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Shiyao Liu; Chaonan Liu; Ala Samarapungavan; Stephanie M. Gardner; Kari L. Clase; Nancy J. Pelaez – Science & Education, 2024
Science educators report that students struggle with understanding, using, and evaluating the evidence underpinning scientific knowledge. However, there are not many studies focused on helping instructors address those difficulties. Here, we report on a laboratory instructor's scaffolding of students' evidentiary reasoning with and about evidence…
Descriptors: Biology, Science Instruction, Laboratory Experiments, Evolution
Ågren, J. Arvid; Williamson, Robert J.; Campitelli, Brandon E.; Wheeler, Jill – Journal of Biological Education, 2017
Recent years have seen a dramatic increase in our understanding of the social behaviour of microbes. Here, we take advantage of these developments to present an undergraduate laboratory exercise that uses the cooperative flocculating behaviour of yeast ("Saccharomyces sp.") to introduce the concept of inclusive fitness and teach the…
Descriptors: College Science, Undergraduate Study, Science Laboratories, Genetics
Freeman, Scott; Mukerji, Joya; Sievers, Matt; Beltran, Ismael Barreras; Dickinson, Katie; Dy, Grace E. C.; Gardiner, Amanda; Glenski, Elizabeth H.; Hill, Mariah J.; Kerr, Ben; Monet, Deja; Reemts, Connor; Theobald, Elli; Tran, Elisa T.; Velasco, Vicente; Wachtell, Lexi; Warfield, Liz – CBE - Life Sciences Education, 2023
We developed labs on the evolution of antibiotic resistance to assess the costs and benefits of replacing traditional laboratory exercises in an introductory biology course for majors with a course-based undergraduate research experience (CURE). To assess whether participating in the CURE imposed a cost in terms of exam performance, we implemented…
Descriptors: Microbiology, Science Instruction, Teaching Methods, Course Descriptions
Kong, Yi; Apodaca, Jennifer; Olimpo, Jeffrey T. – International Journal of Science Education, 2022
The Model of the Use of Evolutionary Trees (MUET)-curricular module that systematically and comprehensively introduces the learning of evolutionary trees for the lower-level college students was developed and implemented in an introductory organismal biology laboratory course at a mid-size, doctoral degree-granting institution. A…
Descriptors: Evolution, Biology, Science Instruction, Introductory Courses
Babaian, Caryn; Kumar, Sudhir – American Biology Teacher, 2019
A lesson plan on the phylum Tardigrada is presented in a storytelling workbook that introduces the evolutionary concepts of adaptive radiation, speciation, divergence, and "tree-thinking" through narrative, transitional art, contemplative coloring, and data searches, which can be enhanced with microscopy wet labs. Students gain insight…
Descriptors: Evolution, Story Telling, Lesson Plans, Databases
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
Johnson, Nichole L.; Lang-Walker, Rosalyn; Fail, Joseph L., Jr.; Champion, Timothy D. – American Biology Teacher, 2012
We describe an activity that uses cards to simulate evolution. The mechanism of the evolutionary pressure in the simulation is clearly indicated for the students. This simulation is useful for allowing student experimentation by varying conditions.
Descriptors: Science Instruction, Evolution, Simulation, Learning Activities
May, S. Randolph – American Biology Teacher, 2014
Students will analyze the coevolution of the predator-prey relationships between "Tyrannosaurus rex" and its prey species using analyses of animal speeds from fossilized trackways, prey-animal armaments, adaptive behaviors, bite marks on prey-animal fossils, predator-prey ratios, and scavenger competition. The students will be asked to…
Descriptors: Biology, Evolution, Science Instruction, Paleontology
Green, Jennifer H.; Koza, Anna; Moshynets, Olena; Pajor, Radoslaw; Ritchie, Margaret R.; Spiers, Andrew J. – Journal of Biological Education, 2011
Understanding evolutionary mechanisms is fundamental to a balanced biological education, yet practical demonstrations are rarely considered. In this paper we describe a bacterial liquid microcosm which can be used to demonstrate aspects of evolution, namely adaptive radiation, niche colonisation and competitive fitness. In microcosms inoculated…
Descriptors: Evolution, Molecular Biology, Biology, Science Instruction
Suwa, Tomomi; Williamson, Brad – American Biology Teacher, 2014
We present a guided-inquiry biology lesson, using the plant-rhizobium symbiosis as a model system. This system provides a rich environment for developing connections between the big ideas in biology as outlined in the College Board's new AP Biology Curriculum. Students gain experience with the practice of scientific investigation, from…
Descriptors: Science Instruction, Biology, College Science, Science Experiments
Plunkett, Andrea D.; Yampolsky, Lev Y. – American Biology Teacher, 2010
We propose an experimental model suitable for demonstrating allele frequency change in Drosophila melanogaster populations caused by selection against an easily scorable conditional lethal, namely recessive flightless alleles such as apterous and vestigial. Homozygotes for these alleles are excluded from reproduction because the food source used…
Descriptors: Evolution, Entomology, Birth, Biology
Cuiper, Auke – School Science Review, 2014
In this new context concept approach, field research on the Trinidadian guppy is used as an appealing example of evolutionary change in populations. Pupils are asked to investigate the underlying mechanisms. In doing so, defects in their knowledge are revealed, in particular the role of meiosis in creating genetic variation. The reason for these…
Descriptors: Biology, Integrated Curriculum, Integrated Activities, Genetics
Ens, S.; Olson, A. B.; Dudley, C.; Ross, N. D., III; Siddiqi, A. A.; Umoh, K. M.; Schneegurt, M. A. – Biochemistry and Molecular Biology Education, 2012
Gel electrophoresis is the single most important molecular biology technique and it is central to life sciences research, but it is often too expensive for the secondary science classroom or homeschoolers. A simple safe low-cost procedure is described here that uses household materials to construct and run DNA gel electrophoresis. Plastic…
Descriptors: Science Activities, Physical Sciences, Genetics, Cytology
Jones, Thomas C.; Laughlin, Thomas F. – American Biology Teacher, 2010
Natural selection and other components of evolutionary theory are known to be particularly challenging concepts for students to understand. To help illustrate these concepts, we developed a simulation model of microevolutionary processes. The model features all the components of Hardy-Weinberg theory, with population size, selection, gene flow,…
Descriptors: Evolution, Science Instruction, Biology, Scientific Concepts
Jones, Jason; Holloway, Barbara; Ketcham, Elizabeth; Long, John – American Biology Teacher, 2008
The predator-prey relationship is one of the most recognizable and well-studied animal relationships. One of the more striking aspects of this relationship is the differential natural selection pressure placed on predators and their prey. This differential pressure results from differing costs of failure, the so-called life-dinner principle. If a…
Descriptors: Science Experiments, Laboratory Experiments, Environmental Education, Science Instruction