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Hughes, Theo; Kersting, Magdalena – Physics Education, 2021
Recently, the physics education community has taken a keen interest in modernising physics education. However, while topics in modern physics have great potential to engage students, these topics are abstract and hard-to-visualise. Therefore, many students hold mistaken pictures and misconceptions, which can impede learning. In this article, we…
Descriptors: Physics, Scientific Concepts, Time, Misconceptions
Suritno Fayanto; I Nyoman Sudana Degeng; Syaad Patmanthara; Saida Ulfa – Science Education International, 2024
Design-Based Learning and computational thinking (CT) are two key components that support each other specifically in the learning process involving the development of experimental design. Both components emphasize the importance of integration between computational thinking and design-based learning to support a creative, innovative and data…
Descriptors: Computation, Thinking Skills, Teacher Effectiveness, Courses
Ma’ruf; Ana Dhiqfaini Sultan; Nurlina; Dewi Hikmah Marisda – Journal of Science Learning, 2024
This research will be carried out at the basic physics laboratory of the physics education study program, Muhammadiyah University of Makassar. The long-term goal of this research is to produce a prototype model of basic physics practicum based on the virtual android observatory to facilitate the ICT literacy skills of prospective physics teachers.…
Descriptors: Physics, Science Instruction, Educational Technology, Technology Uses in Education
Hughes, Stephen – Physics Education, 2022
Archimedes' principle is one of the foundation subjects in physics. Normally the principle is exemplified by reference to floating boats. However, Archimedes' principle also applies to objects embedded in waterlogged ground, which can lead to the surprising result of an object weighing several tons being lifted. A practical example is presented of…
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Principles
Resbiantoro, Gaguk; Setiani, Rahyu; Dwikoranto – Journal of Turkish Science Education, 2022
The difference between students' ideas and scientific conceptions, is called misconceptions. Physics learning needs to be designed by teachers to eradicate misconceptions. This paper provides a review of 72 international journal articles on diagnosis methods, causes, and ways of remediating misconceptions that have been published between…
Descriptors: Science Education, Physics, Scientific Concepts, Misconceptions
Hoehn, Jessica R.; Lewandowski, H. J. – Physical Review Physics Education Research, 2022
Students sometimes learn about a model of the "scientific method" that is linear and clear cut. While this approach may have pedagogical advantages, it does not reflect how science is often done in practice. The Experimental Modeling Framework (EMF) describes the complex and iterative process of experimentation in the domain of physics,…
Descriptors: Undergraduate Students, Student Attitudes, Scientific Attitudes, Scientific Methodology
Phayphung, Wissarut; Rakkapao, Suttida; Prasitpong, Singha – Physics Education, 2022
The article introduces a low-cost Arduino sensor into the Young's modulus determination laboratory for physics university students. A stainless steel ruler is used as a cantilever beam. Its free end attached a mass is slightly bent and released to make it oscillate as a simple harmonic motion. The Arduino sensor detects the moving mass's frequency…
Descriptors: Laboratory Equipment, Science Laboratories, Physics, College Science
Oliveira, Vitor – Physics Education, 2022
We discuss the limits of the equation of the period of a simple pendulum, T[subscript s] = 2[pi][square root]l/g, frequently used in high-school and university classrooms to measure the acceleration of gravity. We evaluate the relative error in determining the acceleration of gravity with this simple equation instead of a more realistic one,…
Descriptors: Physics, Teaching Methods, Science Instruction, Accuracy
Vázquez-Bernal, Bartolomé; Jiménez-Pérez, Roque – Science & Education, 2023
The objective of this work was the theoretical modeling of a construct based on teaching practice about the perception that pupils have of difficulties in problem solving (PS) in experimental sciences, specifically physics, to predict pupil performance in PS. The research was carried out with an incidental sample of second year of secondary…
Descriptors: Teaching Methods, Models, Teacher Attitudes, Science Instruction
González, Manuel I. – Physics Education, 2019
Interaction forces between magnetic fields and current loops play a central role in the theory of magnetism. This work describes a reasonably simple and cheap experiment for demonstrating this issue: the force on a thin coil due to a nearby cylindrical magnet. The magnitude of the force as well as its attractive/repulsive character is comfortably…
Descriptors: Physics, Magnets, Science Experiments, Measurement
Bishop, Isabel; Xian, Siyu; Feller, Steve – Physics Teacher, 2019
In 2018, we celebrated the sesquicentennial birthday of Robert A. Millikan, a Nobel laureate in physics who worked among the greats such as Niels Bohr and Albert Einstein. His name, however, is perhaps not as widely known. He was born in 1868 in Morrison, Illinois, and moved with his family to the small town of Maquoketa, Iowa, at age nine. It was…
Descriptors: Physics, Scientific Concepts, Science Experiments, Science History
Krehbiel, Joel D.; Schroeder, Kenton N.; Suzuki, Harune; Kilmer, Nelson – Physics Teacher, 2019
Physics and chemistry students learn several methods to determine the density of materials. While measuring the mass of materials is usually simple, volume measurements are more complex. For simple shapes the volume may be determined by measuring its geometry; for more complex shapes students often use Archimedes' principle. However, neither of…
Descriptors: Physics, Chemistry, Scientific Concepts, Science Experiments
Ha, Sangwoo; Kim, Minchul – Science & Education, 2020
Experiment is understood as a core activity in science education as well as science in general. Despite many efforts to improve science education in the laboratory, a cookbook style of verification experiments often dominate school science. In this study, we conducted an open laboratory activity that provided students with an opportunity to think…
Descriptors: Science Experiments, Physics, Motion, Academically Gifted
Pathak, Praveen; Patel, Yogita – Physics Education, 2020
A phone emitting sound of a fixed frequency is sliding on an inclined plane and approaching a second phone kept at the bottom of the plane. The detected frequency versus time data by the second phone are used to calculate the acceleration of the sliding phone. The primary objective of this paper is to calculate the sliding friction between the…
Descriptors: Telecommunications, Handheld Devices, Science Instruction, Physics
Risk Mora, David Yamil; Durango Idarraga, Sebastian; Cardenas Montoya, Paulo Cesar – Physics Education, 2020
Collisions are a key topic in physics and engineering education. An experiment with multiple body one-dimensional collisions is presented, aiming to measure relevant physical quantities by tracking the motion of the system of particles during the collision. Relations between different physical quantities can be explored in the experiment, such as…
Descriptors: Video Technology, Physics, Science Instruction, Photography

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