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Neyhart, Jeffrey L.; Watkins, Eric – Natural Sciences Education, 2020
Basic quantitative and population genetics topics are typically taught in introductory plant breeding courses and are critical for success in upper-level study. Active learning, including simulations and games, may be useful for instruction of these concepts, which rely heavily on theory and may be more challenging for students. The statistical…
Descriptors: Genetics, Active Learning, Teaching Methods, Plants (Botany)
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Katsaros, Nikolaos A.; Stasinakis, Panagiotis K. – Biochemistry and Molecular Biology Education, 2020
In this article, we present the simulation software called Aipotu and we propose a way to use it in order to promote Evolution Learning and Teaching. Through activities, included in a worksheet, students gradually gain new knowledge not only on evolution and its genetic base but on the concept of simulation and scientific modeling as well. Aipotu…
Descriptors: Evolution, Science Instruction, Teaching Methods, Learning Processes
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Peterson, Celeste N.; Tavana, Sara Z.; Akinleye, Olukemi P.; Johnson, Walter H.; Berkmen, Melanie B. – Biochemistry and Molecular Biology Education, 2020
Biology and biochemistry students must learn to visualize and comprehend the complex three-dimensional (3D) structures of macromolecules such as proteins or DNA. However, most tools available for teaching biomolecular structures typically operate in two dimensions. Here, we present protocols and pedagogical approaches for using immersive augmented…
Descriptors: Teaching Methods, Molecular Structure, Computer Software, Biochemistry
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Russell, Terry; McGuigan, Linda – Primary Science, 2019
The research completed by the authors into the teaching and learning of evolution and inheritance (2014 to 2018) seeks to understand the demands made by the revised National Curriculum in England (DfE, 2015) and to offer support. The commitment of the authors to applied research assumes more useful outcomes are likely when studies are conducted…
Descriptors: Teaching Methods, Learning Processes, Evolution, National Curriculum
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Cantor, Pamela; Osher, David; Berg, Juliette; Steyer, Lily; Rose, Todd – Applied Developmental Science, 2019
This article synthesizes foundational knowledge from multiple scientific disciplines regarding how humans develop in context. Major constructs that define human development are integrated into a developmental system framework, this includes--epigenetics, neural malleability and plasticity, integrated complex skill development and learning, human…
Descriptors: Learning Processes, Child Development, Cognitive Development, Executive Function
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Robischon, Marcel – American Biology Teacher, 2015
Genetic drift is a concept of population genetics that is central to understanding evolutionary processes and aspects of conservation biology. It is frequently taught using rather abstract representations. I introduce three real-life zoological examples, based on historical and recent color morphs of tigers, tapirs, and ravens, that can complement…
Descriptors: Genetics, Animals, Science Instruction, Teaching Methods
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Shea, Nicole A.; Duncan, Ravit Golan – Journal of the Learning Sciences, 2013
Learning progressions (LPs) are theoretical models of how learners develop expertise in a domain over extended periods of time. Recent policy reports have touted LPs as a promising approach to aligning standards, curriculum, and assessment. However, the scholarship on LPs is relatively sparse, and the jury is still out on the theoretical and…
Descriptors: Academic Standards, Genetics, Heuristics, Models
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Tabone, Christopher J.; de Belle, J. Steven – Learning & Memory, 2011
Associative conditioning in "Drosophila melanogaster" has been well documented for several decades. However, most studies report only simple associations of conditioned stimuli (CS, e.g., odor) with unconditioned stimuli (US, e.g., electric shock) to measure learning or establish memory. Here we describe a straightforward second-order conditioning…
Descriptors: Stimuli, Conditioning, Associative Learning, Memory
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Fischer, Kurt W. – Mind, Brain, and Education, 2009
The primary goal of the emerging field of Mind, Brain, and Education is to join biology, cognitive science, development, and education in order to create a sound grounding of education in research. The growing, worldwide movement needs to avoid the myths and distortions of popular conceptions of brain and genetics and build on the best integration…
Descriptors: Educational Research, Genetics, Biology, Brain
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Kubik, Stepan; Miyashita, Teiko; Guzowski, John F. – Learning & Memory, 2007
Different functions have been suggested for the hippocampus and its subdivisions along both transversal and longitudinal axes. Expression of immediate-early genes (IEGs) has been used to map specific functions onto neuronal activity in different areas of the brain including the hippocampus (IEG imaging). Here we review IEG studies on hippocampal…
Descriptors: Intervention, Inhibition, Memory, Brain
Cartier, Jennifer – 2000
This paper describes a study of high school students' participation in the construction and revision of explanatory models as they attempted to account for a variety of inheritance phenomena observed in computer-generated "fruit flies". Throughout the course students were encouraged to explore epistemological issues related to the assessment and…
Descriptors: Computer Uses in Education, Genetics, High Schools, Instructional Effectiveness
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Blume, Warren T. – Mental Retardation and Developmental Disabilities Research Reviews, 2004
Lennox-Gastaut (L-G) syndrome is an intractable generalized epilepsy of childhood onset, associated with spike waves at a slow rate and paroxysmal fast activity. These epileptiform discharge patterns are thought to reflect excessive neocortical excitability and arise from neuronal and synaptic features peculiar to the immature central nervous…
Descriptors: Seizures, Brain, Social Isolation, Cognitive Development
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Zolan, Miriam; Strome, Susan; Innes, Roger – New Directions for Teaching and Learning, 2004
For three biology professors, visualizing molecular processes is central to thinking in their discipline. This chapter reports their attempts at getting students to make this same cognitive move and the results of their assessments. (Contains 2 figures.)
Descriptors: Genetics, Molecular Biology, Visualization, Science Instruction
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Stewart, Jim – Science Education, 1988
Examines various types of problems that researchers have used to demonstrate problem solving. Focuses on genetics problems. Discusses classes of learning outcomes, conceptual knowledge gains, content-independent heuristics, content-specific procedures, understanding the nature of science and a typology of genetics problems. (CW)
Descriptors: Biological Sciences, Cognitive Ability, College Science, Genetics