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Hughes, Stephen – Physics Education, 2022
Archimedes' principle is one of the foundation subjects in physics. Normally the principle is exemplified by reference to floating boats. However, Archimedes' principle also applies to objects embedded in waterlogged ground, which can lead to the surprising result of an object weighing several tons being lifted. A practical example is presented of…
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Principles
Pahwa, Gantavya; Pingali, Rushil G.; Khubchandani, Aashish K.; Roy, Ekansh; Mudaliyar, Roshni R.; Mudaliyar, Rajesh P. – Physics Education, 2017
The aim of this paper is to investigate the stability of a bottle filled with different volumes of water, and to determine the angle at which it topples over for each volume of water. Data for the angle at which the bottle toppled were gathered experimentally using a cylindrical 1 litre bottle, and two theoretical models were then developed,…
Descriptors: Investigations, Water, Geometry, Mechanics (Physics)
Cabeza, Cecilia; Rubido, Nicolás; Martí, Arturo C. – Physics Education, 2014
Entertaining and educational experiments that can be conducted in a water park, illustrating physics concepts, principles and fundamental laws, are described. These experiments are suitable for students ranging from senior secondary school to junior university level. Newton's laws of motion, Bernoulli's equation, based on the conservation of…
Descriptors: Science Instruction, Physics, Water, Recreational Facilities
Siry, Christina; Ziegler, Gudrun; Max, Charles – Science Education, 2012
This research investigates the interconnectedness of scientific inquiring at the early childhood level, as we explore the discourse-in-interaction processes occurring within small inquiry groups of 5- and 6-year-old children. The rationale behind this research is to explore the nature of science-related discourse, and to that end, this work…
Descriptors: Interaction, Socialization, Young Children, Inquiry
OECD Publishing (NJ1), 2012
How "green" are 15-year-olds? To what extent do they understand environmental issues? What are the sources of their information about the environment? Can they apply scientific principles and evidence to the world around them? This paper reports that across OECD (Organisation for Economic Cooperation and Development) countries, around…
Descriptors: School Activities, Environmental Education, Scientific Principles, Scientific Concepts
Gallitto, A. Agliolo; Agnello, S.; Cannas, M. – Physics Education, 2011
We report a laboratory activity, carried out along with high- and secondary-school students, that can be done to increase the interest of the young in scientific studies. Groups of selected students "adopted" experiments at physics research laboratories, under the guidance of university researchers. Subsequently, the students…
Descriptors: Physics, Laboratory Experiments, Science Experiments, Science Instruction
Kaewkhong, Kreetha; Mazzolini, Alex; Emarat, Narumon; Arayathanitkul, Kwan – Physics Education, 2010
This article investigates the optics misconceptions of 220 year 11 Thai high-school students. These misconceptions became apparent when the students attempted to explain how an object submerged in a water tank is "seen" by an observer looking into the tank from above and at an angle. The two diagnostic questions used in the study probe…
Descriptors: Student Attitudes, Optics, Foreign Countries, Misconceptions
Taber, Keith S. – Physics Education, 2011
Teaching about the nature of science is seen as a priority within science education, and has also been highlighted as a suitable context for challenging the most able ("gifted") learners at secondary school level. This article discusses a practical session designed to introduce the idea of physical (natural) laws. The session asks…
Descriptors: Scientific Principles, Science Instruction, Teaching Methods, Secondary School Science
Afonso, Ana Sofia; Gilbert, John K. – International Journal of Science Education, 2010
Although an understanding of nature of science is a core element in scientific literacy, there is considerable evidence that school and university students hold naive conceptions about it. It is argued that, whilst the failure to learn about nature of science arises from its neglect in formal science education, a major reason is the adherence to…
Descriptors: Scientific Principles, Scientific Literacy, Science Education, Universities
Schmidt, Hans-Jurgen; Kaufmann, Birgit; Treagust, David F. – Chemistry Education Research and Practice, 2009
In introductory chemistry courses students are presented with the model that matter is composed of particles, and that weak forces of attraction exist between them. This model is used to interpret phenomena such as solubility and melting points, and aids in understanding the changes in states of matter as opposed to chemical reactions. We…
Descriptors: Molecular Structure, Models, Scientific Concepts, Scientific Principles
Pinarbasi, Tacettin; Sozbilir, Mustafa; Canpolat, Nurtac – Chemistry Education Research and Practice, 2009
This study aimed at identifying prospective chemistry teachers' misconceptions of colligative properties. In order to fulfill this aim, a diagnostic test composed of four open-ended questions was used. The test was administered to seventy-eight prospective chemistry teachers just before qualifying to teaching in secondary schools. Nine different…
Descriptors: Chemistry, Knowledge Base for Teaching, Misconceptions, Scientific Concepts
Costu, Bayram – Chemistry Education Research and Practice, 2008
The aim of this study was to elicit students' conceptions about big bubbles in boiling liquids (water, ethanol and aqueous CuSO[subscript 4] solution). The study is based on twenty-four students at different ages and grades. The clinical interviews technique was conducted to solicit students' conceptions and the interviews were analyzed to…
Descriptors: Concept Formation, Misconceptions, Science Instruction, Scientific Concepts

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