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Pusch, Alexander; Ubben, Malte S.; Laumann, Daniel; Heinicke, Susanne; Heusler, Stefan – Physics Education, 2021
An easy circuit for measuring the power of a solar panel in physics classroom by using the microcontroller Arduino will be introduced in this article. The measured data is transferred via Bluetooth to the smartphone app 'phyphox' where it is displayed graphically. The circuitry enables measuring the power of a solar panel in different situations…
Descriptors: Physics, Science Education, Light, Science Experiments
Logiurato, Fabrizio; Gratton, Luigi; Oss, Stefano – Physics Teacher, 2020
Crystallography is a fascinating subject and an argument of great importance in the study of structure of matter and fundamental physics. Moreover, many characteristics of crystals, as well as other organic and inorganic substances, are analyzed with x-ray diffraction. In order to introduce at a basic level the above mentioned subjects, and also…
Descriptors: Science Instruction, Science Experiments, Light, Physics
Den Auwer, Christophe; Bayle, Simon; Beccia, Maria Rosa; Bosio, Sandra; Creff, Gaëlle; Jeanson, Aurélie; Michel, Hervé; Pitiot, Christophe; Zurita, Cyril – Journal of Chemical Education, 2022
As part of their third-year general chemistry program, students at the University of the Côte d'Azur are taught the basics of radioactivity. The view that third-year university students have of the periodic Table of the Elements is often reduced because it ignores the vast majority of isotopes. As part of this program, a practicum devoted to the…
Descriptors: Radiation, Chemistry, College Science, Science Instruction
Parcerisas, D.; Ballabriga, R.; Amorós, E.; Argudo, A.; Campbell, M.; Casas, L.; Christodoulou, P.; Colomé, R.; Corrons, D.; Curcó, V.; Enajas, M.; Granja, C.; Grauges, E.; Gou, A.; Lleó, E.; Llopart, X.; Pallares, E.; Pino, H.; Serra, S.; Valero, G. – Physics Education, 2022
This paper presents the case for how students can be helped to increase their scientific vocation by experimental work and the introduction of particle physics into pre-university studies. These two ideas are the two main lines of work of the ADMIRA initiative, which has been created by individuals belonging to different and complementary…
Descriptors: Physics, Secondary School Science, High School Students, Science Experiments
Navalkar, Vinita; Sawant, Sumedh; Mourya, Shubham – Physics Education, 2021
The concept of black body is of primary importance in studying the energy transfer of thermal electromagnetic radiation at all wavelengths. Several physical bodies like incandescent lamps, electric heaters, stoves, the sun and the other stars, microwave background radiation, etc., are considered to be black bodies as their radiation spectra fits…
Descriptors: Energy, Radiation, Light, Physics
Karbowiak, Michal; Wibig, Tadeusz; Alvarez-Castillo, David; Beznosko, Dmitriy; Duffy, Alan R.; Góra, Dariusz; Homola, Piotr; Kasztelan, Marcin; Niedzwiecki, Michal – Physics Education, 2020
The Cosmic-Ray Extremely Distributed Observatory (CREDO) is the project to search and study ultra high-energy cosmic ray particles from deep space producing simultaneous extensive air showers over the entire exposed surface of the Earth. The concept of the CREDO infrastructure assumes absorbing all kinds of cosmic ray data from any apparatus all…
Descriptors: Science Instruction, Radiation, Science Activities, Energy
Vollmer, Michael; Mustard, Alexander – Physics Education, 2019
Water can exhibit many different colors due to a variety of physical properties. Here, we focus on some observable colors within very pure freshwater. We only treat the absorption of light due to electronic and ro-vibrational excitations and scattering due to refractive index fluctuations of the water and the respective consequences for the…
Descriptors: Science Instruction, Color, Light, Scientific Concepts
Bastos, Rodrigo Oliveira – Physics Education, 2020
Electroscopes have been widely used in physics education for several reasons, such as their simplicity, sensitivity and visual appeal, showing macroscopic phenomena related to the microscopic world. Although they are capable of highly accurate measurements, the procedures involved in these measurements encounter some obstacles when performed with…
Descriptors: Science Instruction, Laboratory Equipment, Computer Software, Measurement Techniques
Organtini, Giovanni – Physics Education, 2018
This paper describes a cost effective and safe device to perform realistic experiments on the physics of radioactivity in classrooms. It can be used to study both a- and ß-radioactivity as well as ?-emitters and shows extremely realistic behaviour. The device, in the form of a Geiger--Müller tube, was tested during a public lecture and it deceived…
Descriptors: Physics, Science Instruction, Teaching Methods, Safety
Rosi, Tommaso; Onorato, Pasquale – Physics Education, 2020
In this article we present simple and low-cost experiments about the polarization of light. We use an LCD monitor or an RGB LED light bulb with a Polaroid as a source of polarized radiation, a polarizer sheet as an analyzer, and a smartphone camera to measure light intensities. Thus, using a digital camera to acquire videos students can explore in…
Descriptors: Video Technology, Science Instruction, Physics, Light
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
Kvita, Jirí; Cermáková, Berenika; Matulová, Natálie; Poštulka, Jan; Staník, Daniel – Physics Education, 2019
We present several applications of the particle camera MX-10 in different radiation environments, leading to strikingly different observed patterns and consequently particle composition as well as recorded dose. We describe the measurements of the radiation background, cosmic muons direction analysis and the detection of alpha particles in a…
Descriptors: Physics, Science Instruction, Radiation, Scientific Concepts
Boot, Roeland – Physics Teacher, 2017
There is a relatively simple way of using radioactive material in classroom experiments: uranium glass, which provides teachers with a suitable substance. By using the right computer software and a radiation sensor, it can be demonstrated that uranium glass emits radiation at a greater rate than the background radiation and with the aid of UV…
Descriptors: Science Education, Science Experiments, Computer Software, Radiation
Yoshinaga, Kyohei; Kubota, Miki; Kamata, Masahiro – Physics Education, 2015
We have developed much simpler cloud chambers that use only ice and cooking salt instead of the dry ice or ice gel pack needed for the cloud chambers produced in our previous work. The observed alpha-ray particle tracks are as clear as those observed using our previous cloud chambers. The tracks can be observed continuously for about 20?min, and…
Descriptors: Science Experiments, Physics, Teaching Methods, Radiation
Radon Measurement Laboratories. An Educational Experience Based on School and University Cooperation
De Cicco, F.; Balzano, E.; Limata, B. N.; Masullo, M. R.; Quarto, M.; Roca, V.; Sabbarese, C.; Pugliese, M. – Physics Education, 2017
There is a growing interest in engaging students and the general public about the meaning and objectives of doing science. When it is possible students can learn by actively engaging in the practices of science, conducting investigations, sharing ideas with their peers, teachers and scientists, learning to work with measuring apparatuses, to…
Descriptors: College School Cooperation, Science Instruction, Physics, Radiation