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Rosi, Tommaso; Perini, Marica; Onorato, Pasquale; Oss, Stefano – Physics Education, 2021
We designed and tested a 3D motion tracking system which displays acquired and derived data using augmented reality. This setup, based on a virtual reality headset and its controllers, is a relatively low-cost, high-precision, six degrees of freedom, high-speed, multiple-objects tracking device. This apparatus proves to be a very high-quality…
Descriptors: Physics, Computer Simulation, Educational Technology, Science Equipment
Coramik, Mustafa – Physics Education, 2021
Teaching materials used in distance education are generally obtained from the internet as ready-made by teachers. Materials such as simulation, animation and presentation are usually limited to the frame drawn by the creator and do not allow changes outside this limit. In addition, many of these types of materials do not have a feedback mechanism.…
Descriptors: Secondary School Science, College Science, Science Instruction, Physics
Bozzo, G.; de Sabata, F.; Pistori, S.; Monti, F. – Physics Teacher, 2019
Wave physics phenomena can be observed in everyday life and represent a fundamental prerequisite to many domains of classical and modern physics. Lots of studies demonstrate that novices have to face important learning difficulties in approaching this topic. The study of string vibrations' modes allows an educational introduction to basic…
Descriptors: Physics, Scientific Concepts, Science Equipment, Science Laboratories
González, Manuel I. – Physics Education, 2017
Measuring voltage-current and voltage-power curves of a photovoltaic module is a nice experiment for high school and undergraduate students. In labs where real sunlight is not available this experiment requires a solar simulator. A prototype of a simulator using LED lamps has been manufactured and tested, and a comparison with classical halogen…
Descriptors: Simulation, Light, Lighting, Electromechanical Technology
Swanson, Lauren; Vernon, Heather; Bauer, Christina – Science Teacher, 2018
Understanding how scientific conclusions are drawn from data is central to learning about the nature of science. Many students struggle with aspects of reasoning from data, including identifying relationships among variables, interpreting graphs, coordinating theory and evidence, and not allowing personal beliefs to outweigh the data when forming…
Descriptors: Data Interpretation, Scientific Principles, Science Instruction, Science Activities
Koehn, Theodore – Science Teacher, 2013
The author taught for years in rural high schools, where students often helped their parents out around the house or farm with chores, learning basic mechanical skills that he could then build on in class. Then the author taught in an urban high school, where student skills often centered on video games and other electronics. The author knew that…
Descriptors: Science Equipment, Physics, Science Laboratories, Science Instruction
Reddy, Christopher – American Journal of Distance Education, 2014
Laboratory science classes offered to students learning at a distance require a methodology that allows for the completion of tactile activities. Literature describes three different methods of solving the distance laboratory dilemma: kit-based laboratory experience, computer-based laboratory experience, and campus-based laboratory experience,…
Descriptors: Distance Education, Science Laboratories, Science Instruction, College Science
Raju, T. J. M. S.; Suryanarayana, N. V. S. – Journal on School Educational Technology, 2011
This study focuses on the availability and use of Science Laboratories at the secondary education level in Visakhapatnam District of Andhra Pradesh, India. It is commented that most of the schools do not possess well equipped laboratories and even when equipment is available some science teachers are not utilizing the laboratory facilities.…
Descriptors: Science Laboratories, Secondary Schools, Secondary Education, Foreign Countries

Gottlieb, Herbert H., Ed. – Physics Teacher, 1972
Descriptors: Laboratory Equipment, Measurement Instruments, Physics, Science Equipment

Taboga, Leandro – American Biology Teacher, 1979
Instructions for making a simple respirometer, to measure rates of oxygen consumption of organisms, are presented. The instrument incorporates most of the basic elements of commercial respirometers but can be made inexpensively by high school students. Operating instructions and applications are given. (Author/SA)
Descriptors: Biology, Laboratory Equipment, Measurement Equipment, Science Education

McDermott, John J.; Edgar, Irvin T. – Science Teacher, 1979
This is an account of the discovery of a potentially dangerous high explosive chemical on storeroom shelves of secondary schools in Pennsylvania. A list of guidelines is given to eliminate problems in the future. (SA)
Descriptors: Accident Prevention, Chemical Reactions, Guidelines, Laboratory Safety
Lam, Tom – Hands On!, 1985
Microcomputer-based laboratories (MBLs) refer to a laboratory where a microcomputer gathers and displays data directly from the environment. Program listings for a response timer (using game paddles) to illustrate the nature of MBLs are presented. (JN)
Descriptors: Computer Oriented Programs, Computer Software, Measurement Equipment, Microcomputers

Vogel, Eric – American Journal of Physics, 1973
Describes the construction and operational procedures of a spark-timing apparatus which is designed to record the back and forth motion of one or two carts on linear air tracks. Applications to measurements of velocity, acceleration, simple harmonic motion, and collision problems are illustrated. (CC)
Descriptors: College Science, Educational Media, Mechanics (Physics), Physics

Browning, Robert F. – American Biology Teacher, 1980
Describes a method for constructing undergravel filters made from common materials to provide suitable habitats for a diversity of aquatic organisms. (CS)
Descriptors: Animal Facilities, Biology, Instructional Materials, Laboratory Animals

Bross, Thomas R. – Journal of Computers in Mathematics and Science Teaching, 1986
Discusses the use of microcomputers in science education: (1) computer-assisted instruction; (2) testing; (3) data processing; (4) simulation; (5) teacher assistance; and (6) data collection. Gives educational applications of microcomputer-based laboratories, pointing out advantages and disadvantages. Outlines current drawbacks and makes…
Descriptors: Computers, Curriculum Development, Data Analysis, Data Collection