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Showing 601 to 615 of 1,734 results Save | Export
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Chamely-Wiik, Donna M.; Haky, Jerome E.; Galin, Jeffrey R. – Journal of Chemical Education, 2012
Faculty from the chemistry and English departments have developed a combined second-semester honors general chemistry and college writing course that fosters critical thinking through challenging writing assignments. Examples of case-study writing assignments and guidelines are provided that faculty at other institutions can adapt in similar…
Descriptors: Chemistry, Writing Skills, Critical Thinking, Course Content
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Osorio, M. R.; Morales, A. Palacio; Rodrigo, J. G.; Suderow, H.; Vieira, S. – European Journal of Physics, 2012
Liquid-free cryogenic devices are acquiring importance in basic science and engineering. But they can also lead to improvements in teaching low temperature and solid-state physics to graduate students and specialists. Most of the devices are relatively expensive, but small-sized equipment is slowly becoming available. Here, we have designed…
Descriptors: Climate, Physics, Observation, Graduate Students
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Hirsh, Jacob B.; Mar, Raymond A.; Peterson, Jordan B. – Psychological Review, 2012
Entropy, a concept derived from thermodynamics and information theory, describes the amount of uncertainty and disorder within a system. Self-organizing systems engage in a continual dialogue with the environment and must adapt themselves to changing circumstances to keep internal entropy at a manageable level. We propose the entropy model of…
Descriptors: Information Theory, Thermodynamics, Information Systems, Scientific Concepts
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Mayorga, Luis S.; Lopez, Maria Jose; Becker, Wayne M. – CBE - Life Sciences Education, 2012
Thermodynamic principles are basic to an understanding of the complex fluxes of energy and information required to keep cells alive. These microscopic machines are nonequilibrium systems at the micron scale that are maintained in pseudo-steady-state conditions by very sophisticated processes. Therefore, several nonstandard concepts need to be…
Descriptors: Thermodynamics, Chemistry, Scientific Concepts, Cytology
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Moyer, Richard H.; Everett, Susan A. – Science Scope, 2012
While ice is usually referred to as ice cubes, indeed, most are not really cubes at all. In this 5E learning-cycle lesson, students will investigate different shapes of ice and how shape affects the speed of melting and the rate of cooling a glass of water. Students will compare three different shapes of ice with the same volume but different…
Descriptors: Scientific Concepts, Elementary Secondary Education, Demonstrations (Educational), Science Instruction
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McLoughlin, Eilish, Ed.; Finlayson, Odilla E., Ed.; Erduran, Sibel, Ed.; Childs, Peter E., Ed. – Contributions from Science Education Research, 2019
This edited volume presents innovative current research in the field of Science Education. The chapter's deal with a wide variety of topics and research approaches, conducted in a range of contexts and settings. Together they make a strong contribution to knowledge on science teaching and learning. The book consists of selected presentations from…
Descriptors: Theory Practice Relationship, Science Education, Teaching Methods, Learning Processes
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Wolfson, Adele J.; Rowland, Susan L.; Lawrie, Gwendolyn A.; Wright, Anthony H. – Chemistry Education Research and Practice, 2014
Students commencing studies in biochemistry must transfer and build on concepts they learned in chemistry and biology classes. It is well established, however, that students have difficulties in transferring critical concepts from general chemistry courses; one key concept is "energy." Most previous work on students' conception of energy…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, Energy
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Wren, David; Barbera, Jack – Chemistry Education Research and Practice, 2014
Assessing conceptual understanding of foundational topics before instruction on higher-order concepts can provide chemical educators with information to aid instructional design. This study provides an instrument that can be used to identify students' alternative conceptions regarding thermochemistry concepts. The Thermochemistry Concept Inventory…
Descriptors: Psychometrics, Thermodynamics, Chemistry, Item Response Theory
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Bringuier, E. – European Journal of Physics, 2011
This paper is an elementary introduction to particle diffusion in a medium where the coefficient of diffusion varies with position. The introduction is aimed at third-year university courses. We start from a simple model of particles hopping on a discrete lattice, in one or more dimensions, and then take the continuous-space limit so as to obtain…
Descriptors: Experiments, Calculus, College Curriculum, Higher Education
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Glasser, Leslie – Journal of Chemical Education, 2011
Formula unit (or molecular) volume, "V[subscript m]", is related to many thermodynamic and physical properties of materials, so that knowledge of "V[subscript m]" is useful in prediction of such properties for known and even hypothetical materials. The symbol "Z" represents the number of formula units in a crystallographic unit cell; "Z" thus…
Descriptors: Thermodynamics, Chemistry, Scientific Concepts, Science Instruction
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Ciccioli, Andrea; Glasser, Leslie – Journal of Chemical Education, 2011
For most materials, the solid at and near the triple-point temperature is denser than the liquid with which it is in equilibrium. However, for water and certain other materials, the densities of the phases are reversed, with the solid being less dense. The profound consequences for the appearance of the "pVT" diagram of one-component materials…
Descriptors: Chemistry, Science Instruction, Water, Visual Aids
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Ben-Naim, Arieh – Journal of Chemical Education, 2011
Changes in entropy can "sometimes" be interpreted in terms of changes in disorder. On the other hand, changes in entropy can "always" be interpreted in terms of changes in Shannon's measure of information. Mixing and demixing processes are used to highlight the pitfalls in the association of entropy with disorder. (Contains 3 figures.)
Descriptors: Scientific Concepts, Science Instruction, College Science, Chemistry
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LoPresto, Michael C.; Hagoort, Nichole – Physics Teacher, 2011
What follows is a description of several activities involving the Stefan-Boltzmann radiation law that can provide laboratory experience beyond what is normally found in traditional introductory thermodynamics experiments on thermal expansion, specific heat, and heats of transformation. The activities also provide more extensive coverage of and…
Descriptors: Thermodynamics, Radiation, Scientific Principles, Science Instruction
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Donnelly, Dermot F.; Vitale, Jonathan M.; Linn, Marcia C. – Journal of Science Education and Technology, 2015
Middle school students struggle to explain thermodynamics concepts. In this study, to help students succeed, we use a natural language processing program to analyze their essays explaining the aspects of thermodynamics and provide guidance based on the automated score. The 346 sixth-grade students were assigned to either the critique condition…
Descriptors: Middle School Students, Grade 6, Secondary School Science, Thermodynamics
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Bowen, Alec S.; Reid, Daniel R.; Koretsky, Milo D. – Chemical Engineering Education, 2015
In this project, we explore the use of threshold concept theory as a design basis for development of Interactive Virtual Laboratories in thermodynamics. Thermodynamics is a difficult subject for chemical and biological engineering students to master. One reason for the difficulty is the diverse and challenging set of threshold concepts that they…
Descriptors: Thermodynamics, Science Laboratories, Computer Simulation, Science Process Skills
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