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Günter, Katerina P.; Gullberg, Annica; Ahnesjö, Ingrid – Science Education, 2021
Studying biology entails negotiating knowledges, identities, and what paths, more or less well-trodden, to follow. Knowledges, identities, and paths within the very practices of science are fundamentally gendered and it is, therefore, critical to recognize when exploring students' learning and participation in natural sciences. Even though…
Descriptors: Foreign Countries, Undergraduate Students, College Science, Biology
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Hartelt, Tim; Martens, Helge; Minkley, Nina – Science Education, 2022
Students possess alternative conceptions of many science topics, and these conceptions can act as obstacles for learning scientific concepts. In the field of biology education, students' alternative conceptions of evolution have been widely investigated. However, there is little research on how teachers diagnose and deal with these alternative…
Descriptors: Science Education, Scientific Concepts, Misconceptions, Concept Formation
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Heddy, Benjamin C.; Sinatra, Gale M. – Science Education, 2013
Teaching and learning about complex scientific content, such as biological evolution, is challenging in part because students have a difficult time seeing the relevance of evolution in their everyday lives. The purpose of this study was to explore the effectiveness of the Teaching for Transformative Experiences in Science (TTES) model (Pugh, 2002)…
Descriptors: Misconceptions, Science Instruction, Transformative Learning, Evolution
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Novick, Laura R.; Catley, Kefyn M. – Science Education, 2014
Science is an important domain for investigating students' responses to information that contradicts their prior knowledge. In previous studies of this topic, this information was communicated verbally. The present research used diagrams, specifically trees (cladograms) depicting evolutionary relationships among taxa. Effects of college…
Descriptors: Visual Aids, Evolution, Taxonomy, College Students
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Williams, Michelle; DeBarger, Angela Haydel; Montgomery, Beronda L.; Zhou, Xuechun; Tate, Erika – Science Education, 2012
This study examines students' understanding of the normative connections between key concepts of cell division, including both mitosis and meiosis, and underlying biological principles that are critical for an in-depth understanding of genetic inheritance. Using a structural equation modeling method, we examine middle school students'…
Descriptors: Factor Analysis, Genetics, Middle School Students, Structural Equation Models
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Kindfield, A. C. H. – Science Education, 1994
Reports on the meiosis models utilized by five individuals at each of three levels of expertise in genetics as each reasoned about this process in an individual interview setting. Results revealed a set of biologically correct features common to all individuals' models as well as a variety of model flaws (i.e., meiosis misunderstandings) which are…
Descriptors: Biology, Educational Research, Genetics, High Schools
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Dagher, Zoubeida R.; Boujaoude, Saouma – Science Education, 2005
This study explored how some college students understand the nature of the theory of evolution and how they evaluate its scientific status. We conducted semistructured interviews with 15 college biology seniors in which we asked them to explain why they think evolution assumes the status of a scientific theory, how it compares to other scientific…
Descriptors: Theories, Evolution, Undergraduate Students, Student Reaction
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Palmer, David H. – Science Education, 1999
Describes a study that investigated whether scientific and nonscientific understandings in the same content area are linked. Finds that students' (n=107) explanations indicate that they were using an "if-then" type of reasoning which linked scientific and nonscientific conceptions. Contains 39 references. (Author/WRM)
Descriptors: Biology, Cognitive Processes, Cognitive Structures, Elementary Secondary Education
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Hewson, Peter W.; Tabachnick, B. Robert; Zeichner, Kenneth M.; Lemberger, John – Science Education, 1999
Summarizes a complex study of a science-teacher-education program whose goal was to graduate teachers who held conceptual change conceptions of teaching science and were disposed to put hem into practice. Concludes that there are influences on prospective teachers from their content coursework that have significant implications for how they view…
Descriptors: Action Research, Biology, Constructivism (Learning), Elementary Secondary Education
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Hewson, Peter W.; Tabachnick, B. Robert; Zeichner, Kenneth M.; Blomker, Kathryn B.; Meyer, Helen; Lemberger, John; Marion, Robin; Park, Hyun-Ju; Toolin, Regina – Science Education, 1999
Introduces an issue that details a complex study of a science-teacher-education program whose goal was to graduate teachers who held conceptual change conceptions of teaching science and were disposed to put them into practice. Presents a conceptual framework for science-teacher education, and describes the context and major questions of the…
Descriptors: Action Research, Biology, Constructivism (Learning), Elementary Secondary Education
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Keselman, Alla; Kaufman, David R.; Patel, Vimla L. – Science Education, 2004
A primary objective for science education is to impart robust knowledge that has applicability to real-world problems. This article presents research investigating the relationship between adolescents' conceptual understanding of the biological basis of HIV and critical reasoning. Middle and high school students were interviewed about their…
Descriptors: Middle School Students, High School Students, Sexually Transmitted Diseases, Adolescents