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Benjamin Pölloth; Dominik Diekemper; Stefan Schwarzer – Chemistry Education Research and Practice, 2023
Recent progress in elucidating chemical reactions allows to explain chemistry by the potential energy of the involved chemical structures. Nevertheless, from an educational point of view, empirical results indicate that students often do not connect the core idea of energy with other chemical concepts. From a resource-oriented perspective,…
Descriptors: Chemistry, Science Instruction, Student Attitudes, High School Students
Daniele Maccio`; Massimo Ottonelli; Marina Alloisio – Journal of Chemical Education, 2023
Redox reactions and their balancing are one of the basic chemistry subjects in which students may experience remarkable learning difficulties at the beginning of their university career. This topic represents an evolution of stoichiometry concepts related to the balancing of chemical reactions and can be taught with different approaches as a…
Descriptors: Thermodynamics, Scientific Concepts, Problem Solving, Chemistry
Huma Shoaib; Aasakiran Madamanchi; Elsje Pienaar; David M. Umulis; Monica E. Cardella – Biomedical Engineering Education, 2023
In response to the growing computational intensity of the healthcare industry, biomedical engineering (BME) undergraduate education is placing increased emphasis on computation. The presence of substantial gender disparities in many computationally intensive disciplines suggests that the adoption of computational instruction approaches that lack…
Descriptors: Computation, Self Concept, Engineering Education, Thermodynamics
Trisha M. Gomez; Charmaine Luciano; Tam Nguyen; Sachel M. Villafañe; Michael N. Groves – Chemistry Education Research and Practice, 2025
A flipped classroom is typically one where some of the instruction occurs asynchronously prior to the scheduled synchronous meeting between students and the instructor. Since 2000, they have gained substantial popularity especially in STEM fields where they have been shown to have increased exam scores and reduce the number of students who fail.…
Descriptors: Flipped Classroom, Student Experience, Science Education, Chemistry
Crossette, Nathan; Vignal, Michael; Wilcox, Bethany R. – Physical Review Physics Education Research, 2021
Student learning in upper-division thermal physics has not been studied to the same extent as in other courses like electromagnetism and quantum mechanics. Studies addressing reasoning and learning at the graduate level are even more limited. In this study, we conducted think-aloud interviews with eight graduate students involving questions…
Descriptors: Graduate Students, Scientific Concepts, Concept Formation, Difficulty Level
Yeadon, Will; Quinn, Mark – Physics Education, 2021
We present a thermodynamics experiment suitable for first year undergraduate students employing Stirling Engines to create a demonstration of energy transformation and to measure the mechanical efficiency of such engines. Using an inexpensive transparent chambered Stirling Engine, students can connect concepts such as the theoretical…
Descriptors: Thermodynamics, Science Education, Physics, College Science
Kasprowiak, Amaury; Moitessier, Cle´mence; Cazier-Dennin, Francine; Danjou, Pierre-Edouard – Journal of Chemical Education, 2021
Fractional distillation is part of the essential experimental techniques taught to first-year chemistry students, especially during practical organic chemistry work. The characterization of the distillate generally involves measuring the boiling temperature, the refractive index, or the infrared spectrum. In this paper, an unknown mixture composed…
Descriptors: Spectroscopy, Science Instruction, Undergraduate Students, Abstract Reasoning
Dutton, KaitlynG.; Lipke, Mark C. – Journal of Chemical Education, 2021
Frost diagrams provide convenient illustrations of the aqueous reduction potentials and thermodynamic tendencies of different oxidation states of an element. Undergraduate textbooks often describe the lowest point on a Frost diagram as the most stable oxidation state of the element, but this interpretation is misleading because the thermodynamic…
Descriptors: Misconceptions, Science Instruction, Chemistry, Teaching Methods
Karch, Jessica M.; Sevian, Hannah – Chemistry Education Research and Practice, 2022
Productive problem solving, concept construction, and sense making occur through the core process of abstraction. Although the capacity for domain-general abstraction is developed at a young age, the role of abstraction in increasingly complex and disciplinary environments, such as those encountered in undergraduate STEM education, is not well…
Descriptors: Organic Chemistry, Problem Solving, Undergraduate Students, Thermodynamics
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
Ivanov, Dragia; Nikolov, Stefan – Physics Education, 2020
The anomalous thermal expansion of water in the 0 °C-4 °C range is extremely important to life on Earth, but it is normally not presented experimentally in educational settings. This paper presents a simple experiment to explore the anomalous thermal expansion of water in the 0 °C-4 °C range and the heat exchange processes in natural bodies of…
Descriptors: Water, Thermodynamics, Science Experiments, Heat
Yu, Ted H. – Journal of Chemical Education, 2020
The author introduces the concept of the quantum volume into thermodynamics teaching. A new derivation of the basic part of the Sackur-Tetrode equation uses the microcanonical ensemble instead of the math-heavy canonical ensemble. Entropy diagrams, based on the binomial distribution, visualize the ratio between the quantum volume and system volume.
Descriptors: Science Instruction, Thermodynamics, Teaching Methods, Equations (Mathematics)
Stierle, Rolf; Fischer, Matthias; Braun, Thorsten; Gross, Joachim – Chemical Engineering Education, 2023
How is it possible to create and continuously improve a quality learning environment for our students? We present our one-year course on engineering thermodynamics as a case study in which we investigate the learning environment based on a competency model from the students' perspective. Based on the analysis of our course structure and exam…
Descriptors: Engineering Education, Thermodynamics, College Students, Student Attitudes
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
Nishaal Bhaw; Rudorwashe Hungwe; Jeanne Kriek – Science Education International, 2024
In the realm of science education, traditional teaching methods face challenges in catering to diverse learning preferences. This study investigates the efficacy of Khan Academy Videos (KAVs) in improving educational quality, specifically in rural thermodynamics instruction. The research involved 88 students and one teacher, with one group taught…
Descriptors: Foreign Countries, High School Students, High School Teachers, Science Teachers