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Constantine Kapetanakis; Samantha Conflitti; Sarah Abdo; L. Kate Wright; Dina L. Newman – Biochemistry and Molecular Biology Education, 2024
Analogies are used to make abstract topics meaningful and more easily comprehensible to learners. Incorporating simple analogies into STEM classrooms is a fairly common practice, but the analogies are typically generated and explained by the instructor for the learners. We hypothesize that challenging learners to create complex, extended analogies…
Descriptors: Critical Thinking, Logical Thinking, Skill Development, Thinking Skills
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Good, Deborah J. – Biochemistry and Molecular Biology Education, 2020
This article describes the development and assessment of a Nutritional Genomics course, designed to be held in a regular classroom during normal class periods, with few extra costs to the students or the department. The course was run as an upper-level undergraduate and lower-level graduate student course. Student taking the course spent 11 weeks…
Descriptors: Science Instruction, College Students, College Science, Student Research
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Abreu, Paula Alvarez; Carvalho, Karina de Lima; Rabelo, Vitor Won-Held; Castro, Helena Carla – Biochemistry and Molecular Biology Education, 2019
Computational techniques have great potential to improve the teaching-learning. In this work, we used a computational strategy to visualize three-dimensional (3D) structures of proteins and DNA and help the student to comprehend biochemistry concepts such as protein structure and function, substrate, and inhibitors as well as DNA structural…
Descriptors: Teaching Methods, Visualization, Scientific Concepts, Genetics
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Chrispeels, Hanya E.; Chapman, Jordan M.; Gibson, Carole L.; Muday, Gloria K. – CBE - Life Sciences Education, 2019
We analyzed effects of peer teaching on non-science major undergraduates' knowledge, perceptions, and opinions about genetically modified (GM) crops and their use in agriculture. Undergraduates enrolled in an introductory nonmajors biology course participated in a service-learning program (SLP) in which they acted as cross-age peer teachers to…
Descriptors: Peer Teaching, Nonmajors, Undergraduate Students, Student Attitudes
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Todd, Amber; Romine, William L. – International Journal of Science Education, 2016
Building upon a methodologically diverse research foundation, we adapted and validated the "Learning Progression-based Assessment of Modern Genetics" (LPA-MG) for college students' knowledge of the domain. Toward collecting valid learning progression-based measures in a college majors context, we redeveloped and content validated a…
Descriptors: Genetics, College Science, College Students, Student Evaluation
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Selvarajah, Geeta; Selvarajah, Susila – Biochemistry and Molecular Biology Education, 2016
Students frequently expressed difficulty in understanding the molecular mechanisms involved in chromosomal recombination. Therefore, we explored alternative methods for presenting the two concepts of the double-strand break model: Holliday junction and heteroduplex formation, and Holliday junction resolution. In addition to a lecture and…
Descriptors: Genetics, Molecular Structure, Scientific Concepts, Models
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Potter, Lisa M.; Bissonnette, Sarah A.; Knight, Jonathan D.; Tanner, Kimberly D. – CBE - Life Sciences Education, 2017
The aspiration of biology education is to give students tools to apply knowledge learned in the classroom to everyday life. Genetic modification is a real-world biological concept that relies on an in-depth understanding of the molecular behavior of DNA and proteins. This study investigated undergraduate biology students' conceptions of…
Descriptors: Biology, Science Education, Scientific Concepts, Genetics
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Perez, Kathryn E.; Hiatt, Anna; Davis, Gregory K.; Trujillo, Caleb; French, Donald P.; Terry, Mark; Price, Rebecca M. – CBE - Life Sciences Education, 2013
The American Association for the Advancement of Science 2011 report "Vision and Change in Undergraduate Biology Education" encourages the teaching of developmental biology as an important part of teaching evolution. Recently, however, we found that biology majors often lack the developmental knowledge needed to understand evolutionary…
Descriptors: Biology, Evolution, Development, Genetics
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Shuster, Michele – CBE - Life Sciences Education, 2011
In recognition of the entry into the era of personalized medicine, a new set of genetics and genomics competencies for nurses was introduced in 2006. Since then, there have been a number of reports about the critical importance of these competencies for nursing practices and about the challenges of addressing these competencies in the preservice…
Descriptors: Nursing Education, Genetics, Microbiology, Science Instruction
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Wightman, Bruce; Hark, Amy T. – Biochemistry and Molecular Biology Education, 2012
The development of fields such as bioinformatics and genomics has created new challenges and opportunities for undergraduate biology curricula. Students preparing for careers in science, technology, and medicine need more intensive study of bioinformatics and more sophisticated training in the mathematics on which this field is based. In this…
Descriptors: Teaching Methods, Curriculum Design, Biology, Mathematics Skills
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Harvey, Pamela A.; Wall, Christopher; Luckey, Stephen W.; Langer, Stephen; Leinwand, Leslie A. – CBE - Life Sciences Education, 2014
Undergraduate science education curricula are traditionally composed of didactic instruction with a small number of laboratory courses that provide introductory training in research techniques. Research on learning methodologies suggests this model is relatively ineffective, whereas participation in independent research projects promotes enhanced…
Descriptors: Undergraduate Students, Undergraduate Study, Student Research, College Science
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Li, Yan – International Education Studies, 2009
Genetics is the important specialized course of bioscience and whether exordium is taught wonderfully or not plays the important and pivotal role. Well teaching exordium class may stimulate students, deep interest and intense desire for knowledge in this class. This text, according to teaching experience and taste, puts forward several teaching…
Descriptors: Genetics, Student Interests, Science Instruction, Biology
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Knight, Jennifer K.; Smith, Michelle K. – CBE - Life Sciences Education, 2010
Introductory biology courses are frequently offered separately to biology majors and nonbiology majors, with the assumption that the two groups of students are different enough to merit different courses. To assess the evidence behind this assumption, we compared students in two different genetics classes at the University of Colorado-Boulder, one…
Descriptors: Nonmajors, Majors (Students), Fundamental Concepts, Genetics
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Prokop, Pavol; Leskova, Andrea; Kubiatko, Milan; Diran, Carla – International Journal of Science Education, 2007
This study examined university students' knowledge of and attitudes (n = 378) toward biotechnology in Slovakia, a conservative country where the distribution of genetically engineered products are banned by law. We found a significant positive correlation between attitudes and the level of knowledge; however, although students enrolled in biology…
Descriptors: Foreign Countries, Teaching Methods, Knowledge Level, Biology
Koch, Helmut – 1986
Student knowledge in a subject area prior to and after instruction has traditionally been assessed by administering a pre- and post-test, usually multiple choice, though recent studies criticize the use of even the best-constructed multiple choice tests. This study assessed college freshmen's knowledge before and after a laboratory experience in…
Descriptors: Cognitive Processes, College Science, Concept Formation, Genetics