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Danese, Anthony – Physics Teacher, 2022
In this paper I describe an interactive Gauss's law computer simulation using the GlowScript programming environment. The simulation calculates a point charge's electric field at locations on the surface of a Gaussian cube and displays the electric field in GlowScript's 3D graphics window. The point charge can be moved, and the electric field…
Descriptors: Computer Simulation, Science Instruction, Energy, Educational Technology
Joaqui´n Gonza´lez; Eduardo Laborda; A´ngela Molina – Journal of Chemical Education, 2023
Theoretical and practical foundations of basic electrochemical concepts of heterogeneous charge transfer reactions that underline electrochemical processes are presented for their detailed study by undergraduate and postgraduate students. Several simple methods for calculating key variables, such as the half-wave potential, limiting current, and…
Descriptors: Chemistry, College Science, Science Instruction, Computer Simulation
Al-Duhani, Fatma; Saat, Rohaida Mohd; Abdullah, Mohd Nor Syahrir – Malaysian Online Journal of Educational Sciences, 2023
In the aftermath of the COVID-19 pandemic, many education systems around the world have recognized the value of using technology such as virtual laboratories to teach science subjects. This study aimed to explore the effectiveness of using a virtual laboratory on grade eight students in learning about electricity-related topics. A…
Descriptors: Educational Technology, Grade 8, Science Achievement, Energy
Wolf, Mark E.; Norris, J. Widener; Fynewever, Herb; Turney, Justin M.; Schaefer, Henry F., III – Journal of Chemical Education, 2022
Over the past half century, computational chemistry has evolved from a niche field to a ubiquitous pillar of modern chemical research. Driven by the increased demand for computational chemistry in research settings, the undergraduate curriculum has evolved alongside to ensure that students are well-equipped for modern research. Toward this end,…
Descriptors: Science Instruction, Science Laboratories, Chemistry, Computer Simulation
Gagnon, Michel – Physics Education, 2020
At the end of the 18th-century, Charles Coulomb developed an apparatus to study the force between two electrified beads which allowed him to obtain his famous Coulomb's law. Today, as one of the most fundamental outcomes in classical electromagnetism, his result is revisited in most high school physics courses, where students are asked to…
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Principles
Jan Oliver Wallgrün; Jack Shen-Kuen Chang; Jiayan Zhao; Peter Trenham; Pejman Sajjadi; Mark Simpson; Alexander Klippel – Journal of Biological Education, 2024
Virtual field trips are transforming education in biology and other place-based disciplines -- and not just since COVID-19 has imposed social distancing constraints. Efficient methods for content creation, combined with affordable immersive technology, provide the opportunity to integrate immersive experiences into ever-larger classes. However,…
Descriptors: Place Based Education, Computer Simulation, COVID-19, Pandemics
Vichuda Hunter – ProQuest LLC, 2023
Chemistry is considered a difficult subject by most students. Its difficulty lies in Chemistry's complex and abstract nature. This highly abstract nature requires constant interplay and coordination between the macroscopic, particulate, and symbolic representations. Experts can successfully navigate the various representations without overloading…
Descriptors: Discourse Analysis, Laboratory Experiments, Computer Simulation, Chemistry
Bozzo, Giacomo; Lopez, Victor; Couso, Digna; Monti, Francesca – International Journal of Science Education, 2022
The role of virtual simulations in the evolution of primary school students' mental models about electrostatics is investigated by analysing the answers of two groups of 9-10 years old pupils inside instructional sequences that combine two hands-on activities using balloons and jackets with the same activities using PhET simulations: one group…
Descriptors: Science Instruction, Elementary School Science, Schemata (Cognition), Computer Simulation
Stolzenberger, Christoph; Frank, Florian; Trefzger, Thomas – Physics Education, 2022
With the help of augmented reality apps objects and text can be added virtually to the physical world (e.g. physical experiments) in real time. The augmented reality (AR) app 'PUMA: "Spannungslabor"' enhances simple electric circuits experiments for students with virtual representations based on the electron gas analogy including…
Descriptors: Physics, Science Instruction, Energy, Artificial Intelligence
Steger, Fabian; Nitsche, Alexander; Arbesmeier, Alexander; Brade, Katja D.; Schweiger, Hans-Georg; Belski, Iouri – IEEE Transactions on Education, 2020
Contribution: Prior studies comparing the effectiveness of different laboratory learning modes do not allow one to draw a universally valid conclusion, as other influences are mixed with the learning modes. In order to contribute to the existing body of work and to add another piece to the puzzle, this article demonstrates an improved methodology…
Descriptors: Hands on Science, Science Experiments, Instructional Effectiveness, Energy
VandenPlas, Jessica R.; Herrington, Deborah G.; Shrode, Alec D.; Sweeder, Ryan D. – Journal of Chemical Education, 2021
The growing popularity of flipped, blended, and online learning, combined with the need to support a student population with increasingly diverse backgrounds, has led to the development and use of online materials to support students' learning of chemistry outside of a face-to-face classroom. Chemistry simulations provide opportunities to make…
Descriptors: Science Instruction, Online Courses, Distance Education, Computer Simulation
Teichrew, Albert; Erb, Roger – Physics Education, 2020
Real situations are overlaid with virtual information using augmented reality technology. In a learning environment, this technology could give everyday relevance to abstract concepts. In this paper, we will show how physical structures in typical experiments can be simply augmented by virtual objects in physics classes. This is achieved by…
Descriptors: Science Instruction, Computer Software, Educational Technology, Telecommunications
Browning, Fred; Moore, Kaitlyn; Campos, Jennifer – Physics Teacher, 2019
The possibility of negative temperatures on the Kelvin scale is intriguing and confusing simultaneously. This is because students are used to thinking of temperature as a measure of the internal energy of a system. While this concept is good for many systems, it does not work for all systems. Nuclear and electron spin systems, along with lasers…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, Computer Simulation
Minshall, Brianna L.; Yezierski, Ellen J. – Chemistry Education Research and Practice, 2021
For six semesters, activities have been incorporated into first year general chemistry courses in an effort to build student conceptual chemistry knowledge. The activities follow a learning cycle pedagogy (similar to Process Oriented Guided Inquiry Learning or POGIL activities) and consist of guiding questions involving animations, models,…
Descriptors: Science Instruction, Chemistry, Knowledge Level, Inquiry
Kapp, Sebastian; Thees, Michael; Strzys, Martin P.; Beil, Fabian; Kuhn, Jochen; Amiraslanov, Orkhan; Javaheri, Hamraz; Lukowicz, Paul; Lauer, Frederik; Rheinländer, Carl; Wehn, Norbert – Physics Teacher, 2019
During the last decade the development of modern digital media such as smartphones and tablet computers has enabled new experimental possibilities in STEM education. Besides these now nearly ubiquitous devices, the fields of virtual reality (VR) and augmented reality (AR) also made huge progress and reached education. In this paper we introduce an…
Descriptors: Science Instruction, Secondary School Science, High School Students, Computer Simulation