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Showing 481 to 495 of 1,734 results Save | Export
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Wang, Dake; Khan, Haris – Physics Education, 2013
This paper presents a comparative study of the thermal efficiencies of mechanical heat engines by using a graphical approach based on the pressure-volume ("P-V") diagram. Three types of idealized thermodynamic cycles--the Otto, the Diesel and the Brayton--are compared in pairs. Given the same temperature range within which the engines…
Descriptors: Thermodynamics, Scientific Principles, Engines, Science Instruction
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Seah, Lay Hoon; Yore, Larry D. – International Journal of Science Education, 2017
This study of three science teachers' lessons on heat and temperature seeks to characterise classroom talk that highlighted the ways language is used and to examine the nature of the language demands revealed in constructing, negotiating, arguing and communicating science ideas. The transcripts from the entire instructional units for these…
Descriptors: Science Teachers, Science Instruction, Heat, Thermodynamics
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Seery, Michael K. – Journal of Chemical Education, 2015
This project introduces the idea of "flipped lecturing" to a group of second-year undergraduate students. The aim of flipped lecturing is to provide much of the "content delivery" of the lecture in advance, so that the lecture hour can be devoted to more in-depth discussion, problem solving, and so on. As well as development of…
Descriptors: Chemistry, Lecture Method, Science Instruction, Grades (Scholastic)
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DeFever, Ryan S.; Bruce, Heather; Bhattacharyya, Gautam – Journal of Chemical Education, 2015
Using a constructivist framework, eight senior chemistry majors were interviewed twice to determine: (i) structural inferences they are able to make from chemical and physical properties; and (ii) their ability to apply their inferences and understandings of these chemical and physical properties to solve tasks on the reactivity of organic…
Descriptors: Majors (Students), College Science, Science Instruction, Interviews
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Nilsson, Tor; Niedderer, Hans – Chemistry Education Research and Practice, 2014
Research shows that students have problems understanding thermodynamic concepts and that a gap exists at the tertiary level related to more specific chemistry concepts such as enthalpy. Therefore, the aim of this study is to construct undergraduate students' conceptions of enthalpy, its change and related concepts. Three explorative small-scale…
Descriptors: Undergraduate Students, Scientific Concepts, Thermodynamics, Questionnaires
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Villalta-Cerdas, Adrian; Sandi-Urena, Santiago – Chemistry Education Research and Practice, 2014
Self-explaining refers to the generation of inferences about causal connections between objects and events. In science, this may be summarised as making sense of how and why actual or hypothetical phenomena take place. Research findings in educational psychology show that implementing activities that elicit self-explaining improves learning in…
Descriptors: Chemistry, Science Instruction, Mixed Methods Research, College Science
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Martínez, Leandro – Journal of Chemical Education, 2014
The protein folding (Levinthal's) paradox states that it would not be possible in a physically meaningful time to a protein to reach the native (functional) conformation by a random search of the enormously large number of possible structures. This paradox has been solved: it was shown that small biases toward the native conformation result…
Descriptors: Science Instruction, College Science, Undergraduate Study, Biochemistry
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Johnson, R. Jeremy – Biochemistry and Molecular Biology Education, 2014
HIV protease has served as a model protein for understanding protein structure, enzyme kinetics, structure-based drug design, and protein evolution. Inhibitors of HIV protease are also an essential part of effective HIV/AIDS treatment and have provided great societal benefits. The broad applications for HIV protease and its inhibitors make it a…
Descriptors: Science Instruction, Biochemistry, Acquired Immunodeficiency Syndrome (AIDS), Communicable Diseases
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Peterson, Jacob – American Biology Teacher, 2014
A logical question to be expected from students: "How could life develop, that is, change, evolve from simple, primitive organisms into the complex forms existing today, while at the same time there is a generally observed decline and disorganization--the second law of thermodynamics?" The explanations in biology textbooks relied upon by…
Descriptors: Evolution, Scientific Concepts, Biological Sciences, Scientific and Technical Information
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Carrascal Lecumberri, Edorta; Sala Lizarraga, José María – Journal of Technology and Science Education, 2013
The objective of this paper is to present a laboratory program designed for the Thermodynamics course offered in the Department of Thermal Engineering at the University of the Basque Country. With reference to one of the examples given in the textbook by Moran, Shapiro, Boettner and Bailey (2012), the balances of mass, energy, entropy and exergy…
Descriptors: Thermodynamics, Science Instruction, College Science, Foreign Countries
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Navratil, Zdenek; Dosoudilova, Lenka; Jurmanova, Jana – Physics Education, 2013
In this paper an experiment to study Planck's radiation law is presented. The spectra of a heated furnace and of a halogen lamp under various conditions were measured with a small USB grating spectrometer and fitted using Planck's law. The temperature determined from the fit was then compared with the results of comparative temperature…
Descriptors: Spectroscopy, Science Instruction, Science Experiments, Radiation
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Koutandos, Spyridon – European Journal of Physics Education, 2013
In this article we examine cases of more classical and less classical nature compared to results found by quantum mechanics and attribute a form of Free Energy discontinuity for each case within a boundary layer. The concept of a boundary layer is broadened as to include areas of first or second variations of the Gibbs free energy. It is…
Descriptors: Science Instruction, Quantum Mechanics, Mechanics (Physics), Energy
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Kincanon, Eric – Physics Education, 2013
An alternative method of presenting the second law of thermodynamics in introductory courses is presented. The emphasis is on statistical approaches as developed by Atkins. This has the benefit of stressing the statistical nature of the law.
Descriptors: Thermodynamics, Scientific Principles, Teaching Methods, Introductory Courses
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Frontali, Clara – Physics Education, 2013
Scientific terms drawn from common language are often charged with suggestions that may even be inconsistent with their restricted scientific meaning, thus posing didactic problems. The (non-linear) historical journey of the word "pressure" is illustrated here through original quotations from Stevinus, Torricelli, Pascal, Boyle,…
Descriptors: Scientific Concepts, Definitions, Vocabulary, Intellectual History
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Pereira de Ataide, Ana Raquel; Greca, Ileana Maria – Science & Education, 2013
The relationship between physics and mathematics is hardly ever presented with sufficient clarity to satisfy either physicists or mathematicians. It is a situation that often leads to misunderstandings that may spread quickly from teacher to student, such as the idea that mathematics is a mere instrument for the physicist. In this paper, we…
Descriptors: Problem Solving, Teacher Attitudes, Undergraduate Students, Thermodynamics
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