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Showing 1 to 15 of 93 results Save | Export
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Jennifer C. Parrish; Jacob Pleasants; Joshua W. Reid; Bridget K. Mulvey; Erin E. Peters-Burton; Abigail Recker – Science & Education, 2024
Due to the substantial emphasis on engineering in K-12 science education efforts in the USA, it is important for teachers to develop a deeper understanding of the nature of engineering (NOE) and the relationship between engineering and science. A deep understanding is characterized not only by the presence or absence of ideas but also by the…
Descriptors: Network Analysis, Science Instruction, Teacher Attitudes, Preservice Teachers
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Roseleena Anantanukulwong; Surasak Chiangga; Pongprapan Pongsophon; Aik-Ling Tan – Science & Education, 2024
This article presents an empirical study of the use of Indigenous knowledge of the "Bulan" kite to teach the concept of "equilibrium" among Muslim students (n = 109 students) in private Islamic schools (in the southern part of Thailand). The design of the culturally responsive teaching comprising three lessons was guided by the…
Descriptors: Science Instruction, Teaching Methods, Scientific Concepts, Indigenous Knowledge
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Bøe, Maria Vetleseter; Viefers, Susanne – Science & Education, 2023
Teaching and learning of quantum physics at secondary level is an active field of research. One important challenge is finding ways to promote understanding of quantum concepts without the mathematical formalism that is embedded in quantum mechanics but unavailable on the secondary level. We investigated Norwegian secondary students' (N = 291)…
Descriptors: Secondary School Students, Scientific Principles, Physics, Science Instruction
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Tan, Aik-Ling; Ong, Yann Shiou; Ng, Yong Sim; Tan, Jared Hong Jie – Science & Education, 2023
Balancing disciplinary knowledge and practical reasoning in problem solving is needed for meaningful learning. In STEM problem solving, science subject matter with associated practices often appears distant to learners due to its abstract nature. Consequently, learners experience difficulties making meaningful connections between science and their…
Descriptors: STEM Education, Problem Solving, Middle School Students, Grade 8
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Manz, Eve; Beckert, Betsy – Science & Education, 2023
Changing where, when, and how objects are studied is central to lab-based science (Knorr Cetina, 1999). Science involves changing the scale of objects--particularly scales of size, time, and intensity--from what is experienced in the world. Similar to investigations conducted in science laboratories, classroom investigations involve…
Descriptors: Science Instruction, Elementary School Students, Heat, Scientific Concepts
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Satanassi, Sara; Branchetti, Laura; Fantini, Paola; Casarotto, Rachele; Caramaschi, Martina; Barelli, Eleonora; Levrini, Olivia – Science & Education, 2023
Among the relevant aspects of the family resemblance approach (FRA), our study focuses on the potential of the approach to elaborate on disciplinary identities in an interdisciplinary context, specifically regarding the interplay between physics and mathematics. We present and discuss how the FRA wheel can be used and intertwined with the…
Descriptors: Interdisciplinary Approach, Proximity, Physics, Mathematics
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Okan, Beyza; Kaya, Ebru – Science & Education, 2023
Reconceptualized Family Resemblance Approach to Nature of Science (RFN) explains science as a cognitive, epistemic, and social institutional system. The aim of this study is to examine the inclusion of Nature of Science (NOS) in the 5th, 6th, 7th, and 8th grade Turkish middle school science textbooks. The "content," "activity,"…
Descriptors: Foreign Countries, Scientific Principles, Middle Schools, Secondary School Science
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Voss, Sarah; Kent-Schneider, Isaiah; Kruse, Jerrid; Daemicke, Ren – Science & Education, 2023
While much is known about teacher learning of nature of science (NOS) concepts, less is known about how teachers develop an understanding of how to effectively teach NOS or how instructional views might differ across levels of the Family Resemblance Approach (FRA) wheel. Therefore, this study investigated the NOS instructional views related to…
Descriptors: Preservice Teachers, Science Teachers, Scientific Principles, Science Instruction
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Li, Xiaoshan; Li, Yanyan; Wang, Wenjing – Science & Education, 2023
Meaningful learning for conceptual change in science education should aim to help students change their existing misconceptions to develop an accurate understanding of scientific concepts. Although collaborative argumentation is assumed to support such processes, its value for conceptual change is unclear. Moreover, the roles of argumentative…
Descriptors: Concept Formation, Scientific Concepts, Persuasive Discourse, Science Education
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Kamphorst, Floor; Vollebregt, M. J.; Savelsbergh, E. R.; van Joolingen, W. R. – Science & Education, 2023
Einstein's derivation of special relativity theory (SRT), based on hypothetical reasoning and thought experiments, is regarded as a prime example of physics theory development. In secondary education, the introduction of SRT could provide a great opportunity for students to engage in physics theorizing, but this opportunity is largely being missed…
Descriptors: Physics, Scientific Concepts, Secondary School Science, Science Education
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Fernández-Carro, Remo; Vílchez, José Eduardo; Vílchez-González, José Miguel; Ezquerra, Ángel – Science & Education, 2023
Do pre-service teachers have the same beliefs in superstitions and pseudoscience as the members of their generation? We expect so, because they are slightly different in at least two of the variables that explain differences, namely family income and level of studies, and also, normatively, because beliefs among teaching staff appear to be a key…
Descriptors: Foreign Countries, Preservice Teachers, Beliefs, Scientific Attitudes
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Khishfe, Rola – Science & Education, 2023
The goal of all reform documents in science education is to target scientific literacy. Toward that end, having students understand the nature of science (NOS) is a critical component. As it turns out, the development of NOS conceptions is a cognitive learning outcome. Therefore, an explicit approach needs to be promoted and emphasized in the…
Descriptors: Educational Improvement, Scientific Principles, Scientific Concepts, Literature Reviews
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Öberg, Gunilla; Campbell, Alice; Fox, Joanne; Graves, Marcia; Ivanochko, Tara; Matsuchi, Linda; Mouat, Isobel; Welsh, Ashley – Science & Education, 2022
The widespread misperception of science as a deliverer of irrefutable facts, rather than a deliberative process, is undermining public trust in science. Science education therefore needs to better support students' understanding of the central role that disputes play in the scientific process. Successfully incorporating scientific disputes into…
Descriptors: Science Instruction, College Freshmen, Scientific Concepts, Science Process Skills
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Gallegos-Cázares, Leticia; Flores-Camacho, Fernando; Calderón-Canales, Elena – Science & Education, 2022
Most students have interacted with scientific representations that are used as teaching resources in schools. Often these external representations present challenges for understanding. By utilizing a framework based on an inferential, epistemic approach to scientific representations, we have analyzed students' representational constructions of the…
Descriptors: Elementary School Students, Student Attitudes, Knowledge Level, Scientific Literacy
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Bateman, Kathryn M.; Wilson, Cristina G.; Williams, Randolph T.; Tikoff, Basil; Shipley, Thomas F. – Science & Education, 2022
Understanding and communicating uncertainty is a key skill needed in the practice of science. However, there has been little research on the instruction of uncertainty in undergraduate science education. Our team designed a module within an online geoscience field course which focused on explicit instruction around uncertainty and provided…
Descriptors: Direct Instruction, Science Education, Undergraduate Students, Earth Science
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