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Killian, Benjamin J.; Singletary, Steven – Journal of Chemical Education, 2022
We present a modernization of the undergraduate physical chemistry laboratory experiment for determining the speed of sound in various gases from resonant frequencies in a spherical resonator. The resonator (schematic IR = 7.5 cm) is constructed by 3D printing with eco-friendly poly(lactic acid), a commercially viable alternative to traditional…
Descriptors: Undergraduate Study, College Science, Chemistry, Physics
Nkurikiyimana, Jean de Dieu; Uwamahoro, Jean; Ndihokubwayo, Kizito – Problems of Education in the 21st Century, 2022
This study assesses the level of application of the 5E's educational model by Rwandan physics teachers and how the model affects the learning of basic classical mechanics in secondary school physics classrooms. For this analysis, quantitative data were collected using the classroom observation tool framed at the 5E's educational model. A sample of…
Descriptors: Foreign Countries, Mechanics (Physics), Science Instruction, Secondary School Science
Chou, Ren-Jye; Liang, Chih-Ping; Huang, Li-yu; She, Hsiao-Ching – Journal of Science Education and Technology, 2022
This study compared the effectiveness of online skeuomorphic physics inquiry-based learning with and without simulation on 8th-grade students' performance of scientific inquiry involving the spring unit. Two classes (58 students) were assigned to the online skeuomorphic physics inquiry-based learning with simulation, and two classes (59 students)…
Descriptors: Physics, Science Instruction, Inquiry, Grade 8
Bozzo, Giacomo; Michelini, Marisa; Bonanno, Assunta; Stefanel, Alberto – EURASIA Journal of Mathematics, Science and Technology Education, 2022
We report a research-based proposal on electromagnetic induction within the theoretical framework of the Model of Educational Reconstruction. The proposal is based on a sequence of inquiry-based experimental activities centered on hands-on materials and "Real-Time" quantitative experiments, through which students explore the…
Descriptors: Science Instruction, Science Experiments, High School Students, Secondary School Science
Bouquet, F.; Creutzer, G.; Dorsel, D.; Vince, J.; Bobroff, J. – Physics Education, 2022
Using smartphones in experimental physics teaching offers many advantages in terms of engagement, pedagogy and flexibility. But it presents drawbacks such as possibly endangering the device and also facing the heterogeneity of available sensors on different smartphones. We present a low-cost alternative that preserves the advantages of…
Descriptors: Telecommunications, Handheld Devices, Science Experiments, Physics
Pili, Unofre B.; Violanda, Renante R. – Physics Education, 2022
The video of a free-falling object was analysed in Tracker in order to extract the position and time data. On the basis of these data, the velocity, gravitational potential energy, kinetic energy, and the work done by gravity were obtained. These led to a rather simultaneous validation of the conservation law of energy and the work-energy theorem.…
Descriptors: Science Instruction, Physics, Energy, Scientific Concepts
May, Jason Michael – ProQuest LLC, 2022
Undergraduate physics laboratory curriculum has undergone significant modification in recent decades in response to research and recommendations from educational and professional organizations and stakeholders. These reforms address multiple issues, such as 1) lack of student agency in experimentation, 2) an incomplete framework for student…
Descriptors: Undergraduate Students, College Science, Introductory Courses, Physics
Cock, Jade Maï; Marras, Mirko; Giang, Christian; Käser, Tanja – International Educational Data Mining Society, 2022
Interactive simulations allow students to discover the underlying principles of a scientific phenomenon through their own exploration. Unfortunately, students often struggle to learn effectively in these environments. Classifying students' interaction data in the simulations based on their expected performance has the potential to enable adaptive…
Descriptors: Science Instruction, Prediction, Models, Interaction
Zhou, Guojing; Moulder, Robert G.; Sun, Chen; D'Mello, Sidney K. – International Educational Data Mining Society, 2022
In collaborative problem solving (CPS), people's actions are interactive, interdependent, and temporal. However, it is unclear how actions temporally relate to each other and what are the temporal similarities and differences between successful vs. unsuccessful CPS processes. As such, we apply a temporal analysis approach, Multilevel Vector…
Descriptors: Cooperative Learning, Problem Solving, College Students, Physics
Zou, Yi; Jin, Lizhen; Li, Yanbing; Hu, Tao – Journal of Baltic Science Education, 2022
Students' problem-solving ability depends on their understanding of related scientific concepts. Therefore, the modeling and assessment of students' understanding of specific scientific concepts is important to promote students' problem-solving ability, as it can find students' understanding difficulties and explore breakthrough strategies…
Descriptors: Problem Solving, Scientific Concepts, Concept Formation, Student Evaluation
Blajvazm, Branislava K.; Bogdanovic, Ivana Z.; Jovanovic, Tamara S.; Stanisavljevic, Jelena D.; Pavkov-Hrvojevic, Milica V. – Journal of Baltic Science Education, 2022
Physics teaching should facilitate students to acquire knowledge, increase metacognitive awareness and motivation for learning physics. The implementation of cooperative learning could be useful for improving teaching. The aim of this research was to examine the effect of cooperative learning (specifically the jigsaw technique) on students'…
Descriptors: Physics, Science Instruction, Secondary School Science, Secondary School Students
Kovanen, Bruce; Turnipseed, Nicole; Mericle, Megan; Roozen, Kevin – Across the Disciplines, 2022
Scholarship animating both WAC/WID (Allan, 2013; Gere, et al., 2018; Hendrickson, 2016; Kells, 2007; Reid, et al., 2016) and STEM (Roth, 2003; Roth & Jornet, 2013; Tsui, 2007) has increasingly called for pedagogical attention to learners' lived, embodied experiences of knowing, writing, and becoming in and across disciplinary worlds. As one…
Descriptors: STEM Education, Physics, Organic Chemistry, Intermode Differences
Thy, Savrin; Iwayama, Tsutomu – Physics Education, 2022
Viscous and Coulomb's friction combined contribute to the damping of a pendulum; however, they are usually treated as a silo effect. In this study, we investigate the combination of viscous and Coulomb damping in compound pendulum oscillation, employing two modern instruments that are cheap and handy to quantify the experiments, which are video…
Descriptors: Science Instruction, Mechanics (Physics), Motion, Laboratory Equipment
Preisler, Vanessa; Shume, Esayas; Talbot, Jean – Physics Teacher, 2022
Due to the COVID-19 pandemic, in the spring of 2020 many physics programs were forced to quickly transition all of their classes and laboratories to a completely online learning environment. The need for simple and engaging remote physics laboratories became apparent. One relatively low-cost remote lab system is Macmillan's iOLab device. This…
Descriptors: COVID-19, Pandemics, Science Instruction, Physics
Westermann, N.; Staacks, S.; Heinke, H.; Möhrke, P. – Physics Education, 2022
In high school, LC(R)-circuits are an integral component of physics education. We propose a new setup for exploring those circuits utilizing the magnetic field sensor of a smartphone in combination with the application phyphox, which reads and displays sensor input. Coils with high inductance and low resistance generate low frequency oscillations…
Descriptors: Measurement Equipment, Science Equipment, Physics, Scientific Concepts

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