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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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Stanga, John P.; Nash, Troy R.; Pannell, Megan D. – American Biology Teacher, 2023
Concepts relating to enzymes and energy are central to understanding chemical and biological processes at the molecular level. Student learning of these crosscutting concepts can be challenging, so it is important to identify misconceptions and remediate them early, especially in introductory classes. Here we describe an activity in which…
Descriptors: Hands on Science, Kinetics, Thermodynamics, Biology
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James Doble; Grace Wilson; Jacob W. Wainman – Journal of Chemical Education, 2023
Millions of people do not have access to clean drinking water; thus, cost-efficient water treatment systems are vital. Chemists, environmentalists, technicians, and engineers will be the professionals making breakthroughs in this industry. This laboratory experiment aims to introduce undergraduate students to the removal of pollutants from water…
Descriptors: Science Instruction, Chemistry, Science Laboratories, Science Experiments
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Kajiya, Daisuke – Journal of Chemical Education, 2021
This paper provides seven topics on sodium hydrogen carbonate (NaHCO[subscript 3]) and its ions for readers looking for familiar material phenomena to strengthen students' understanding of the chemical concepts of thermodynamics. The first concept is the ideal gas law, followed by the van't Hoff equation, Gibbs energy, pH change, chemical…
Descriptors: Science Instruction, Chemistry, Thermodynamics, Concept Formation
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Abell, Timothy N.; Bretz, Stacey Lowery – Journal of Chemical Education, 2019
Learning thermodynamics requires understanding abstract topics such as entropy and spontaneity. Students tend to rely on metaphors and everyday meanings to reason about these topics. This study investigates how students explain dissolution and precipitation using the concepts of entropy and spontaneity. Students from general chemistry, physical…
Descriptors: Thermodynamics, Science Instruction, Scientific Concepts, Chemistry
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Atarés, Lorena; Canet, M. Jose; Trujillo, Macarena; Benlloch-Dualde, José Vte.; Paricio Royo, Javier; Fernandez-March, Amparo – Education Sciences, 2021
Pregraduate students often have low success expectations toward their thermodynamics courses, which are often considered too abstract and remarkably difficult to understand. For this reason, they may not even try to reach any level of comprehension while settling for reproducing mathematical calculations and memorizing definitions to pass the…
Descriptors: Thermodynamics, Scientific Concepts, Concept Formation, Misconceptions
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Takor, Gaius; Morgan, Christopher E.; Chiu, Liang-Yuan; Kendrick, Nashea; Clark, Emily; Jaiswal, Rohan; Tolbert, Blanton S. – Journal of Chemical Education, 2020
Two-dimensional nuclear magnetic resonance (2D NMR) techniques are regularly used for the determination of RNA structures. In an effort to introduce advanced level students who are generally not acquainted with or exposed to these techniques, this work, which has been designed as a practicum, utilizes a combination of 2D NMR techniques to help…
Descriptors: College Science, Undergraduate Study, Thermodynamics, Spectroscopy
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Finkenstaedt-Quinn, S. A.; Halim, A. S.; Kasner, G.; Wilhelm, C. A.; Moon, A.; Gere, A. Ruggles; Shultz, G. V. – Chemistry Education Research and Practice, 2020
Thermodynamics and kinetics are key topics in the chemistry curriculum that pose challenges to students across a range of educational levels. These struggles arise from the complexity and mixed representations inherent to the topics. Additionally, while thermodynamics and kinetics are related, students struggle to make conceptually correct…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, Thermodynamics
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Rogers, Bradley A.; Zhang, Yanjie – Journal of Chemical Education, 2020
The Hofmeister series is a recurring trend that ranks ions' abilities to influence various aqueous processes in solution. Herein, a set of project-based experiments was developed for students in an upper-level physical chemistry laboratory to investigate the specific ion effects on the thermodynamics of caffeine partitioning between aqueous and…
Descriptors: Science Instruction, Science Experiments, Chemistry, Science Laboratories
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O'Connell, John P. – Chemical Engineering Education, 2019
Thermodynamics challenges teachers and learners. Its pervasiveness about nature, mathematical abstractness, nonnumerical relations, and complexity in applications can inhibit understanding and usage, especially by undergraduates. Perspectives are given about these obstacles, and some suggestions are made to enhance comprehension of the discipline.
Descriptors: Thermodynamics, Science Instruction, Teaching Methods, Barriers
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Lenzer, Stefanie; Smarsly, Bernd; Graulich, Nicole – International Journal of Science Education, 2020
The need to develop clean-energy storage systems, harvesting technologies, and new functional materials are but a few of the many contemporary challenges in the domain of science today. To address these challenges, problem solving has become a key skill of the 21st century. It is generally documented, however, that experts and students differ in…
Descriptors: Undergraduate Students, College Science, Science Instruction, Chemistry
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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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Ludwig, Nicola; Carpineti, Marina – Physics Education, 2020
Using everyday life examples is proven didactically useful for teaching physics, as it presents effective applications of physical laws. Cooking and food, in particular, serve two useful purposes: on one side, they are able to engage students in the study of physics with familiar examples; on the other side, thanks to the wide range of physical…
Descriptors: Physics, Science Instruction, Scientific Principles, Food
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Cybulskis, Viktor J.; Gawecki, Piotr; Zvinevich, Yury; Gounder, Rajamani; Ribeiro, Fabio H. – Journal of Chemical Education, 2021
A versatile and portable apparatus was developed to demonstrate exciting visual displays of catalytic phenomena that introduce basic concepts in catalysis, renewable energy, and chemical safety, in order to pique scientific curiosity in a variety of audiences including middle and high school students, undergraduate and graduate students, and the…
Descriptors: Science Instruction, Chemistry, Scientific Concepts, Concept Formation
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Ramachandran, Roshini; Sparck, Erin M.; Levis-Fitzgerald, Marc – Journal of Chemical Education, 2019
Numerous online resources provide a variety of content for a wide range of STEM topics; however, they tend to function as isolated tidbits that provide content-specific knowledge. Application-based science education videos address the overlooked issue of concept to application by implementing experimental components in their videos and fostering…
Descriptors: Science Instruction, Chemistry, College Science, Undergraduate Study
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