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Ismail, Mahizah; Minawi, Farid; Mokhtar, Wan Zul Adli Wan; Rashid, Noraihan L. Abdul; Ariffin, Ahmad K. – Physics Education, 2023
Teaching alternating currents, ac or sound waves, is incomplete without an introduction to the oscilloscope. An oscilloscope is a tool that graphically displays electrical signals and shows their time dependence. However, due to the pandemic, triggered by the SARS-CoV-2 virus, many students do not have the opportunity to master the use of an…
Descriptors: Physics, Measurement Equipment, Acoustics, Science Experiments
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Rizal, Rahmat – Physics Education, 2023
Digital literacy is a vital competency needed by physics teachers, so it should be trained through lectures using technology, one of which is LMS3. The study aims to describe the LMS3 implementation in school physics lectures to train digital literacy and elucidate an enhancement of prospective physics teachers' digital literacy in school physics…
Descriptors: Preservice Teachers, Physics, Science Instruction, Science Teachers
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Echiburu, Mauricio; Hernández, Carla; Pino, Miguel – Physics Education, 2023
Teaching physics in real-life contexts continues to be a challenge for teachers at different educational levels. In this article, three context-rich problems are proposed to be implemented in the classroom for higher education, using the explosion that occurred in Beirut as a case study. These problems require the search and analysis of real data,…
Descriptors: Higher Education, Physics, Science Instruction, Authentic Learning
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Chhabra, Mahima; Das, Ritwick – Physics Education, 2023
Electrostatic force is the preliminary and fundamental topic that forms the bedrock on which the conceptual framework of "electromagnetism" is built. Being a 'vector' quantity, electromagnetic force naturally inherits direction as well as magnitude. The conceptualization of such physical quantities may pose a challenge. The present work…
Descriptors: Science Instruction, Energy, Scientific Concepts, Physics
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Buggé, Danielle; Rutberg, Joshua; Ahmed, Sheehan H.; Zisk, Robert; Jammula, Diane – Physics Education, 2023
The Investigative Science Learning Environment (ISLE) approach to learning and teaching holds as one of its core tenets that students should learn physics by engaging in the same processes through which physicists develop new knowledge. One key skill necessary for this is hypothetico-deductive reasoning. In this study, we explored how the…
Descriptors: Science Instruction, Science Process Skills, Logical Thinking, Thinking Skills
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Cervantes Juárez, Erika; Sánchez Guzmán, Daniel – Physics Education, 2023
In many science and engineering undergraduate programmes, physics courses are fundamental and can be seen as a potential place where students can develop complementary abilities such as the computational thinking process. The present work proposes and describes the learning science and engineering with electronic spreadsheets cycle (LSEESC)…
Descriptors: Engineering Education, Spreadsheets, Science Education, Physics
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Wye, Steven – Physics Education, 2023
During the COVID-19 pandemic and subsequent lockdown, both schools and universities faced significant challenges in moving teaching from an in-situ setting to a remote one, this included laboratory experiments. This paper presents an experiment developed to use a phone's in built pressure sensor, common to most smart phones. By using this sensor…
Descriptors: COVID-19, Pandemics, School Closing, Science Instruction
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Bøe, Maria Vetleseter – Physics Education, 2023
Physics is criticized for a strong disciplinary culture that many students struggle to identify with. This study uses 12 longitudinal interviews with four high-achieving students in Norway, following them from secondary physics and into university science, technology, engineering, and mathematics (STEM) studies, exploring how they perform their…
Descriptors: High Achievement, Physics, Self Concept, Foreign Countries
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Scowcroft, Victoria; Davies, Steve R.; Mathlin, Gary; Sloan, Peter A. – Physics Education, 2023
Astronomy is one of the few sciences where the data (star-light) can be seen by all. Yet, there is a disconnect between a typical undergraduate lecture and, for example, where a planet may be in the sky and how to observe it. With the advent of moderate cost, high-quality 'back-garden' astronomy, and standard computers powerful enough to produce…
Descriptors: Science Instruction, College Science, Undergraduate Study, Science Laboratories
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Yeadon, Will; Inyang, Oto-Obong; Mizouri, Arin; Peach, Alex; Testrow, Craig P. – Physics Education, 2023
The latest AI language modules can produce original, high quality full short-form (300-word) Physics essays within seconds. These technologies such as ChatGPT and davinci-003 are freely available to anyone with an internet connection. In this work, we present evidence of AI generated short-form essays achieving First-Class grades on an essay…
Descriptors: Artificial Intelligence, Physics, Essays, Science Instruction
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Fouad, Emadelden; Austin, Robert; Kryger, R. A.; Holton, Doug; Srinivasan, Sesha; Ngwa, Wilfred – Physics Education, 2022
The use of technology in higher education science classrooms rose significantly in the advent of the COVID-19 pandemic. In many universities, academic programs including introductory physics classes were taken online. Some institutions adopted online learning but also maintained face-to-face (F2F) laboratories when COVID-19 restrictions began to…
Descriptors: Electronic Learning, Conventional Instruction, Web Based Instruction, Introductory Courses
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Mohamed, Ahmed Obaid – Physics Education, 2022
The Widlar current source is one of the basic current sources that undergraduate students encounter throughout their learning process on electronics courses. The Widlar current is actually given in terms of a transcendental equation. Although an analytical solution exists in terms of the Lambert W function it might not be that useful for students…
Descriptors: Science Instruction, Physics, College Science, Undergraduate Study
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Petropoulos, M.; Tsirigotis, A.; Leisos, A . – Physics Education, 2022
The microNet ([mu]Net) project aims at the development of an extended network of educational cosmic ray telescopes in the geographical area of western Greece. In the initial phase (2022-2023) of the project, 20 telescopes will be deployed in high school buildings, while more than 50 schools will attend the educational program of [mu]Net by…
Descriptors: Science Instruction, Physics, Laboratory Equipment, High Schools
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Lindén, Johan; Fogde, Anna – Physics Education, 2022
An ordinary soap bubble immersed in a pure carbon-dioxide atmosphere, created e.g. by sublimating chunks of dry ice (solid CO[subscript 2]), will expand within a few minutes to a volume exceeding the original one with a factor of almost ten. Considering that the bubble simultaneously experiences a cooling of ~30 ?C one would perhaps expect a tiny…
Descriptors: Science Instruction, Physics, Scientific Concepts, Science Experiments
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Lahane, Rohan D.; Bhatt, Harsh R.; Paranjpye, Arvind – Physics Education, 2022
Students are introduced to the term wavelength in optics at school level. In this paper, we present an inexpensive and simple method to measure the wavelength of the light of a light emitting diode using a light depending resistor. This experimental set-up is developed at Science Laboratory, Nehru Planetarium (Mumbai), India. It is useful as an…
Descriptors: Science Instruction, Physics, Light, Optics
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