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Showing 1 to 15 of 33 results Save | Export
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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
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Whitenack, Lisa B.; Drew, Joshua A. – Journal of Biological Education, 2019
Given the importance of phylogenetic trees to understanding common ancestry and evolution, they are a necessary part of the undergraduate biology curriculum. However, a number of common misconceptions, such as reading across branch tips and understanding homoplasy, can pose difficulties in student understanding. Students also may take phylogenetic…
Descriptors: Evolution, Genetics, Paleontology, Biology
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Archila, Pablo Antonio; Molina, Jorge; de Mejía, Anne-Marie Truscott – Research in Science Education, 2020
Contrary to the situation at primary, middle, and secondary school levels, university science courses provide students with very few opportunities to reflect upon the nature of science (NOS). The first goal of this study was to provide evidence that the co-construction of evolutionary trees, an important component of university biology education,…
Descriptors: Undergraduate Students, College Science, Science Instruction, Scientific Principles
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Dees, Jonathan; Momsen, Jennifer L.; Niemi, Jarad; Montplaisir, Lisa – CBE - Life Sciences Education, 2014
Phylogenetic trees are widely used visual representations in the biological sciences and the most important visual representations in evolutionary biology. Therefore, phylogenetic trees have also become an important component of biology education. We sought to characterize reasoning used by introductory biology students in interpreting taxa…
Descriptors: Biology, Evolution, Genetics, Science Instruction
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Jungck, John R. – PRIMUS, 2022
Finite Mathematics has become an enormously rich and productive area of contemporary mathematical biology. Fortunately, educators have developed educational modules based upon many of the models that have used Finite Mathematics in mathematical biology research. A sufficient variety of computer modules that employ graph theory (phylogenetic trees,…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Models, Learning Modules
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Schramm, Thilo; Jose, Anika; Schmiemann, Philipp – Education Sciences, 2021
Phylogenetic trees are important tools for teaching and understanding evolution, yet students struggle to read and interpret them correctly. In this study, we extend a study conducted by Catley and Novick (2008) by investigating depictions of evolutionary trees in US textbooks. We investigated 1197 diagrams from 11 German and 11 United States…
Descriptors: Foreign Countries, Evolution, Textbooks, Textbook Content
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Punyasettro, Santhanat; Yasri, Pratchayapong – European Journal of Educational Research, 2021
Understanding phylogenetic trees representing evolutionary relationships of living organisms is essential in school biology. Traditional instructions based on lectures and textbooks with pictorial presentations have been proven ineffective to promote students' understanding of the concept. This study, therefore, developed a game-based learning…
Descriptors: Game Based Learning, Science Instruction, Teaching Methods, Biology
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Smith, James J.; Cheruvelil, Kendra Spence; Auvenshine, Stacie – CBE - Life Sciences Education, 2013
Phylogenetic trees provide visual representations of ancestor-descendant relationships, a core concept of evolutionary theory. We introduced "tree thinking" into our introductory organismal biology course (freshman/sophomore majors) to help teach organismal diversity within an evolutionary framework. Our instructional strategy consisted…
Descriptors: Biology, College Science, Introductory Courses, Undergraduate Students
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Horn, Ivo R.; Verleg, Peter A.; Ibrahim, Nafiesa Z.; Soeleman, Khadiedjah; Kampen, Floris; Ruesen, Mia O.; Reulen, Naïsha M.; Breij, Henk; Bakker, Roderick J.; Gravendeel, Barbara – Biochemistry and Molecular Biology Education, 2020
DNA barcoding is an important molecular methodology for species identification that was developed over the last two decades and it should be covered in the biology bachelor curriculum. Here, we present an example of DNA barcoding by sequencing a segment of the 28S nuclear ribosomal large subunit rRNA gene of wild mushrooms and framing the…
Descriptors: Genetics, Molecular Biology, Plants (Botany), Identification
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Wilson, Kristy J.; Long, Tammy M.; Momsen, Jennifer L.; Speth, Elena Bray – CBE - Life Sciences Education, 2020
As an instructional tool, models can transform the student experience from the static to the dynamic, the flat to the 3D, and the siloed to the integrated. Few practical resources exist to help instructors transition toward model-based classroom practices. The "Modeling in the Classroom" evidence-based teaching guide provides instructors…
Descriptors: Modeling (Psychology), Teaching Methods, Evidence Based Practice, Guides
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Novick, Laura R.; Catley, Kefyn M. – Journal of Biological Education, 2018
The ability to interpret and reason from Tree of Life diagrams is a key component of twenty-first century science literacy. This article reports on the authors' continued development of a multifaceted research-based curriculum--including an instructional booklet, lectures, laboratories and a field activity--to teach such tree thinking to biology…
Descriptors: Biology, Science Instruction, Biodiversity, Forestry
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Hobbs, F. Collin; Johnson, Daniel J.; Kearns, Katherine D. – CBE - Life Sciences Education, 2013
One goal of postsecondary education is to assist students in developing expert-level understanding. Previous attempts to encourage expert-level understanding of phylogenetic analysis in college science classrooms have largely focused on isolated, or "one-shot," in-class activities. Using a deliberate practice instructional approach, we…
Descriptors: College Science, Science Instruction, Biology, Skill Development
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Davis, Sandra L. – American Biology Teacher, 2012
The progression of the taxonomic organization of life from Linnaeus's original two kingdoms to the traditional five-kingdom system to today's widely accepted three-domain system is explored in a group-learning activity. Working with a set of organisms, students organize them into each system. Discussion after each step focuses on viewing…
Descriptors: Evolution, Scientific Methodology, Classification, Science Instruction
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Halverson, Kristy L.; Pires, Chris J.; Abell, Sandra K. – Science Education, 2011
Student understanding of biological representations has not been well studied. Yet, we know that to be efficient problem solvers in evolutionary biology and systematics, college students must develop expertise in thinking with a particular type of representation, phylogenetic trees. The purpose of this study was to understand how undergraduates…
Descriptors: Evolution, Classification, Biodiversity, Knowledge Representation
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Seoh, Kah Huat Robin; Subramaniam, R.; Hoh, Yin Kiong – Journal of Research in Science Teaching, 2016
Tree thinking, the understanding of the evolutionary relationships between organisms depicted in different types of tree diagrams, is an integral part of understanding evolution. Novice learners often read tree diagrams differently from specialists, resulting in diverse interpretations of the relationships depicted. The aim of this study is to…
Descriptors: Foreign Countries, Evolution, Grade 12, Secondary School Students
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