NotesFAQContact Us
Collection
Advanced
Search Tips
Audience
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Showing 1 to 15 of 27 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
Marranghello, Guilherme Frederico; Lucchese, Márcia Maria; da Rocha, Fábio Saraiva – Physics Teacher, 2022
Water rockets can be used in a variety of ways, from schools to planetariums, with very young kids or adults. We propose here simple forms to work with water rockets, going one step further than a simple launch. A smartphone can be used to film the launch and analyze its motion with video analysis or it can even be attached to the rocket, using…
Descriptors: Physics, Video Technology, Science Instruction, Water
Peer reviewed Peer reviewed
Direct linkDirect link
Williams, Hollis – Physics Education, 2022
Granular flows appear frequently in the natural world and in civil engineering applications. These flows can exhibit features which are surprising and counter-intuitive and are often used to test the limits of the classical continuum approximation for modelling of fluid flows. An important sub-class of the granular flows are the gravity-driven…
Descriptors: Science Instruction, Physics, Scientific Concepts, Educational Technology
Peer reviewed Peer reviewed
Direct linkDirect link
Hughes, Stephen; Croxford, Tim – Physics Education, 2022
The first of the two postulates of relativity states that the laws of physics are the same in all inertial reference frames. Often it is assumed that the postulates are mainly concerned with objects moving at a significant fraction of the speed of light. However, the postulates are applicable at all speeds from a snail to a photon. To practically…
Descriptors: Physics, Science Instruction, Teaching Methods, Telecommunications
Peer reviewed Peer reviewed
Direct linkDirect link
Goev, Gosho; Velinov, Tzvetan – Physics Education, 2022
In this paper, we propose a simple yet generic and versatile method to measure the position of a moving body as a function of time. Apart from very basic equipment such as carts and wheels, only a laser pointer or a similar device and a smartphone are necessary. By attaching a source of light to a cart and video filming its movement on a…
Descriptors: Measurement Techniques, Science Instruction, Motion, Physics
Peer reviewed Peer reviewed
Direct linkDirect link
Pathak, Praveen; Patel, Yogita – Physics Education, 2020
A phone emitting sound of a fixed frequency is sliding on an inclined plane and approaching a second phone kept at the bottom of the plane. The detected frequency versus time data by the second phone are used to calculate the acceleration of the sliding phone. The primary objective of this paper is to calculate the sliding friction between the…
Descriptors: Telecommunications, Handheld Devices, Science Instruction, Physics
Peer reviewed Peer reviewed
Direct linkDirect link
Alberto A. Ferna´ndez; Margarita Lo´pez-Torres; Jesu´s J. Ferna´ndez; Digna Va´zquez-Garci´a – Journal of Chemical Education, 2023
Students were tasked with the creation of videos of ordinary reactions to promote significant learning of complex concepts underlying chemical transformations. Interactive infographics were used to deliver instructions. Afterward, students planned the experimental setup for the reaction execution and video recording using their mobile phones. The…
Descriptors: Chemistry, Video Technology, Technology Uses in Education, Scientific Concepts
Peer reviewed Peer reviewed
Direct linkDirect link
Wörner, Salome; Fischer, Christian; Kuhn, Jochen; Scheiter, Katharina; Neumann, Irene – Physics Teacher, 2021
Video motion analysis allows tracing trajectories of objects in motion and is an established method in physics education. Tablet computers, with their integrated cameras, offer the opportunity to both record and analyze dynamic motions during experiments on a single device. This enables students to work without transitioning the data between…
Descriptors: Video Technology, Motion, Astronomy, Science Instruction
Peer reviewed Peer reviewed
Direct linkDirect link
de Oliveira, A. L.; de Jesus, V. L. B.; Sasaki, D. G. G. – Physics Education, 2021
The drag effect on a falling ball caused by air is a conventional subject in the most well-known textbooks of classical mechanics and fluid dynamics. Further, there are some papers that employ video analysis to track objects movements in the air making it possible to obtain position data as a function of time and its graphs. However, none of them…
Descriptors: Science Instruction, Physics, Scientific Concepts, Concept Formation
Peer reviewed Peer reviewed
Direct linkDirect link
Gössling, Alexander; Becker, Sebastian; Kuhn, Jochen – Physics Teacher, 2021
Supersonic free-fall jumps are excellent examples of kinematics in the context of drag. They have attracted a lot of media, public, and scientific interest. In 2012, Felix Baumgartner jumped from a height of approximately 38.969 km. During his flight he reached a top speed of 373 m/s, becoming the first human to travel faster than the speed of…
Descriptors: Science Instruction, Science Experiments, Physics, Kinetics
Peer reviewed Peer reviewed
Direct linkDirect link
Nuryadin, Bebeh Wahid – Physics Education, 2020
This research aims to develop a falling chain experiment apparatus using kitchen scales and digital cameras (smartphones). Digital cameras were used to observe and record changes in the mass of falling chains measured using kitchen scales. Video recordings from observations of falling chain masses were analysed using Tracker 5.1.1 software. The…
Descriptors: Physics, Science Instruction, Teaching Methods, Video Technology
Peer reviewed Peer reviewed
Direct linkDirect link
Thy, Savrin; Iwayama, Tsutomu – Physics Education, 2021
This paper presents a thorough method for studying the interference of water waves. The study aimed: (a) to demonstrate the interaction of two coherent waves, which creates interference patterns, and (b) to analyse the interference patterns. Three main tools were employed: a simplified ripple tank to experiment, a smartphone camera to record the…
Descriptors: Science Instruction, Physics, Scientific Concepts, Science Experiments
Peer reviewed Peer reviewed
Direct linkDirect link
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
Peer reviewed Peer reviewed
Direct linkDirect link
Ürek, Handan; Özdemir, Erdogan; Coramik, Mustafa – Physics Education, 2021
The target of this study is to determine the minimum angle of deviation of a prism which is one of the optical experiments. Thus, the aim is to state the refractive index of a prism. In this context, the Tracker program, which might also be utilized in terms of distance education purposes, was preferred. The videos of the experiments were recorded…
Descriptors: Science Instruction, Physics, Scientific Concepts, Concept Formation
Peer reviewed Peer reviewed
Direct linkDirect link
Cross, Rod – Physics Education, 2018
When measuring the speed of an object with a video camera, a correction may be needed for the time taken by the camera to acquire the image in each frame. Examples are given where the correction is quite significant.
Descriptors: Video Technology, Physics, Science Instruction, Telecommunications
Peer reviewed Peer reviewed
Direct linkDirect link
Becker, Sebastian; Thees, Michael; Kuhn, Jochen – Physics Teacher, 2018
A magnetic linear accelerator (or Gauss accelerator) is a device that uses the conversion of magnetic energy into kinetic energy to launch an object with high velocity. A simple experimental implementation consists of a line of steel spheres in which the first one is a permanent magnetic sphere. If another steel ball collides with the magnetic…
Descriptors: Equipment, Magnets, Energy, Kinetics
Previous Page | Next Page »
Pages: 1  |  2