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Palacios Gómez, Jesús; Villagómez, Roque André Eleazar Arroyo – Physics Teacher, 2023
Here, a relatively simple laboratory experiment of a physical pendulum, suitable for students of science and engineering in the first courses of university physics, is presented to illustrate its dynamic behavior and to determine its inertia moment. To this end, a long wooden rod of length L = 99.8 cm and cross-section radius R = 1.73 cm was used…
Descriptors: Physics, Science Instruction, Science Laboratories, Motion
Galeriu, Calin – Physics Teacher, 2022
The determination of the speed of sound in air is a classical experiment, usually performed with a resonance tube apparatus. The measured value can be checked against Eq. (1), which describes the temperature dependence of the speed of sound in dry air. A modern implementation of this speed of sound investigation uses an Arduino Uno microcontroller…
Descriptors: Acoustics, Physics, Measurement Equipment, Motion
Greenslade, Thomas B., Jr. – Physics Teacher, 2021
In the museum wing of the Greenslade house is a clock with a two-second pendulum about one meter long. This ticks once per second, and every time it passes through dead center it completes an electrical circuit. When I came to Kenyon in 1964, this system was used to send signals to a series of telegraph relays, which ticked once per second.…
Descriptors: Scientific Concepts, Motion, Science Instruction, Physics
Minkin, Leonid; Sikes, Daniel – Physics Teacher, 2022
The magnetic field of Earth, B[subscript e], is an intriguing topic in the introductory physics curriculum that engages students' curiosity and inspires numerous speculations about the nature of this phenomenon. There are several methods for measuring Earth's magnetic field. Probably, the most widespread and visual method of measuring the field in…
Descriptors: Physics, Science Instruction, Measurement Techniques, Magnets
Bierman, J.; Buckley, D.; Kemper, J.; Greer, A. – Physics Teacher, 2021
In our first-semester introductory physics laboratory, we have an exercise on rotational dynamics. We have recently upgraded the equipment that we use in that exercise without changing the actual exercise. The new equipment has performed well so far, and we wanted to share what we did with others who may be looking for a relatively inexpensive way…
Descriptors: Science Instruction, Science Laboratories, Physics, Introductory Courses
Siantuba, Jackson; Nkhata, Leonard; de Jong, Ton – Smart Learning Environments, 2023
This study sought to develop and evaluate an online module based on inquiry learning with digital laboratories, which was intended to address students' misconceptions in a science domain. In a quasi-experimental design, 171 first-year students in a higher education introductory physics course on circular motion were as their existing groups…
Descriptors: College Freshmen, College Science, Introductory Courses, Physics
Forringer, Edward Russell – Physics Teacher, 2022
In a 1993 book review, E. Pearlstein asks, "Why don't textbook authors begin their discussion of magnetism by talking about magnets? That's what students have experience with." A similar question can be asked, "Why don't professors have students measure the force between permanent magnets in introductory physics labs?" The…
Descriptors: Science Education, Physics, Magnets, Measurement
Phayphung, Wissarut; Rakkapao, Suttida; Prasitpong, Singha – Physics Education, 2022
The article introduces a low-cost Arduino sensor into the Young's modulus determination laboratory for physics university students. A stainless steel ruler is used as a cantilever beam. Its free end attached a mass is slightly bent and released to make it oscillate as a simple harmonic motion. The Arduino sensor detects the moving mass's frequency…
Descriptors: Laboratory Equipment, Science Laboratories, Physics, College Science
Marasco, David – Physics Teacher, 2020
A bouncing rubber ball under a motion sensor is a classic of introductory physics labs. It is often used to measure the acceleration due to gravity, and can also demonstrate conservation of energy. By observing that the ball rises to a lower height upon each bounce, posing the question "What is the main source of energy loss?" and…
Descriptors: Motion, Physics, Science Instruction, Scientific Concepts
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
Mananghaya, Michael Rivera; Yu, Dennis – Physics Education, 2022
A low-cost simple one-dimensional spring-mass system was constructed to investigate damped oscillations. The suspended mass in the system can move freely inside a cylinder containing a fluid. It provides an in-depth experience for demonstrating various concepts under oscillations. It can be used to probe the magnitude of damping forces in liquids…
Descriptors: Science Instruction, Physics, Scientific Concepts, Motion
Coelho, Ricardo Lopes – Physics Education, 2022
The pendulum was an important scientific instrument in the 17th century. It became a typical textbook problem in the 18th century. After the introduction of vectors in physics in the 1890s, the pendulum problem started to be progressively solved in the manner we know nowadays from introductory mechanics courses. Starting from "F = ma"…
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
Sukmak, Warawut; Musik, Panjit – Turkish Online Journal of Educational Technology - TOJET, 2022
The real-time graphing of simple harmonic motion of mass on springs with an Arduino based on an experiment set for teaching and learning physics in high schools where students can learn from real experiences. The objectives of this study are to create and develop a real-time measurement for vertical oscillations of mass on springs using the…
Descriptors: Physics, Science Instruction, Motion, Science Experiments
Duffy, Andrew G. – Physics Teacher, 2021
In the teaching and learning of physics, simulations have many applications. Simulations can help to illuminate concepts (such as the motion of electrons in electric or magnetic fields) that cannot usually be seen with the unaided eye, or to slow down things that happen over short time periods or at high speeds. They can also be used to help…
Descriptors: Physics, Introductory Courses, Computer Software, Scientific Concepts
Salinas, I.; Gimenez, M. H.; Monsoriu, J. A.; Sans, J. A. – Physics Teacher, 2019
New learning strategies try to extend the use of common devices among students in physics lab practices. In particular, there is a recent trend to explore the possibilities of using smartphone sensors to describe physics phenomena. On the other hand, the study of the moment of inertia by the use of the torsion pendulum is a typical example in the…
Descriptors: Handheld Devices, Telecommunications, Physics, Science Instruction