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BIOL 3320 Vinita Hajeri | |||||
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BIOL 3320 Vinita Hajeri | |||||
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Grades: 625
Median GPA: A-
Mean GPA: 3.382
3.1
Professor rating
2.9
Difficulty
16
Ratings given
44%
Would take again
Applied Genetics
BIOL 3320
School of Natural Sciences and Mathematics
Genetic model organisms such as the flatworm (Planaria), fruit fly (Drosophila melanogaster), nematode (Caenorhabditis elegans), and the zebrafish (Danio rerio) are the cornerstones of biomedical research. These organisms known for their simplicity of structure and gene similarity to humans have been seminal in advancing our understanding of many biological processes and human diseases. In this inquiry-based course, learners will apply basic principles of genetic model systems, transmission genetics, and molecular genetics to investigate important biological concepts such as embryonic cell division, stem cells and regeneration, Mendelian inheritance, gene mutations, and phenotypes. Throughout this exploratory course, students will gain practical hands-on experience conducting basic culturing, genetic manipulation, and phenotypic analysis necessary to utilize genetic model organisms in their investigation. Learners will engage in class discussions and activities to draw connections between the concepts learned in class and their real-time application(s) in biomedical sciences. To cover the costs of live organisms and consumables used in class projects, students will pay a supply fee of up to $50 (determined per semester) to the bookstore. 3 credit hours.
Prerequisites: (BIOL 2281 or equivalent) and BIOL 2311 and (BIOL 2111 or equivalent) and BIOL 2312 and (BIOL 2112 or equivalent).
Offering Frequency: Each semester
Grades: 428
Median GPA: A-
Mean GPA: 3.278
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Grades: 625
Median GPA: A-
Mean GPA: 3.382
3.1
Professor rating
2.9
Difficulty
16
Ratings given
44%
Would take again
Applied Genetics
BIOL 3320
School of Natural Sciences and Mathematics
Genetic model organisms such as the flatworm (Planaria), fruit fly (Drosophila melanogaster), nematode (Caenorhabditis elegans), and the zebrafish (Danio rerio) are the cornerstones of biomedical research. These organisms known for their simplicity of structure and gene similarity to humans have been seminal in advancing our understanding of many biological processes and human diseases. In this inquiry-based course, learners will apply basic principles of genetic model systems, transmission genetics, and molecular genetics to investigate important biological concepts such as embryonic cell division, stem cells and regeneration, Mendelian inheritance, gene mutations, and phenotypes. Throughout this exploratory course, students will gain practical hands-on experience conducting basic culturing, genetic manipulation, and phenotypic analysis necessary to utilize genetic model organisms in their investigation. Learners will engage in class discussions and activities to draw connections between the concepts learned in class and their real-time application(s) in biomedical sciences. To cover the costs of live organisms and consumables used in class projects, students will pay a supply fee of up to $50 (determined per semester) to the bookstore. 3 credit hours.
Prerequisites: (BIOL 2281 or equivalent) and BIOL 2311 and (BIOL 2111 or equivalent) and BIOL 2312 and (BIOL 2112 or equivalent).
Offering Frequency: Each semester
Grades: 428
Median GPA: A-
Mean GPA: 3.278
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