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Lozovenko, O.; Minaiev, Yu; Lutai, R. – Physics Education, 2022
The purpose of this publication is to present a novel approach to the demonstration of the Dzhanibekov effect. The main idea of our version is to use a lightweight spinning top of a spherical external form but distinct principal moments of inertia floating in the upward flow of air. As a result, the Dzhanibekov effect can be easily demonstrated…
Descriptors: Science Instruction, Teaching Methods, Physics, Scientific Principles
Perea Martins, J. E. M. – Physics Education, 2018
This work describes a simple experiment to measure the resistor temperature as a function of the applied power and proves that it is an efficient way to introduce some important physical concepts in classroom, including the Joule's first law, hot-spot temperature, thermal resistance, thermal dissipation constant, time constant and the Newton's law…
Descriptors: Physics, Energy, Science Experiments, Scientific Concepts
Espindola, P. R.; Cena, C. R.; Alves, D. C. B.; Bozano, D. F.; Goncalves, A. M. B. – Physics Education, 2018
The study of buoyancy becomes very interesting when we measure the apparent weight of the body and the liquid vessel weight. In this paper, we propose an experimental apparatus that measures both the forces mentioned before as a function of the depth that a cylinder is sunk into the water. It is done using two load cells connected to an Arduino.…
Descriptors: Kinetics, Science Experiments, Scientific Concepts, Scientific Principles
Puantha, Rattanaporn; Khammarew, Wilaiwan; Tong-on, Anusorn; Saphet, Parinya – Physics Education, 2019
The purpose of this study was to develop a modern experimental apparatus using an Arduino with LabVIEW instead of the classical experiment. The wavelength of the sound was determined using the resonance of an air column. The smartphone app was used to generate the desired frequencies. A sound intensity and ultrasonic sensor was used to read the…
Descriptors: Science Instruction, Science Experiments, Laboratory Equipment, Science Laboratories
Semay, Claude; Lo Bue, Francesco; Mélin, Soizic; Michel, Francis – Physics Education, 2018
In 1849, Hippolyte Fizeau determined the speed of light in a famous experiment. The idea was to measure the time taken for a pulse of light to travel between an intense light source and a mirror about 8 km away. A rotating cogwheel with 720 notches, that could be rotated at a variable speed, was used to chop the light beam and determine the flight…
Descriptors: Physics, Measurement, Scientific Principles, Light
Broomfield, H.; Hirst, J.; Raven, M.; Joos, M.; Vafeiadis, T.; Chung, T. K.; Harrow, J.; Khoo, D.; Kwok, T.; Li, J.; Mandelstam, H.; Martin-Halls, J.; Perkins, R.; Singh, A.; Southwell, J.; Tsui, A.; Tsui, K.; Townsend, D.; Watson, H. – Physics Education, 2018
The CERN Beamline for Schools Competition gives high school students the opportunity to perform an experiment of their design using the T9 facility. Our team, 'Relatively Special', was fortunate enough to be joint winners of this global event and travel to CERN for a unique adventure. This paper gives an account of our story including the…
Descriptors: Science Instruction, High School Students, Secondary School Science, Science Experiments
Gyllenpalm, Jakob; Christiansson, Ulf; Friggebo, Patrik – Physics Education, 2018
Laboratory work in physics has traditionally focused on the verification of facts, theories and laws. In contrast, this article describes how laboratory tasks can be used to promote students understanding about the nature of science and scientific inquiry. In the project reported here, students learn about measurement uncertainties and a…
Descriptors: Science Instruction, Physics, Science Laboratories, Scientific Concepts
Eshach, H.; Volfson, A. – Physics Education, 2015
In the present paper we suggest an original physical explanatory model that explains the mechanism of the sound amplification process in a stethoscope. We discuss the amplification of a single pulse, a continuous wave of certain frequency, and finally we address the resonant frequencies. It is our belief that this model may provide students with…
Descriptors: Acoustics, Physics, Models, Science Equipment
Nunn, John – Physics Education, 2015
The speed of sound in a solid is determined by the density and elasticity of the material. Young's modulus can therefore be calculated once the density and the speed of sound in the solid are measured. The density can be measured relatively easily, and the speed of sound through a rod can be measured very inexpensively by setting up a longitudinal…
Descriptors: Measurement Techniques, Acoustics, Computer Software, Technology Uses in Education
Adamides, E.; Koutroubas, S. K.; Moshonas, N.; Yiasemides, K. – Physics Education, 2011
In this article we make some significant remarks on the experimental study of the absorption of gamma radiation passing through matter. These remarks have to do with the seemingly unexpected trend of the measured intensity of radiation versus the thickness of the absorber, which puzzles students and its explanation eludes many laboratory…
Descriptors: Radiation, Laboratory Experiments, Science Experiments, Science Instruction
Bonanno, A.; Bozzo, G.; Camarca, M.; Sapia, P. – Physics Education, 2011
In this article we describe an experimental learning path about electromagnetic induction which uses an Atwood machine where one of the two hanging bodies is a cylindrical magnet falling through a plexiglass guide, surrounded either by a coil or by a copper pipe. The first configuration (magnet falling across a coil) allows students to…
Descriptors: Energy, Magnets, Science Instruction, Science Experiments
Kulkarni, Atul; Kim, Youngjin; Kim, Taesung – Physics Education, 2009
This article reports for the first time the use of a plastic optical fibre (POF) cantilever beam to measure the density of a liquid. The sensor is based on the Archimedes buoyancy principle. The sensor consists of a POF bonded on the surface of a metal beam in the form of a cantilever configuration, and at the free end of the beam a displacer is…
Descriptors: Plastics, Laboratory Experiments, Measurement Techniques, Scientific Principles
Gallitto, A. Agliolo; Agnello, S.; Cannas, M. – Physics Education, 2011
We report a laboratory activity, carried out along with high- and secondary-school students, that can be done to increase the interest of the young in scientific studies. Groups of selected students "adopted" experiments at physics research laboratories, under the guidance of university researchers. Subsequently, the students…
Descriptors: Physics, Laboratory Experiments, Science Experiments, Science Instruction
Nopparatjamjomras, Suchai; Panijpan, Bhinyo; Huntula, Jiradawan – Physics Education, 2009
We propose a series of experiments involving balance readings of an object naturally floating or forced to be partially or fully immersed in water contained in a beaker sitting on an electronic scale balance. Students were asked to predict, observe and explain each case. The teacher facilitated the learning by asking probing questions, giving…
Descriptors: Measurement Techniques, Water, Science Experiments, Laboratory Experiments
A Proposal of VnR-Based Dynamic Modelling Activities to Introduce Students to Model-Centred Learning
Corni, Federico; Giliberti, Enrico – Physics Education, 2009
We propose a laboratory learning pathway, suitable for secondary school up to introductory undergraduate level, employing the VnR dynamic modelling software. It is composed of three increasingly complex activities dealing with experimental work, model design and discussion. (Contains 4 footnotes, 1 table and 5 figures.)
Descriptors: Laboratory Experiments, Mathematical Formulas, Scientific Principles, Models
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