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Joseph Salve; Pranshi Upadhyay; K. K. Mashood; Sanjay Chandrasekharan – Science & Education, 2025
Science learning requires students to build new mental models of imperceptible mechanisms (photosynthesis, circadian rhythms, atmospheric pressure, etc.). Since mechanisms are structurally complex and dynamic, building such mental models requires mentally simulating novel structures, their state changes, and higher-order transformations…
Descriptors: Language Usage, Schemata (Cognition), Science Education, Science Instruction
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Jen-Yi Wu; Sibel Erduran – Science & Education, 2024
In this paper, we use the "Family Resemblance Approach" (FRA) as a framework to characterize how scientists view the nature of science (NOS). FRA presents NOS as a "system" that includes clusters or categories of ideas about the cognitive-epistemic and social-institutional aspects of science. For example, the…
Descriptors: Scientific Principles, Scientists, Attitudes, Foreign Countries
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Kara C. Oatman; Nancy A. Price – American Biology Teacher, 2024
The Next Generation Science Standards (NGSS) engage students in the epistemic, or knowledge building, components of science through three-dimensional learning. Each scientific domain has its own epistemic aspects that result from different social groups going about science in different ways to conceptualize different bodies of knowledge; education…
Descriptors: Science Education, Biological Sciences, Teaching Methods, Theory Practice Relationship
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Anna Garrido; Digna Couso – Journal of Research in Science Teaching, 2025
The importance of models and modeling in science education is well-recognized, yet there exists significant polysemy among these terms within the literature. This ambiguity often leads to confusion, particularly regarding whether modeling represents an expected student performance, an instructional strategy to promote such performance, or both.…
Descriptors: Science Education, Learner Engagement, Models, Educational Practices
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Schweitzer, Jill Kuglin; Tobin, Wes; Krerowicz, Sam; Blakefield, Mary; Olson, Brian; Law, Yu Kay – New Directions for Teaching and Learning, 2023
Exploring the value of course assessment across multiple teaching modalities, this chapter provides a framework for improving introductory science courses by evaluating the impact of pedagogical modality on student learning.
Descriptors: Introductory Courses, Science Education, Teaching Methods, Comparative Analysis
Jordan D. Sherry-Wagner – ProQuest LLC, 2023
This dissertation is aimed at articulating and empirically characterizing an expansive orientation to field-based socio-ecological systems learning that elevates participatory and ethically-engaged approaches to teaching and learning. Grounded in relational ways of knowing, this dissertation works to expand and transform normative educational…
Descriptors: Teaching Methods, Ethics, Comprehension, Inquiry
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Jean Bosco Bugingo; Lakhan Lal Yadav; Innocent Sebasaza Mugisha; K. K. Mashood – Science & Education, 2024
The paper aims to provide a review of literature that emphasizes students' and teachers' views on the nature of science (NOS) and associated instructional approaches to develop adequate understanding of the NOS that have been employed in different contexts. One hundred and seventy-two (172) studies were selected from ResearchGate, Academia, Google…
Descriptors: Foreign Countries, Science Education, Scientific Principles, Students
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Liora Katz; Leonardo Silva-Dias; Milos Dolnik – Journal of Chemical Education, 2024
Under the appropriate conditions, oscillatory chemical reactions have the capacity to generate chemical waves and spatial patterns. Among these structures, Turing patterns are a distinct class that, to date, has not been commonly demonstrated in a classroom environment. We present here a novel, practical procedure for the demonstration of Turing…
Descriptors: Science Education, Scientific Concepts, Chemistry, Lecture Method
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Valeria Edelsztein; Claudio Cormick – Science & Education, 2025
In this article, we tackle the phenomenon of what seems to be a misunderstanding between science education theory and philosophy of science--one which does not seem to have received any attention in the literature. While there seems to be a consensus within the realm of science education on limiting or altogether denying the explanatory role of…
Descriptors: Scientific Principles, Scientific Concepts, Science Education, Epistemology
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Schriebl, Daniela; Müller, Andreas; Robin, Nicolas – Science & Education, 2023
The terms 'authenticity' and 'authentic' have been used increasingly frequently in educational contexts over the past decades. In science education, authenticity is claimed to be a crucial concept, inter alia, for students' motivation and interest in science. However, both terms are used, defined and conceptualised in various and ambiguous ways.…
Descriptors: Science Education, Authentic Learning, Student Motivation, Models
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Gerard Parkin – Journal of Chemical Education, 2023
A convenient approach to obtain Lewis structures for compounds of the type YX[subscript n] involves first constructing a trial structure that satisfies the valence of the outer atoms (e.g.,1 bond for fluorine, 2 bonds for oxygen, and 3 bonds for nitrogen)and placing the molecular charge (if any) on the central atom. The second step involves…
Descriptors: Chemistry, Molecular Structure, Scientific Concepts, Science Education
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Andy Markwick; Michael J. Reiss – FORUM: for promoting 3-19 comprehensive education, 2024
Today's school students are faced with complex and harmful global challenges that they will need to address. The ability to think critically and creatively, to work in interdisciplinary teams and to understand the importance of a healthy planet for all life will be key to success. Education, including school education, has a major role in helping…
Descriptors: Global Approach, Curriculum Development, Teaching Methods, Educational Change
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Antonio García-Carmona – Science & Education, 2025
For many years, hegemonic approaches to teaching the nature of science (NOS) have focused mainly on understanding some epistemic (i.e., rational, or cognitive) aspects involved in the construction of science. So, aspects of a non-epistemic (i.e., non-rational, contextual, or extra-scientific) nature have been practically neglected in these…
Descriptors: Science Instruction, Teaching Methods, Scientific Principles, Holistic Approach
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Andy Markwick; Michael J. Reiss – Curriculum Journal, 2025
Today's school students are inheriting complex and harmful global challenges that are potentially irreversible and which they will need to address. The ability to think critically and creatively, to work in interdisciplinary teams and to understand the importance of a healthy planet for all life will be needed for success. Education has a major…
Descriptors: Educational Change, Curriculum Development, Global Approach, Teaching Methods
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Katherine Landau Wright; Julianne Wenner; Tracey S. Hodges – Reading Teacher, 2024
One strategy for developing science literacy and scientific literacy in young children is through published trade books. To better understand how science literacy and scientific literacy may be represented in elementary classrooms, we investigated children's books that explore science concepts. Specifically, we examined high-quality science trade…
Descriptors: Books, Misinformation, Scientific Literacy, Elementary School Students
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