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Burian, Alexis N.; Zhao, Wufan; Lo, Te-Wen; Thurtle-Schmidt, Deborah M. – Biochemistry and Molecular Biology Education, 2021
To fully appreciate genetics, one must understand the link between genotype (DNA sequence) and phenotype (observable characteristics). Advances in high-throughput genomic sequencing technologies and applications, so-called "-omics," have made genetic sequencing readily available across fields in biology from applications in…
Descriptors: Genetics, Science Instruction, Teaching Methods, Biology
Cooper, Robert A. – American Biology Teacher, 2019
Statistical methods are indispensable to the practice of science. But statistical hypothesis testing can seem daunting, with P-values, null hypotheses, and the concept of statistical significance. This article explains the concepts associated with statistical hypothesis testing using the story of "the lady tasting tea," then walks the…
Descriptors: Decision Making, Statistical Analysis, Concept Formation, Genetics
Dees, Jonathan; Bussard, Caitlin; Momsen, Jennifer L. – CBE - Life Sciences Education, 2018
Phylogenetic trees have become increasingly important across the life sciences, and as a result, learning to interpret and reason from these diagrams is now an essential component of biology education. Unfortunately, students often struggle to understand phylogenetic trees. Style (i.e., diagonal or bracket) is one factor that has been observed to…
Descriptors: Science Instruction, Scientific Concepts, Biology, Teaching Methods
Bierema, Andrea; Schwartz, Renee – Science Teacher, 2016
The fruit fly ("Drosophila melanogaster") is an ideal subject for studying inheritance patterns, Mendel's laws, meiosis, Punnett squares, and other aspects of genetics. Much of what we know about genetics dates to evolutionary biologist Thomas Hunt Morgan's work with mutated fruit flies in the early 1900s. Many genetic laboratories…
Descriptors: Science Instruction, Animals, Genetics, 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
de Lencastre, Alexandre; Torello, A. Thomas; Keller, Lani C. – Biochemistry and Molecular Biology Education, 2017
This graduate-level DNA methods laboratory course is designed to model a discovery-based research project and engages students in both traditional DNA analysis methods and modern recombinant DNA cloning techniques. In the first part of the course, students clone the "Drosophila" ortholog of a human disease gene of their choosing using…
Descriptors: Science Instruction, Genetics, Cytology, Laboratory Experiments
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
Güccük, Ahmet; Köksal, Mustafa Serdar – Journal of Biological Education, 2017
The purpose of this study is to investigate the effects of case teaching on how students learn about genetic engineering, in terms of meaningful learning and retention of learning. The study was designed as quasi-experimental research including 63 8th graders (28 boys and 35 girls). To collect data, genetic engineering achievement tests were…
Descriptors: Teaching Methods, Case Method (Teaching Technique), Genetics, Concept Mapping
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
Jamieson, Annie; Radick, Gregory – Science & Education, 2017
Twenty-first-century biology rejects genetic determinism, yet an exaggerated view of the power of genes in the making of bodies and minds remains a problem. What accounts for such tenacity? This article reports an exploratory study suggesting that the common reliance on Mendelian examples and concepts at the start of teaching in basic genetics is…
Descriptors: Genetics, Scientific Concepts, Science Curriculum, Undergraduate Students
Shtulman, Andrew; Neal, Cara; Lindquist, Gabrielle – Early Education and Development, 2016
Research Findings: Evolution by natural selection is often relegated to the high school curriculum on the assumption that younger students cannot grasp its complexity. We sought to test that assumption by teaching children ages 4-12 (n = 96) a selection-based explanation for biological adaptation and comparing their success to that of adults…
Descriptors: Evolution, Biology, Cognitive Ability, Age Differences
Gungor, Sema Nur; Ozkan, Muhlis – European Journal of Educational Research, 2017
This study examines the subjects and concepts in biology perceived to be difficult to learn and teach by 759 pre-service biology teachers registered in the pedagogical formation program at Uludag University Faculty of Education in the academic year of 2005-2016, as well as the associations that word "biology" first calls to their mind.…
Descriptors: Science Instruction, Genetics, Classification, Teaching Methods
Stefanski, Katherine M.; Gardner, Grant E.; Seipelt-Thiemann, Rebecca L. – CBE - Life Sciences Education, 2016
Concept inventories (CIs) are valuable tools for educators that assess student achievement and identify misconceptions held by students. Results of student responses can be used to adjust or develop new instructional methods for a given topic. The regulation of gene expression in both prokaryotes and eukaryotes is an important concept in genetics…
Descriptors: Concept Formation, Misconceptions, Teaching Methods, Undergraduate Students
Southard, Katelyn M.; Espindola, Melissa R.; Zaepfel, Samantha D.; Bolger, Molly S. – International Journal of Science Education, 2017
When conducting scientific research, experts in molecular and cellular biology (MCB) use specific reasoning strategies to construct mechanistic explanations for the underlying causal features of molecular phenomena. We explored how undergraduate students applied this scientific practice in MCB. Drawing from studies of explanation building among…
Descriptors: Molecular Biology, Biology, Science Instruction, Qualitative Research
Bierema, Andrea M.-K.; Schwarz, Christina V.; Stoltzfus, Jon R. – CBE - Life Sciences Education, 2017
National calls for improving science education (e.g., "Vision and Change") emphasize the need to learn disciplinary core ideas through scientific practices. To address this need, we engaged small groups of students in developing diagrammatic models within two (one large-enrollment and one medium-enrollment) undergraduate introductory…
Descriptors: Undergraduate Students, Biology, Science Education, Introductory Courses
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