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Tim Hartelt; Helge Martens – Journal of Research in Science Teaching, 2024
Intuitive conceptions based on cognitive biases (teleology, anthropomorphism, and essentialism) often prove helpful in everyday life while simultaneously being problematic in scientific contexts. Nonetheless, students often have intuitive conceptions of scientific topics such as evolution. As potential approaches to enable students to…
Descriptors: Self Evaluation (Individuals), Metacognition, Self Control, Intuition
Göransson, Andreas; Orraryd, Daniel; Fiedler, Daniela; Tibell, Lena A. E. – CBE - Life Sciences Education, 2020
Evolutionary theory explains a wide range of biological phenomena. Proper understanding of evolutionary mechanisms such as natural selection is therefore an essential goal for biology education. Unfortunately, natural selection has time and again proven difficult to teach and learn, and students' resulting understanding is often characterized by…
Descriptors: Fundamental Concepts, Scientific Concepts, Evolution, College Students
Zhao, FangFang; Schuchardt, Anita – CBE - Life Sciences Education, 2019
Prior studies have shown that students have difficulty understanding the role of mutation in evolution and genetics. However, little is known about unifying themes underlying students' difficulty with mutation. In this study, we examined students' written explanations about mutation from a cognitive science perspective. According to one cognitive…
Descriptors: Student Motivation, Educational Change, Teaching Methods, Genetics
Ha, Minsu; Nehm, Ross H. – Science & Education, 2014
Although historical changes in scientific ideas sometimes display striking similarities with students' conceptual progressions, some scholars have cautioned that such similarities lack meaningful commonalities. In the history of evolution, while Darwin and his contemporaries often used natural selection to explain evolutionary trait gain or…
Descriptors: Genetics, Evolution, Scientific Concepts, Science History
Tenenbaum, Harriet R.; To, Cheryl; Wormald, Daniel; Pegram, Emma – Science Education, 2015
Darwinian evolution is difficult to understand because of conceptual barriers stemming from intuitive ideas. This study examined understanding of evolution in 52 students (M = 14.48 years, SD = 0.89) before and after a guided field trip to a natural history museum and in a comparison group of 18 students (M = 14.17 years, SD = 0.79) who did not…
Descriptors: Science Education, Scientific Concepts, Evolution, Genetics
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
Catley, Kefyn M.; Phillips, Brenda C.; Novick, Laura R. – Research in Science Education, 2013
The biological community is currently undertaking one its greatest scientific endeavours, that of constructing the Tree of Life, a phylogeny intended to be an evidenced-based, predictive road map of evolutionary relationships among Earth's biota. Unfortunately, we know very little about how such diagrams are understood, interpreted, or used…
Descriptors: Science Instruction, High School Students, Grade 10, Misconceptions
Novick, Laura R.; Schreiber, Emily G.; Catley, Kefyn M. – Journal of Research in Science Teaching, 2014
With applications of Tree of Life data becoming ever more prevalent in everyday contexts, tree thinking has emerged as a vital component of scientific literacy. This article reports a study testing the hypothesis that instruction in natural selection, which is the primary focus of US evolution education at the high school and introductory college…
Descriptors: Evolution, Science Instruction, Hypothesis Testing, Biology
Nehm, Ross H.; Schonfeld, Irvin Sam – Journal of Research in Science Teaching, 2010
The development of rich, reliable, and robust measures of the composition, structure, and stability of student thinking about core scientific ideas (such as natural selection) remains a complex challenge facing science educators. In their recent article (Nehm & Schonfeld 2008), the authors explored the strengths, weaknesses, and insights provided…
Descriptors: Evolution, Minority Groups, Science Education, Measures (Individuals)
Randle, David Edward – ProQuest LLC, 2013
This mixed-methods study examined the interactions and learning outcomes of science teachers in an online graduate-level course on evolutionary biology intended to improve their content knowledge and science lesson planning. Discussion posts made by the teachers in this seven-week course were analyzed for cognitive presence using the Community of…
Descriptors: Faculty Development, Science Teachers, Interpersonal Communication, Interpersonal Relationship
Carver, Sharon M., Ed.; Shrager, Jeff, Ed. – APA Books, 2012
The impulse to investigate the natural world is deeply rooted in our earliest childhood experiences. This notion has long guided researchers to uncover the cognitive mechanisms underlying the development of scientific reasoning in children. Until recently, however, research in cognitive development and education followed largely independent…
Descriptors: Thinking Skills, Class Activities, Learning Activities, Science Education
Peer reviewedCampbell, John Angus – Quarterly Journal of Speech, 1986
Addresses the question: If an intellectual change is truly fundamental, how can it be socially comprehensible? Claims that the question is particularly pressing in the case of Darwin's "Origin." Argues that the answer lies in an understanding of how scientific revolutions depend on continuity with an existent cultural grammar. (JD)
Descriptors: Abstract Reasoning, Cognitive Processes, Cultural Influences, Evolution

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