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Stefanidou, C.; Psoma, V.; Skordoulis, C. – Physics Education, 2020
In this paper, the inclusion of history and philosophy of science in science teaching is proposed with the goal of depicting pre-service primary teachers' perception of the role of historical experiments in learning science and the nature of science. In order to achieve this, a teaching-learning sequence was designed and conducted in the context…
Descriptors: Science Instruction, Science Experiments, Physics, Preservice Teachers
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
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
Mills, Allan – Physics Education, 2014
The hydraulic impulse pump utilizes a fraction of the momentum of a flowing stream to lift a small portion of that water to a higher level. There it may be accumulated in an elevated cistern to provide sufficient water for several families, for the pump works 24 h a day with no additional source of energy. The operation of the pump is described,…
Descriptors: Science Instruction, Physics, Water, Equipment
Claycomb, James R.; Valentine, John H. – Physics Education, 2015
A low-cost chaos dynamics lab is developed for quantitative demonstration of the butterfly effect using a magnetic pendulum. Chaotic motion is explored by recording magnetic time series. Students analyze the data in Excel® to investigate the butterfly effect as well as the reconstruction of the strange attractor using time delay plots. The lab…
Descriptors: Science Instruction, Physics, Science Laboratories, Scientific Principles
Downie, Neil A. – Physics Education, 2013
Here is a way to show a sound wave travelling through air in real time. The
method employs a set of low-cost microphone--LED units and demonstrates
the movement of a pulse of sound as it lights up LEDs along a long
(100-200 m) distance across a field. (Contains 4 figures.)
Descriptors: Physics, Science Instruction, Acoustics, Science Laboratories
Baird, William H. – Physics Education, 2013
Some of the results from the electrostatics portion of introductory physics are particularly difficult for students to understand and/or believe. For students who have yet to take vector calculus, Gauss's law is far from obvious and may seem more difficult than Coulomb's. When these same students are told that the minimum potential…
Descriptors: Science Instruction, Educational Technology, Teaching Methods, Spreadsheets
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
Mungan, Carl E. – Physics Education, 2012
A simple model is developed that predicts the coefficient of rolling friction for an undriven laboratory cart on a track that is approximately independent of the mass loaded onto the cart and of the angle of inclination of the track. The model includes both deformation of the wheels/track and frictional torque at the axles/bearings. The concept of…
Descriptors: Mechanics (Physics), Science Instruction, Science Laboratories, Motion
Ladino, L. A. – Physics Education, 2013
A different method to study the charging and discharging processes of a capacitor is presented. The method only requires a high impedance voltmeter. The charging and discharging processes of a capacitor are usually studied experimentally using an oscilloscope and, therefore, both processes are studied as a function of time. The approach presented…
Descriptors: Science Instruction, Physics, Scientific Concepts, Science Experiments
Quinn, Terry; Quinn, Lucas; Davis, Richard – Physics Education, 2013
A watt balance is an electromechanical device that allows a mass to be determined in terms of measurable electrical and mechanical quantities, themselves traceable to the fundamental constants of physics. International plans are well advanced to redefine the unit of mass, the kilogram, in terms of a fixed numerical value for the Planck constant. A…
Descriptors: Science Instruction, Physics, Laboratory Equipment, Measurement Equipment
Richardson, Tim H.; Brittle, Stuart A. – Physics Education, 2012
This paper describes a set of experiments aimed at overcoming some of the difficulties experienced by students learning about the topics of moments of inertia and simple harmonic motion, both of which are often perceived to be complex topics amongst students during their first-year university courses. By combining both subjects in a discussion…
Descriptors: Motion, Science Laboratories, Mechanics (Physics), Science Instruction

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