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Van den Eynde, Sofie; Goedhart, Martin; Deprez, Johan; De Cock, Mieke – International Journal of Science and Mathematics Education, 2023
From literature, we know that making the connections between mathematics and physics is not trivial for most students, even at the advanced level. In the specific context of partial derivatives in thermodynamics, research suggests that making explicit connections between the mathematics and the physics is necessary to foster student understanding.…
Descriptors: Graphs, Mathematical Concepts, Heat, Equations (Mathematics)
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Paul J. Emigh; Corinne A. Manogue – Physical Review Physics Education Research, 2024
Physics experts and students commonly use a variety of representations when working with partial derivatives, including symbols, graphs, and words. One especially powerful representation is the contour graph. In open-ended problem-solving interviews with nine upper-division physics students, we asked students to determine derivatives from contour…
Descriptors: Physics, Scientific Concepts, Concept Formation, Geometric Concepts
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Paczesniak, Tomasz; Rydel-Ciszek, Katarzyna; Chmielarz, Pawel; Charczuk, Maria; Sobkowiak, Andrzej – Journal of Chemical Education, 2018
Spontaneity criteria for processes with useful (especially electrical) work have been discussed based on total differentials of thermodynamic functions. Reaction Gibbs energy ([Delta][subscript r]G) and electrochemical reaction Gibbs energy ([Delta][subscript r]G~) have been juxtaposed. Three-dimensional graphs showing the dependencies of…
Descriptors: Chemistry, Science Instruction, Energy, Thermodynamics
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Novak, Igor – Journal of Chemical Education, 2018
Chemical equilibrium is one of the most important concepts in chemistry. The changes in properties of the chemical system at equilibrium induced by variations in pressure, volume, temperature, and concentration are always included in classroom teaching and discussions. This work introduces a novel, geometrical approach to understanding the…
Descriptors: Science Instruction, Scientific Concepts, College Science, Undergraduate Study
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DePierro, Ed; Garafalo, Fred; Gordon, Patrick – Journal of Chemical Education, 2018
Science students need exposure to activities that will help them to become familiar with phenomena exhibiting exponential decay. This paper describes an experiment that allows students to determine the rate of thermal energy loss by a hot object to its surroundings. It requires limited equipment, is safe, and gives reasonable results. Students…
Descriptors: Energy Conservation, Energy Management, Thermodynamics, Graphs
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Perez-Benito, Joaquin F. – Journal of Chemical Education, 2017
The elementary reaction sequence A ? I ? Products is the simplest mechanism for which the steady-state and quasi-equilibrium kinetic approximations can be applied. The exact integrated solutions for this chemical system allow inferring the conditions that must fulfill the rate constants for the different approximations to hold. A graphical…
Descriptors: Chemistry, Kinetics, Scientific Concepts, Graduate Study
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Borge, Javier – Journal of Chemical Education, 2015
G, G°, [delta][subscript r]G, [delta][subscript r]G°, [delta]G, and [delta]G° are essential quantities to master the chemical equilibrium. Although the number of publications devoted to explaining these items is extremely high, it seems that they do not produce the desired effect because some articles and textbooks are still being written with…
Descriptors: Chemistry, Energy, Scientific Concepts, Thermodynamics
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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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Hanson, Robert M. – Journal of Chemical Education, 2012
During the years 1873-1879, J. Willard Gibbs published his now-famous set of articles that form the basis of the current perspective on chemical thermodynamics. The second article of this series, "A Method of Geometrical Representation of the Thermodynamic Properties of Substances by Means of Surfaces," published in 1873, is particularly notable…
Descriptors: Graphs, Chemistry, Lecture Method, Thermodynamics
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Bindel, Thomas H. – Journal of Chemical Education, 2010
Entropy analyses as a function of the extent of reaction are presented for a number of physicochemical processes, including vaporization of a liquid, dimerization of nitrogen dioxide, and the autoionization of water. Graphs of the total entropy change versus the extent of reaction give a visual representation of chemical equilibrium and the second…
Descriptors: Chemistry, Scientific Concepts, Data Analysis, Graphs
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Book, Neil L.; Sitton, Oliver C. – Chemical Engineering Education, 2010
The thermodynamic equations used to define and compute the fugacity of a pure substance are depicted as processes on a semi-logarithmic plot of pressure vs. molar Gibbs energy (PG diagram) with isotherms for the substance behaving as an ideal gas superimposed. The PG diagram clearly demonstrates the physical basis for the definitions and the…
Descriptors: Thermodynamics, Graphs, Computation, Engineering Education
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Hanson, Robert M.; Riley, Patrick; Schwinefus, Jeff; Fischer, Paul J. – Journal of Chemical Education, 2008
The use of qualitative graphs of Gibbs energy versus temperature is described in the context of chemical demonstrations involving phase changes and colligative properties at the general chemistry level. (Contains 5 figures and 1 note.)
Descriptors: Graphs, Chemistry, College Science, Science Instruction
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Cortes-Figueroa, Jose E.; Moore-Russo, Deborah A. – Journal of Chemical Education, 2006
The kinetics experiments on the ligand-C[subscript 60] exchange reactions on (dihapto-[60]fullerene) pentacarbonyl tungsten(0), ([eta][superscript 2]-C[subscript 60])W(CO)[subscript 5], form an educational activity for the inorganic chemistry laboratory that promotes graphical thinking as well as the understanding of kinetics, mechanisms, and the…
Descriptors: Learning Activities, Kinetics, Inorganic Chemistry, Thermodynamics