg Law, The Population Genetic Equilibrium 1
Week 10 Effects Of Populations on Genetic Differentiation 1
Week 11 Population Evaluations and Averages, Kinship And Inbreeding 1
Week 12 Identification of Genetic Material, Protein Synthesis, Genetic Code 1
Week 13 Molecular Structure of Genes, Gene Set Activities 1
Week 14 Recombinant DNA Technology, Genetic Engineering 1
Week 15 Recombinant DNA Technology, Genetic Engineering 1
Week 16 Final Exam 1
| Course Contents | The basic principles of genetics, mendelian genetics, cytological basis of heredity, dihybrid inheritance, gene loyalty, chromosome maps, multiple alleles, inheritance of blood groups, polygenic inheritance, sex linked inheritance, gender identification, chromosomal aberrations, mendelian principles, population genetics, genetic testing of hypotheses of hardy-weinberg law, the population genetic equilibrium, effects of population genetic differentiation, population evaluations and averages, kinship and inbreeding, genetic material identification, protein synthesis, genetic code,, molecular structure of genes, gene set activities, recombinant dna technology | Weekly Detailed Course Contents | |
1 | The Basic Principles of Genetics, Mendelian Genetics
| | | 2 | Cytological Basis of Heredity, Inheritance Dihibrit
| | | 3 | Dependence of Gene, Chromosome Maps, Multiple Alleles
| | | 4 | Blood Groups Inheritance, Polygenic Inheritance
| | | 5 | Sex Linked Inheritance, Determination of Sex
| | | 6 | Chromosomal Aberrations, Principles of Mendelian Segregation
| | | 7 | Population Genetics, Genetic Testing of Hypotheses
| | | 8 | Mid-Term Exam
| | | 9 | Hardy-Weinberg Law, The Population Genetic Equilibrium
| | | 10 | Effects Of Populations on Genetic Differentiation
| | | 11 | Population Evaluations and Averages, Kinship And Inbreeding
| | | 12 | Identification of Genetic Material, Protein Synthesis, Genetic Code
| | | 13 | Molecular Structure of Genes, Gene Set Activities
| | | 14 | Recombinant DNA Technology, Genetic Engineering
| | | 15 | Recombinant DNA Technology, Genetic Engineering
| | | 16 | Final Exam
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| Recommended or Required Reading | Demirsoy, A. 1999; Kalıtım ve Evrim, Ankara | Planned Learning Activities and Teaching Methods | | Assessment Methods and Criteria | |
SUM | 0 | |
SUM | 0 | Yarıyıl (Yıl) İçi Etkinlikleri | 40 | Yarıyıl (Yıl) Sonu Etkinlikleri | 60 | SUM | 100 |
| Language of Instruction | | Work Placement(s) | Yok |
| Workload Calculation | |
Midterm Examination | 1 | 2 | 2 | Final Examination | 1 | 2 | 2 | Attending Lectures | 14 | 3 | 42 | Self Study | 14 | 0.5 | 7 | Individual Study for Homework Problems | 1 | 8 | 8 | Individual Study for Mid term Examination | 1 | 9 | 9 | Individual Study for Final Examination | 1 | 9 | 9 | |
Contribution of Learning Outcomes to Programme Outcomes | | * Contribution Level : 1 Very low 2 Low 3 Medium 4 High 5 Very High |
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