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Obaya-Valdivia, Adolfo Eduardo; Osorio, Carlos Montaño; Rodríguez, Yolanda Marina Vargas – Online Submission, 2022
This paper seeks to evaluate learning based on the competency approach, taking a didactic experience to evaluate a possible improvement in the ability to solve problems and for autonomous learning in general. For the didactic development, the theme "gases" was taken, which is generally enunciated: Corpuscular kinetic theory of matter;…
Descriptors: Competency Based Education, Chemistry, Physics, Science Instruction
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Zorrilla, David; Sánchez-Márquez, Jesús; García, Víctor; Fernández, Manuel – Journal of Chemical Education, 2019
Teaching and understanding the concepts related to ideal gases and their transformations is relatively uncomplicated. However, for science and engineering students, reaching an understanding of and assimilating the concepts related to real gases and their transformations is a more difficult goal. Backed by their considerable experience teaching…
Descriptors: Computer Simulation, Teaching Methods, Science Instruction, Scientific Concepts
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Li, Zhao; Corti, David S. – Journal of Chemical Education, 2018
The application of the Reaction Monte Carlo (RxMC) algorithm to standard textbook problems in chemical reaction equilibria is discussed. The RxMC method is a molecular simulation algorithm for studying the equilibrium properties of reactive systems, and therefore provides the opportunity to develop computer-based "experiments" for the…
Descriptors: College Students, Science Instruction, Chemistry, Computer Assisted Instruction
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Asih, Findiyani Ernawati; Poedjiastoeti, Sri; Lutfi, Achmad; Novita, Dian; Ismono, Ismono; Purnamasari, Amalia Putri – Journal of Technology and Science Education, 2022
The case study-based module on chemical thermodynamics course (ideal and real gases) was developed to fulfill the needs of undergraduate students in online learning during the COVID-19 pandemic. The purpose of this study was to test feasibility of case study-based module. The case study-based module refers to the 4D model (define, design, develop,…
Descriptors: Chemistry, Thermodynamics, COVID-19, Pandemics
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Kozliak, Evguenii I. – Journal of Chemical Education, 2014
The molar entropy of mixing yields values that depend only on the number of mixing components rather than on their chemical nature. To explain this phenomenon using the logic of chemistry, this article considers mixing of distinguishable particles, thus complementing the well-known approach developed for nondistinguishable particles, for example,…
Descriptors: Science Instruction, Scientific Concepts, Thermodynamics, Heat
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Madden, Sean P.; Jones, Loretta L.; Rahm, Jrene – Chemistry Education Research and Practice, 2011
This study examined the representational competence of students as they solved problems dealing with the temperature-pressure relationship for ideal gases. Seven students enrolled in a first-semester general chemistry course and two advanced undergraduate science majors participated in the study. The written work and transcripts from videotaped…
Descriptors: Teaching Methods, Advanced Students, Heuristics, Chemistry
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Guastella, Ivan; Fazio, Claudio; Sperandeo-Mineo, Rosa Maria – European Journal of Physics, 2012
A procedure modelling ideal classical and quantum gases is discussed. The proposed approach is mainly based on the idea that modelling and algorithm analysis can provide a deeper understanding of particularly complex physical systems. Appropriate representations and physical models able to mimic possible pseudo-mechanisms of functioning and having…
Descriptors: Predictive Validity, Quantum Mechanics, Science Education, Science Instruction
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Tan, T. L.; Lebron, G. B. – Journal of Chemical Education, 2012
The integrated absorbance areas of vibrational bands of CO[subscript 2], CO, and CH[subscript 4] gases in cigarette smoke were measured from Fourier transform infrared (FTIR) spectra to derive the partial pressures of these gases at different smoke times. The quantity of the three gas-phase components of cigarette smoke at different smoke times…
Descriptors: Chemistry, Teaching Methods, Laboratory Experiments, Science Instruction
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Sevilla, F. J.; Olivares-Quiroz, L. – European Journal of Physics, 2012
In this work, we address the concept of the chemical potential [mu] in classical and quantum gases towards the calculation of the equation of state [mu] = [mu](n, T) where n is the particle density and "T" the absolute temperature using the methods of equilibrium statistical mechanics. Two cases seldom discussed in elementary textbooks are…
Descriptors: Chemistry, Computation, Graduate Students, Textbooks
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Anacleto, Joaquim; Anacleto, Joaquim Alberto C. – European Journal of Physics, 2008
This paper focuses on the determination of the final equilibrium state when two ideal gases, isolated from the exterior and starting from preset initial conditions, interact with each other through a piston. Depending on the piston properties, different processes take place and also different sets of equilibrium conditions must be satisfied. Three…
Descriptors: Physics, Scientific Concepts, Thermodynamics, Heat
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Álvarez-Rúa, Carmen; Borge, Javier – Journal of Chemical Education, 2016
Thermodynamic processes are complex phenomena that can be understood as a set of successive stages. When treating processes, classical thermodynamics (and most particularly, the Gibbsian formulation, predominantly used in chemistry) only pays attention to initial and final states. However, reintroducing the notion of process is absolutely…
Descriptors: Undergraduate Study, Science Education, Chemistry, Thermodynamics
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Sweet, Chelsea; Akinfenwa, Oyewumi; Foley, Jonathan J., IV – Journal of Chemical Education, 2018
We present an interactive discovery-based approach to studying the properties of real gases using simple, yet realistic, molecular dynamics software. Use of this approach opens up a variety of opportunities for students to interact with the behaviors and underlying theories of real gases. Students can visualize gas behavior under a variety of…
Descriptors: Discovery Learning, Molecular Structure, Courseware, Kinetics
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Varberg, Thomas D.; Pearlman, Bradley W.; Wyse, Ian A.; Gleason, Samuel P.; Kellett, Dalir H. P.; Moffett, Kenneth L. – Journal of Chemical Education, 2017
In this paper, we describe an experiment for the undergraduate physical chemistry laboratory in which students determine the speed of sound in the gases He, N[subscript 2], CO[subscript 2], and CF[subscript 3]CH[subscript 2]F. The experimental apparatus consists of a closed acrylic tube containing the gas under study. White audio noise is injected…
Descriptors: Science Instruction, College Science, Undergraduate Students, Chemistry
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Ritacco, Herna´n A.; Fortunatti, Juan C.; Devoto, Walter; Ferna´ndez-Miconi, Eugenio; Dominguez, Claudia; Sanchez, Miguel D. – Journal of Chemical Education, 2014
In this paper, we describe laboratory and classroom exercises designed to obtain the "fundamental" equation of a rubber band by combining experiments and theory. The procedure shows students how classical thermodynamics formalism can help to obtain empirical equations of state by constraining and guiding in the construction of the…
Descriptors: Thermodynamics, Fundamental Concepts, Equations (Mathematics), Science Experiments
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Scott, Robert L. – Journal of Chemical Education, 2006
The heat capacity of an ideal gas has been shown to be calculable directly by statistical mechanics if the energies of the quantum states are known. However, unless one makes careful calculations, it is not easy for a student to understand the qualitative results. Why there are maxima (and occasionally minima) in heat capacity-temperature curves…
Descriptors: Chemistry, Heat, Thermodynamics, Science Instruction
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