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Powell, Britnie; Drits-Esser, Dina; Malone, Molly; Stark, Louisa A. – Science and Children, 2018
While elementary teachers do not typically cover the structure and function of DNA, their students can easily understand that organisms have observable traits, that each individual has a unique combination of traits, and that the "recipe" for traits is passed from parent to offspring. The Genetic Science Learning Center has developed and…
Descriptors: Science Instruction, Teaching Methods, Genetics, Class Activities
Cox, Charles; Reynolds, Birdy; Schunn, Christian; Schuchardt, Anita – Journal of STEM Education: Innovations and Research, 2016
There are strong classroom ties between mathematics and the sciences of physics and chemistry, but those ties seem weaker between mathematics and biology. Practicing biologists realize both that there are interesting mathematics problems in biology, and that viewing classroom biology in the context of another discipline could support students'…
Descriptors: Secondary School Science, Biology, Mathematics, Engineering
McDonnell, Lisa; Mullally, Martha – Journal of College Science Teaching, 2016
An essential component skill of monitoring and reflection during problem solving is work checking, a process used by experts while solving problems to determine if their solution is achieving the goal. The results of work checking may reveal errors or inconsistencies, indicating a need for iteration. Using think-aloud interviews, the authors…
Descriptors: College Science, Protocol Analysis, Undergraduate Students, Genetics
Todd, Amber; Kenyon, Lisa – Journal of Research in Science Teaching, 2016
This article describes revisions to four of the eight constructs of the Duncan molecular genetics learning progression [Duncan, Rogat, & Yarden, (2009)]. As learning progressions remain hypothetical models until validated by multiple rounds of empirical studies, these revisions are an important step toward validating the progression. Our…
Descriptors: Genetics, Molecular Structure, Science Instruction, Teaching Methods
Hung, Venus; Fung, Dennis – Research in Science & Technological Education, 2017
Background: A teaching method to improve students' ability to communicate ideas in genetics across the macro-micro levels of organisation was investigated in this study. Purpose: It is designed to help students deconstruct the level of organisation of each tier of a genetic diagram, as the symbols used in such diagrams (i.e. lines and letters) can…
Descriptors: Teaching Methods, Genetics, Secondary School Science, Visualization
Johnson, Amy Flanagan; Graves, Chiron W. – Journal of College Science Teaching, 2017
This article details the aim, development, and implementation of the Chemistry-Genetics Course Collaborative (CGCC), a cotaught offering of a human genetics course with an honors introductory chemistry course. The CGCC was formed to fully integrate the two courses, along with the associated chemistry lab, to create an interdisciplinary scientific…
Descriptors: Chemistry, Genetics, Interdisciplinary Approach, Science Instruction
Wilson, Christopher D.; Reichsman, Frieda; Mutch-Jones, Karen; Gardner, April; Marchi, Lisa; Kowalski, Susan; Lord, Trudi; Dorsey, Chad – Journal of Science Education and Technology, 2018
Research-based digital games hold great potential to be effective tools in supporting next-generation science learning. However, as with all instructional materials, teachers significantly influence their implementation and contribute to their effectiveness. To more fully understand the contributions and challenges of teacher implementation of…
Descriptors: Curriculum Implementation, Educational Games, Science Materials, Science Curriculum
Nichols, Kim – Journal of Biological Education, 2018
A variety of practices and specialised representational systems are required to understand, communicate and construct molecular genetics knowledge. This study describes teachers' use of multimodal representations of molecular genetics concepts and how their strategies and choice of resources were interpreted, understood and used by students to…
Descriptors: Molecular Biology, Genetics, Pretests Posttests, Vignettes
Hoffman, Kathleen; Leupen, Sarah; Dowell, Kathy; Kephart, Kerrie; Leips, Jeff – CBE - Life Sciences Education, 2016
Redesigning undergraduate biology courses to integrate quantitative reasoning and skill development is critical to prepare students for careers in modern medicine and scientific research. In this paper, we report on the development, implementation, and assessment of stand-alone modules that integrate quantitative reasoning into introductory…
Descriptors: Undergraduate Study, College Science, Biology, Thinking Skills
Newman, Dina L.; Snyder, Christopher W.; Fisk, J. Nick; Wright, L. Kate – CBE - Life Sciences Education, 2016
Scientific teaching requires scientifically constructed, field-tested instruments to accurately evaluate student thinking and gauge teacher effectiveness. We have developed a 23-question, multiple select--format assessment of student understanding of the essential concepts of the central dogma of molecular biology that is appropriate for all…
Descriptors: Beliefs, Science Education, Science Instruction, Teacher Effectiveness
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
Johannes, Kristen; Powers, Jacklyn; Couper, Lisa; Silberglitt, Matt; Davenport, Jodi – Grantee Submission, 2016
Can novel 3D models help students develop a deeper understanding of core concepts in molecular biology? We adapted 3D molecular models, developed by scientists, for use in high school science classrooms. The models accurately represent the structural and functional properties of complex DNA and Virus molecules, and provide visual and haptic…
Descriptors: Molecular Biology, Science Instruction, Teacher Role, Scientific Concepts
van der Zande, Paul; Akkerman, Sanne F.; Brekelmans, Mieke; Waarlo, Arend Jan; Vermunt, Jan D. – International Journal of Science Education, 2012
Contemporary genomics research will impact the daily practice of biology teachers who want to teach up-to-date genetics in secondary education. This article reports on a research project aimed at enhancing biology teachers' expertise for teaching genetics situated in the context of genetic testing. The increasing body of scientific knowledge…
Descriptors: Experienced Teachers, Testing, Teaching Methods, Genetics
Wright, L. Kate; Fisk, J. Nick; Newman, Dina L. – CBE - Life Sciences Education, 2014
The central dogma of molecular biology, a model that has remained intact for decades, describes the transfer of genetic information from DNA to protein though an RNA intermediate. While recent work has illustrated many exceptions to the central dogma, it is still a common model used to describe and study the relationship between genes and protein…
Descriptors: Molecular Biology, Genetics, Models, Scientific Concepts
Mdolo, Margaret M.; Mundalamo, Fhatuwani J. – African Journal of Research in Mathematics, Science and Technology Education, 2015
This paper reports on the relationship between the subject matter knowledge of two underqualified teachers and their topic-specific pedagogical content knowledge (TSPCK) as they taught genetics at two community secondary schools in Malawi. The study was qualitative and used the multiple case study approach. The sample was purposefully chosen. Data…
Descriptors: Foreign Countries, Genetics, Teaching Experience, Knowledge Base for Teaching