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Ageitos, Noa; Colucci-Gray, Laura; Puig, Blanca – Center for Educational Policy Studies Journal, 2023
Despite being a fundamental concept in biology, evolution continues to be one of the most challenging topics to teach in science education. Ideas of evolution emphasising anatomical or behavioural features of individuals, as opposed to the interplay between genetics and the environment, are reinforced through language and culture, making them…
Descriptors: Evolution, Biology, Science Education, Scientific Concepts
Joel Barnes – Paedagogica Historica: International Journal of the History of Education, 2024
This article examines the place of evolutionary science in protestant and Catholic residential colleges associated with Australian public universities across the twentieth and early twenty-first centuries. Although faith-based universities are a relatively recent phenomenon in Australia, a quasi-federal model of secular teaching and accrediting…
Descriptors: Evolution, Science Education, Foreign Countries, Religious Colleges
Achiam, Marianne; Simony, Leonora; Lindow, Bent Erik Kramer – International Journal of Science Education, 2016
Although the scientific disciplines conduct practical work in different ways, all consider practical work as the essential way of connecting objects and phenomena with ideas and the abstract. Accordingly, practical work is regarded as central to science "education" as well. We investigate a practical, object-based palaeontology programme…
Descriptors: Museums, Science Activities, Science Instruction, Science Education
Cooper, Robert A. – American Biology Teacher, 2015
This paper presents an activity that engages students in model-based reasoning, requiring them to predict the behavior of the trp and lac operons under different environmental conditions. Students are presented six scenarios for the "trp" operon and five for the "lac" operon. In most of the scenarios, specific mutations have…
Descriptors: Biology, Models, Prediction, Vignettes
Navarro, Manuel – International Journal of Science Education, 2014
This paper presents a model of how children generate concrete concepts from perception through processes of differentiation and integration. The model informs the design of a novel methodology ("evolutionary maps" or "emaps"), whose implementation on certain domains unfolds the web of itineraries that children may follow in the…
Descriptors: Concept Formation, Models, Children, Scientific Concepts
Ruggeri, Nancy Lee – ProQuest LLC, 2011
Uncertainty is inherent to scientific methods and practices, yet is it rarely explicitly discussed in science classrooms. Ironically, science is often equated with "certainty" in these contexts. Uncertainties that arise in science deserve special attention, as they are increasingly a part of public discussions and are susceptible to manipulation.…
Descriptors: Climate, Teaching Methods, Essays, Science Education
Boothroyd, Lynda G.; McLaughlin, Edward – School Science Review, 2011
The primary theoretical framework for the study of human physical attraction is currently Darwinian sexual selection. Not only has this perspective enabled the discovery of what appear to be strong universals in human mate choice but it has also facilitated our understanding of systematic variation in preferences both between and within…
Descriptors: Marriage, Models, Interpersonal Attraction, Evolution
Lehrer, Richard; Schauble, Leona – Science Education, 2012
Although the core work of science is oriented toward constructing, revising, applying, and defending models of the natural world, models appear only rarely in school science, and usually only as illustrations, rather than theory building tools. We describe the rationale and structure for a learning progression to understand the development of…
Descriptors: Evolution, Biological Sciences, Sciences, Middle School Students
Bogiages, Christopher A.; Lotter, Christine – Science Teacher, 2011
In their research, scientists generate, test, and modify scientific models. These models can be shared with others and demonstrate a scientist's understanding of how the natural world works. Similarly, students can generate and modify models to gain a better understanding of the content, process, and nature of science (Kenyon, Schwarz, and Hug…
Descriptors: Scientific Principles, Biology, Science Education, Science Instruction
Kinchin, Ian M. – Journal of Biological Education, 2010
The consideration of threshold concepts is offered in the context of biological education as a theoretical framework that may have utility in the teaching and learning of biology at all levels. Threshold concepts may provide a mechanism to explain the observed punctuated nature of conceptual change. This perspective raises the profile of periods…
Descriptors: Biology, Concept Formation, Models, Academic Achievement
Marcelos, Maria Fatima; Nagem, Ronaldo L. – Science & Education, 2010
Our objective is to contribute to the teaching of Classical Darwinian "Evolution" by means of a study of analogies and metaphors. Throughout the history of knowledge about "Evolution" and in Science teaching, tree structures have been used an analogs to refer to "Evolution," such as by Darwin in the "Tree of Life" passage contained in "On The…
Descriptors: Figurative Language, Logical Thinking, Evolution, Science Education
Nehm, Ross H.; Ha, Minsu – Journal of Research in Science Teaching, 2011
Despite concerted efforts by science educators to understand patterns of evolutionary reasoning in science students and teachers, the vast majority of evolution education studies have failed to carefully consider or control for item feature effects in knowledge measurement. Our study explores whether robust contextualization patterns emerge within…
Descriptors: Majors (Students), Evolution, Animals, Measures (Individuals)
Enderle, Patrick J.; Smith, Mike U.; Southerland, Sherry – International Journal of Science Education, 2009
The existence, preponderance, and stability of misconceptions related to evolution continue as foci of research in science education. In their 2006 study, Geraedts and Boersma question the existence of stable Lamarckian misconceptions in students, challenging the utility of Conceptual Change theory in addressing any such misconceptions. To support…
Descriptors: Evolution, Prior Learning, Misconceptions, Science Education
Bean, Thomas E.; Sinatra, Gale M.; Schrader, P. G. – Journal of Science Education and Technology, 2010
The use of computer simulations as educational tools may afford the means to develop understanding of evolution as a natural, emergent, and decentralized process. However, special consideration of developmental constraints on learning may be necessary when using these technologies. Specifically, the essentialist (biological forms possess an…
Descriptors: Misconceptions, Models, Evolution, Bias
Khine, Myint Swe, Ed.; Saleh, Issa M., Ed. – IGI Global, 2013
"Approaches and Strategies in Next Generation Science Learning" examines the challenges involved in the development of modern curriculum models, teaching strategies, and assessments in science education in order to prepare future students in the 21st century economies. This comprehensive collection of research brings together science educators,…
Descriptors: Teaching Methods, Science Education, Physical Sciences, Learning Theories