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Suárez, Mauricio; Pandiella, Susana; Benegas, Julio – Physics Education, 2023
A quasi-experimental group comparison experiment was conducted to improve the conceptual learning of rotational kinematics by 11th grade students of a technically-oriented high school in Argentina. The experimental instruction complemented the original Tutorials in Introductory Physics activities with the PhET simulation Ladybug Revolution.…
Descriptors: Active Learning, Instructional Effectiveness, Mechanics (Physics), High School Students
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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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De Luca, Roberto; Faella, Orazio; Vestuti, Barbara – Physics Education, 2021
The motion of a cylindrically or spherically symmetric body on an accelerated treadmill, inclined of an angle [theta] with respect to the horizontal, is described by means of Newtonian mechanics. By assuming that the conveyor belt has an acceleration "a[subscript O][superscript ']", not necessarily constant, and that the body rolls on…
Descriptors: Motion, Physics, Mechanics (Physics), Scientific Concepts
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Pierratos, Theodoros; Sotirios, Mandiliotis; Eirini, Dermitzaki – Physics Education, 2022
Teaching of centripetal force in secondary education is a challenging task because of its central role in the circular and rotational motion. The specific equipment needed for experiments that explore the physical law which governs the centripetal force is usually limited in schools. The experiment presented in this paper, is based on a device…
Descriptors: Physics, Science Instruction, Motion, Prediction
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White, A. E. – Physics Education, 2022
This paper presents the design and reports on the use of a simple and inexpensive cloud chamber kit that is compatible with active learning, experiential learning, and project-based learning strategies. The kit was developed for use in a first-year undergraduate nuclear science seminar class at a university in the US. Diffusion cloud chambers are…
Descriptors: Science Instruction, Undergraduate Study, College Science, Nuclear Physics
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Faletic, Sergej; Planinšic, Gorazd – Physics Education, 2020
In this paper, we present activities that help students deepen their understanding of basic electrostatics using an electroscope in combination with the photoelectric effect. The students investigate the behaviour of an isolated electroscope when the metal housing of the electroscope is charged. The activities follow the framework of the…
Descriptors: Physics, Laboratory Equipment, Science Experiments, Energy
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Kaltcheva, Nadia; Nenkova, Maia – Physics Education, 2021
Many introductory astronomy courses include concepts related to basic stellar properties. In general, these are concepts that originate from the human perception of starlight. This observational aspect is not easy to incorporate in the classroom. We explore if these concepts could be developed using the built-in data in a planetarium software.…
Descriptors: Teaching Methods, Introductory Courses, Astronomy, Computer Software
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Ndihokubwayo, Kizito; Uwamahoro, Jean; Ndayambaje, Irénée – Physics Education, 2022
Science teaching in general and physics teaching in particular often fail to meet the challenges of motivating and engaging learners. Consequently, students do not adequately understand concepts, leading to the poor acquisition of expected practical skills. In response to this need, we conducted a study to document physics teachers' instructional…
Descriptors: Science Instruction, Physics, Student Motivation, Learner Engagement
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Pendrill, Ann-Marie – Physics Education, 2021
Take a selection of balls and marbles along to a nearby playground slide and let students investigate factors that may influence how balls accelerate down an inclined plane. Students can make hypotheses in small groups, plan investigations to test multiple possible explanations and draw conclusions about the importance of different variables. The…
Descriptors: Physics, Motion, Science Activities, Active Learning
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Carli, Marta; Fontolan, Maria Rosa; Pantano, Ornella – Physics Education, 2021
We describe the design and implementation of a teaching-learning sequence that was started before the lockdown and was then transformed for distance teaching. A backward design approach was adopted in order to identify clear learning outcomes. The activities were outlined according to an inquiry-based learning paradigm, referring to research-based…
Descriptors: Science Instruction, Physics, Optics, Distance Education
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Kardaras, Ioannis; Kallery, Maria – Physics Education, 2020
Teaching blackbody radiation within the framework of astrophysics can motivate students to learn and obtain a more profound and qualitative understanding of the subject. In this paper we present a teaching module that intertwines teaching blackbody radiation via the continuous spectrum of hot objects, especially the stars. The module's approach…
Descriptors: Learning Modules, Radiation, Physics, Student Motivation
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Siddiq, Nur Abdillah – Physics Education, 2021
The COVID-19 pandemic has forced educational institutions to adjust their learning process to distance education or online learning. This paper explains how to teach optics during the COVID-19 pandemic by implementing project-based learning that can be supervised online. Students are instructed to design, characterize, and optimize droplet lenses…
Descriptors: COVID-19, Pandemics, School Closing, Distance Education
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Kulmala, Kimmo; Kokkonen, Tommi; Kontro, Inkeri – Physics Education, 2021
Active learning yields better learning outcomes than traditional, lecture-based teaching. Common approaches in large lecture courses are activating elements during the lectures and warm-up activities using online learning environments. However, implementing warm-up exercises, on which students work on by themselves makes formative feedback…
Descriptors: Feedback (Response), Active Learning, Physics, Science Instruction
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White, Aien Charity Grace; Chaudhari, Apoorv; White, Jonathon David – Physics Education, 2021
Engaging Electrical Engineering (EE) students in a freshman general physics service course is challenging as they see little relationship between the topics and their major. Non-native speakers enrolled in a course taught in English face an additional challenge beyond understanding the basic physics, that is, understanding specialized English.…
Descriptors: Active Learning, Discovery Learning, Engineering Education, Physics
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Guo, Siming – Physics Education, 2020
This study compares synchronous versus asynchronous online teaching in an introductory calculus-based physics class. Like many schools, our institution transitioned to online teaching during the COVID-19 pandemic. We held optional synchronous online sessions during the original class time, and approximately half of our students were regular…
Descriptors: Physics, Distance Education, Science Instruction, COVID-19
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