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Wang, Fei – Physics Teacher, 2022
The ideal gas law, "PV = nRT," is one of the simplest physical laws in nature that is introduced to students as early as in high school and first year in college. In this equation, "P" stands for pressure, "V" is the volume, "n" is the amount expressed in mole, "T" is the temperature in Kelvin…
Descriptors: Physics, Scientific Principles, Fuels, Graphs
Rangkuti, Muhammad Aswin; Karam, Ricardo – Physical Review Physics Education Research, 2022
Student difficulties with making sense of graphs in physics have been thoroughly reported. In the study of one-dimensional waves, the issue is even trickier since the amplitude is a function of two variables (position and time). In this work, we investigate students' reasoning and difficulties with interpreting the graphical representation of the…
Descriptors: Physics, Science Instruction, Scientific Concepts, Graphs
Rodriguez, Jon-Marc G.; Harrison, A. Rayford; Becker, Nicole M. – Journal of Chemical Education, 2020
With recent curricular movements aimed at engaging students in science practices, more work is needed regarding evidence-based approaches for supporting students in developing competency in contexts such as chemistry. In this work, we focus on student engagement in constructing models related to graphical representations of reaction rate. Using…
Descriptors: Learner Engagement, Chemistry, Science Instruction, Graphs
Rodriguez, Jon-Marc G.; Hux, Nicholas P.; Philips, Sven J.; Towns, Marcy H. – Journal of Chemical Education, 2019
This work seeks to add to the growing body of chemistry education research that emphasizes the teaching and learning of advanced topics, focusing on students' understanding of enzyme kinetics. The data corpus relevant to this study involved 14 second-year undergraduate students enrolled in an introductory biochemistry course taught in a chemistry…
Descriptors: Graphs, Introductory Courses, Biochemistry, Science Instruction
Angra, Aakanksha; Gardner, Stephanie M. – CBE - Life Sciences Education, 2018
As undergraduate biology curricula increasingly aim to provide students with access to courses and experiences that engage them in the practices of science, tools are needed for instruction, evaluation, and research around student learning. One of the important skills for undergraduate biology students to master is the selection and creation of…
Descriptors: Biology, College Science, Undergraduate Students, Graphs
Liyanage, Dilhara; Lo, Stanley M.; Hunnicutt, Sally S. – Chemistry Education Research and Practice, 2021
A novel methodology has been developed to capture student interactions and engagement modes by mapping their discourse in Process Oriented Guided Inquiry Learning (POGIL) physical chemistry courses using graph theory and a modified ICAP ("Interactive," "Constructive," "Active," "Passive") framework. This…
Descriptors: Science Instruction, Chemistry, Inquiry, Teaching Methods
Developing Representational Competence: Linking Real-World Motion to Physics Concepts through Graphs
Volkwyn, T. S.; Airey, J.; Gregorcic, B.; Linder, C. – Learning: Research and Practice, 2020
A social semiotic lens is used to characterise aspects of representational competence for a discipline such as physics, to provide science teachers with a practical suggestion about how student learning might be organised to develop representational competence. We suggest that representational competence for some areas of science can be…
Descriptors: Science Instruction, Physics, Science Teachers, Competence
Sengul, Ozden – School Science Review, 2020
This article describes the implementation of an activity with a Predict-Observe-Explain (POE) learning cycle to teach the concepts of velocity and acceleration to physics students aged 17-19. The study indicates how the instructor enacted the activity and provides sample student responses and group discussions. The description includes an example…
Descriptors: Science Instruction, College Science, Undergraduate Students, Physics
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
Rodriguez, Jon-Marc G.; Stricker, Avery R.; Becker, Nicole M. – Chemistry Education Research and Practice, 2020
Explanations of phenomena in chemistry are grounded in discussions of particulate-level behavior, but there are limitations to focusing on single particles, or as an extension, viewing a group of particles as displaying uniform behavior. More sophisticated models of physical processes evoke considerations related to the dynamic nature of bulk…
Descriptors: Science Instruction, Chemistry, Undergraduate Students, College Science
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
Vaara, Riikka-Liisa; Gomes Sasaki, Daniel Guilherme – LUMAT: International Journal on Math, Science and Technology Education, 2019
This work address the preconceptions of first year engineering students about the kinematic graphs and the outcomes of a pedagogical strategy that relies on Predict -- Observe -- Explain learning method mediated by a video analysis software. The whole learning procedure was accompanied by a written material as students' worksheets which enabled a…
Descriptors: Graphs, Undergraduate Students, College Freshmen, Engineering Education
Lapanantnoppakhun, Somchai; Tengjaroensakul, Urai; Mungkornasawakul, Pitchaya; Puangpila, Chanida; Kittiwachana, Sila; Saengtempiam, Jeeraphithak; Hartwell, Supaporn Kradtap – Journal of Chemical Education, 2020
A green chemistry experiment is presented for teaching an undergraduate quantitative analysis/analytical chemistry laboratory class through the use of black tea leaf extract for the determination of iron in supplement tablets. Dried tea leaf is a safe, low cost, and widely available source of natural extract that can be used in place of more toxic…
Descriptors: Chemistry, Science Experiments, Spectroscopy, College Science
Sokolowski, Andrzej – Physics Education, 2017
Graphs in physics are central to the analysis of phenomena and to learning about a system's behavior. The ways students handle graphs are frequently researched. Students' misconceptions are highlighted, and methods of improvement suggested. While kinematics graphs are to represent a real motion, they are also algebraic entities that must satisfy…
Descriptors: Graphs, Physics, Science Instruction, Misconceptions
Ferreira, Joao E. V.; Miranda, Ricardo M.; Figueiredo, Antonio F.; Barbosa, Jardel P.; Brasil, Edykarlos M. – Journal of Chemical Education, 2016
Box-and-whisker plots or simply boxplots are powerful graphical representations that give an overview of a data set. In this work five different examples illustrate the applications of boxplots in food chemistry. The examples involve relative sweetness of sugars and sugar alcohols with respect to sucrose, the potassium content of fruits and…
Descriptors: Science Instruction, Chemistry, College Science, Graphs

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