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Behroozi. F. – Physics Teacher, 2021
The stately fall of magnets through conducting pipes is a favorite classroom and laboratory activity used in teaching electromagnetic induction, Lenz's law, eddy currents, electromagnetic braking, and even Newton's third law. When a neodymium magnet is used, the terminal velocity is reached in just a few milliseconds as the induced eddy currents…
Descriptors: Magnets, Science Activities, Motion, Equations (Mathematics)
Zi-Ning Huang; Hsiang-Wei Chen; Chiu-Lin Lai – Journal of Science Education and Technology, 2024
This study explored the impact of interactive e-books on the viewing behaviors of children in science demonstrations at museums. To conduct this study, an interactive e-book on a pendulum experiment was developed and integrated into a physical science demonstration at a museum. Two scientific demonstrations were conducted in this study. The first…
Descriptors: Science Education, Child Behavior, Observation, Attention
Sullivan, Kelley D. – Physics Teacher, 2019
The ubiquitous bouncy ball, or "superball," is an engaging child's toy that has endured for more than 50 years. But what makes a bouncy ball so uniquely suited to its name? Steel balls, for example, are more highly elastic than are butadiene bouncy balls. Yet it is butadiene balls, and not steel balls, that appear in toy stores and…
Descriptors: Science Instruction, Physics, Science Activities, Toys
Pendrill, Ann-Marie – Physics Education, 2021
Take a selection of balls and marbles along to a nearby playground slide and let students investigate factors that may influence how balls accelerate down an inclined plane. Students can make hypotheses in small groups, plan investigations to test multiple possible explanations and draw conclusions about the importance of different variables. The…
Descriptors: Physics, Motion, Science Activities, Active Learning
Concannon, James P.; Brown, Patrick L. – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2018
Students come to class with little understanding about torque, angular velocity, and angular acceleration despite the fact that these physical science concepts are frequently observed. For example, torque occurs when car and bicycle tires rotate, the movement of fishing pole when hooking a fish, and when a person uses a hammer to drive in a nail.…
Descriptors: Science Activities, Science Instruction, Physics, Scientific Concepts
Maidana, Nora L.; da Fonseca, Monaliza; Barros, Suelen F.; Vanin, Vito R. – Physics Education, 2016
The Virtual Laboratory was created as a complementary educational activity, with the aim of working abstract concepts from an experimental point of view. In this work, the motion of a ring rolling and slipping in front of a grid printed panel was recorded. The frames separated from this video received a time code, and the resulting set of images…
Descriptors: Physics, Virtual Classrooms, Scientific Concepts, Science Experiments
White, Colin – Physics Education, 2017
This paper describes three methods of measuring the coefficient of restitution (CoR) for two different types of ball-on-ball collision. The first collision type (for which two different CoR measurement procedures are described) is a static, hanging steel ball forming part of a Newton's cradle arrangement, which is then hit by its adjacent…
Descriptors: Comparative Analysis, Measurement Techniques, Motion, Kinetics
Berggren, Calvin; Gandhi, Punit; Livezey, Jesse A.; Olf, Ryan – Physics Teacher, 2018
We describe a set of conceptual and hands-on activities based around understanding the dynamics of a Slinky that is hung vertically and released from rest. This Slinky drop experiment typically lasts a fraction of a second, but when observed in slow motion, one sees the Slinky compress from the top down while the bottom portion remains at…
Descriptors: Science Instruction, Hands on Science, Science Activities, Scientific Concepts
Secco, Richard A.; Sukara, Reynold E. – Physics Teacher, 2016
There are many lab exercises for upper-level school students and freshman undergraduates to measure the value of the local acceleration due to gravity ("g") near Earth's surface. In these exercises, the value of "g" is usually taken to be constant. The approach is often based on measuring the period of a pendulum that is…
Descriptors: College Freshmen, Kinetics, Motion, Science Activities
Rovšek, Barbara; Guštin, Andrej – Physics Education, 2018
An astronomy "experiment" composed of three parts is described in the article. Being given necessary data a simple model of inner planets of the solar system is made in the first part with planets' circular orbits using appropriate scale. In the second part revolution of the figurines used as model representations of the planets along…
Descriptors: Motion, Scientific Concepts, Scientific Principles, Science Activities
Ford, Jes; Stang, Jared; Anderson, Catherine – Physics Teacher, 2015
Dark matter makes up most of the matter in the universe but very little of a standard introductory physics curriculum. Here we present our construction and use of a spandex sheet-style gravity simulator to qualitatively demonstrate two aspects of modern physics related to dark matter. First, we describe an activity in which students explore the…
Descriptors: Science Instruction, Physics, Science Activities, Scientific Concepts
Alpaslan, Muhammet Mustafa – Science Activities: Classroom Projects and Curriculum Ideas, 2017
In recent years, the integration of science and mathematics has become popular among educators because of its potential benefits for student learning. The purpose of this study is to introduce a two-day interdisciplinary lesson that brings science and mathematics concepts together, actively engaging students in working with percentages of the…
Descriptors: Integrated Activities, Learning Activities, Science Activities, Mathematics Activities
Gates, Joshua – Physics Teacher, 2014
Newton's second law is one of the cornerstones of the introductory physics curriculum, but it can still trouble a large number of students well after its introduction, hobbling their ability to apply the concept to problem solving and to related concepts, such as momentum, circular motion, and orbits. While there are several possibilities for…
Descriptors: Science Experiments, Scientific Principles, Scientific Concepts, Science Education
Nowak, Mariusz Karol – Physics Education, 2014
It is hard to observe relativistic effects in everyday life. However, table experiments using a mechanical transmission line for solitons may be an efficient and simple way to show effects such as Lorentz contraction in a classroom. A kink soliton is a deformation of a lattice of several dozen or more pendulums placed on a wire and connected by a…
Descriptors: Laboratory Equipment, Scientific Concepts, Mechanics (Physics), Motion
De, Subhranil – Physics Education, 2014
The familiar system involving a uniform ladder sliding against a vertical wall and a horizontal floor is considered again. The floor is taken to be smooth and the wall to be possibly rough--a situation where no matter how large the static friction coefficient between the ladder and the wall, the ladder cannot lean at rest and must slide down.…
Descriptors: Kinetics, Mathematical Logic, Mathematical Models, Physics