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  1. Los estudiantes como teleólogos predarwinianos: una propuesta para abordar el problema de la teleología en la enseñanza de la Biología.Leonardo González Galli, Yefrin Ariza & Santiago Ginnobili - 2022 - la Revista de Investigación En Educación 20 (2):188-203.
    En este trabajo presentamos los fundamentos teóricos de una propuesta para el abordaje didáctico de concepciones teleológicas de los y las estudiantes en la enseñanza de la Biología. La propuesta en cuestión supone acudir al modo en que Darwin lidió con las concepciones teleológicas dominantes entre sus contemporáneos, para proponer una estrategia general a través de la cual se podría incidir sobre las intuiciones teleológicas de los estudiantes, de modo que se pueda facilitar el aprendizaje de la teoría de la (...)
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  • Nothing in the History of Spanish Anís Makes Sense, Except in the Light of Evolution.Juan Antonio Delgado & Ricardo Luis Palma - 2011 - Science & Education 20 (2):141-157.
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  • A Conceptual Characterization of Online Videos Explaining Natural Selection.Gustav Bohlin, Andreas Göransson, Gunnar E. Höst & Lena A. E. Tibell - 2017 - Science & Education 26 (7-9):975-999.
    Educational videos on the Internet comprise a vast and highly diverse source of information. Online search engines facilitate access to numerous videos claiming to explain natural selection, but little is known about the degree to which the video content match key evolutionary content identified as important in evolution education research. In this study, we therefore analyzed the content of 60 videos accessed through the Internet, using a criteria catalog with 38 operationalized variables derived from research literature. The variables were sorted (...)
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  • Evolution 2.0. The Unexpected Learning Experience of Making a Digital Archive.Casper Andersen, Jakob Bek-Thomsen, Mathias Clasen, Stine Slot Grumsen, Hans Henrik Hjermitslev & Peter C. Kjærgaard - 2013 - Science & Education 22 (3):657-675.
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  • Relating Science and Religion: An Ontology of Taxonomies and Development of a Research Tool for Identifying Individual Views.Pratchayapong Yasri, Shagufta Arthur, Mike U. Smith & Rebecca Mancy - 2013 - Science & Education 22 (10):2679-2707.
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  • Biological Principles and Threshold Concepts for Understanding Natural Selection.Lena A. E. Tibell & Ute Harms - 2017 - Science & Education 26 (7-9):953-973.
    Modern evolutionary theory is both a central theory and an integrative framework of the life sciences. This is reflected in the common references to evolution in modern science education curricula and contexts. In fact, evolution is a core idea that is supposed to support biology learning by facilitating the organization of relevant knowledge. In addition, evolution can function as a pivotal link between concepts and highlight similarities in the complexity of biological concepts. However, empirical studies in many countries have for (...)
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  • Healing, Mental Energy in the Physics Classroom: Energy Conceptions and Trust in Complementary and Alternative Medicine in Grade 10–12 Students. [REVIEW]Annika M. Svedholm & Marjaana Lindeman - 2013 - Science & Education 22 (3):677-694.
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  • The Role of Authority in Science and Religion with Implications for Science Teaching and Learning.Mike U. Smith - 2013 - Science & Education 22 (3):605-634.
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  • On the Relationship Between Belief and Acceptance of Evolution as Goals of Evolution Education.Mike U. Smith & Harvey Siegel - 2016 - Science & Education 25 (5-6):473-496.
    The issue of the proper goals of science education and science teacher education have been a focus of the science education and philosophy of science communities in recent years. More particularly, the issue of whether belief/acceptance of evolution and/or understanding are the appropriate goals for evolution educators and the issue of the precise nature of the distinctions among the terms knowledge, understanding, belief, and acceptance have received increasing attention in the 12 years since we first published our views on these (...)
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  • The Notion of Scientific Knowledge in Biology.Silvia Morante & Giancarlo Rossi - 2016 - Science & Education 25 (1-2):165-197.
    The purpose of this work is to reconsider and critically discuss the conceptual foundations of modern biology and bio-sciences in general, and provide an epistemological guideline to help framing the teaching of these disciplines and enhancing the quality of their presentation in High School, Master and Ph.D. courses. After discussing the methodological problems that arise in trying to construct a sensible and useful scientific approach applicable to the study of living systems, we illustrate what are the general requirements that a (...)
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  • Misconceptions in Science.Christophe Malaterre, Emmanuelle J. Javaux & Purificación López-García - 2023 - Perspectives on Science 31 (6):717-743.
    Disagreement in science exists in a variety of strengths, from doubt-raising articles and issues of non-reproducibility up to raging disputes and major controversies. An often-latent form of disagreement consists of misconceptions whereby false ideas are held that run contrary to what is commonly accepted as knowledge. Misconceptions have been the focus of much research in education science and psychology. Here we draw attention to misconceptions that may arise in the very practice of science. We highlight formal features that can be (...)
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  • Teaching About Adaptation: Why Evolutionary History Matters. [REVIEW]Kostas Kampourakis - 2013 - Science & Education 22 (2):173-188.
    Adaptation is one of the central concepts in evolutionary theory, which nonetheless has been given different definitions. Some scholars support a historical definition of adaptation, considering it as a trait that is the outcome of natural selection, whereas others support an ahistorical definition, considering it as a trait that contributes to the survival and reproduction of its possessors. Finally, adaptation has been defined as a process, as well. Consequently, two questions arise: the first is a philosophical one and focuses on (...)
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  • A Novel Method for Teaching the Difference and Relationship Between Theories and Laws to High School Students.Kathryn L. Gray & Khadija E. Fouad - 2019 - Science & Education 28 (3-5):471-501.
    This study examines the use of an explicit, reflective method for teaching the difference and relationship between scientific theories and laws to ninth-grade students. Students reflected individually and then as a whole class on theories and laws using a Venn diagram, both before and after reading short articles describing features of theories and laws that provided an explicit challenge to their naïve prior conceptions. In small groups, they chose a theory or law, researched it, constructed a poster, and did a (...)
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  • Environmental Ethics.Roberta L. Millstein - 2013 - In K. Kampourakis (ed.), The Philosophy of Biology: A Companion for Educators. Springer.
    A number of areas of biology raise questions about what is of value in the natural environment and how we ought to behave towards it: conservation biology, environmental science, and ecology, to name a few. Based on my experience teaching students from these and similar majors, I argue that the field of environmental ethics has much to teach these students. They come to me with pent-up questions and a feeling that more is needed to fully engage in their subjects, and (...)
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