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Dilek, Ufuk; Erol, Mustafa – Physics Education, 2018
ARKit is a framework which allows developers to create augmented reality apps for the iPhone and iPad. In a previous study, we had shown that it could be used to detect position in educational physics experiments and emphasized that the ability to provide position data in real-time was one of the prominent features of this newly emerging…
Descriptors: Graphs, Physics, Science Experiments, Computer Graphics
Dilek, Ufuk; Erol, Mustafa – Physics Education, 2018
Developed by using ARKit, a novel app which can be used to detect position in physics experiments was introduced. The ARKit relies on a new technique. The result of the experiment presented in this study was satisfactory, suggesting that the new technique can be employed in position detection experiments/demonstrations that are conducted using…
Descriptors: Physics, Science Experiments, Courseware, Instructional Materials
Yavuz, Ahmet; Temiz, Burak Kagan – Physics Education, 2016
In this paper, we propose an experiment for analysing harmonic motion using an iPhone's (or iPad's) magnetometer. This experiment consists of the detection of magnetic field variations obtained from an iPhone's magnetometer sensor. A graph of harmonic motion is directly displayed on the iPhone's screen using the "Sensor Kinetics"…
Descriptors: Motion, Handheld Devices, Magnets, Computer Graphics
Mobbs, Robin – School Science Review, 2016
While on the International Space Station, Tim Peake undertook and recorded video files of experiments suitable for physics teaching coordinated by the National Space Academy. This article describes how the video of these experiments was prepared for use with tracking software. The tracking files of the videos are suitable for use by teachers or…
Descriptors: Space Sciences, Science Experiments, Physics, Video Technology
Igoe, D. P.; Parisi, A. V. – Physics Education, 2015
Solar current is an increasingly important aspect of modern life and will be even more so crucial in the students' future. Encouraging students to be the "toolmakers" allows students to take ownership of scientific investigations, as well as forcing them to refine their research questions and hypothesis, including the design and…
Descriptors: Physics, Student Developed Materials, Courseware, Class Activities
Jeanmairet, Guillaume; Levy, Nicolas; Levesque, Maximilien; Borgis, Daniel – Journal of Chemical Education, 2014
We propose an in silico experiment to introduce the classical density functional theory (cDFT). Density functional theories, whether quantum or classical, rely on abstract concepts that are nonintuitive; however, they are at the heart of powerful tools and active fields of research in both physics and chemistry. They led to the 1998 Nobel Prize in…
Descriptors: Computation, Introductory Courses, Scientific Concepts, Scientific Principles
Brown, Douglas; Cox, Anne J. – Physics Teacher, 2009
The value of video analysis in physics education is well established, and both commercial and free educational video analysis programs are readily available. The video format is familiar to students, contains a wealth of spatial and temporal data, and provides a bridge between direct observations and abstract representations of physical phenomena.…
Descriptors: Computer Uses in Education, Physics, Motion, Video Technology
Lee, Young-Jin – Journal of Educational Computing Research, 2010
This study reports the effects of different types of instructional preparation strategies on the problem solving performance of college students taking an introductory physics class. Students were divided into four equally skilled groups and solved the same physics problems after receiving different instructional preparations (engaging in…
Descriptors: Physics, Problem Solving, Educational Environment, Web Based Instruction
Price, Charles L. – 1987
This description of the use of "probeware," i.e., hardware which connects to a microcomputer and works with the software to measure factors such as temperature, light, or motion in science laboratory experiments, uses as an example an experiment which would involve the measurement of pendulum motion using the "Precision Timer…
Descriptors: Computer Assisted Instruction, Courseware, Data Analysis, Higher Education
Albrecht, Bob; Firedrake, George – Learning & Leading with Technology, 1997
Describes projects for high school physics classes that use computer tools including integrated software packages, graphing calculators, and calculator-based lab and microcomputer-based lab. Sites available on the World Wide Web are discussed and specific examples of experiments based on Galileo and Newton are included. (LRW)
Descriptors: Computer Assisted Instruction, Courseware, Graphing Calculators, Hands on Science

Ronen, Miky; Lipman, Aharon – Physics Teacher, 1991
Proposes the V-Scope as a teaching aid to measure, analyze, and display three-dimensional multibody motion. Describes experiment setup considerations, how measurements are calculated, graphic representation capabilities, and modes of operation of this microcomputer-based system. (MDH)
Descriptors: Computer Assisted Instruction, Courseware, High Schools, Instructional Materials

Bligh, P. H.; And Others – Physics Education, 1987
Describes a heat capacity experiment designed to provide an interactive environment between the student, the experiment, and the computer. Discusses computer software that has been developed so that the entire interaction can be coordinated from the computer keyboard. (TW)
Descriptors: College Science, Computer Assisted Instruction, Computer Simulation, Computer Uses in Education

Mitford, Hazel – School Science Review, 1986
Describes 46 activities, investigations, and experiments which deal with a variety of topics in high school and college biology, chemistry, and physics. Includes photographs, diagrams, descriptions of computer software, and detailed procedures for conducting teaching activities on topics ranging from energy to water recycling. (TW)
Descriptors: Biology, Chemistry, College Science, Computer Uses in Education

Powers, Michael H. – Journal of Computers in Mathematics and Science Teaching, 1987
Discusses various types of transducers and explains the use of a photoresistor in sensing light. Describes various hardware and software combinations which can be used with photoresistors in science laboratory experiments. Presents general applications of this instrument in light-meter, solarimeter, and colorimeter experiments. (TW)
Descriptors: Chemistry, College Science, Color, Computer Assisted Instruction