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Xuhan Luo; Boxuan Li; Jinmei Liu; Shihong Ma; Xinyuan Wei; Yan Cen – IEEE Transactions on Education, 2025
Contribution: An innovative approach utilizing interactive software paired with stereoscopic projection hardware is introduced to enhance the teaching and learning of solid-state physics. This method is distinctive for its integration of complex 3-D visualizations directly into classroom instruction, facilitating a deeper understanding of abstract…
Descriptors: Computer Software, Science Education, Physics, Scientific Concepts
Rojas, Roberto – Physics Teacher, 2022
In one of the Faraday's experiments an electric current is induced in a conducting loop when a magnet in front of it moves towards or away from the loop. While the direction of circulation of the electric current in the loop has only two options, it depends on three experimental conditions that generate eight cases. Even though the Faraday law or…
Descriptors: Energy, Magnets, Science Experiments, Scientific Principles
Tugba Yuksel; Lynn A. Bryan; Alejandra J. Magana – International Journal of Science Education, 2024
Quantum physics forms the basis for exciting new technologies, including quantum computers, quantum encryption, and quantum entanglement. The advancement of science and technology highlights the importance of mastering quantum physics and its applications, not only at the college level but also as early as high school. In this multiple case study,…
Descriptors: Undergraduate Students, Models, Quantum Mechanics, Science Instruction
Lindén, Johan; Anttu, Nicklas – Physics Education, 2022
The falling rod paradox, i.e. the fact that the tip of an almost horizontal rod falls with an acceleration 'higher than g', when the other end is hinged or supported, is a popular physics demonstration. It can be visualized by placing e.g. a coin on the tip of the rod and fixing a cup next to the coin. When the rod is released the free-falling…
Descriptors: Science Instruction, Mechanics (Physics), Scientific Concepts, Motion
Vagner B. dos Santos; Helayne S. de Sousa; Renata A. Farias; Marcos V. Foguel; Josiane Lopes de Oliveira; Willian T. Suarez – Journal of Chemical Education, 2023
Seeking to foster the learning process and encourage the active participation of undergraduate students, this work proposes a new methodology that involves integrating smartphones into the learning process under a simple and accessible approach to learning in Chemistry and Physics laboratories aiming at facilitating the learning of some chemical…
Descriptors: Thermodynamics, Visual Aids, Scientific Concepts, Science Education
Hughes, Stephen; Evason, Chris; Baldwin, Shelley; Nadarajah, Helen; Leisemann, Scott; Wright, Susan – Physics Education, 2020
STEM is about the integration of science, technology, engineering and mathematics. To teach STEM effectively, students need practical examples of subject integration. A good example is the use of an electron microscope in teaching physics and biology. An electron microscope is an instrument in which the operation depends on electromagnetism and…
Descriptors: STEM Education, Laboratory Equipment, Physics, Biology
Montgomery, Jason M.; Mazziotti, David A. – Journal of Chemical Education, 2020
An introduction to the Quantum Chemistry Package (QCP), implemented in the computer algebra system Maple, is presented. The QCP combines sophisticated electronic structure methods and Maple's easy-to-use graphical interface to enable computation and visualization of the electronic energies and properties of molecules. Here we describe how the QCP…
Descriptors: Chemistry, Physics, Computation, Computer Uses in Education
Chloé Lhardy; Héctor García-Ortega; Jesús Gracia-Mora; Armando Marín-Becerra; Antonio Reina; Miguel Reina – Journal of Chemical Education, 2022
Educational games have attracted attention as valuable didactic instruments since they combine a proven efficiency in learning improvement with a fun and enjoyable atmosphere. Despite the increasing number of educational game contributions treating a wide variety of topics, to the best of our knowledge, none revise units or physical quantities.…
Descriptors: Educational Games, Educational Objectives, Scientific Concepts, Science Education
Campos, Esmeralda; Zavala, Genaro; Zuza, Kristina; Guisasola, Jenaro – Physical Review Physics Education Research, 2020
We conducted a study with introductory and upper-division level physics students in a Mexican and a Spanish university to learn how students recognize the main characteristics of the electric field in three of its more widely used representations, namely, algebraic notation, vector field plot, and electric field lines, and how the students do…
Descriptors: Foreign Countries, Science Instruction, Energy, Teaching Methods
Carroll, Felix A.; Blauch, David N. – Journal of Chemical Education, 2018
Three-dimensional printing was used to prepare a p-bonding model with embedded magnets. The model enables students to have a kinesthetic experience that simulates the energetics of bonding, antibonding, and nonbonding p-orbital interactions.
Descriptors: Science Instruction, Printing, Models, Magnets
Papai, Rodrigo; Romano, Majara Araujo; Arroyo, Aline Rodrigues; Rodrigues da Silva, Bárbara; Tresoldi, Bruno; Winter, Gabriela Cabo; Costa, Julia Messias; Freitas Santos, Maria Aparecida; Prata, Matheus Damasceno; Gaubeur, Ivanise – Journal of Chemical Education, 2019
A creative apparatus for use in a hands-on laboratory experiment that allows the visualization of the vapor pressure as a function of temperature is described in this paper. Inspired by homemade barometers and using simple materials that are easily accessible for teaching laboratories, a lowcost system for the establishment of the vapor-pressure…
Descriptors: Physics, Chemistry, Laboratory Experiments, Science Experiments
Singh, Satya Pal – European Journal of Physics Education, 2019
Quantum mechanics has completed century since its genesis. Quantum mechanics is taught at various levels-starting from school and colleges to universities. Regression methods are introduced at under graduate and post graduate levels to solve Schrodinger equation for finding solutions of various trivial and non-trivial physical problems. The common…
Descriptors: Problem Solving, Quantum Mechanics, Mechanics (Physics), Science Instruction
Maries, Alexandru; Singh, Chandralekha – Physical Review Physics Education Research, 2018
Drawing appropriate diagrams is a useful problem solving heuristic that can transform a problem into a representation that is easier to exploit for solving it. One major focus while helping introductory physics students learn effective problem solving is to help them understand that drawing diagrams can facilitate problem solution. We conducted an…
Descriptors: Science Instruction, Physics, Introductory Courses, Comparative Analysis
Douglas, Scott Samuel; Aiken, John Mark; Greco, Edwin; Schatz, Michael; Lin, Shih-Yin – Physics Teacher, 2017
Video lectures are increasingly being used in physics instruction. For example, video lectures can be used to "flip" the classroom, i.e., to deliver, via the Internet, content that is traditionally transmitted by in-class lectures (e.g., presenting concepts, working examples, etc.), thereby freeing up classroom time for more interactive…
Descriptors: Visual Aids, Educational Equipment, Educational Technology, Interactive Video
Susac, Ana; Bubic, Andreja; Martinjak, Petra; Planinic, Maja; Palmovic, Marijan – Physical Review Physics Education Research, 2017
Developing a better understanding of the measurement process and measurement uncertainty is one of the main goals of university physics laboratory courses. This study investigated the influence of graphical representation of data on student understanding and interpreting of measurement results. A sample of 101 undergraduate students (48 first year…
Descriptors: Measurement, College Science, Physics, Science Laboratories