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Deeney, F. A.; O'Leary, J. P. – European Journal of Physics, 2012
For helium and helium-like ions, we have examined the differences between the values of the ionization energies as calculated from the Bohr theory and those measured in experiments. We find that these differences vary linearly with the atomic number of the system. Using this result, we show how the Bohr model for single-electron systems may be…
Descriptors: Nuclear Physics, Models, Scientific Principles, Quantum Mechanics
Talbot, Christopher; Vickneson, Kishanda – School Science Review, 2013
The aim of this "Science Note" is to describe how to test the electron-sea model to determine whether it accurately predicts relative electrical conductivity for first-row transition metals. In the electron-sea model, a metal crystal is viewed as a three-dimensional array of metal cations immersed in a sea of delocalised valence…
Descriptors: Science Instruction, Energy, Metallurgy, Scientific Principles
Gillette, Brandon – International Research in Geographical and Environmental Education, 2015
Place-name geography, as it is sometimes called, is merely the tip of the iceberg in a field that aims to understand people and places and their interactions with the environment. Geography is also the study of spatial distributions and interpreting what they mean. This review lays out the definition of the nature of science as it relates to…
Descriptors: Geography, Geography Instruction, Models, Science Education
Sarac, Hakan; Tarhan, Devrim – European Journal of Educational Research, 2017
In the rapidly developing age of technology, the contribution of using multimedia-supported instructional materials in the field of teaching technologies to science education has been increasing steadily. The purpose of this research is to compare the multimedia learning instructional materials prepared according to the 7E learning model and the…
Descriptors: Academic Achievement, Statistical Analysis, Instructional Materials, Experimental Groups
Baird, Bill – Physics Teacher, 2014
When students are first introduced to the idea of radioactive decay, a large conceptual hurdle must be overcome. The thought that an object's age has no bearing on the chance it will "die" (decay in this case) on a particular day is completely at odds with biological notions of life and death. Through the use of a simple…
Descriptors: Scientific Concepts, Scientific Principles, Teaching Methods, Science Activities
Adúriz-Bravo, Agustín – Interchange: A Quarterly Review of Education, 2014
The aim of this paper is to discuss the use of short science stories based on the history of science for science teacher education. Such stories are implemented to acquaint prospective and practicing science teachers in all educational levels with a conceptualisation of the nature of science (NOS) drawing from recent and contemporary developments…
Descriptors: Science Instruction, Science History, Science Teachers, Teacher Education
Hill, George B.; Sweeney, Joseph B. – Journal of Chemical Education, 2015
Reaction workup can be a complex problem for those facing novel synthesis of difficult compounds for the first time. Workup problem solving by systematic thinking should be inculcated as mid-graduate-level is reached. A structured approach is proposed, building decision tree flowcharts to analyze challenges, and an exemplar flowchart is presented…
Descriptors: Science Instruction, Scientific Principles, Organic Chemistry, College Science
Sjöström, Jesper – Science & Education, 2013
This paper concerns "Bildung"-oriented chemistry education, based on a reflective and critical discourse of chemistry. It is contrasted with the dominant type of chemistry education, based on the mainstream discourse of chemistry. "Bildung"-oriented chemistry education includes not only content knowledge in chemistry, but also…
Descriptors: Chemistry, Science Education, Scientific Principles, Science Instruction
Krell, Moritz; Upmeier zu Belzen, Annette; Krüger, Dirk – Research in Science Education, 2014
It is argued that knowledge about models is an important part of a profound understanding of Nature of Science. Consequently, researchers have developed different "levels of understanding" to analyse students', teachers', or experts' comprehension of this topic. In some approaches, "global" levels of understanding have been…
Descriptors: Foreign Countries, Models, Secondary School Students, Biology
Prytz, Kjell – Physics Education, 2015
Creative learning is discussed with respect to a specific physics topic. A teaching example, based on an apparatus that demonstrates the standard dynamo model of geomagnetism, is presented. It features many of the basic physics concepts within the syllabus of electromagnetism at high-school and university. To stimulate conceptual learning and to…
Descriptors: Physics, Teaching Methods, Units of Study, Electromechanical Technology
Bassingthwaighte, James B.; Chinn, Tamara M. – Advances in Physiology Education, 2013
Abbreviated expressions for enzyme kinetic expressions, such as the Michaelis-Menten (M-M) equations, are based on the premise that enzyme concentrations are low compared with those of the substrate and product. When one does progress experiments, where the solute is consumed during conversion to form a series of products, the idealized conditions…
Descriptors: Equations (Mathematics), Inhibition, Biochemistry, Mechanics (Physics)
Yacoubian, Hagop A. – Canadian Journal of Science, Mathematics and Technology Education, 2015
In this article, I introduce a framework for guiding future citizens to think critically about nature of science (NOS) and "with" NOS as they engage in socioscientific decision making. The framework, referred to as the critical thinking--nature of science (CT-NOS) framework, explicates and targets both NOS as a learning objective and NOS…
Descriptors: Science Education, Critical Thinking, Scientific Principles, Science and Society
Newman, Micah – Science & Education, 2013
In learning chemistry at the entry level, many learners labor under misconceptions about the subject matter that are so fundamental that they are typically never addressed. A fundamental misconception in chemistry appears to arise from an adding of existing phenomenal concepts to newly-acquired chemical concepts, so that beginning learners think…
Descriptors: Science Education, Chemistry, Misconceptions, Scientific Concepts
Lau, Kwok-chi – American Biology Teacher, 2013
This article presents a tangible model used to help students tackle some misconceptions about enzyme actions, particularly the induced-fit model, enzyme-substrate complementarity, and enzyme inhibition. The model can simulate how substrates induce a change in the shape of the active site and the role of attraction force during enzyme-substrate…
Descriptors: Models, Biochemistry, Misconceptions, Scientific Methodology
Shultz, Ginger V.; Gere, Anne Ruggles – Journal of Chemical Education, 2015
Traditional methods for teaching the Lewis dot structure model emphasize rule-based learning and often neglect the purpose and function of the model. Thus, many students are unable to extend their understanding of molecular structures in new contexts. The assignment described here addresses this issue by asking students to read and write about the…
Descriptors: Science Instruction, Chemistry, Teaching Methods, Scientists

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