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Leung, Jessica Shuk Ching – Research in Science Education, 2022
The nature of science (NOS) has been recognised as an essential component for engagement with socioscientific issues (SSI). However, the findings on the link between the two have been inconclusive. This calls for a shift from students merely knowing about NOS, to using their understanding of it as a tool for decision-making and participation in…
Descriptors: Scientific Principles, Science and Society, Science Instruction, Intervention
Grieger, Krystal; Schiro, Annie; Leontyev, Alexey – Chemistry Education Research and Practice, 2022
As implementation of green chemistry into university-level courses increases, it is vital that educators have a tool to rapidly measure student knowledge of green chemistry principles. We report the development of the Assessment of Student Knowledge of Green Chemistry Principles (ASK-GCP) and evaluation of its sensitivity and effectiveness for…
Descriptors: Chemistry, Science Instruction, Higher Education, Conservation (Environment)
Ann Cleveland; Asli Sezen-Barrie; Franziska Peterson; Sara Lindsay – Journal of College Science Teaching, 2025
Quantitative reasoning (QR) competencies are increasingly called for in the data rich and complex environment of STEM disciplines, including biology. Curricular reform efforts in QR have been directed at disseminating course design and pedagogy but less work has been directed at understanding what faculty at large view as crucial for student…
Descriptors: Biology, Introductory Courses, Science Instruction, Statistics Education
Woods, Gordon – School Science Review, 2019
Using the layout described here (which could be photocopied or handwritten), students can see how the periodic table was first envisaged after finding similarities in the properties of common elements. Then, with more discoveries some gaps were filled and, when additional elements did not fit, new groups had to be included.
Descriptors: Science Instruction, Chemistry, Charts, Scientific Principles
Archila, Pablo Antonio; Molina, Jorge; de Mejía, Anne-Marie Truscott – Research in Science Education, 2020
Contrary to the situation at primary, middle, and secondary school levels, university science courses provide students with very few opportunities to reflect upon the nature of science (NOS). The first goal of this study was to provide evidence that the co-construction of evolutionary trees, an important component of university biology education,…
Descriptors: Undergraduate Students, College Science, Science Instruction, Scientific Principles
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
Poor, S. V.; Herman, B. C.; Janney, B. A. – Clearing House: A Journal of Educational Strategies, Issues and Ideas, 2023
A robust knowledge of physics entails deeply understanding electricity concepts such as conductivity and resistance. Understanding how circuits work is also critical for ensuring the safe use of electrical technology such as car batteries and downed powerlines. Curricular materials covering these content ideas are readily available for teachers.…
Descriptors: Video Technology, Teaching Methods, Scientific Principles, Science Instruction
Kinskey, Melanie – Journal of Science Teacher Education, 2023
Literature suggests the transfer of understanding the nature of science to instructional practice requires preservice teachers to value teaching about the nature of science. Despite decades of research developing preservice teachers' views of nature of science, there is still a disconnect between their understanding and instructional practice.…
Descriptors: Science Instruction, Teaching Methods, Scientific Principles, Science Teachers
Herman, Benjamin C.; Poor, Sarah V.; Oertli, Robert T.; Schulte, Kristen – Science & Education, 2023
Promoting a functional scientific literacy entails preparing people to effectively engage and make decisions regarding real-world socioscientfic issues (SSI) through consideration of the relevant products and processes of science, as well as social, cultural, environmental, and ethical factors. Students can develop a functional scientific literacy…
Descriptors: Elementary School Students, Elementary School Science, Grade 4, Science and Society
Librea-Carden, Mila Rosa; Mulvey, Bridget K. – Research in Science Education, 2023
Limited research examines the critical intersection between science and special education (SPED), particularly on the nature of science (NOS) in science methods courses. This study addresses this gap by investigating 10 preservice SPED teachers' NOS understanding, NOS implications for SPED, and the integration of NOS into their lesson plans in a…
Descriptors: Scientific Principles, Preservice Teachers, Student Attitudes, Intention
Anugrah Ramadhan Firdaus; Asep Samsudin; Ari Widodo – Elementary School Forum (Mimbar Sekolah Dasar), 2023
An important goal of science education is for students to understand the nature of science. Science education has raised the question of what science is, how scientific knowledge is developed and how people participate in this process under the conceptual umbrella of 'nature of science' (NOS). This study aims to look at the effectiveness of the…
Descriptors: Foreign Countries, Elementary School Students, Science Education, Scientific Principles
Hughes, Stephen; Gurung, Som – Physics Education, 2021
Huygens' principle in which every point on a propagating wave acts like a point source of radiation is a foundation principle of physics. Normally, Huygens' principle is demonstrated by passing a wave, for example a water or light wave through an aperture comparable in size to the wavelength. In this paper, an experiment is described in which a…
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Principles
Acero, Jesus; Carretero, Claudio – IEEE Transactions on Education, 2021
Contribution: This article proposes a comprehensive graduate course on magnetic design that addresses existing gaps in current power electronics (PEs) education, provides theoretical foundations and hands-on skills, and matches syllabi coverage with current societal needs for electronic energy conversion. Background: A growing worldwide interest…
Descriptors: Graduate Study, College Science, Magnets, Power Technology
Zhuang, Haoli; Xiao, Yang; Liu, Qiaoyi; Yu, Bing; Xiong, Jianwen; Bao, Lei – International Journal of Science Education, 2021
Formal understanding of the nature of science (NOS) has been considered to be a major contributor to nurturing students' scientific literacy. In China, this view has been endorsed in the new standard for high school physics curriculum, which has guided the development of the new generation physics textbooks. Following the analytical framework…
Descriptors: Foreign Countries, Scientific Principles, Physics, Science Instruction
Shetranjiwalla, Shegufa; Leach, Nicole; Van Belle, Lori; Kingdon, Kassidy – Journal of Chemical Education, 2021
Is the reductionist approach to teaching chemical principles in the laboratory adequate for students to make effective evaluations? In this work, using the example of sunscreens, students first assessed the analytical chemistry parameters of the active ingredients, later comparing and contrasting them with organic chemistry information for…
Descriptors: Science Instruction, Scientific Principles, Science Laboratories, Organic Chemistry

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