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Showing all 12 results Save | Export
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Zhao, FangFang; Schuchardt, Anita – CBE - Life Sciences Education, 2019
Prior studies have shown that students have difficulty understanding the role of mutation in evolution and genetics. However, little is known about unifying themes underlying students' difficulty with mutation. In this study, we examined students' written explanations about mutation from a cognitive science perspective. According to one cognitive…
Descriptors: Student Motivation, Educational Change, Teaching Methods, Genetics
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Yang, Chi; Jen, Chun-Hui; Chang, Chun-Yen; Yeh, Ting-Kuang – Educational Technology & Society, 2018
This study aimed to examine the relative effectiveness of using an animation versus static pictures in terms of supporting the learning of genetics. To provide a methodologically sound comparison, the two sessions were constructed to be equivalent and were designed based on principles provided by the cognitive theory of multimedia learning and the…
Descriptors: Genetics, Teaching Methods, Science Instruction, Scientific Concepts
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Ha, Minsu; Nehm, Ross H. – Science & Education, 2014
Although historical changes in scientific ideas sometimes display striking similarities with students' conceptual progressions, some scholars have cautioned that such similarities lack meaningful commonalities. In the history of evolution, while Darwin and his contemporaries often used natural selection to explain evolutionary trait gain or…
Descriptors: Genetics, Evolution, Scientific Concepts, Science History
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Heddy, Benjamin C.; Danielson, Robert W.; Sinatra, Gale M.; Graham, Jesse – Journal of Experimental Education, 2017
The purpose of this study was to explore whether conceptual change predicted emotional and attitudinal change while learning about genetically modified foods (GMFs). Participants were 322 college students; half read a refutation text designed to shift conceptual knowledge, emotions, and attitudes, while the other half served as a control group.…
Descriptors: Genetics, Food, Attitude Change, Science Education
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Dauer, Joseph T.; Long, Tammy M. – Journal of Research in Science Teaching, 2015
One of the goals of college-level introductory biology is to establish a foundation of knowledge and skills that can be built upon throughout a biology curriculum. In a reformed introductory biology course, we used iterative model construction as a pedagogical tool to promote students' understanding about conceptual connections, particularly those…
Descriptors: College Science, Biology, Science Curriculum, Introductory Courses
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Tenenbaum, Harriet R.; To, Cheryl; Wormald, Daniel; Pegram, Emma – Science Education, 2015
Darwinian evolution is difficult to understand because of conceptual barriers stemming from intuitive ideas. This study examined understanding of evolution in 52 students (M = 14.48 years, SD = 0.89) before and after a guided field trip to a natural history museum and in a comparison group of 18 students (M = 14.17 years, SD = 0.79) who did not…
Descriptors: Science Education, Scientific Concepts, Evolution, Genetics
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Kiliç, Didem; Saglam, Necdet – Journal of Biological Education, 2014
Students tend to learn genetics by rote and may not realise the interrelationships in daily life. Because reasoning abilities are necessary to construct relationships between concepts and rote learning impedes the students' sound understanding, it was predicted that having high level of formal reasoning and adopting meaningful learning orientation…
Descriptors: Genetics, Science Instruction, Scientific Concepts, Hypothesis Testing
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Poehnl, Sabine; Bogner, Franz X. – Journal of Educational Research, 2013
Only recently has cognitive load theory been applied in conceptual change approaches. To the authors' knowledge, theirs is the first study to examine the effects on students' cognitive load of an approach contrary to a refutation text design. The authors combined computer and textbook instruction with involving alternative conceptions (ACs) to…
Descriptors: Cognitive Ability, Genetics, Grade 9, High School Students
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Scharfenberg, Franz-Josef; Bogner, Franz X. – EURASIA Journal of Mathematics, Science & Technology Education, 2014
Nowadays, outreach labs are important informal learning environments in science education. After summarizing research to goals outreach labs focus on, we describe our evidence-based gene technology lab as a model of a research-driven outreach program. Evaluation-based optimizations of hands-on teaching based on cognitive load theory (additional…
Descriptors: Science Education, Outreach Programs, Science Laboratories, Genetics
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Newman, Dina L.; Catavero, Christina M.; Wright, L. Kate – CBE - Life Sciences Education, 2012
Cellular processes that rely on knowledge of molecular behavior are difficult for students to comprehend. For example, thorough understanding of meiosis requires students to integrate several complex concepts related to chromosome structure and function. Using a grounded theory approach, we have unified classroom observations, assessment data, and…
Descriptors: Genetics, Grounded Theory, Data Analysis, Concept Teaching
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Patrick, Michelle D.; Carter, Glenda; Wiebe, Eric N. – Journal of Science Education and Technology, 2005
Visual representations play a critical role in the communication of science concepts for scientists and students alike. However, recent research suggests that novice students experience difficulty extracting relevant information from representations. This study examined students' interpretations of visual representations of DNA replication. Each…
Descriptors: Middle School Students, Visual Aids, Scientific Concepts, Genetics
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Rotbain, Yosi; Marbach-Ad, Gili; Stavy, Ruth – Journal of Biological Education, 2005
The activity uses drawings typically found in textbooks, engaging students in physical and mental activities such as drawing, painting and figure completion--as well as finding missing words and answering guiding questions. The activity deals with three topics: the structure of DNA, DNA replication and protein synthesis. In this study we…
Descriptors: Experimental Groups, Control Groups, Textbooks, Genetics