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Park, Chulkyu; Hong, Hun-Gi – Science & Education, 2022
This study sought to discover what aspects of the nature of science (NOS) should be emphasized to nurture great scientists. To this end, educational practices in the Sommerfeld school, regarded as highly successful in scientist education, were analyzed and compared with past and present educational practices. Sommerfeld school's educational…
Descriptors: Educational Practices, Science Education, Scientific Principles, Scientists
Puttick, Steven; Cullinane, Alison – Journal of Geography in Higher Education, 2022
This paper offers an exploratory account of the Nature of Geography (NOG) for geography education. The proposed NOG framework describes geography through the theoretical offerings of the family resemblance approach across the dimensions of: aims and values; knowledge; methods and methodological rules; practices; and geography as a…
Descriptors: Geography Instruction, Scientific Principles, Science Education, Guidelines
Cristiano B. Moura, Editor – Springer, 2025
This edited volume features a collection of essays on the COVID-19 pandemic and associated crises and its implications for science education research and practice from a socio-political perspective. Taking the pandemic as a starting point -- and understanding the pandemic as an event that exposes science-society relationships in their complexities…
Descriptors: Science and Society, Science Education, COVID-19, Pandemics
Shane, Joseph W.; Binns, Ian C.; Meadows, Lee; Hermann, Ronald S.; Benus, Matthew J. – Journal of Science Teacher Education, 2016
Science and religion are two indisputably profound and durable cultural forces with a complex history of interaction. As ASTE members are aware, these interactions often manifest themselves in classrooms and in the surrounding communities. In this essay, we encourage science teacher educators to broaden their perspectives of science-religion…
Descriptors: Science Education, Religion Studies, Fused Curriculum, Evolution
Hardman, Mark – School Science Review, 2017
Doing science involves the development and evaluation of models. These models are not objective truths but can be understood as explanations, which scientists use to explore and reason about an aspect of the world. Learning science involves students expressing and engaging with models in the classroom. However, this learning should not be seen as…
Descriptors: Models, Science Education, Learning Strategies, Learning Processes
Gleason, Tristan – Educational Studies: Journal of the American Educational Studies Association, 2017
This article explores recent developments in the field of science and technology, and the work of Bruno Latour in particular, to problematize the nature of Nature in science education. Although science and technology studies, and the scholarship on science education alike, have become increasingly attentive to the antidemocratic habits of science…
Descriptors: Science Education, Politics of Education, Scientific Principles, Science Education History
Cross, R. – Physics Education, 2015
Experiments are described on collisions between two billiard balls and between a bat and a ball. The experiments are designed to extend a student's understanding of collision events and could be used either as a classroom demonstration or for a student project.
Descriptors: Science Education, Demonstrations (Educational), Student Projects, Science Experiments
Lane, W. Brian – Physics Teacher, 2014
The traditional introductory-level meterstick-balancing lab assumes that students already know what torque is and that they readily identify it as a physical quantity of interest. We propose a modified version of this activity in which students qualitatively and quantitatively measure the amount of force required to keep the meterstick level. The…
Descriptors: Introductory Courses, Science Education, Educational Practices, Teaching Methods
Lietor-Santos, Juan Jose – Physics Teacher, 2014
The study of the ideal solenoid is a common topic among introductory-based physics textbooks and a typical current arrangement in laboratory hands-on experiences where the magnetic field inside a solenoid is determined at different currents and at different distances from its center using a magnetic probe. It additionally provides a very simple…
Descriptors: Magnets, Physics, Science Experiments, Computer Simulation
Campanile, Megan F.; Lederman, Norman G.; Kampourakis, Kostas – Science & Education, 2015
The purpose of this study was to analyze seven widely used high school biology textbooks in order to assess the nature of science knowledge (NOS) and scientific inquiry (SI) aspects they, explicitly or implicitly, conveyed in the Mendelian genetics sections. Textbook excerpts that directly and/or fully matched our statements about NOS and SI were…
Descriptors: Genetics, Science Education, Science Education History, High Schools
A Stopped-Flow Kinetics Experiment for the Physical Chemistry Laboratory Using Noncorrosive Reagents
Prigodich, Richard V. – Journal of Chemical Education, 2014
Stopped-flow kinetics techniques are important to the study of rapid chemical and biochemical reactions. Incorporation of a stopped-flow kinetics experiment into the physical chemistry laboratory curriculum would therefore be an instructive addition. However, the usual reactions studied in such exercises employ a corrosive reagent that can over…
Descriptors: Laboratory Experiments, Kinetics, Chemistry, Science Activities
Tasker, Roy – Teaching Science, 2014
Why is chemistry so difficult? A seminal paper by Johnstone (1982) offered an explanation for why science in general, and chemistry in particular, is so difficult to learn. He proposed that an expert in chemistry thinks at three levels; the macro (referred to as the observational level in this article), the sub-micro (referred to as the molecular…
Descriptors: Chemistry, Visualization, Molecular Structure, Theory Practice Relationship
Lederman, Judith S.; Lederman, Norman G.; Bartos, Stephen A.; Bartels, Selina L.; Meyer, Allison Antink; Schwartz, Renee S. – Journal of Research in Science Teaching, 2014
Helping students develop informed views about scientific inquiry (SI) has been and continues to be a goal of K-12 science education, as evidenced in various reform documents. Nevertheless, research focusing on understandings of SI has taken a perceptible backseat to that which focuses on the "doing" of inquiry. We contend that this is…
Descriptors: Science Education, Measures (Individuals), Inquiry, Educational Change
Roberts, Ros; Johnson, Philip – Curriculum Journal, 2015
Recent school science curriculum developments in many countries emphasise that scientists derive evidence for their claims through different approaches; that such practices are bound up with disciplinary knowledge; and that the quality of data should be appreciated. This position paper presents an understanding of the validity of data as a set of…
Descriptors: Educational Quality, Data, Concept Mapping, Scientific Concepts
Forjan, Matej; Sliško, Josip – European Journal of Physics Education, 2014
This article presents the results of an analysis of three Slovenian textbooks for high school physics, from the point of view of simplifications and idealizations in the field of mechanics. In modeling of physical systems, making simplifications and idealizations is important, since one ignores minor effects and focuses on the most important…
Descriptors: Mechanics (Physics), High Schools, Curriculum, Curriculum Research

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